{"id":"CVR_multivariable_iv_000383_w48_1","question":"In the opening 48 hours, compare the first urine output decrease with the first temperature decrease, respiratory rate increase, and systolic blood pressure increase; which option is correct?\nOptions: A. The first urine output decrease occurs after the first temperature decrease, respiratory rate increase, and systolic blood pressure increase. B. The first urine output decrease occurs before the first temperature decrease and systolic blood pressure increase, but after the first respiratory rate increase. C. The first urine output decrease occurs before the first temperature decrease, respiratory rate increase, and systolic blood pressure increase. D. The first urine output decrease occurs before the first systolic blood pressure increase, but after the first temperature decrease and respiratory rate increase.","answer":"D","answer_text":"The first urine output decrease occurs before the first systolic blood pressure increase, but after the first temperature decrease and respiratory rate increase.","episode_id":"iv_000383","anchor_time":48} {"id":"CVR_multivariable_iv_000045_w48_2","question":"In the opening 48 hours, compare the first diastolic blood pressure decrease with the first heart rate increase, MAP decrease, and respiratory rate increase; which option is correct?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate increase and respiratory rate increase, but after the first MAP decrease. B. The first diastolic blood pressure decrease occurs before the first respiratory rate increase, but after the first heart rate increase and MAP decrease. C. The first diastolic blood pressure decrease occurs before the first heart rate increase, MAP decrease, and respiratory rate increase. D. The first diastolic blood pressure decrease occurs after the first heart rate increase, MAP decrease, and respiratory rate increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate increase, but after the first heart rate increase and MAP decrease.","episode_id":"iv_000045","anchor_time":48} {"id":"CVR_multivariable_iv_000156_w48_0","question":"In the opening 48 hours, compare the first urine output increase with the first diastolic blood pressure increase, heart rate decrease, and MAP decrease; which option is correct?\nOptions: A. The first urine output increase occurs after the first diastolic blood pressure increase, heart rate decrease, and MAP decrease. B. The first urine output increase occurs before the first MAP decrease, but after the first diastolic blood pressure increase and heart rate decrease. C. The first urine output increase occurs before the first diastolic blood pressure increase, heart rate decrease, and MAP decrease. D. The first urine output increase occurs before the first heart rate decrease and MAP decrease, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first urine output increase occurs before the first heart rate decrease and MAP decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000156","anchor_time":48} {"id":"CVR_multivariable_iv_000156_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, urine output, MAP, and respiratory rate?\nOptions: A. heart rate increase occurs first, followed by respiratory rate decrease, then urine output decrease, and finally MAP decrease. B. heart rate increase occurs first, followed by urine output decrease, then respiratory rate decrease, and finally MAP decrease. C. urine output decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally MAP decrease. D. heart rate increase occurs first, followed by urine output decrease, then MAP decrease, and finally respiratory rate decrease.","answer":"B","answer_text":"heart rate increase occurs first, followed by urine output decrease, then respiratory rate decrease, and finally MAP decrease.","episode_id":"iv_000156","anchor_time":24} {"id":"CVR_multivariable_iv_000072_w24_0","question":"For the initial 24 hours, which option best matches the order in which heart rate, systolic blood pressure, temperature, and SpO2 first changed?\nOptions: A. SpO2 decrease occurs first, followed by heart rate increase, then temperature increase, and finally systolic blood pressure increase. B. SpO2 decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally temperature increase. C. SpO2 decrease occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally temperature increase. D. heart rate increase occurs first, followed by SpO2 decrease, then systolic blood pressure increase, and finally temperature increase.","answer":"B","answer_text":"SpO2 decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally temperature increase.","episode_id":"iv_000072","anchor_time":24} {"id":"CVR_multivariable_iv_000072_w48_1","question":"During the first 48 hours, which option correctly describes whether the first systolic blood pressure increase preceded the first heart rate decrease, SpO2 increase, and temperature increase?\nOptions: A. The first systolic blood pressure increase occurs before the first heart rate decrease, SpO2 increase, and temperature increase. B. The first systolic blood pressure increase occurs after the first heart rate decrease, SpO2 increase, and temperature increase. C. The first systolic blood pressure increase occurs before the first heart rate decrease and temperature increase, but after the first SpO2 increase. D. The first systolic blood pressure increase occurs before the first temperature increase, but after the first heart rate decrease and SpO2 increase.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first temperature increase, but after the first heart rate decrease and SpO2 increase.","episode_id":"iv_000072","anchor_time":48} {"id":"CVR_multivariable_iv_000072_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in temperature, lactate, white blood cell count, urine output, and MAP?\nOptions: A. MAP increase occurs first, followed by urine output decrease, then lactate increase, then temperature decrease, and finally white blood cell count decrease. B. MAP increase occurs first, followed by urine output decrease, then temperature decrease, then lactate increase, and finally white blood cell count decrease. C. urine output decrease occurs first, followed by MAP increase, then lactate increase, then temperature decrease, and finally white blood cell count decrease. D. MAP increase occurs first, followed by lactate increase, then urine output decrease, then temperature decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"MAP increase occurs first, followed by urine output decrease, then lactate increase, then temperature decrease, and finally white blood cell count decrease.","episode_id":"iv_000072","anchor_time":48} {"id":"CVR_multivariable_iv_000315_w24_0","question":"For the initial 24 hours, which option best matches the order in which MAP, diastolic blood pressure, temperature, and SpO2 first changed?\nOptions: A. MAP increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, and finally temperature increase. B. diastolic blood pressure decrease occurs first, followed by MAP increase, then temperature increase, and finally SpO2 decrease. C. diastolic blood pressure decrease occurs first, followed by MAP increase, then SpO2 decrease, and finally temperature increase. D. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then MAP increase, and finally temperature increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by MAP increase, then SpO2 decrease, and finally temperature increase.","episode_id":"iv_000315","anchor_time":24} {"id":"CVR_multivariable_iv_000315_w48_1","question":"Looking only at the first 48 hours, did the first diastolic blood pressure decrease come before the first MAP increase, SpO2 decrease, and respiratory rate increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first MAP increase, SpO2 decrease, and respiratory rate increase. B. The first diastolic blood pressure decrease occurs after the first MAP increase, SpO2 decrease, and respiratory rate increase. C. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and respiratory rate increase, but after the first MAP increase. D. The first diastolic blood pressure decrease occurs before the first MAP increase and respiratory rate increase, but after the first SpO2 decrease.","answer":"A","answer_text":"The first diastolic blood pressure decrease occurs before the first MAP increase, SpO2 decrease, and respiratory rate increase.","episode_id":"iv_000315","anchor_time":48} {"id":"CVR_multivariable_iv_000315_w48_2","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first diastolic blood pressure decrease, MAP increase, and temperature increase?\nOptions: A. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, MAP increase, and temperature increase. B. The first SpO2 decrease occurs before the first temperature increase, but after the first diastolic blood pressure decrease and MAP increase. C. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, MAP increase, and temperature increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and temperature increase, but after the first MAP increase.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first temperature increase, but after the first diastolic blood pressure decrease and MAP increase.","episode_id":"iv_000315","anchor_time":48} {"id":"CVR_multivariable_iv_000209_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate increase relative to the first heart rate decrease, MAP increase, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate decrease, MAP increase, and diastolic blood pressure increase. B. The first respiratory rate increase occurs after the first heart rate decrease, MAP increase, and diastolic blood pressure increase. C. The first respiratory rate increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and MAP increase. D. The first respiratory rate increase occurs before the first MAP increase and diastolic blood pressure increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first MAP increase and diastolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000209","anchor_time":48} {"id":"CVR_multivariable_iv_000209_w24_0","question":"In the first 24 hours, which option puts the first changes in SpO2, systolic blood pressure, heart rate, and diastolic blood pressure in the right order?\nOptions: A. heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally diastolic blood pressure increase. B. SpO2 increase occurs first, followed by heart rate decrease, then systolic blood pressure increase, and finally diastolic blood pressure increase. C. heart rate decrease occurs first, followed by SpO2 increase, then diastolic blood pressure increase, and finally systolic blood pressure increase. D. heart rate decrease occurs first, followed by systolic blood pressure increase, then SpO2 increase, and finally diastolic blood pressure increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally diastolic blood pressure increase.","episode_id":"iv_000209","anchor_time":24} {"id":"CVR_multivariable_iv_000074_w48_1","question":"In the first 48 hours, how does the timing of the first urine output decrease compare with the first diastolic blood pressure decrease, respiratory rate increase, and MAP increase?\nOptions: A. The first urine output decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first respiratory rate increase. B. The first urine output decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and respiratory rate increase. C. The first urine output decrease occurs before the first diastolic blood pressure decrease, respiratory rate increase, and MAP increase. D. The first urine output decrease occurs after the first diastolic blood pressure decrease, respiratory rate increase, and MAP increase.","answer":"B","answer_text":"The first urine output decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and respiratory rate increase.","episode_id":"iv_000074","anchor_time":48} {"id":"CVR_multivariable_iv_000074_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how systolic blood pressure, SpO2, respiratory rate, and urine output changed over time?\nOptions: A. systolic blood pressure increase occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally urine output decrease. B. SpO2 decrease occurs first, followed by respiratory rate increase, then systolic blood pressure increase, and finally urine output decrease. C. SpO2 decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally urine output decrease. D. SpO2 decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally respiratory rate increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally urine output decrease.","episode_id":"iv_000074","anchor_time":24} {"id":"CVR_multivariable_iv_000333_w24_0","question":"Across the first 24 hours, how did the first changes in MAP, urine output, creatinine, and temperature unfold?\nOptions: A. urine output increase occurs first, followed by MAP increase, then creatinine increase, and finally temperature increase. B. MAP increase occurs first, followed by urine output increase, then creatinine increase, and finally temperature increase. C. MAP increase occurs first, followed by creatinine increase, then urine output increase, and finally temperature increase. D. MAP increase occurs first, followed by urine output increase, then temperature increase, and finally creatinine increase.","answer":"B","answer_text":"MAP increase occurs first, followed by urine output increase, then creatinine increase, and finally temperature increase.","episode_id":"iv_000333","anchor_time":24} {"id":"CVR_multivariable_iv_000333_w48_0","question":"For the initial 48 hours, was the first systolic blood pressure decrease earlier than the first SpO2 increase, diastolic blood pressure increase, and MAP increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first SpO2 increase and MAP increase, but after the first diastolic blood pressure increase. B. The first systolic blood pressure decrease occurs after the first SpO2 increase, diastolic blood pressure increase, and MAP increase. C. The first systolic blood pressure decrease occurs before the first SpO2 increase, diastolic blood pressure increase, and MAP increase. D. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase and MAP increase, but after the first SpO2 increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 increase, diastolic blood pressure increase, and MAP increase.","episode_id":"iv_000333","anchor_time":48} {"id":"CVR_multivariable_iv_000333_w48_1","question":"For the initial 48 hours, was the first temperature increase earlier than the first MAP increase, urine output decrease, and white blood cell count increase?\nOptions: A. The first temperature increase occurs before the first MAP increase, urine output decrease, and white blood cell count increase. B. The first temperature increase occurs before the first MAP increase and white blood cell count increase, but after the first urine output decrease. C. The first temperature increase occurs after the first MAP increase, urine output decrease, and white blood cell count increase. D. The first temperature increase occurs before the first white blood cell count increase, but after the first MAP increase and urine output decrease.","answer":"D","answer_text":"The first temperature increase occurs before the first white blood cell count increase, but after the first MAP increase and urine output decrease.","episode_id":"iv_000333","anchor_time":48} {"id":"CVR_multivariable_iv_000333_w48_2","question":"Looking only at the first 48 hours, which sequence best captures how temperature, MAP, urine output, diastolic blood pressure, and white blood cell count changed over time?\nOptions: A. diastolic blood pressure increase occurs first, followed by MAP increase, then urine output decrease, then temperature increase, and finally white blood cell count increase. B. diastolic blood pressure increase occurs first, followed by MAP increase, then temperature increase, then urine output decrease, and finally white blood cell count increase. C. MAP increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, then temperature increase, and finally white blood cell count increase. D. diastolic blood pressure increase occurs first, followed by urine output decrease, then MAP increase, then temperature increase, and finally white blood cell count increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by MAP increase, then urine output decrease, then temperature increase, and finally white blood cell count increase.","episode_id":"iv_000333","anchor_time":48} {"id":"CVR_multivariable_iv_000403_w24_0","question":"Across the first 24 hours, how did the first changes in urine output, heart rate, diastolic blood pressure, and SpO2 unfold?\nOptions: A. heart rate increase occurs first, followed by urine output decrease, then SpO2 decrease, and finally diastolic blood pressure decrease. B. heart rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure decrease, and finally urine output decrease. C. heart rate increase occurs first, followed by SpO2 decrease, then urine output decrease, and finally diastolic blood pressure decrease. D. SpO2 decrease occurs first, followed by heart rate increase, then urine output decrease, and finally diastolic blood pressure decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by SpO2 decrease, then urine output decrease, and finally diastolic blood pressure decrease.","episode_id":"iv_000403","anchor_time":24} {"id":"CVR_multivariable_iv_000403_w48_1","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure increase compare with the first heart rate increase, SpO2 decrease, and urine output decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 decrease, and urine output decrease. B. The first diastolic blood pressure increase occurs before the first heart rate increase and urine output decrease, but after the first SpO2 decrease. C. The first diastolic blood pressure increase occurs after the first heart rate increase, SpO2 decrease, and urine output decrease. D. The first diastolic blood pressure increase occurs before the first SpO2 decrease and urine output decrease, but after the first heart rate increase.","answer":"A","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 decrease, and urine output decrease.","episode_id":"iv_000403","anchor_time":48} {"id":"CVR_multivariable_iv_000415_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 decrease compare with the first respiratory rate increase, diastolic blood pressure decrease, and heart rate increase?\nOptions: A. The first SpO2 decrease occurs before the first respiratory rate increase, diastolic blood pressure decrease, and heart rate increase. B. The first SpO2 decrease occurs before the first heart rate increase, but after the first respiratory rate increase and diastolic blood pressure decrease. C. The first SpO2 decrease occurs after the first respiratory rate increase, diastolic blood pressure decrease, and heart rate increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and heart rate increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease and heart rate increase, but after the first respiratory rate increase.","episode_id":"iv_000415","anchor_time":48} {"id":"CVR_multivariable_iv_000092_w48_0","question":"In the opening 48 hours, compare the first heart rate increase with the first systolic blood pressure increase, respiratory rate increase, and SpO2 decrease; which option is correct?\nOptions: A. The first heart rate increase occurs before the first systolic blood pressure increase, respiratory rate increase, and SpO2 decrease. B. The first heart rate increase occurs after the first systolic blood pressure increase, respiratory rate increase, and SpO2 decrease. C. The first heart rate increase occurs before the first respiratory rate increase and SpO2 decrease, but after the first systolic blood pressure increase. D. The first heart rate increase occurs before the first systolic blood pressure increase and SpO2 decrease, but after the first respiratory rate increase.","answer":"A","answer_text":"The first heart rate increase occurs before the first systolic blood pressure increase, respiratory rate increase, and SpO2 decrease.","episode_id":"iv_000092","anchor_time":48} {"id":"CVR_multivariable_iv_000092_w48_1","question":"For the initial 48 hours, was the first heart rate decrease earlier than the first respiratory rate decrease, MAP decrease, and SpO2 decrease?\nOptions: A. The first heart rate decrease occurs before the first SpO2 decrease, but after the first respiratory rate decrease and MAP decrease. B. The first heart rate decrease occurs before the first MAP decrease and SpO2 decrease, but after the first respiratory rate decrease. C. The first heart rate decrease occurs after the first respiratory rate decrease, MAP decrease, and SpO2 decrease. D. The first heart rate decrease occurs before the first respiratory rate decrease, MAP decrease, and SpO2 decrease.","answer":"B","answer_text":"The first heart rate decrease occurs before the first MAP decrease and SpO2 decrease, but after the first respiratory rate decrease.","episode_id":"iv_000092","anchor_time":48} {"id":"CVR_multivariable_iv_000092_w48_2","question":"During the first 48 hours, which answer correctly orders the first observed changes involving systolic blood pressure, diastolic blood pressure, white blood cell count, urine output, and SpO2?\nOptions: A. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase. B. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then white blood cell count increase, then systolic blood pressure decrease, and finally urine output increase. C. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase. D. diastolic blood pressure decrease occurs first, followed by systolic blood pressure decrease, then SpO2 decrease, then white blood cell count increase, and finally urine output increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase.","episode_id":"iv_000092","anchor_time":48} {"id":"CVR_multivariable_iv_000215_w48_1","question":"In the first 48 hours, how does the timing of the first MAP increase compare with the first urine output increase, SpO2 decrease, and diastolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first urine output increase and diastolic blood pressure decrease, but after the first SpO2 decrease. B. The first MAP increase occurs before the first SpO2 decrease and diastolic blood pressure decrease, but after the first urine output increase. C. The first MAP increase occurs before the first urine output increase, SpO2 decrease, and diastolic blood pressure decrease. D. The first MAP increase occurs after the first urine output increase, SpO2 decrease, and diastolic blood pressure decrease.","answer":"C","answer_text":"The first MAP increase occurs before the first urine output increase, SpO2 decrease, and diastolic blood pressure decrease.","episode_id":"iv_000215","anchor_time":48} {"id":"CVR_multivariable_iv_000215_w24_0","question":"In the first 24 hours, which option puts the first changes in temperature, respiratory rate, systolic blood pressure, and diastolic blood pressure in the right order?\nOptions: A. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then temperature decrease, and finally diastolic blood pressure decrease. B. respiratory rate increase occurs first, followed by temperature decrease, then systolic blood pressure decrease, and finally diastolic blood pressure decrease. C. systolic blood pressure decrease occurs first, followed by respiratory rate increase, then temperature decrease, and finally diastolic blood pressure decrease. D. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure decrease, and finally temperature decrease.","answer":"A","answer_text":"respiratory rate increase occurs first, followed by systolic blood pressure decrease, then temperature decrease, and finally diastolic blood pressure decrease.","episode_id":"iv_000215","anchor_time":24} {"id":"CVR_multivariable_iv_000479_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for SpO2, MAP, diastolic blood pressure, and heart rate?\nOptions: A. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then MAP decrease, and finally heart rate increase. B. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then heart rate increase, and finally MAP decrease. C. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then heart rate increase, and finally MAP decrease. D. SpO2 decrease occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally MAP decrease.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then heart rate increase, and finally MAP decrease.","episode_id":"iv_000479","anchor_time":24} {"id":"CVR_multivariable_iv_000059_w48_0","question":"Across the first 48 hours, does the first SpO2 decrease happen before the first lactate decrease, respiratory rate increase, and systolic blood pressure decrease?\nOptions: A. The first SpO2 decrease occurs before the first lactate decrease and systolic blood pressure decrease, but after the first respiratory rate increase. B. The first SpO2 decrease occurs before the first lactate decrease, respiratory rate increase, and systolic blood pressure decrease. C. The first SpO2 decrease occurs after the first lactate decrease, respiratory rate increase, and systolic blood pressure decrease. D. The first SpO2 decrease occurs before the first systolic blood pressure decrease, but after the first lactate decrease and respiratory rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease, but after the first lactate decrease and respiratory rate increase.","episode_id":"iv_000059","anchor_time":48} {"id":"CVR_multivariable_iv_000368_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first urine output decrease relative to the first SpO2 decrease, heart rate decrease, and MAP decrease?\nOptions: A. The first urine output decrease occurs after the first SpO2 decrease, heart rate decrease, and MAP decrease. B. The first urine output decrease occurs before the first MAP decrease, but after the first SpO2 decrease and heart rate decrease. C. The first urine output decrease occurs before the first SpO2 decrease, heart rate decrease, and MAP decrease. D. The first urine output decrease occurs before the first SpO2 decrease and MAP decrease, but after the first heart rate decrease.","answer":"B","answer_text":"The first urine output decrease occurs before the first MAP decrease, but after the first SpO2 decrease and heart rate decrease.","episode_id":"iv_000368","anchor_time":48} {"id":"CVR_multivariable_iv_000163_w48_0","question":"Across the first 48 hours, how did the first changes in creatinine, urine output, temperature, white blood cell count, and lactate unfold?\nOptions: A. urine output increase occurs first, followed by temperature decrease, then creatinine increase, then white blood cell count increase, and finally lactate decrease. B. urine output increase occurs first, followed by temperature decrease, then white blood cell count increase, then creatinine increase, and finally lactate decrease. C. temperature decrease occurs first, followed by urine output increase, then white blood cell count increase, then creatinine increase, and finally lactate decrease. D. urine output increase occurs first, followed by white blood cell count increase, then temperature decrease, then creatinine increase, and finally lactate decrease.","answer":"B","answer_text":"urine output increase occurs first, followed by temperature decrease, then white blood cell count increase, then creatinine increase, and finally lactate decrease.","episode_id":"iv_000163","anchor_time":48} {"id":"CVR_multivariable_iv_000163_w48_1","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first heart rate increase occurs before the first diastolic blood pressure decrease and MAP increase, but after the first respiratory rate decrease. B. The first heart rate increase occurs after the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase. C. The first heart rate increase occurs before the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase. D. The first heart rate increase occurs before the first respiratory rate decrease and MAP increase, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate increase occurs before the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase.","episode_id":"iv_000163","anchor_time":48} {"id":"CVR_multivariable_iv_000163_w48_2","question":"In the opening 48 hours, compare the first heart rate increase with the first SpO2 increase, MAP decrease, and respiratory rate decrease; which option is correct?\nOptions: A. The first heart rate increase occurs before the first SpO2 increase, MAP decrease, and respiratory rate decrease. B. The first heart rate increase occurs after the first SpO2 increase, MAP decrease, and respiratory rate decrease. C. The first heart rate increase occurs before the first respiratory rate decrease, but after the first SpO2 increase and MAP decrease. D. The first heart rate increase occurs before the first MAP decrease and respiratory rate decrease, but after the first SpO2 increase.","answer":"D","answer_text":"The first heart rate increase occurs before the first MAP decrease and respiratory rate decrease, but after the first SpO2 increase.","episode_id":"iv_000163","anchor_time":48} {"id":"CVR_multivariable_iv_000251_w48_0","question":"During the first 48 hours, which option correctly describes whether the first SpO2 increase preceded the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase. B. The first SpO2 increase occurs before the first respiratory rate increase, but after the first heart rate increase and diastolic blood pressure increase. C. The first SpO2 increase occurs after the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase. D. The first SpO2 increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate increase.","answer":"D","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate increase.","episode_id":"iv_000251","anchor_time":48} {"id":"CVR_multivariable_iv_000251_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in urine output, respiratory rate, SpO2, and diastolic blood pressure?\nOptions: A. SpO2 increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, and finally respiratory rate decrease. B. SpO2 increase occurs first, followed by urine output decrease, then diastolic blood pressure increase, and finally respiratory rate decrease. C. SpO2 increase occurs first, followed by diastolic blood pressure increase, then respiratory rate decrease, and finally urine output decrease. D. diastolic blood pressure increase occurs first, followed by SpO2 increase, then urine output decrease, and finally respiratory rate decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, and finally respiratory rate decrease.","episode_id":"iv_000251","anchor_time":24} {"id":"CVR_multivariable_iv_000251_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first SpO2 increase, MAP increase, and urine output decrease?\nOptions: A. The first systolic blood pressure decrease occurs after the first SpO2 increase, MAP increase, and urine output decrease. B. The first systolic blood pressure decrease occurs before the first MAP increase and urine output decrease, but after the first SpO2 increase. C. The first systolic blood pressure decrease occurs before the first SpO2 increase, MAP increase, and urine output decrease. D. The first systolic blood pressure decrease occurs before the first SpO2 increase and urine output decrease, but after the first MAP increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 increase, MAP increase, and urine output decrease.","episode_id":"iv_000251","anchor_time":48} {"id":"CVR_multivariable_iv_000443_w48_1","question":"Across the first 48 hours, does the first respiratory rate decrease happen before the first systolic blood pressure decrease, heart rate increase, and white blood cell count increase?\nOptions: A. The first respiratory rate decrease occurs after the first systolic blood pressure decrease, heart rate increase, and white blood cell count increase. B. The first respiratory rate decrease occurs before the first white blood cell count increase, but after the first systolic blood pressure decrease and heart rate increase. C. The first respiratory rate decrease occurs before the first systolic blood pressure decrease, heart rate increase, and white blood cell count increase. D. The first respiratory rate decrease occurs before the first systolic blood pressure decrease and white blood cell count increase, but after the first heart rate increase.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first white blood cell count increase, but after the first systolic blood pressure decrease and heart rate increase.","episode_id":"iv_000443","anchor_time":48} {"id":"CVR_multivariable_iv_000320_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in systolic blood pressure, urine output, diastolic blood pressure, and respiratory rate?\nOptions: A. urine output increase occurs first, followed by diastolic blood pressure increase, then systolic blood pressure decrease, and finally respiratory rate increase. B. urine output increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, and finally systolic blood pressure decrease. C. urine output increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, and finally systolic blood pressure decrease. D. diastolic blood pressure increase occurs first, followed by urine output increase, then respiratory rate increase, and finally systolic blood pressure decrease.","answer":"B","answer_text":"urine output increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, and finally systolic blood pressure decrease.","episode_id":"iv_000320","anchor_time":24} {"id":"CVR_multivariable_iv_000320_w48_1","question":"In the opening 48 hours, compare the first heart rate increase with the first urine output increase, respiratory rate increase, and MAP decrease; which option is correct?\nOptions: A. The first heart rate increase occurs after the first urine output increase, respiratory rate increase, and MAP decrease. B. The first heart rate increase occurs before the first MAP decrease, but after the first urine output increase and respiratory rate increase. C. The first heart rate increase occurs before the first urine output increase, respiratory rate increase, and MAP decrease. D. The first heart rate increase occurs before the first respiratory rate increase and MAP decrease, but after the first urine output increase.","answer":"D","answer_text":"The first heart rate increase occurs before the first respiratory rate increase and MAP decrease, but after the first urine output increase.","episode_id":"iv_000320","anchor_time":48} {"id":"CVR_multivariable_iv_000289_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for respiratory rate, systolic blood pressure, SpO2, and urine output?\nOptions: A. urine output decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure decrease, and finally SpO2 increase. B. respiratory rate decrease occurs first, followed by urine output decrease, then SpO2 increase, and finally systolic blood pressure decrease. C. respiratory rate decrease occurs first, followed by urine output decrease, then systolic blood pressure decrease, and finally SpO2 increase. D. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then urine output decrease, and finally SpO2 increase.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by urine output decrease, then systolic blood pressure decrease, and finally SpO2 increase.","episode_id":"iv_000289","anchor_time":24} {"id":"CVR_multivariable_iv_000007_w48_1","question":"For the initial 48 hours, was the first respiratory rate increase earlier than the first heart rate increase, urine output decrease, and systolic blood pressure decrease?\nOptions: A. The first respiratory rate increase occurs before the first systolic blood pressure decrease, but after the first heart rate increase and urine output decrease. B. The first respiratory rate increase occurs before the first urine output decrease and systolic blood pressure decrease, but after the first heart rate increase. C. The first respiratory rate increase occurs before the first heart rate increase, urine output decrease, and systolic blood pressure decrease. D. The first respiratory rate increase occurs after the first heart rate increase, urine output decrease, and systolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first urine output decrease and systolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000007","anchor_time":48} {"id":"CVR_multivariable_iv_000462_w48_1","question":"In the opening 48 hours, compare the first heart rate decrease with the first respiratory rate increase, SpO2 increase, and MAP increase; which option is correct?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate increase, SpO2 increase, and MAP increase. B. The first heart rate decrease occurs before the first MAP increase, but after the first respiratory rate increase and SpO2 increase. C. The first heart rate decrease occurs after the first respiratory rate increase, SpO2 increase, and MAP increase. D. The first heart rate decrease occurs before the first SpO2 increase and MAP increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first SpO2 increase and MAP increase, but after the first respiratory rate increase.","episode_id":"iv_000462","anchor_time":48} {"id":"CVR_multivariable_iv_000462_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in SpO2, respiratory rate, diastolic blood pressure, lactate, and urine output?\nOptions: A. respiratory rate decrease occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, then lactate decrease, and finally urine output decrease. B. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then SpO2 decrease, then lactate decrease, and finally urine output decrease. C. respiratory rate decrease occurs first, followed by SpO2 decrease, then lactate decrease, then diastolic blood pressure increase, and finally urine output decrease. D. SpO2 decrease occurs first, followed by respiratory rate decrease, then diastolic blood pressure increase, then lactate decrease, and finally urine output decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, then lactate decrease, and finally urine output decrease.","episode_id":"iv_000462","anchor_time":48} {"id":"CVR_multivariable_iv_000249_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in SpO2, temperature, heart rate, and MAP?\nOptions: A. SpO2 decrease occurs first, followed by MAP increase, then heart rate increase, and finally temperature increase. B. MAP increase occurs first, followed by SpO2 decrease, then temperature increase, and finally heart rate increase. C. SpO2 decrease occurs first, followed by MAP increase, then temperature increase, and finally heart rate increase. D. SpO2 decrease occurs first, followed by temperature increase, then MAP increase, and finally heart rate increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by MAP increase, then temperature increase, and finally heart rate increase.","episode_id":"iv_000249","anchor_time":24} {"id":"CVR_multivariable_iv_000249_w48_2","question":"Looking only at the first 48 hours, did the first systolic blood pressure increase come before the first SpO2 decrease, temperature increase, and heart rate increase?\nOptions: A. The first systolic blood pressure increase occurs before the first SpO2 decrease, temperature increase, and heart rate increase. B. The first systolic blood pressure increase occurs before the first temperature increase and heart rate increase, but after the first SpO2 decrease. C. The first systolic blood pressure increase occurs before the first heart rate increase, but after the first SpO2 decrease and temperature increase. D. The first systolic blood pressure increase occurs after the first SpO2 decrease, temperature increase, and heart rate increase.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first temperature increase and heart rate increase, but after the first SpO2 decrease.","episode_id":"iv_000249","anchor_time":48} {"id":"CVR_multivariable_iv_000228_w48_0","question":"Across the first 48 hours, does the first white blood cell count decrease happen before the first lactate decrease, SpO2 decrease, and creatinine decrease?\nOptions: A. The first white blood cell count decrease occurs before the first lactate decrease and creatinine decrease, but after the first SpO2 decrease. B. The first white blood cell count decrease occurs after the first lactate decrease, SpO2 decrease, and creatinine decrease. C. The first white blood cell count decrease occurs before the first lactate decrease, SpO2 decrease, and creatinine decrease. D. The first white blood cell count decrease occurs before the first creatinine decrease, but after the first lactate decrease and SpO2 decrease.","answer":"D","answer_text":"The first white blood cell count decrease occurs before the first creatinine decrease, but after the first lactate decrease and SpO2 decrease.","episode_id":"iv_000228","anchor_time":48} {"id":"CVR_multivariable_iv_000228_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for SpO2, lactate, creatinine, and white blood cell count?\nOptions: A. lactate increase occurs first, followed by SpO2 decrease, then creatinine increase, and finally white blood cell count decrease. B. lactate increase occurs first, followed by creatinine increase, then SpO2 decrease, and finally white blood cell count decrease. C. SpO2 decrease occurs first, followed by lactate increase, then creatinine increase, and finally white blood cell count decrease. D. lactate increase occurs first, followed by SpO2 decrease, then white blood cell count decrease, and finally creatinine increase.","answer":"A","answer_text":"lactate increase occurs first, followed by SpO2 decrease, then creatinine increase, and finally white blood cell count decrease.","episode_id":"iv_000228","anchor_time":24} {"id":"CVR_multivariable_iv_000228_w48_2","question":"During the first 48 hours, which option correctly describes whether the first lactate increase preceded the first SpO2 decrease, creatinine increase, and creatinine decrease?\nOptions: A. The first lactate increase occurs before the first creatinine increase and creatinine decrease, but after the first SpO2 decrease. B. The first lactate increase occurs after the first SpO2 decrease, creatinine increase, and creatinine decrease. C. The first lactate increase occurs before the first SpO2 decrease, creatinine increase, and creatinine decrease. D. The first lactate increase occurs before the first SpO2 decrease and creatinine decrease, but after the first creatinine increase.","answer":"C","answer_text":"The first lactate increase occurs before the first SpO2 decrease, creatinine increase, and creatinine decrease.","episode_id":"iv_000228","anchor_time":48} {"id":"CVR_multivariable_iv_000245_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first white blood cell count decrease, heart rate decrease, and respiratory rate increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, heart rate decrease, and respiratory rate increase. B. The first diastolic blood pressure decrease occurs before the first white blood cell count decrease and respiratory rate increase, but after the first heart rate decrease. C. The first diastolic blood pressure decrease occurs after the first white blood cell count decrease, heart rate decrease, and respiratory rate increase. D. The first diastolic blood pressure decrease occurs before the first heart rate decrease and respiratory rate increase, but after the first white blood cell count decrease.","answer":"A","answer_text":"The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, heart rate decrease, and respiratory rate increase.","episode_id":"iv_000245","anchor_time":48} {"id":"CVR_multivariable_iv_000245_w48_1","question":"Looking only at the first 48 hours, did the first MAP increase come before the first heart rate increase, white blood cell count decrease, and respiratory rate increase?\nOptions: A. The first MAP increase occurs after the first heart rate increase, white blood cell count decrease, and respiratory rate increase. B. The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate increase and white blood cell count decrease. C. The first MAP increase occurs before the first heart rate increase and respiratory rate increase, but after the first white blood cell count decrease. D. The first MAP increase occurs before the first heart rate increase, white blood cell count decrease, and respiratory rate increase.","answer":"B","answer_text":"The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate increase and white blood cell count decrease.","episode_id":"iv_000245","anchor_time":48} {"id":"CVR_multivariable_iv_000245_w48_2","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for white blood cell count, respiratory rate, MAP, urine output, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by MAP increase, then white blood cell count decrease, then respiratory rate increase, and finally urine output decrease. B. diastolic blood pressure decrease occurs first, followed by white blood cell count decrease, then respiratory rate increase, then MAP increase, and finally urine output decrease. C. diastolic blood pressure decrease occurs first, followed by white blood cell count decrease, then MAP increase, then respiratory rate increase, and finally urine output decrease. D. white blood cell count decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, then respiratory rate increase, and finally urine output decrease.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by white blood cell count decrease, then MAP increase, then respiratory rate increase, and finally urine output decrease.","episode_id":"iv_000245","anchor_time":48} {"id":"CVR_multivariable_iv_000211_w48_1","question":"For the initial 48 hours, was the first MAP increase earlier than the first temperature increase, diastolic blood pressure increase, and respiratory rate increase?\nOptions: A. The first MAP increase occurs before the first temperature increase, diastolic blood pressure increase, and respiratory rate increase. B. The first MAP increase occurs after the first temperature increase, diastolic blood pressure increase, and respiratory rate increase. C. The first MAP increase occurs before the first respiratory rate increase, but after the first temperature increase and diastolic blood pressure increase. D. The first MAP increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first temperature increase.","answer":"D","answer_text":"The first MAP increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first temperature increase.","episode_id":"iv_000211","anchor_time":48} {"id":"CVR_multivariable_iv_000211_w48_2","question":"Looking only at the first 48 hours, which sequence best captures how diastolic blood pressure, urine output, temperature, respiratory rate, and MAP changed over time?\nOptions: A. MAP increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then urine output decrease, and finally temperature decrease. B. diastolic blood pressure increase occurs first, followed by MAP increase, then respiratory rate increase, then urine output decrease, and finally temperature decrease. C. MAP increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, then respiratory rate increase, and finally temperature decrease. D. MAP increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then urine output decrease, and finally temperature decrease.","answer":"A","answer_text":"MAP increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then urine output decrease, and finally temperature decrease.","episode_id":"iv_000211","anchor_time":48} {"id":"CVR_multivariable_iv_000129_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in MAP, respiratory rate, diastolic blood pressure, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by MAP increase, then diastolic blood pressure decrease, and finally respiratory rate increase. B. diastolic blood pressure decrease occurs first, followed by heart rate decrease, then MAP increase, and finally respiratory rate increase. C. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, and finally respiratory rate increase. D. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate increase, and finally MAP increase.","answer":"C","answer_text":"heart rate decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, and finally respiratory rate increase.","episode_id":"iv_000129","anchor_time":24} {"id":"CVR_multivariable_iv_000129_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first MAP decrease falls relative to the first heart rate increase, diastolic blood pressure increase, and systolic blood pressure increase?\nOptions: A. The first MAP decrease occurs after the first heart rate increase, diastolic blood pressure increase, and systolic blood pressure increase. B. The first MAP decrease occurs before the first diastolic blood pressure increase and systolic blood pressure increase, but after the first heart rate increase. C. The first MAP decrease occurs before the first heart rate increase, diastolic blood pressure increase, and systolic blood pressure increase. D. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first heart rate increase and diastolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first diastolic blood pressure increase and systolic blood pressure increase, but after the first heart rate increase.","episode_id":"iv_000129","anchor_time":48} {"id":"CVR_multivariable_iv_000162_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first heart rate increase, creatinine increase, and MAP decrease?\nOptions: A. The first respiratory rate decrease occurs before the first heart rate increase and MAP decrease, but after the first creatinine increase. B. The first respiratory rate decrease occurs before the first heart rate increase, creatinine increase, and MAP decrease. C. The first respiratory rate decrease occurs after the first heart rate increase, creatinine increase, and MAP decrease. D. The first respiratory rate decrease occurs before the first MAP decrease, but after the first heart rate increase and creatinine increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first MAP decrease, but after the first heart rate increase and creatinine increase.","episode_id":"iv_000162","anchor_time":48} {"id":"CVR_multivariable_iv_000162_w48_2","question":"Looking only at the first 48 hours, did the first respiratory rate increase come before the first creatinine increase, heart rate decrease, and MAP decrease?\nOptions: A. The first respiratory rate increase occurs before the first creatinine increase and MAP decrease, but after the first heart rate decrease. B. The first respiratory rate increase occurs before the first heart rate decrease and MAP decrease, but after the first creatinine increase. C. The first respiratory rate increase occurs before the first creatinine increase, heart rate decrease, and MAP decrease. D. The first respiratory rate increase occurs after the first creatinine increase, heart rate decrease, and MAP decrease.","answer":"C","answer_text":"The first respiratory rate increase occurs before the first creatinine increase, heart rate decrease, and MAP decrease.","episode_id":"iv_000162","anchor_time":48} {"id":"CVR_multivariable_iv_000223_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 increase compare with the first heart rate increase, respiratory rate increase, and systolic blood pressure increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate increase, respiratory rate increase, and systolic blood pressure increase. B. The first SpO2 increase occurs before the first heart rate increase and systolic blood pressure increase, but after the first respiratory rate increase. C. The first SpO2 increase occurs after the first heart rate increase, respiratory rate increase, and systolic blood pressure increase. D. The first SpO2 increase occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first heart rate increase.","answer":"A","answer_text":"The first SpO2 increase occurs before the first heart rate increase, respiratory rate increase, and systolic blood pressure increase.","episode_id":"iv_000223","anchor_time":48} {"id":"CVR_multivariable_iv_000223_w48_1","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure increase preceded the first heart rate increase, SpO2 decrease, and urine output increase?\nOptions: A. The first diastolic blood pressure increase occurs after the first heart rate increase, SpO2 decrease, and urine output increase. B. The first diastolic blood pressure increase occurs before the first urine output increase, but after the first heart rate increase and SpO2 decrease. C. The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 decrease, and urine output increase. D. The first diastolic blood pressure increase occurs before the first heart rate increase and urine output increase, but after the first SpO2 decrease.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first urine output increase, but after the first heart rate increase and SpO2 decrease.","episode_id":"iv_000223","anchor_time":48} {"id":"CVR_multivariable_iv_000041_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in white blood cell count, urine output, creatinine, respiratory rate, and lactate?\nOptions: A. white blood cell count decrease occurs first, followed by respiratory rate increase, then urine output increase, then lactate increase, and finally creatinine decrease. B. respiratory rate increase occurs first, followed by white blood cell count decrease, then urine output increase, then lactate increase, and finally creatinine decrease. C. respiratory rate increase occurs first, followed by white blood cell count decrease, then lactate increase, then urine output increase, and finally creatinine decrease. D. respiratory rate increase occurs first, followed by urine output increase, then white blood cell count decrease, then lactate increase, and finally creatinine decrease.","answer":"B","answer_text":"respiratory rate increase occurs first, followed by white blood cell count decrease, then urine output increase, then lactate increase, and finally creatinine decrease.","episode_id":"iv_000041","anchor_time":48} {"id":"CVR_multivariable_iv_000041_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first diastolic blood pressure increase, SpO2 increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure decrease, but after the first diastolic blood pressure increase and SpO2 increase. B. The first heart rate decrease occurs before the first diastolic blood pressure increase, SpO2 increase, and systolic blood pressure decrease. C. The first heart rate decrease occurs after the first diastolic blood pressure increase, SpO2 increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000041","anchor_time":48} {"id":"CVR_multivariable_iv_000041_w24_0","question":"Across the first 24 hours, how did the first changes in respiratory rate, heart rate, diastolic blood pressure, and systolic blood pressure unfold?\nOptions: A. diastolic blood pressure increase occurs first, followed by heart rate decrease, then respiratory rate decrease, and finally systolic blood pressure decrease. B. heart rate decrease occurs first, followed by diastolic blood pressure increase, then respiratory rate decrease, and finally systolic blood pressure decrease. C. diastolic blood pressure increase occurs first, followed by heart rate decrease, then systolic blood pressure decrease, and finally respiratory rate decrease. D. diastolic blood pressure increase occurs first, followed by respiratory rate decrease, then heart rate decrease, and finally systolic blood pressure decrease.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by heart rate decrease, then respiratory rate decrease, and finally systolic blood pressure decrease.","episode_id":"iv_000041","anchor_time":24} {"id":"CVR_multivariable_iv_000278_w48_2","question":"In the opening 48 hours, compare the first SpO2 decrease with the first urine output decrease, diastolic blood pressure increase, and white blood cell count increase; which option is correct?\nOptions: A. The first SpO2 decrease occurs before the first urine output decrease, diastolic blood pressure increase, and white blood cell count increase. B. The first SpO2 decrease occurs before the first white blood cell count increase, but after the first urine output decrease and diastolic blood pressure increase. C. The first SpO2 decrease occurs before the first urine output decrease and white blood cell count increase, but after the first diastolic blood pressure increase. D. The first SpO2 decrease occurs after the first urine output decrease, diastolic blood pressure increase, and white blood cell count increase.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first white blood cell count increase, but after the first urine output decrease and diastolic blood pressure increase.","episode_id":"iv_000278","anchor_time":48} {"id":"CVR_multivariable_iv_000021_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first respiratory rate increase, white blood cell count decrease, and urine output decrease?\nOptions: A. The first systolic blood pressure decrease occurs before the first respiratory rate increase, white blood cell count decrease, and urine output decrease. B. The first systolic blood pressure decrease occurs before the first urine output decrease, but after the first respiratory rate increase and white blood cell count decrease. C. The first systolic blood pressure decrease occurs after the first respiratory rate increase, white blood cell count decrease, and urine output decrease. D. The first systolic blood pressure decrease occurs before the first white blood cell count decrease and urine output decrease, but after the first respiratory rate increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first white blood cell count decrease and urine output decrease, but after the first respiratory rate increase.","episode_id":"iv_000021","anchor_time":48} {"id":"CVR_multivariable_iv_000021_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in temperature, respiratory rate, lactate, diastolic blood pressure, and SpO2?\nOptions: A. respiratory rate decrease occurs first, followed by temperature increase, then diastolic blood pressure increase, then SpO2 decrease, and finally lactate decrease. B. respiratory rate decrease occurs first, followed by temperature increase, then SpO2 decrease, then diastolic blood pressure increase, and finally lactate decrease. C. temperature increase occurs first, followed by respiratory rate decrease, then diastolic blood pressure increase, then SpO2 decrease, and finally lactate decrease. D. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then temperature increase, then SpO2 decrease, and finally lactate decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by temperature increase, then diastolic blood pressure increase, then SpO2 decrease, and finally lactate decrease.","episode_id":"iv_000021","anchor_time":48} {"id":"CVR_multivariable_iv_000021_w48_2","question":"In the opening 48 hours, compare the first urine output increase with the first systolic blood pressure decrease, white blood cell count decrease, and respiratory rate decrease; which option is correct?\nOptions: A. The first urine output increase occurs after the first systolic blood pressure decrease, white blood cell count decrease, and respiratory rate decrease. B. The first urine output increase occurs before the first systolic blood pressure decrease and respiratory rate decrease, but after the first white blood cell count decrease. C. The first urine output increase occurs before the first systolic blood pressure decrease, white blood cell count decrease, and respiratory rate decrease. D. The first urine output increase occurs before the first white blood cell count decrease and respiratory rate decrease, but after the first systolic blood pressure decrease.","answer":"C","answer_text":"The first urine output increase occurs before the first systolic blood pressure decrease, white blood cell count decrease, and respiratory rate decrease.","episode_id":"iv_000021","anchor_time":48} {"id":"CVR_multivariable_iv_000434_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first heart rate increase, SpO2 increase, and temperature increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate increase, SpO2 increase, and temperature increase. B. The first diastolic blood pressure decrease occurs before the first temperature increase, but after the first heart rate increase and SpO2 increase. C. The first diastolic blood pressure decrease occurs after the first heart rate increase, SpO2 increase, and temperature increase. D. The first diastolic blood pressure decrease occurs before the first heart rate increase and temperature increase, but after the first SpO2 increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first temperature increase, but after the first heart rate increase and SpO2 increase.","episode_id":"iv_000434","anchor_time":48} {"id":"CVR_multivariable_iv_000434_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in respiratory rate, diastolic blood pressure, SpO2, and heart rate?\nOptions: A. heart rate increase occurs first, followed by SpO2 increase, then respiratory rate increase, and finally diastolic blood pressure decrease. B. heart rate increase occurs first, followed by diastolic blood pressure decrease, then SpO2 increase, and finally respiratory rate increase. C. heart rate increase occurs first, followed by SpO2 increase, then diastolic blood pressure decrease, and finally respiratory rate increase. D. SpO2 increase occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally respiratory rate increase.","answer":"C","answer_text":"heart rate increase occurs first, followed by SpO2 increase, then diastolic blood pressure decrease, and finally respiratory rate increase.","episode_id":"iv_000434","anchor_time":24} {"id":"CVR_multivariable_iv_000068_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first urine output decrease relative to the first respiratory rate decrease, SpO2 increase, and temperature decrease?\nOptions: A. The first urine output decrease occurs after the first respiratory rate decrease, SpO2 increase, and temperature decrease. B. The first urine output decrease occurs before the first respiratory rate decrease and temperature decrease, but after the first SpO2 increase. C. The first urine output decrease occurs before the first respiratory rate decrease, SpO2 increase, and temperature decrease. D. The first urine output decrease occurs before the first SpO2 increase and temperature decrease, but after the first respiratory rate decrease.","answer":"C","answer_text":"The first urine output decrease occurs before the first respiratory rate decrease, SpO2 increase, and temperature decrease.","episode_id":"iv_000068","anchor_time":48} {"id":"CVR_multivariable_iv_000068_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure increase falls relative to the first heart rate decrease, respiratory rate decrease, and SpO2 increase?\nOptions: A. The first diastolic blood pressure increase occurs after the first heart rate decrease, respiratory rate decrease, and SpO2 increase. B. The first diastolic blood pressure increase occurs before the first heart rate decrease, respiratory rate decrease, and SpO2 increase. C. The first diastolic blood pressure increase occurs before the first SpO2 increase, but after the first heart rate decrease and respiratory rate decrease. D. The first diastolic blood pressure increase occurs before the first respiratory rate decrease and SpO2 increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first respiratory rate decrease and SpO2 increase, but after the first heart rate decrease.","episode_id":"iv_000068","anchor_time":48} {"id":"CVR_multivariable_iv_000068_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, respiratory rate, SpO2, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally SpO2 increase. B. diastolic blood pressure decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally respiratory rate decrease. C. heart rate increase occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally SpO2 increase. D. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then heart rate increase, and finally SpO2 increase.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally SpO2 increase.","episode_id":"iv_000068","anchor_time":24} {"id":"CVR_multivariable_iv_000227_w48_2","question":"In the opening 48 hours, compare the first SpO2 increase with the first heart rate decrease, systolic blood pressure decrease, and diastolic blood pressure increase; which option is correct?\nOptions: A. The first SpO2 increase occurs before the first heart rate decrease, systolic blood pressure decrease, and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first heart rate decrease. C. The first SpO2 increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and systolic blood pressure decrease. D. The first SpO2 increase occurs after the first heart rate decrease, systolic blood pressure decrease, and diastolic blood pressure increase.","answer":"B","answer_text":"The first SpO2 increase occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000227","anchor_time":48} {"id":"CVR_multivariable_iv_000151_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first respiratory rate increase, SpO2 decrease, and heart rate increase?\nOptions: A. The first systolic blood pressure decrease occurs after the first respiratory rate increase, SpO2 decrease, and heart rate increase. B. The first systolic blood pressure decrease occurs before the first heart rate increase, but after the first respiratory rate increase and SpO2 decrease. C. The first systolic blood pressure decrease occurs before the first respiratory rate increase, SpO2 decrease, and heart rate increase. D. The first systolic blood pressure decrease occurs before the first SpO2 decrease and heart rate increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 decrease and heart rate increase, but after the first respiratory rate increase.","episode_id":"iv_000151","anchor_time":48} {"id":"CVR_multivariable_iv_000151_w48_1","question":"Across the first 48 hours, how did the first changes in white blood cell count, creatinine, respiratory rate, urine output, and lactate unfold?\nOptions: A. respiratory rate decrease occurs first, followed by lactate increase, then urine output decrease, then white blood cell count decrease, and finally creatinine decrease. B. lactate increase occurs first, followed by respiratory rate decrease, then urine output decrease, then white blood cell count decrease, and finally creatinine decrease. C. respiratory rate decrease occurs first, followed by lactate increase, then white blood cell count decrease, then urine output decrease, and finally creatinine decrease. D. respiratory rate decrease occurs first, followed by urine output decrease, then lactate increase, then white blood cell count decrease, and finally creatinine decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by lactate increase, then urine output decrease, then white blood cell count decrease, and finally creatinine decrease.","episode_id":"iv_000151","anchor_time":48} {"id":"CVR_multivariable_iv_000369_w48_1","question":"In the first 48 hours, how does the timing of the first systolic blood pressure decrease compare with the first heart rate increase, SpO2 increase, and temperature decrease?\nOptions: A. The first systolic blood pressure decrease occurs before the first heart rate increase, SpO2 increase, and temperature decrease. B. The first systolic blood pressure decrease occurs before the first temperature decrease, but after the first heart rate increase and SpO2 increase. C. The first systolic blood pressure decrease occurs after the first heart rate increase, SpO2 increase, and temperature decrease. D. The first systolic blood pressure decrease occurs before the first heart rate increase and temperature decrease, but after the first SpO2 increase.","answer":"B","answer_text":"The first systolic blood pressure decrease occurs before the first temperature decrease, but after the first heart rate increase and SpO2 increase.","episode_id":"iv_000369","anchor_time":48} {"id":"CVR_multivariable_iv_000369_w48_2","question":"During the first 48 hours, which answer correctly orders the first observed changes involving temperature, systolic blood pressure, MAP, white blood cell count, and urine output?\nOptions: A. MAP decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, then temperature increase, and finally white blood cell count decrease. B. systolic blood pressure increase occurs first, followed by MAP decrease, then temperature increase, then urine output decrease, and finally white blood cell count decrease. C. systolic blood pressure increase occurs first, followed by MAP decrease, then urine output decrease, then temperature increase, and finally white blood cell count decrease. D. systolic blood pressure increase occurs first, followed by urine output decrease, then MAP decrease, then temperature increase, and finally white blood cell count decrease.","answer":"C","answer_text":"systolic blood pressure increase occurs first, followed by MAP decrease, then urine output decrease, then temperature increase, and finally white blood cell count decrease.","episode_id":"iv_000369","anchor_time":48} {"id":"CVR_multivariable_iv_000217_w48_2","question":"Across the first 48 hours, does the first MAP decrease happen before the first heart rate decrease, SpO2 decrease, and diastolic blood pressure decrease?\nOptions: A. The first MAP decrease occurs before the first heart rate decrease, SpO2 decrease, and diastolic blood pressure decrease. B. The first MAP decrease occurs after the first heart rate decrease, SpO2 decrease, and diastolic blood pressure decrease. C. The first MAP decrease occurs before the first heart rate decrease and diastolic blood pressure decrease, but after the first SpO2 decrease. D. The first MAP decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate decrease and SpO2 decrease.","answer":"D","answer_text":"The first MAP decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate decrease and SpO2 decrease.","episode_id":"iv_000217","anchor_time":48} {"id":"CVR_multivariable_iv_000177_w48_1","question":"In the first 48 hours, which option puts the first changes in creatinine, SpO2, white blood cell count, respiratory rate, and temperature in the right order?\nOptions: A. temperature increase occurs first, followed by respiratory rate decrease, then SpO2 decrease, then white blood cell count decrease, and finally creatinine decrease. B. respiratory rate decrease occurs first, followed by temperature increase, then SpO2 decrease, then white blood cell count decrease, and finally creatinine decrease. C. temperature increase occurs first, followed by respiratory rate decrease, then white blood cell count decrease, then SpO2 decrease, and finally creatinine decrease. D. temperature increase occurs first, followed by SpO2 decrease, then respiratory rate decrease, then white blood cell count decrease, and finally creatinine decrease.","answer":"A","answer_text":"temperature increase occurs first, followed by respiratory rate decrease, then SpO2 decrease, then white blood cell count decrease, and finally creatinine decrease.","episode_id":"iv_000177","anchor_time":48} {"id":"CVR_multivariable_iv_000397_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in creatinine, urine output, SpO2, temperature, and diastolic blood pressure?\nOptions: A. urine output increase occurs first, followed by diastolic blood pressure increase, then SpO2 decrease, then creatinine decrease, and finally temperature increase. B. diastolic blood pressure increase occurs first, followed by SpO2 decrease, then urine output increase, then creatinine decrease, and finally temperature increase. C. diastolic blood pressure increase occurs first, followed by urine output increase, then SpO2 decrease, then creatinine decrease, and finally temperature increase. D. diastolic blood pressure increase occurs first, followed by urine output increase, then creatinine decrease, then SpO2 decrease, and finally temperature increase.","answer":"C","answer_text":"diastolic blood pressure increase occurs first, followed by urine output increase, then SpO2 decrease, then creatinine decrease, and finally temperature increase.","episode_id":"iv_000397","anchor_time":48} {"id":"CVR_multivariable_iv_000139_w48_0","question":"Looking only at the first 48 hours, which sequence best captures how white blood cell count, diastolic blood pressure, temperature, systolic blood pressure, and urine output changed over time?\nOptions: A. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then urine output increase, then temperature increase, and finally white blood cell count decrease. B. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then urine output increase, then temperature increase, and finally white blood cell count decrease. C. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then temperature increase, then urine output increase, and finally white blood cell count decrease. D. diastolic blood pressure decrease occurs first, followed by urine output increase, then systolic blood pressure increase, then temperature increase, and finally white blood cell count decrease.","answer":"B","answer_text":"diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then urine output increase, then temperature increase, and finally white blood cell count decrease.","episode_id":"iv_000139","anchor_time":48} {"id":"CVR_multivariable_iv_000139_w48_1","question":"In the first 48 hours, how does the timing of the first respiratory rate increase compare with the first heart rate increase, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first respiratory rate increase occurs before the first diastolic blood pressure decrease and MAP increase, but after the first heart rate increase. B. The first respiratory rate increase occurs after the first heart rate increase, diastolic blood pressure decrease, and MAP increase. C. The first respiratory rate increase occurs before the first heart rate increase, diastolic blood pressure decrease, and MAP increase. D. The first respiratory rate increase occurs before the first heart rate increase and MAP increase, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first respiratory rate increase occurs before the first heart rate increase, diastolic blood pressure decrease, and MAP increase.","episode_id":"iv_000139","anchor_time":48} {"id":"CVR_multivariable_iv_000139_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first heart rate decrease, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. B. The first SpO2 decrease occurs before the first MAP increase, but after the first heart rate decrease and diastolic blood pressure decrease. C. The first SpO2 decrease occurs after the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first heart rate decrease.","episode_id":"iv_000139","anchor_time":48} {"id":"CVR_multivariable_iv_000141_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving heart rate, respiratory rate, temperature, lactate, and white blood cell count?\nOptions: A. white blood cell count increase occurs first, followed by heart rate increase, then respiratory rate decrease, then temperature decrease, and finally lactate decrease. B. heart rate increase occurs first, followed by respiratory rate decrease, then white blood cell count increase, then temperature decrease, and finally lactate decrease. C. heart rate increase occurs first, followed by white blood cell count increase, then respiratory rate decrease, then temperature decrease, and finally lactate decrease. D. heart rate increase occurs first, followed by white blood cell count increase, then temperature decrease, then respiratory rate decrease, and finally lactate decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by white blood cell count increase, then respiratory rate decrease, then temperature decrease, and finally lactate decrease.","episode_id":"iv_000141","anchor_time":48} {"id":"CVR_multivariable_iv_000141_w48_1","question":"Looking only at the first 48 hours, did the first SpO2 increase come before the first MAP decrease, diastolic blood pressure increase, and urine output increase?\nOptions: A. The first SpO2 increase occurs before the first MAP decrease, diastolic blood pressure increase, and urine output increase. B. The first SpO2 increase occurs before the first diastolic blood pressure increase and urine output increase, but after the first MAP decrease. C. The first SpO2 increase occurs before the first MAP decrease and urine output increase, but after the first diastolic blood pressure increase. D. The first SpO2 increase occurs after the first MAP decrease, diastolic blood pressure increase, and urine output increase.","answer":"A","answer_text":"The first SpO2 increase occurs before the first MAP decrease, diastolic blood pressure increase, and urine output increase.","episode_id":"iv_000141","anchor_time":48} {"id":"CVR_multivariable_iv_000141_w48_2","question":"In the first 48 hours, how does the timing of the first urine output increase compare with the first SpO2 decrease, MAP increase, and systolic blood pressure decrease?\nOptions: A. The first urine output increase occurs before the first SpO2 decrease and systolic blood pressure decrease, but after the first MAP increase. B. The first urine output increase occurs before the first systolic blood pressure decrease, but after the first SpO2 decrease and MAP increase. C. The first urine output increase occurs before the first SpO2 decrease, MAP increase, and systolic blood pressure decrease. D. The first urine output increase occurs after the first SpO2 decrease, MAP increase, and systolic blood pressure decrease.","answer":"B","answer_text":"The first urine output increase occurs before the first systolic blood pressure decrease, but after the first SpO2 decrease and MAP increase.","episode_id":"iv_000141","anchor_time":48} {"id":"CVR_multivariable_iv_000326_w48_0","question":"In the opening 48 hours, compare the first SpO2 decrease with the first heart rate decrease, systolic blood pressure decrease, and MAP increase; which option is correct?\nOptions: A. The first SpO2 decrease occurs before the first MAP increase, but after the first heart rate decrease and systolic blood pressure decrease. B. The first SpO2 decrease occurs before the first heart rate decrease, systolic blood pressure decrease, and MAP increase. C. The first SpO2 decrease occurs after the first heart rate decrease, systolic blood pressure decrease, and MAP increase. D. The first SpO2 decrease occurs before the first systolic blood pressure decrease and MAP increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease and MAP increase, but after the first heart rate decrease.","episode_id":"iv_000326","anchor_time":48} {"id":"CVR_multivariable_iv_000175_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first MAP increase falls relative to the first heart rate decrease, respiratory rate decrease, and urine output decrease?\nOptions: A. The first MAP increase occurs after the first heart rate decrease, respiratory rate decrease, and urine output decrease. B. The first MAP increase occurs before the first respiratory rate decrease and urine output decrease, but after the first heart rate decrease. C. The first MAP increase occurs before the first urine output decrease, but after the first heart rate decrease and respiratory rate decrease. D. The first MAP increase occurs before the first heart rate decrease, respiratory rate decrease, and urine output decrease.","answer":"B","answer_text":"The first MAP increase occurs before the first respiratory rate decrease and urine output decrease, but after the first heart rate decrease.","episode_id":"iv_000175","anchor_time":48} {"id":"CVR_multivariable_iv_000175_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in heart rate, MAP, urine output, and respiratory rate?\nOptions: A. MAP decrease occurs first, followed by heart rate increase, then urine output decrease, and finally respiratory rate decrease. B. heart rate increase occurs first, followed by MAP decrease, then respiratory rate decrease, and finally urine output decrease. C. MAP decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally urine output decrease. D. MAP decrease occurs first, followed by respiratory rate decrease, then heart rate increase, and finally urine output decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally urine output decrease.","episode_id":"iv_000175","anchor_time":24} {"id":"CVR_multivariable_iv_000170_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure decrease falls relative to the first heart rate increase, MAP increase, and white blood cell count decrease?\nOptions: A. The first systolic blood pressure decrease occurs after the first heart rate increase, MAP increase, and white blood cell count decrease. B. The first systolic blood pressure decrease occurs before the first MAP increase and white blood cell count decrease, but after the first heart rate increase. C. The first systolic blood pressure decrease occurs before the first heart rate increase, MAP increase, and white blood cell count decrease. D. The first systolic blood pressure decrease occurs before the first heart rate increase and white blood cell count decrease, but after the first MAP increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first heart rate increase, MAP increase, and white blood cell count decrease.","episode_id":"iv_000170","anchor_time":48} {"id":"CVR_multivariable_iv_000170_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first heart rate increase falls relative to the first systolic blood pressure decrease, respiratory rate increase, and white blood cell count decrease?\nOptions: A. The first heart rate increase occurs after the first systolic blood pressure decrease, respiratory rate increase, and white blood cell count decrease. B. The first heart rate increase occurs before the first systolic blood pressure decrease, respiratory rate increase, and white blood cell count decrease. C. The first heart rate increase occurs before the first white blood cell count decrease, but after the first systolic blood pressure decrease and respiratory rate increase. D. The first heart rate increase occurs before the first respiratory rate increase and white blood cell count decrease, but after the first systolic blood pressure decrease.","answer":"D","answer_text":"The first heart rate increase occurs before the first respiratory rate increase and white blood cell count decrease, but after the first systolic blood pressure decrease.","episode_id":"iv_000170","anchor_time":48} {"id":"CVR_multivariable_iv_000088_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first respiratory rate increase, SpO2 decrease, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate increase, SpO2 decrease, and systolic blood pressure decrease. B. The first heart rate decrease occurs after the first respiratory rate increase, SpO2 decrease, and systolic blood pressure decrease. C. The first heart rate decrease occurs before the first respiratory rate increase and systolic blood pressure decrease, but after the first SpO2 decrease. D. The first heart rate decrease occurs before the first SpO2 decrease and systolic blood pressure decrease, but after the first respiratory rate increase.","answer":"A","answer_text":"The first heart rate decrease occurs before the first respiratory rate increase, SpO2 decrease, and systolic blood pressure decrease.","episode_id":"iv_000088","anchor_time":48} {"id":"CVR_multivariable_iv_000088_w48_2","question":"In the opening 48 hours, compare the first respiratory rate increase with the first heart rate decrease, MAP increase, and diastolic blood pressure decrease; which option is correct?\nOptions: A. The first respiratory rate increase occurs before the first diastolic blood pressure decrease, but after the first heart rate decrease and MAP increase. B. The first respiratory rate increase occurs before the first MAP increase and diastolic blood pressure decrease, but after the first heart rate decrease. C. The first respiratory rate increase occurs after the first heart rate decrease, MAP increase, and diastolic blood pressure decrease. D. The first respiratory rate increase occurs before the first heart rate decrease, MAP increase, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first MAP increase and diastolic blood pressure decrease, but after the first heart rate decrease.","episode_id":"iv_000088","anchor_time":48} {"id":"CVR_multivariable_iv_000096_w48_0","question":"In the opening 48 hours, compare the first diastolic blood pressure decrease with the first heart rate decrease, urine output decrease, and respiratory rate increase; which option is correct?\nOptions: A. The first diastolic blood pressure decrease occurs before the first respiratory rate increase, but after the first heart rate decrease and urine output decrease. B. The first diastolic blood pressure decrease occurs after the first heart rate decrease, urine output decrease, and respiratory rate increase. C. The first diastolic blood pressure decrease occurs before the first heart rate decrease, urine output decrease, and respiratory rate increase. D. The first diastolic blood pressure decrease occurs before the first urine output decrease and respiratory rate increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first urine output decrease and respiratory rate increase, but after the first heart rate decrease.","episode_id":"iv_000096","anchor_time":48} {"id":"CVR_multivariable_iv_000096_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 decrease relative to the first diastolic blood pressure decrease, urine output decrease, and heart rate increase?\nOptions: A. The first SpO2 decrease occurs before the first urine output decrease and heart rate increase, but after the first diastolic blood pressure decrease. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and heart rate increase, but after the first urine output decrease. C. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, urine output decrease, and heart rate increase. D. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, urine output decrease, and heart rate increase.","answer":"C","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease, urine output decrease, and heart rate increase.","episode_id":"iv_000096","anchor_time":48} {"id":"CVR_multivariable_iv_000439_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure decrease relative to the first heart rate decrease, systolic blood pressure decrease, and urine output increase?\nOptions: A. The first diastolic blood pressure decrease occurs after the first heart rate decrease, systolic blood pressure decrease, and urine output increase. B. The first diastolic blood pressure decrease occurs before the first urine output increase, but after the first heart rate decrease and systolic blood pressure decrease. C. The first diastolic blood pressure decrease occurs before the first heart rate decrease and urine output increase, but after the first systolic blood pressure decrease. D. The first diastolic blood pressure decrease occurs before the first heart rate decrease, systolic blood pressure decrease, and urine output increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first urine output increase, but after the first heart rate decrease and systolic blood pressure decrease.","episode_id":"iv_000439","anchor_time":48} {"id":"CVR_multivariable_iv_000439_w48_2","question":"In the first 48 hours, which option puts the first changes in urine output, systolic blood pressure, white blood cell count, respiratory rate, and temperature in the right order?\nOptions: A. urine output decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then temperature decrease, and finally white blood cell count increase. B. respiratory rate decrease occurs first, followed by urine output decrease, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase. C. urine output decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase. D. urine output decrease occurs first, followed by respiratory rate decrease, then temperature decrease, then systolic blood pressure increase, and finally white blood cell count increase.","answer":"C","answer_text":"urine output decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase.","episode_id":"iv_000439","anchor_time":48} {"id":"CVR_multivariable_iv_000050_w48_0","question":"Looking only at the first 48 hours, which sequence best captures how heart rate, creatinine, SpO2, respiratory rate, and urine output changed over time?\nOptions: A. heart rate decrease occurs first, followed by urine output decrease, then respiratory rate increase, then SpO2 decrease, and finally creatinine decrease. B. respiratory rate increase occurs first, followed by heart rate decrease, then urine output decrease, then SpO2 decrease, and finally creatinine decrease. C. heart rate decrease occurs first, followed by respiratory rate increase, then urine output decrease, then SpO2 decrease, and finally creatinine decrease. D. heart rate decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, then urine output decrease, and finally creatinine decrease.","answer":"C","answer_text":"heart rate decrease occurs first, followed by respiratory rate increase, then urine output decrease, then SpO2 decrease, and finally creatinine decrease.","episode_id":"iv_000050","anchor_time":48} {"id":"CVR_multivariable_iv_000199_w48_0","question":"During the first 48 hours, which option correctly describes whether the first SpO2 increase preceded the first MAP increase, white blood cell count increase, and heart rate increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate increase, but after the first MAP increase and white blood cell count increase. B. The first SpO2 increase occurs before the first MAP increase, white blood cell count increase, and heart rate increase. C. The first SpO2 increase occurs after the first MAP increase, white blood cell count increase, and heart rate increase. D. The first SpO2 increase occurs before the first white blood cell count increase and heart rate increase, but after the first MAP increase.","answer":"D","answer_text":"The first SpO2 increase occurs before the first white blood cell count increase and heart rate increase, but after the first MAP increase.","episode_id":"iv_000199","anchor_time":48} {"id":"CVR_multivariable_iv_000199_w24_0","question":"For the initial 24 hours, which option best matches the order in which SpO2, white blood cell count, MAP, and heart rate first changed?\nOptions: A. SpO2 increase occurs first, followed by heart rate decrease, then white blood cell count increase, and finally MAP decrease. B. heart rate decrease occurs first, followed by SpO2 increase, then white blood cell count increase, and finally MAP decrease. C. heart rate decrease occurs first, followed by SpO2 increase, then MAP decrease, and finally white blood cell count increase. D. heart rate decrease occurs first, followed by white blood cell count increase, then SpO2 increase, and finally MAP decrease.","answer":"B","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then white blood cell count increase, and finally MAP decrease.","episode_id":"iv_000199","anchor_time":24} {"id":"CVR_multivariable_iv_000199_w48_2","question":"In the opening 48 hours, compare the first systolic blood pressure decrease with the first MAP increase, SpO2 increase, and white blood cell count increase; which option is correct?\nOptions: A. The first systolic blood pressure decrease occurs before the first MAP increase and white blood cell count increase, but after the first SpO2 increase. B. The first systolic blood pressure decrease occurs after the first MAP increase, SpO2 increase, and white blood cell count increase. C. The first systolic blood pressure decrease occurs before the first MAP increase, SpO2 increase, and white blood cell count increase. D. The first systolic blood pressure decrease occurs before the first SpO2 increase and white blood cell count increase, but after the first MAP increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first MAP increase, SpO2 increase, and white blood cell count increase.","episode_id":"iv_000199","anchor_time":48} {"id":"CVR_multivariable_iv_000297_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure increase falls relative to the first systolic blood pressure decrease, heart rate decrease, and respiratory rate decrease?\nOptions: A. The first diastolic blood pressure increase occurs after the first systolic blood pressure decrease, heart rate decrease, and respiratory rate decrease. B. The first diastolic blood pressure increase occurs before the first respiratory rate decrease, but after the first systolic blood pressure decrease and heart rate decrease. C. The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease and respiratory rate decrease, but after the first heart rate decrease. D. The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease, heart rate decrease, and respiratory rate decrease.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first respiratory rate decrease, but after the first systolic blood pressure decrease and heart rate decrease.","episode_id":"iv_000297","anchor_time":48} {"id":"CVR_multivariable_iv_000131_w48_2","question":"In the first 48 hours, how does the timing of the first respiratory rate decrease compare with the first heart rate decrease, diastolic blood pressure decrease, and SpO2 decrease?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 decrease, but after the first heart rate decrease and diastolic blood pressure decrease. B. The first respiratory rate decrease occurs before the first heart rate decrease, diastolic blood pressure decrease, and SpO2 decrease. C. The first respiratory rate decrease occurs after the first heart rate decrease, diastolic blood pressure decrease, and SpO2 decrease. D. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and SpO2 decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and SpO2 decrease, but after the first heart rate decrease.","episode_id":"iv_000131","anchor_time":48} {"id":"CVR_multivariable_iv_000131_w24_0","question":"Across the first 24 hours, how did the first changes in MAP, SpO2, systolic blood pressure, and heart rate unfold?\nOptions: A. heart rate increase occurs first, followed by MAP decrease, then SpO2 decrease, and finally systolic blood pressure increase. B. MAP decrease occurs first, followed by heart rate increase, then SpO2 decrease, and finally systolic blood pressure increase. C. heart rate increase occurs first, followed by SpO2 decrease, then MAP decrease, and finally systolic blood pressure increase. D. heart rate increase occurs first, followed by MAP decrease, then systolic blood pressure increase, and finally SpO2 decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by MAP decrease, then SpO2 decrease, and finally systolic blood pressure increase.","episode_id":"iv_000131","anchor_time":24} {"id":"CVR_multivariable_iv_000120_w48_2","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first diastolic blood pressure decrease, respiratory rate decrease, and systolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first diastolic blood pressure decrease, respiratory rate decrease, and systolic blood pressure increase. B. The first heart rate decrease occurs before the first respiratory rate decrease and systolic blood pressure increase, but after the first diastolic blood pressure decrease. C. The first heart rate decrease occurs after the first diastolic blood pressure decrease, respiratory rate decrease, and systolic blood pressure increase. D. The first heart rate decrease occurs before the first systolic blood pressure increase, but after the first diastolic blood pressure decrease and respiratory rate decrease.","answer":"B","answer_text":"The first heart rate decrease occurs before the first respiratory rate decrease and systolic blood pressure increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000120","anchor_time":48} {"id":"CVR_multivariable_iv_000358_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure increase falls relative to the first respiratory rate decrease, diastolic blood pressure decrease, and white blood cell count decrease?\nOptions: A. The first systolic blood pressure increase occurs before the first respiratory rate decrease and white blood cell count decrease, but after the first diastolic blood pressure decrease. B. The first systolic blood pressure increase occurs before the first respiratory rate decrease, diastolic blood pressure decrease, and white blood cell count decrease. C. The first systolic blood pressure increase occurs after the first respiratory rate decrease, diastolic blood pressure decrease, and white blood cell count decrease. D. The first systolic blood pressure increase occurs before the first white blood cell count decrease, but after the first respiratory rate decrease and diastolic blood pressure decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first white blood cell count decrease, but after the first respiratory rate decrease and diastolic blood pressure decrease.","episode_id":"iv_000358","anchor_time":48} {"id":"CVR_multivariable_iv_000358_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP increase relative to the first white blood cell count decrease, urine output increase, and temperature increase?\nOptions: A. The first MAP increase occurs before the first urine output increase and temperature increase, but after the first white blood cell count decrease. B. The first MAP increase occurs after the first white blood cell count decrease, urine output increase, and temperature increase. C. The first MAP increase occurs before the first white blood cell count decrease, urine output increase, and temperature increase. D. The first MAP increase occurs before the first white blood cell count decrease and temperature increase, but after the first urine output increase.","answer":"C","answer_text":"The first MAP increase occurs before the first white blood cell count decrease, urine output increase, and temperature increase.","episode_id":"iv_000358","anchor_time":48} {"id":"CVR_multivariable_iv_000180_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in respiratory rate, MAP, lactate, temperature, and urine output?\nOptions: A. respiratory rate decrease occurs first, followed by MAP decrease, then lactate decrease, then urine output increase, and finally temperature decrease. B. respiratory rate decrease occurs first, followed by lactate decrease, then urine output increase, then MAP decrease, and finally temperature decrease. C. respiratory rate decrease occurs first, followed by lactate decrease, then MAP decrease, then urine output increase, and finally temperature decrease. D. lactate decrease occurs first, followed by respiratory rate decrease, then MAP decrease, then urine output increase, and finally temperature decrease.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by lactate decrease, then MAP decrease, then urine output increase, and finally temperature decrease.","episode_id":"iv_000180","anchor_time":48} {"id":"CVR_multivariable_iv_000370_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure increase falls relative to the first diastolic blood pressure decrease, respiratory rate decrease, and heart rate increase?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease, respiratory rate decrease, and heart rate increase. B. The first systolic blood pressure increase occurs after the first diastolic blood pressure decrease, respiratory rate decrease, and heart rate increase. C. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease and heart rate increase, but after the first respiratory rate decrease. D. The first systolic blood pressure increase occurs before the first heart rate increase, but after the first diastolic blood pressure decrease and respiratory rate decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first heart rate increase, but after the first diastolic blood pressure decrease and respiratory rate decrease.","episode_id":"iv_000370","anchor_time":48} {"id":"CVR_multivariable_iv_000370_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in lactate, heart rate, temperature, urine output, and creatinine?\nOptions: A. heart rate increase occurs first, followed by urine output increase, then creatinine increase, then lactate decrease, and finally temperature increase. B. heart rate increase occurs first, followed by urine output increase, then lactate decrease, then creatinine increase, and finally temperature increase. C. urine output increase occurs first, followed by heart rate increase, then creatinine increase, then lactate decrease, and finally temperature increase. D. heart rate increase occurs first, followed by creatinine increase, then urine output increase, then lactate decrease, and finally temperature increase.","answer":"A","answer_text":"heart rate increase occurs first, followed by urine output increase, then creatinine increase, then lactate decrease, and finally temperature increase.","episode_id":"iv_000370","anchor_time":48} {"id":"CVR_multivariable_iv_000037_w48_2","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output decrease?\nOptions: A. The first heart rate increase occurs before the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output decrease. B. The first heart rate increase occurs before the first urine output decrease, but after the first diastolic blood pressure increase and systolic blood pressure decrease. C. The first heart rate increase occurs before the first diastolic blood pressure increase and urine output decrease, but after the first systolic blood pressure decrease. D. The first heart rate increase occurs after the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output decrease.","answer":"B","answer_text":"The first heart rate increase occurs before the first urine output decrease, but after the first diastolic blood pressure increase and systolic blood pressure decrease.","episode_id":"iv_000037","anchor_time":48} {"id":"CVR_multivariable_iv_000160_w48_0","question":"Across the first 48 hours, does the first systolic blood pressure decrease happen before the first SpO2 decrease, heart rate decrease, and temperature increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first SpO2 decrease, heart rate decrease, and temperature increase. B. The first systolic blood pressure decrease occurs before the first temperature increase, but after the first SpO2 decrease and heart rate decrease. C. The first systolic blood pressure decrease occurs after the first SpO2 decrease, heart rate decrease, and temperature increase. D. The first systolic blood pressure decrease occurs before the first heart rate decrease and temperature increase, but after the first SpO2 decrease.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first heart rate decrease and temperature increase, but after the first SpO2 decrease.","episode_id":"iv_000160","anchor_time":48} {"id":"CVR_multivariable_iv_000160_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, temperature, systolic blood pressure, and SpO2?\nOptions: A. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then heart rate decrease, and finally temperature increase. B. SpO2 decrease occurs first, followed by heart rate decrease, then systolic blood pressure decrease, and finally temperature increase. C. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then temperature increase, and finally heart rate decrease. D. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then heart rate decrease, and finally temperature increase.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by systolic blood pressure decrease, then heart rate decrease, and finally temperature increase.","episode_id":"iv_000160","anchor_time":24} {"id":"CVR_multivariable_iv_000160_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first white blood cell count decrease falls relative to the first lactate decrease, MAP increase, and systolic blood pressure decrease?\nOptions: A. The first white blood cell count decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first lactate decrease. B. The first white blood cell count decrease occurs after the first lactate decrease, MAP increase, and systolic blood pressure decrease. C. The first white blood cell count decrease occurs before the first lactate decrease, MAP increase, and systolic blood pressure decrease. D. The first white blood cell count decrease occurs before the first lactate decrease and systolic blood pressure decrease, but after the first MAP increase.","answer":"C","answer_text":"The first white blood cell count decrease occurs before the first lactate decrease, MAP increase, and systolic blood pressure decrease.","episode_id":"iv_000160","anchor_time":48} {"id":"CVR_multivariable_iv_000004_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate increase relative to the first urine output increase, SpO2 decrease, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate increase occurs after the first urine output increase, SpO2 decrease, and diastolic blood pressure increase. B. The first respiratory rate increase occurs before the first diastolic blood pressure increase, but after the first urine output increase and SpO2 decrease. C. The first respiratory rate increase occurs before the first urine output increase, SpO2 decrease, and diastolic blood pressure increase. D. The first respiratory rate increase occurs before the first urine output increase and diastolic blood pressure increase, but after the first SpO2 decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure increase, but after the first urine output increase and SpO2 decrease.","episode_id":"iv_000004","anchor_time":48} {"id":"CVR_multivariable_iv_000004_w48_2","question":"In the first 48 hours, which option puts the first changes in urine output, SpO2, systolic blood pressure, respiratory rate, and diastolic blood pressure in the right order?\nOptions: A. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then urine output increase, then respiratory rate increase, and finally systolic blood pressure increase. B. diastolic blood pressure decrease occurs first, followed by urine output increase, then respiratory rate increase, then SpO2 decrease, and finally systolic blood pressure increase. C. diastolic blood pressure decrease occurs first, followed by urine output increase, then SpO2 decrease, then respiratory rate increase, and finally systolic blood pressure increase. D. urine output increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, then respiratory rate increase, and finally systolic blood pressure increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by urine output increase, then SpO2 decrease, then respiratory rate increase, and finally systolic blood pressure increase.","episode_id":"iv_000004","anchor_time":48} {"id":"CVR_multivariable_iv_000093_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in temperature, SpO2, lactate, creatinine, and heart rate?\nOptions: A. SpO2 decrease occurs first, followed by temperature increase, then heart rate increase, then creatinine increase, and finally lactate increase. B. temperature increase occurs first, followed by SpO2 decrease, then heart rate increase, then creatinine increase, and finally lactate increase. C. temperature increase occurs first, followed by heart rate increase, then SpO2 decrease, then creatinine increase, and finally lactate increase. D. temperature increase occurs first, followed by SpO2 decrease, then creatinine increase, then heart rate increase, and finally lactate increase.","answer":"B","answer_text":"temperature increase occurs first, followed by SpO2 decrease, then heart rate increase, then creatinine increase, and finally lactate increase.","episode_id":"iv_000093","anchor_time":48} {"id":"CVR_multivariable_iv_000093_w48_1","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure increase preceded the first systolic blood pressure increase, respiratory rate increase, and temperature increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first systolic blood pressure increase and temperature increase, but after the first respiratory rate increase. B. The first diastolic blood pressure increase occurs before the first respiratory rate increase and temperature increase, but after the first systolic blood pressure increase. C. The first diastolic blood pressure increase occurs before the first systolic blood pressure increase, respiratory rate increase, and temperature increase. D. The first diastolic blood pressure increase occurs after the first systolic blood pressure increase, respiratory rate increase, and temperature increase.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first systolic blood pressure increase, respiratory rate increase, and temperature increase.","episode_id":"iv_000093","anchor_time":48} {"id":"CVR_multivariable_iv_000093_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure decrease falls relative to the first diastolic blood pressure increase, MAP increase, and temperature increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase and temperature increase, but after the first MAP increase. B. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase, MAP increase, and temperature increase. C. The first systolic blood pressure decrease occurs after the first diastolic blood pressure increase, MAP increase, and temperature increase. D. The first systolic blood pressure decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and MAP increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and MAP increase.","episode_id":"iv_000093","anchor_time":48} {"id":"CVR_multivariable_iv_000093_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for diastolic blood pressure, temperature, SpO2, and MAP?\nOptions: A. diastolic blood pressure increase occurs first, followed by MAP increase, then temperature decrease, and finally SpO2 increase. B. diastolic blood pressure increase occurs first, followed by MAP increase, then SpO2 increase, and finally temperature decrease. C. MAP increase occurs first, followed by diastolic blood pressure increase, then temperature decrease, and finally SpO2 increase. D. diastolic blood pressure increase occurs first, followed by temperature decrease, then MAP increase, and finally SpO2 increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by MAP increase, then temperature decrease, and finally SpO2 increase.","episode_id":"iv_000093","anchor_time":24} {"id":"CVR_multivariable_iv_000188_w48_0","question":"Across the first 48 hours, does the first SpO2 increase happen before the first heart rate decrease, MAP increase, and respiratory rate decrease?\nOptions: A. The first SpO2 increase occurs after the first heart rate decrease, MAP increase, and respiratory rate decrease. B. The first SpO2 increase occurs before the first respiratory rate decrease, but after the first heart rate decrease and MAP increase. C. The first SpO2 increase occurs before the first heart rate decrease, MAP increase, and respiratory rate decrease. D. The first SpO2 increase occurs before the first MAP increase and respiratory rate decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first MAP increase and respiratory rate decrease, but after the first heart rate decrease.","episode_id":"iv_000188","anchor_time":48} {"id":"CVR_multivariable_iv_000188_w48_1","question":"In the first 48 hours, which option puts the first changes in temperature, creatinine, urine output, systolic blood pressure, and white blood cell count in the right order?\nOptions: A. systolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output increase, then temperature decrease, and finally white blood cell count increase. B. systolic blood pressure decrease occurs first, followed by urine output increase, then creatinine decrease, then temperature decrease, and finally white blood cell count increase. C. urine output increase occurs first, followed by systolic blood pressure decrease, then creatinine decrease, then temperature decrease, and finally white blood cell count increase. D. systolic blood pressure decrease occurs first, followed by urine output increase, then temperature decrease, then creatinine decrease, and finally white blood cell count increase.","answer":"B","answer_text":"systolic blood pressure decrease occurs first, followed by urine output increase, then creatinine decrease, then temperature decrease, and finally white blood cell count increase.","episode_id":"iv_000188","anchor_time":48} {"id":"CVR_multivariable_iv_000188_w48_2","question":"Across the first 48 hours, does the first heart rate increase happen before the first systolic blood pressure increase, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first heart rate increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first systolic blood pressure increase. B. The first heart rate increase occurs after the first systolic blood pressure increase, respiratory rate decrease, and diastolic blood pressure decrease. C. The first heart rate increase occurs before the first systolic blood pressure increase, respiratory rate decrease, and diastolic blood pressure decrease. D. The first heart rate increase occurs before the first systolic blood pressure increase and diastolic blood pressure decrease, but after the first respiratory rate decrease.","answer":"C","answer_text":"The first heart rate increase occurs before the first systolic blood pressure increase, respiratory rate decrease, and diastolic blood pressure decrease.","episode_id":"iv_000188","anchor_time":48} {"id":"CVR_multivariable_iv_000374_w48_1","question":"Across the first 48 hours, does the first heart rate decrease happen before the first respiratory rate increase, SpO2 increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs after the first respiratory rate increase, SpO2 increase, and systolic blood pressure decrease. B. The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first respiratory rate increase. C. The first heart rate decrease occurs before the first systolic blood pressure decrease, but after the first respiratory rate increase and SpO2 increase. D. The first heart rate decrease occurs before the first respiratory rate increase, SpO2 increase, and systolic blood pressure decrease.","answer":"B","answer_text":"The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first respiratory rate increase.","episode_id":"iv_000374","anchor_time":48} {"id":"CVR_multivariable_iv_000374_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how diastolic blood pressure, heart rate, SpO2, and respiratory rate changed over time?\nOptions: A. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then SpO2 decrease, and finally heart rate increase. B. respiratory rate decrease occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally SpO2 decrease. C. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then heart rate increase, and finally SpO2 decrease. D. diastolic blood pressure increase occurs first, followed by respiratory rate decrease, then heart rate increase, and finally SpO2 decrease.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then heart rate increase, and finally SpO2 decrease.","episode_id":"iv_000374","anchor_time":24} {"id":"CVR_multivariable_iv_000453_w48_0","question":"For the initial 48 hours, was the first heart rate decrease earlier than the first SpO2 increase, MAP increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first SpO2 increase. B. The first heart rate decrease occurs after the first SpO2 increase, MAP increase, and systolic blood pressure decrease. C. The first heart rate decrease occurs before the first SpO2 increase, MAP increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first MAP increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first SpO2 increase, MAP increase, and systolic blood pressure decrease.","episode_id":"iv_000453","anchor_time":48} {"id":"CVR_multivariable_iv_000453_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first heart rate decrease, diastolic blood pressure increase, and systolic blood pressure decrease?\nOptions: A. The first SpO2 increase occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first heart rate decrease, diastolic blood pressure increase, and systolic blood pressure decrease. C. The first SpO2 increase occurs after the first heart rate decrease, diastolic blood pressure increase, and systolic blood pressure decrease. D. The first SpO2 increase occurs before the first diastolic blood pressure increase and systolic blood pressure decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure increase and systolic blood pressure decrease, but after the first heart rate decrease.","episode_id":"iv_000453","anchor_time":48} {"id":"CVR_multivariable_iv_000453_w48_2","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for heart rate, systolic blood pressure, temperature, urine output, and MAP?\nOptions: A. heart rate increase occurs first, followed by MAP increase, then systolic blood pressure decrease, then temperature increase, and finally urine output increase. B. heart rate increase occurs first, followed by MAP increase, then temperature increase, then systolic blood pressure decrease, and finally urine output increase. C. heart rate increase occurs first, followed by systolic blood pressure decrease, then MAP increase, then temperature increase, and finally urine output increase. D. MAP increase occurs first, followed by heart rate increase, then systolic blood pressure decrease, then temperature increase, and finally urine output increase.","answer":"A","answer_text":"heart rate increase occurs first, followed by MAP increase, then systolic blood pressure decrease, then temperature increase, and finally urine output increase.","episode_id":"iv_000453","anchor_time":48} {"id":"CVR_multivariable_iv_000468_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate decrease falls relative to the first diastolic blood pressure increase, SpO2 decrease, and temperature increase?\nOptions: A. The first respiratory rate decrease occurs after the first diastolic blood pressure increase, SpO2 decrease, and temperature increase. B. The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and SpO2 decrease. C. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and temperature increase. D. The first respiratory rate decrease occurs before the first SpO2 decrease and temperature increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first SpO2 decrease and temperature increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000468","anchor_time":48} {"id":"CVR_multivariable_iv_000468_w48_1","question":"In the first 48 hours, which option puts the first changes in white blood cell count, MAP, urine output, SpO2, and temperature in the right order?\nOptions: A. MAP decrease occurs first, followed by SpO2 decrease, then temperature decrease, then white blood cell count decrease, and finally urine output decrease. B. MAP decrease occurs first, followed by temperature decrease, then SpO2 decrease, then white blood cell count decrease, and finally urine output decrease. C. SpO2 decrease occurs first, followed by MAP decrease, then temperature decrease, then white blood cell count decrease, and finally urine output decrease. D. MAP decrease occurs first, followed by SpO2 decrease, then white blood cell count decrease, then temperature decrease, and finally urine output decrease.","answer":"A","answer_text":"MAP decrease occurs first, followed by SpO2 decrease, then temperature decrease, then white blood cell count decrease, and finally urine output decrease.","episode_id":"iv_000468","anchor_time":48} {"id":"CVR_multivariable_iv_000468_w24_0","question":"For the initial 24 hours, which option best matches the order in which temperature, SpO2, heart rate, and MAP first changed?\nOptions: A. heart rate decrease occurs first, followed by MAP decrease, then temperature increase, and finally SpO2 decrease. B. heart rate decrease occurs first, followed by MAP decrease, then SpO2 decrease, and finally temperature increase. C. heart rate decrease occurs first, followed by SpO2 decrease, then MAP decrease, and finally temperature increase. D. MAP decrease occurs first, followed by heart rate decrease, then SpO2 decrease, and finally temperature increase.","answer":"B","answer_text":"heart rate decrease occurs first, followed by MAP decrease, then SpO2 decrease, and finally temperature increase.","episode_id":"iv_000468","anchor_time":24} {"id":"CVR_multivariable_iv_000292_w48_1","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first heart rate increase, temperature increase, and diastolic blood pressure decrease?\nOptions: A. The first SpO2 decrease occurs after the first heart rate increase, temperature increase, and diastolic blood pressure decrease. B. The first SpO2 decrease occurs before the first temperature increase and diastolic blood pressure decrease, but after the first heart rate increase. C. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate increase and temperature increase. D. The first SpO2 decrease occurs before the first heart rate increase, temperature increase, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first temperature increase and diastolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000292","anchor_time":48} {"id":"CVR_multivariable_iv_000340_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for MAP, respiratory rate, urine output, and systolic blood pressure?\nOptions: A. systolic blood pressure decrease occurs first, followed by MAP increase, then respiratory rate increase, and finally urine output decrease. B. MAP increase occurs first, followed by systolic blood pressure decrease, then respiratory rate increase, and finally urine output decrease. C. MAP increase occurs first, followed by respiratory rate increase, then systolic blood pressure decrease, and finally urine output decrease. D. MAP increase occurs first, followed by systolic blood pressure decrease, then urine output decrease, and finally respiratory rate increase.","answer":"B","answer_text":"MAP increase occurs first, followed by systolic blood pressure decrease, then respiratory rate increase, and finally urine output decrease.","episode_id":"iv_000340","anchor_time":24} {"id":"CVR_multivariable_iv_000340_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate increase falls relative to the first MAP decrease, urine output decrease, and SpO2 increase?\nOptions: A. The first respiratory rate increase occurs before the first SpO2 increase, but after the first MAP decrease and urine output decrease. B. The first respiratory rate increase occurs before the first MAP decrease, urine output decrease, and SpO2 increase. C. The first respiratory rate increase occurs after the first MAP decrease, urine output decrease, and SpO2 increase. D. The first respiratory rate increase occurs before the first urine output decrease and SpO2 increase, but after the first MAP decrease.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first urine output decrease and SpO2 increase, but after the first MAP decrease.","episode_id":"iv_000340","anchor_time":48} {"id":"CVR_multivariable_iv_000340_w48_2","question":"For the initial 48 hours, which option best matches the order in which temperature, SpO2, white blood cell count, creatinine, and urine output first changed?\nOptions: A. urine output decrease occurs first, followed by SpO2 decrease, then white blood cell count decrease, then temperature decrease, and finally creatinine increase. B. urine output decrease occurs first, followed by white blood cell count decrease, then SpO2 decrease, then temperature decrease, and finally creatinine increase. C. SpO2 decrease occurs first, followed by urine output decrease, then white blood cell count decrease, then temperature decrease, and finally creatinine increase. D. urine output decrease occurs first, followed by SpO2 decrease, then temperature decrease, then white blood cell count decrease, and finally creatinine increase.","answer":"A","answer_text":"urine output decrease occurs first, followed by SpO2 decrease, then white blood cell count decrease, then temperature decrease, and finally creatinine increase.","episode_id":"iv_000340","anchor_time":48} {"id":"CVR_multivariable_iv_000407_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first white blood cell count increase relative to the first MAP increase, heart rate increase, and respiratory rate decrease?\nOptions: A. The first white blood cell count increase occurs before the first MAP increase, heart rate increase, and respiratory rate decrease. B. The first white blood cell count increase occurs before the first respiratory rate decrease, but after the first MAP increase and heart rate increase. C. The first white blood cell count increase occurs after the first MAP increase, heart rate increase, and respiratory rate decrease. D. The first white blood cell count increase occurs before the first MAP increase and respiratory rate decrease, but after the first heart rate increase.","answer":"B","answer_text":"The first white blood cell count increase occurs before the first respiratory rate decrease, but after the first MAP increase and heart rate increase.","episode_id":"iv_000407","anchor_time":48} {"id":"CVR_multivariable_iv_000408_w48_0","question":"In the opening 48 hours, compare the first urine output decrease with the first respiratory rate increase, lactate decrease, and systolic blood pressure increase; which option is correct?\nOptions: A. The first urine output decrease occurs before the first systolic blood pressure increase, but after the first respiratory rate increase and lactate decrease. B. The first urine output decrease occurs before the first respiratory rate increase, lactate decrease, and systolic blood pressure increase. C. The first urine output decrease occurs after the first respiratory rate increase, lactate decrease, and systolic blood pressure increase. D. The first urine output decrease occurs before the first lactate decrease and systolic blood pressure increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first urine output decrease occurs before the first lactate decrease and systolic blood pressure increase, but after the first respiratory rate increase.","episode_id":"iv_000408","anchor_time":48} {"id":"CVR_multivariable_iv_000408_w48_1","question":"During the first 48 hours, which answer correctly orders the first observed changes involving urine output, white blood cell count, heart rate, lactate, and temperature?\nOptions: A. heart rate increase occurs first, followed by urine output increase, then white blood cell count decrease, then lactate increase, and finally temperature decrease. B. urine output increase occurs first, followed by heart rate increase, then white blood cell count decrease, then lactate increase, and finally temperature decrease. C. heart rate increase occurs first, followed by white blood cell count decrease, then urine output increase, then lactate increase, and finally temperature decrease. D. heart rate increase occurs first, followed by urine output increase, then lactate increase, then white blood cell count decrease, and finally temperature decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by urine output increase, then white blood cell count decrease, then lactate increase, and finally temperature decrease.","episode_id":"iv_000408","anchor_time":48} {"id":"CVR_multivariable_iv_000187_w48_0","question":"Looking only at the first 48 hours, did the first SpO2 increase come before the first respiratory rate decrease, heart rate decrease, and temperature increase?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate decrease, heart rate decrease, and temperature increase. B. The first SpO2 increase occurs after the first respiratory rate decrease, heart rate decrease, and temperature increase. C. The first SpO2 increase occurs before the first heart rate decrease and temperature increase, but after the first respiratory rate decrease. D. The first SpO2 increase occurs before the first respiratory rate decrease and temperature increase, but after the first heart rate decrease.","answer":"A","answer_text":"The first SpO2 increase occurs before the first respiratory rate decrease, heart rate decrease, and temperature increase.","episode_id":"iv_000187","anchor_time":48} {"id":"CVR_multivariable_iv_000187_w48_1","question":"In the opening 48 hours, compare the first urine output increase with the first diastolic blood pressure increase, respiratory rate decrease, and MAP decrease; which option is correct?\nOptions: A. The first urine output increase occurs after the first diastolic blood pressure increase, respiratory rate decrease, and MAP decrease. B. The first urine output increase occurs before the first MAP decrease, but after the first diastolic blood pressure increase and respiratory rate decrease. C. The first urine output increase occurs before the first diastolic blood pressure increase, respiratory rate decrease, and MAP decrease. D. The first urine output increase occurs before the first diastolic blood pressure increase and MAP decrease, but after the first respiratory rate decrease.","answer":"B","answer_text":"The first urine output increase occurs before the first MAP decrease, but after the first diastolic blood pressure increase and respiratory rate decrease.","episode_id":"iv_000187","anchor_time":48} {"id":"CVR_multivariable_iv_000334_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving urine output, diastolic blood pressure, white blood cell count, lactate, and SpO2?\nOptions: A. diastolic blood pressure increase occurs first, followed by urine output decrease, then lactate increase, then white blood cell count decrease, and finally SpO2 decrease. B. diastolic blood pressure increase occurs first, followed by lactate increase, then urine output decrease, then white blood cell count decrease, and finally SpO2 decrease. C. diastolic blood pressure increase occurs first, followed by lactate increase, then white blood cell count decrease, then urine output decrease, and finally SpO2 decrease. D. lactate increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, then white blood cell count decrease, and finally SpO2 decrease.","answer":"B","answer_text":"diastolic blood pressure increase occurs first, followed by lactate increase, then urine output decrease, then white blood cell count decrease, and finally SpO2 decrease.","episode_id":"iv_000334","anchor_time":48} {"id":"CVR_multivariable_iv_000334_w48_1","question":"For the initial 48 hours, was the first temperature increase earlier than the first diastolic blood pressure increase, lactate increase, and urine output increase?\nOptions: A. The first temperature increase occurs before the first diastolic blood pressure increase and urine output increase, but after the first lactate increase. B. The first temperature increase occurs before the first lactate increase and urine output increase, but after the first diastolic blood pressure increase. C. The first temperature increase occurs before the first diastolic blood pressure increase, lactate increase, and urine output increase. D. The first temperature increase occurs after the first diastolic blood pressure increase, lactate increase, and urine output increase.","answer":"C","answer_text":"The first temperature increase occurs before the first diastolic blood pressure increase, lactate increase, and urine output increase.","episode_id":"iv_000334","anchor_time":48} {"id":"CVR_multivariable_iv_000334_w48_2","question":"In the opening 48 hours, compare the first lactate increase with the first creatinine decrease, diastolic blood pressure increase, and urine output increase; which option is correct?\nOptions: A. The first lactate increase occurs before the first creatinine decrease and urine output increase, but after the first diastolic blood pressure increase. B. The first lactate increase occurs before the first creatinine decrease, diastolic blood pressure increase, and urine output increase. C. The first lactate increase occurs after the first creatinine decrease, diastolic blood pressure increase, and urine output increase. D. The first lactate increase occurs before the first urine output increase, but after the first creatinine decrease and diastolic blood pressure increase.","answer":"D","answer_text":"The first lactate increase occurs before the first urine output increase, but after the first creatinine decrease and diastolic blood pressure increase.","episode_id":"iv_000334","anchor_time":48} {"id":"CVR_multivariable_iv_000213_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving diastolic blood pressure, heart rate, systolic blood pressure, and SpO2?\nOptions: A. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally SpO2 decrease. B. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then systolic blood pressure increase, and finally heart rate increase. C. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then SpO2 decrease, and finally heart rate increase. D. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, and finally heart rate increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then SpO2 decrease, and finally heart rate increase.","episode_id":"iv_000213","anchor_time":24} {"id":"CVR_multivariable_iv_000213_w48_2","question":"Looking only at the first 48 hours, did the first heart rate increase come before the first diastolic blood pressure increase, SpO2 decrease, and urine output increase?\nOptions: A. The first heart rate increase occurs before the first diastolic blood pressure increase and urine output increase, but after the first SpO2 decrease. B. The first heart rate increase occurs before the first urine output increase, but after the first diastolic blood pressure increase and SpO2 decrease. C. The first heart rate increase occurs after the first diastolic blood pressure increase, SpO2 decrease, and urine output increase. D. The first heart rate increase occurs before the first diastolic blood pressure increase, SpO2 decrease, and urine output increase.","answer":"B","answer_text":"The first heart rate increase occurs before the first urine output increase, but after the first diastolic blood pressure increase and SpO2 decrease.","episode_id":"iv_000213","anchor_time":48} {"id":"CVR_multivariable_iv_000127_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first temperature increase relative to the first urine output decrease, MAP decrease, and heart rate decrease?\nOptions: A. The first temperature increase occurs after the first urine output decrease, MAP decrease, and heart rate decrease. B. The first temperature increase occurs before the first urine output decrease and heart rate decrease, but after the first MAP decrease. C. The first temperature increase occurs before the first urine output decrease, MAP decrease, and heart rate decrease. D. The first temperature increase occurs before the first heart rate decrease, but after the first urine output decrease and MAP decrease.","answer":"D","answer_text":"The first temperature increase occurs before the first heart rate decrease, but after the first urine output decrease and MAP decrease.","episode_id":"iv_000127","anchor_time":48} {"id":"CVR_multivariable_iv_000127_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how urine output, temperature, heart rate, and MAP changed over time?\nOptions: A. heart rate decrease occurs first, followed by temperature increase, then MAP increase, and finally urine output increase. B. temperature increase occurs first, followed by heart rate decrease, then MAP increase, and finally urine output increase. C. temperature increase occurs first, followed by heart rate decrease, then urine output increase, and finally MAP increase. D. temperature increase occurs first, followed by MAP increase, then heart rate decrease, and finally urine output increase.","answer":"B","answer_text":"temperature increase occurs first, followed by heart rate decrease, then MAP increase, and finally urine output increase.","episode_id":"iv_000127","anchor_time":24} {"id":"CVR_multivariable_iv_000011_w48_1","question":"In the first 48 hours, how does the timing of the first urine output decrease compare with the first heart rate increase, respiratory rate increase, and diastolic blood pressure increase?\nOptions: A. The first urine output decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first respiratory rate increase. B. The first urine output decrease occurs before the first diastolic blood pressure increase, but after the first heart rate increase and respiratory rate increase. C. The first urine output decrease occurs after the first heart rate increase, respiratory rate increase, and diastolic blood pressure increase. D. The first urine output decrease occurs before the first heart rate increase, respiratory rate increase, and diastolic blood pressure increase.","answer":"B","answer_text":"The first urine output decrease occurs before the first diastolic blood pressure increase, but after the first heart rate increase and respiratory rate increase.","episode_id":"iv_000011","anchor_time":48} {"id":"CVR_multivariable_iv_000011_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for MAP, SpO2, heart rate, and urine output?\nOptions: A. urine output decrease occurs first, followed by heart rate increase, then SpO2 decrease, and finally MAP increase. B. heart rate increase occurs first, followed by SpO2 decrease, then urine output decrease, and finally MAP increase. C. heart rate increase occurs first, followed by urine output decrease, then SpO2 decrease, and finally MAP increase. D. heart rate increase occurs first, followed by urine output decrease, then MAP increase, and finally SpO2 decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by urine output decrease, then SpO2 decrease, and finally MAP increase.","episode_id":"iv_000011","anchor_time":24} {"id":"CVR_multivariable_iv_000006_w48_0","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in systolic blood pressure, urine output, creatinine, temperature, and respiratory rate?\nOptions: A. systolic blood pressure increase occurs first, followed by respiratory rate increase, then urine output decrease, then temperature decrease, and finally creatinine increase. B. systolic blood pressure increase occurs first, followed by respiratory rate increase, then temperature decrease, then urine output decrease, and finally creatinine increase. C. respiratory rate increase occurs first, followed by systolic blood pressure increase, then temperature decrease, then urine output decrease, and finally creatinine increase. D. systolic blood pressure increase occurs first, followed by temperature decrease, then respiratory rate increase, then urine output decrease, and finally creatinine increase.","answer":"B","answer_text":"systolic blood pressure increase occurs first, followed by respiratory rate increase, then temperature decrease, then urine output decrease, and finally creatinine increase.","episode_id":"iv_000006","anchor_time":48} {"id":"CVR_multivariable_iv_000006_w48_1","question":"In the opening 48 hours, compare the first respiratory rate decrease with the first diastolic blood pressure decrease, SpO2 decrease, and MAP increase; which option is correct?\nOptions: A. The first respiratory rate decrease occurs after the first diastolic blood pressure decrease, SpO2 decrease, and MAP increase. B. The first respiratory rate decrease occurs before the first SpO2 decrease and MAP increase, but after the first diastolic blood pressure decrease. C. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, SpO2 decrease, and MAP increase. D. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first SpO2 decrease.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, SpO2 decrease, and MAP increase.","episode_id":"iv_000006","anchor_time":48} {"id":"CVR_multivariable_iv_000442_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first heart rate increase, SpO2 decrease, and diastolic blood pressure decrease?\nOptions: A. The first systolic blood pressure decrease occurs before the first heart rate increase, SpO2 decrease, and diastolic blood pressure decrease. B. The first systolic blood pressure decrease occurs before the first SpO2 decrease and diastolic blood pressure decrease, but after the first heart rate increase. C. The first systolic blood pressure decrease occurs after the first heart rate increase, SpO2 decrease, and diastolic blood pressure decrease. D. The first systolic blood pressure decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate increase and SpO2 decrease.","answer":"B","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 decrease and diastolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000442","anchor_time":48} {"id":"CVR_multivariable_iv_000246_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first MAP increase falls relative to the first heart rate increase, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first heart rate increase, respiratory rate decrease, and diastolic blood pressure decrease. B. The first MAP increase occurs before the first diastolic blood pressure decrease, but after the first heart rate increase and respiratory rate decrease. C. The first MAP increase occurs after the first heart rate increase, respiratory rate decrease, and diastolic blood pressure decrease. D. The first MAP increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first heart rate increase.","answer":"D","answer_text":"The first MAP increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000246","anchor_time":48} {"id":"CVR_multivariable_iv_000246_w24_0","question":"For the initial 24 hours, which option best matches the order in which systolic blood pressure, diastolic blood pressure, SpO2, and respiratory rate first changed?\nOptions: A. SpO2 increase occurs first, followed by diastolic blood pressure increase, then respiratory rate decrease, and finally systolic blood pressure decrease. B. SpO2 increase occurs first, followed by respiratory rate decrease, then diastolic blood pressure increase, and finally systolic blood pressure decrease. C. diastolic blood pressure increase occurs first, followed by SpO2 increase, then respiratory rate decrease, and finally systolic blood pressure decrease. D. SpO2 increase occurs first, followed by diastolic blood pressure increase, then systolic blood pressure decrease, and finally respiratory rate decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by diastolic blood pressure increase, then respiratory rate decrease, and finally systolic blood pressure decrease.","episode_id":"iv_000246","anchor_time":24} {"id":"CVR_multivariable_iv_000396_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 decrease compare with the first diastolic blood pressure decrease, respiratory rate decrease, and MAP increase?\nOptions: A. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, respiratory rate decrease, and MAP increase. B. The first SpO2 decrease occurs before the first respiratory rate decrease and MAP increase, but after the first diastolic blood pressure decrease. C. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, respiratory rate decrease, and MAP increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first respiratory rate decrease.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease, respiratory rate decrease, and MAP increase.","episode_id":"iv_000396","anchor_time":48} {"id":"CVR_multivariable_iv_000425_w48_1","question":"During the first 48 hours, which option correctly describes whether the first systolic blood pressure decrease preceded the first SpO2 increase, heart rate increase, and MAP decrease?\nOptions: A. The first systolic blood pressure decrease occurs after the first SpO2 increase, heart rate increase, and MAP decrease. B. The first systolic blood pressure decrease occurs before the first SpO2 increase and MAP decrease, but after the first heart rate increase. C. The first systolic blood pressure decrease occurs before the first SpO2 increase, heart rate increase, and MAP decrease. D. The first systolic blood pressure decrease occurs before the first MAP decrease, but after the first SpO2 increase and heart rate increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first MAP decrease, but after the first SpO2 increase and heart rate increase.","episode_id":"iv_000425","anchor_time":48} {"id":"CVR_multivariable_iv_000345_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure increase relative to the first systolic blood pressure increase, respiratory rate increase, and temperature decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first systolic blood pressure increase, respiratory rate increase, and temperature decrease. B. The first diastolic blood pressure increase occurs before the first respiratory rate increase and temperature decrease, but after the first systolic blood pressure increase. C. The first diastolic blood pressure increase occurs after the first systolic blood pressure increase, respiratory rate increase, and temperature decrease. D. The first diastolic blood pressure increase occurs before the first systolic blood pressure increase and temperature decrease, but after the first respiratory rate increase.","answer":"A","answer_text":"The first diastolic blood pressure increase occurs before the first systolic blood pressure increase, respiratory rate increase, and temperature decrease.","episode_id":"iv_000345","anchor_time":48} {"id":"CVR_multivariable_iv_000345_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure increase falls relative to the first MAP increase, diastolic blood pressure decrease, and temperature increase?\nOptions: A. The first systolic blood pressure increase occurs after the first MAP increase, diastolic blood pressure decrease, and temperature increase. B. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease and temperature increase, but after the first MAP increase. C. The first systolic blood pressure increase occurs before the first MAP increase, diastolic blood pressure decrease, and temperature increase. D. The first systolic blood pressure increase occurs before the first temperature increase, but after the first MAP increase and diastolic blood pressure decrease.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease and temperature increase, but after the first MAP increase.","episode_id":"iv_000345","anchor_time":48} {"id":"CVR_multivariable_iv_000089_w48_0","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first heart rate decrease, MAP decrease, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs before the first heart rate decrease, MAP decrease, and urine output decrease. B. The first SpO2 decrease occurs before the first urine output decrease, but after the first heart rate decrease and MAP decrease. C. The first SpO2 decrease occurs after the first heart rate decrease, MAP decrease, and urine output decrease. D. The first SpO2 decrease occurs before the first MAP decrease and urine output decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first MAP decrease and urine output decrease, but after the first heart rate decrease.","episode_id":"iv_000089","anchor_time":48} {"id":"CVR_multivariable_iv_000089_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how MAP, systolic blood pressure, SpO2, and temperature changed over time?\nOptions: A. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then temperature decrease, and finally MAP decrease. B. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then MAP decrease, and finally temperature decrease. C. systolic blood pressure decrease occurs first, followed by MAP decrease, then SpO2 decrease, and finally temperature decrease. D. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then MAP decrease, and finally temperature decrease.","answer":"B","answer_text":"systolic blood pressure decrease occurs first, followed by SpO2 decrease, then MAP decrease, and finally temperature decrease.","episode_id":"iv_000089","anchor_time":24} {"id":"CVR_multivariable_iv_000426_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate decrease falls relative to the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase. B. The first respiratory rate decrease occurs after the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase. C. The first respiratory rate decrease occurs before the first SpO2 decrease and diastolic blood pressure increase, but after the first heart rate increase. D. The first respiratory rate decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first SpO2 decrease.","answer":"A","answer_text":"The first respiratory rate decrease occurs before the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase.","episode_id":"iv_000426","anchor_time":48} {"id":"CVR_multivariable_iv_000426_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first respiratory rate decrease, heart rate increase, and systolic blood pressure increase?\nOptions: A. The first SpO2 decrease occurs before the first systolic blood pressure increase, but after the first respiratory rate decrease and heart rate increase. B. The first SpO2 decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first respiratory rate decrease. C. The first SpO2 decrease occurs after the first respiratory rate decrease, heart rate increase, and systolic blood pressure increase. D. The first SpO2 decrease occurs before the first respiratory rate decrease, heart rate increase, and systolic blood pressure increase.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first respiratory rate decrease.","episode_id":"iv_000426","anchor_time":48} {"id":"CVR_multivariable_iv_000026_w48_2","question":"In the first 48 hours, which option puts the first changes in diastolic blood pressure, creatinine, white blood cell count, urine output, and lactate in the right order?\nOptions: A. diastolic blood pressure increase occurs first, followed by creatinine increase, then urine output increase, then white blood cell count increase, and finally lactate decrease. B. creatinine increase occurs first, followed by diastolic blood pressure increase, then urine output increase, then white blood cell count increase, and finally lactate decrease. C. diastolic blood pressure increase occurs first, followed by urine output increase, then creatinine increase, then white blood cell count increase, and finally lactate decrease. D. diastolic blood pressure increase occurs first, followed by creatinine increase, then white blood cell count increase, then urine output increase, and finally lactate decrease.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by creatinine increase, then urine output increase, then white blood cell count increase, and finally lactate decrease.","episode_id":"iv_000026","anchor_time":48} {"id":"CVR_multivariable_iv_000077_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP decrease relative to the first respiratory rate increase, heart rate decrease, and systolic blood pressure decrease?\nOptions: A. The first MAP decrease occurs after the first respiratory rate increase, heart rate decrease, and systolic blood pressure decrease. B. The first MAP decrease occurs before the first systolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease. C. The first MAP decrease occurs before the first respiratory rate increase, heart rate decrease, and systolic blood pressure decrease. D. The first MAP decrease occurs before the first respiratory rate increase and systolic blood pressure decrease, but after the first heart rate decrease.","answer":"B","answer_text":"The first MAP decrease occurs before the first systolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease.","episode_id":"iv_000077","anchor_time":48} {"id":"CVR_multivariable_iv_000184_w48_0","question":"Across the first 48 hours, does the first systolic blood pressure increase happen before the first diastolic blood pressure decrease, heart rate increase, and respiratory rate increase?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease, heart rate increase, and respiratory rate increase. B. The first systolic blood pressure increase occurs after the first diastolic blood pressure decrease, heart rate increase, and respiratory rate increase. C. The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first diastolic blood pressure decrease and heart rate increase. D. The first systolic blood pressure increase occurs before the first heart rate increase and respiratory rate increase, but after the first diastolic blood pressure decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first heart rate increase and respiratory rate increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000184","anchor_time":48} {"id":"CVR_multivariable_iv_000262_w48_0","question":"In the opening 48 hours, compare the first diastolic blood pressure increase with the first heart rate increase, SpO2 decrease, and respiratory rate increase; which option is correct?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 decrease, and respiratory rate increase. B. The first diastolic blood pressure increase occurs before the first SpO2 decrease and respiratory rate increase, but after the first heart rate increase. C. The first diastolic blood pressure increase occurs before the first heart rate increase and respiratory rate increase, but after the first SpO2 decrease. D. The first diastolic blood pressure increase occurs after the first heart rate increase, SpO2 decrease, and respiratory rate increase.","answer":"A","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 decrease, and respiratory rate increase.","episode_id":"iv_000262","anchor_time":48} {"id":"CVR_multivariable_iv_000262_w48_1","question":"In the opening 48 hours, compare the first respiratory rate decrease with the first heart rate increase, SpO2 increase, and diastolic blood pressure decrease; which option is correct?\nOptions: A. The first respiratory rate decrease occurs before the first heart rate increase and diastolic blood pressure decrease, but after the first SpO2 increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate increase and SpO2 increase. C. The first respiratory rate decrease occurs before the first heart rate increase, SpO2 increase, and diastolic blood pressure decrease. D. The first respiratory rate decrease occurs after the first heart rate increase, SpO2 increase, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, but after the first heart rate increase and SpO2 increase.","episode_id":"iv_000262","anchor_time":48} {"id":"CVR_multivariable_iv_000207_w24_0","question":"Across the first 24 hours, how did the first changes in respiratory rate, diastolic blood pressure, systolic blood pressure, and white blood cell count unfold?\nOptions: A. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then white blood cell count decrease, and finally respiratory rate increase. B. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally white blood cell count decrease. C. diastolic blood pressure decrease occurs first, followed by respiratory rate increase, then systolic blood pressure increase, and finally white blood cell count decrease. D. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then respiratory rate increase, and finally white blood cell count decrease.","answer":"B","answer_text":"diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally white blood cell count decrease.","episode_id":"iv_000207","anchor_time":24} {"id":"CVR_multivariable_iv_000207_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first heart rate increase, respiratory rate increase, and white blood cell count decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate increase and white blood cell count decrease, but after the first respiratory rate increase. B. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and white blood cell count decrease, but after the first heart rate increase. C. The first diastolic blood pressure decrease occurs before the first heart rate increase, respiratory rate increase, and white blood cell count decrease. D. The first diastolic blood pressure decrease occurs after the first heart rate increase, respiratory rate increase, and white blood cell count decrease.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first heart rate increase, respiratory rate increase, and white blood cell count decrease.","episode_id":"iv_000207","anchor_time":48} {"id":"CVR_multivariable_iv_000207_w48_1","question":"In the opening 48 hours, compare the first respiratory rate increase with the first heart rate decrease, SpO2 increase, and white blood cell count decrease; which option is correct?\nOptions: A. The first respiratory rate increase occurs before the first heart rate decrease, SpO2 increase, and white blood cell count decrease. B. The first respiratory rate increase occurs before the first heart rate decrease and white blood cell count decrease, but after the first SpO2 increase. C. The first respiratory rate increase occurs after the first heart rate decrease, SpO2 increase, and white blood cell count decrease. D. The first respiratory rate increase occurs before the first white blood cell count decrease, but after the first heart rate decrease and SpO2 increase.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first white blood cell count decrease, but after the first heart rate decrease and SpO2 increase.","episode_id":"iv_000207","anchor_time":48} {"id":"CVR_multivariable_iv_000207_w48_2","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for urine output, creatinine, respiratory rate, diastolic blood pressure, and white blood cell count?\nOptions: A. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then white blood cell count decrease, then creatinine decrease, and finally urine output decrease. B. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then white blood cell count decrease, then creatinine decrease, and finally urine output decrease. C. diastolic blood pressure increase occurs first, followed by white blood cell count decrease, then respiratory rate increase, then creatinine decrease, and finally urine output decrease. D. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then creatinine decrease, then white blood cell count decrease, and finally urine output decrease.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by respiratory rate increase, then white blood cell count decrease, then creatinine decrease, and finally urine output decrease.","episode_id":"iv_000207","anchor_time":48} {"id":"CVR_multivariable_iv_000182_w48_2","question":"In the opening 48 hours, compare the first MAP increase with the first heart rate increase, systolic blood pressure decrease, and respiratory rate decrease; which option is correct?\nOptions: A. The first MAP increase occurs before the first respiratory rate decrease, but after the first heart rate increase and systolic blood pressure decrease. B. The first MAP increase occurs before the first systolic blood pressure decrease and respiratory rate decrease, but after the first heart rate increase. C. The first MAP increase occurs before the first heart rate increase, systolic blood pressure decrease, and respiratory rate decrease. D. The first MAP increase occurs after the first heart rate increase, systolic blood pressure decrease, and respiratory rate decrease.","answer":"B","answer_text":"The first MAP increase occurs before the first systolic blood pressure decrease and respiratory rate decrease, but after the first heart rate increase.","episode_id":"iv_000182","anchor_time":48} {"id":"CVR_multivariable_iv_000095_w48_0","question":"Across the first 48 hours, does the first systolic blood pressure increase happen before the first heart rate decrease, diastolic blood pressure increase, and temperature increase?\nOptions: A. The first systolic blood pressure increase occurs before the first temperature increase, but after the first heart rate decrease and diastolic blood pressure increase. B. The first systolic blood pressure increase occurs after the first heart rate decrease, diastolic blood pressure increase, and temperature increase. C. The first systolic blood pressure increase occurs before the first heart rate decrease, diastolic blood pressure increase, and temperature increase. D. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase and temperature increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first diastolic blood pressure increase and temperature increase, but after the first heart rate decrease.","episode_id":"iv_000095","anchor_time":48} {"id":"CVR_multivariable_iv_000095_w24_0","question":"In the first 24 hours, which option puts the first changes in respiratory rate, diastolic blood pressure, heart rate, and systolic blood pressure in the right order?\nOptions: A. respiratory rate increase occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally systolic blood pressure decrease. B. heart rate increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, and finally systolic blood pressure decrease. C. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then heart rate increase, and finally systolic blood pressure decrease. D. respiratory rate increase occurs first, followed by heart rate increase, then systolic blood pressure decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"respiratory rate increase occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally systolic blood pressure decrease.","episode_id":"iv_000095","anchor_time":24} {"id":"CVR_multivariable_iv_000095_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate decrease falls relative to the first temperature decrease, heart rate increase, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs before the first temperature decrease and diastolic blood pressure increase, but after the first heart rate increase. B. The first respiratory rate decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first temperature decrease. C. The first respiratory rate decrease occurs before the first temperature decrease, heart rate increase, and diastolic blood pressure increase. D. The first respiratory rate decrease occurs after the first temperature decrease, heart rate increase, and diastolic blood pressure increase.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first temperature decrease, heart rate increase, and diastolic blood pressure increase.","episode_id":"iv_000095","anchor_time":48} {"id":"CVR_multivariable_iv_000100_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first MAP decrease, diastolic blood pressure decrease, and urine output increase?\nOptions: A. The first SpO2 decrease occurs before the first MAP decrease, diastolic blood pressure decrease, and urine output increase. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and urine output increase, but after the first MAP decrease. C. The first SpO2 decrease occurs after the first MAP decrease, diastolic blood pressure decrease, and urine output increase. D. The first SpO2 decrease occurs before the first MAP decrease and urine output increase, but after the first diastolic blood pressure decrease.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first MAP decrease, diastolic blood pressure decrease, and urine output increase.","episode_id":"iv_000100","anchor_time":48} {"id":"CVR_multivariable_iv_000100_w48_1","question":"Looking only at the first 48 hours, did the first diastolic blood pressure decrease come before the first heart rate decrease, systolic blood pressure decrease, and urine output increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate decrease, systolic blood pressure decrease, and urine output increase. B. The first diastolic blood pressure decrease occurs before the first urine output increase, but after the first heart rate decrease and systolic blood pressure decrease. C. The first diastolic blood pressure decrease occurs after the first heart rate decrease, systolic blood pressure decrease, and urine output increase. D. The first diastolic blood pressure decrease occurs before the first heart rate decrease and urine output increase, but after the first systolic blood pressure decrease.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first urine output increase, but after the first heart rate decrease and systolic blood pressure decrease.","episode_id":"iv_000100","anchor_time":48} {"id":"CVR_multivariable_iv_000419_w48_1","question":"Across the first 48 hours, does the first SpO2 decrease happen before the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase?\nOptions: A. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase. C. The first SpO2 decrease occurs before the first white blood cell count increase, but after the first diastolic blood pressure decrease and urine output decrease. D. The first SpO2 decrease occurs before the first urine output decrease and white blood cell count increase, but after the first diastolic blood pressure decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first urine output decrease and white blood cell count increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000419","anchor_time":48} {"id":"CVR_multivariable_iv_000394_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in white blood cell count, urine output, creatinine, respiratory rate, and temperature?\nOptions: A. respiratory rate decrease occurs first, followed by urine output decrease, then creatinine decrease, then temperature increase, and finally white blood cell count decrease. B. urine output decrease occurs first, followed by respiratory rate decrease, then temperature increase, then creatinine decrease, and finally white blood cell count decrease. C. respiratory rate decrease occurs first, followed by urine output decrease, then temperature increase, then creatinine decrease, and finally white blood cell count decrease. D. respiratory rate decrease occurs first, followed by temperature increase, then urine output decrease, then creatinine decrease, and finally white blood cell count decrease.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by urine output decrease, then temperature increase, then creatinine decrease, and finally white blood cell count decrease.","episode_id":"iv_000394","anchor_time":48} {"id":"CVR_multivariable_iv_000155_w48_0","question":"Looking only at the first 48 hours, did the first systolic blood pressure decrease come before the first diastolic blood pressure increase, urine output decrease, and temperature increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and urine output decrease. B. The first systolic blood pressure decrease occurs after the first diastolic blood pressure increase, urine output decrease, and temperature increase. C. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase, urine output decrease, and temperature increase. D. The first systolic blood pressure decrease occurs before the first urine output decrease and temperature increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first urine output decrease and temperature increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000155","anchor_time":48} {"id":"CVR_multivariable_iv_000155_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how MAP, heart rate, temperature, and urine output changed over time?\nOptions: A. heart rate decrease occurs first, followed by MAP decrease, then urine output decrease, and finally temperature increase. B. heart rate decrease occurs first, followed by urine output decrease, then MAP decrease, and finally temperature increase. C. heart rate decrease occurs first, followed by MAP decrease, then temperature increase, and finally urine output decrease. D. MAP decrease occurs first, followed by heart rate decrease, then urine output decrease, and finally temperature increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by MAP decrease, then urine output decrease, and finally temperature increase.","episode_id":"iv_000155","anchor_time":24} {"id":"CVR_multivariable_iv_000155_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure increase relative to the first SpO2 increase, urine output decrease, and temperature increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first urine output decrease and temperature increase, but after the first SpO2 increase. B. The first diastolic blood pressure increase occurs after the first SpO2 increase, urine output decrease, and temperature increase. C. The first diastolic blood pressure increase occurs before the first SpO2 increase, urine output decrease, and temperature increase. D. The first diastolic blood pressure increase occurs before the first SpO2 increase and temperature increase, but after the first urine output decrease.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first SpO2 increase, urine output decrease, and temperature increase.","episode_id":"iv_000155","anchor_time":48} {"id":"CVR_multivariable_iv_000230_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first heart rate increase, diastolic blood pressure decrease, and temperature increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate increase, diastolic blood pressure decrease, and temperature increase. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and temperature increase, but after the first heart rate increase. C. The first SpO2 decrease occurs after the first heart rate increase, diastolic blood pressure decrease, and temperature increase. D. The first SpO2 decrease occurs before the first temperature increase, but after the first heart rate increase and diastolic blood pressure decrease.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease and temperature increase, but after the first heart rate increase.","episode_id":"iv_000230","anchor_time":48} {"id":"CVR_multivariable_iv_000230_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, respiratory rate, temperature, systolic blood pressure, and white blood cell count?\nOptions: A. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then temperature decrease, then systolic blood pressure increase, and finally white blood cell count increase. B. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then diastolic blood pressure increase, then temperature decrease, and finally white blood cell count increase. C. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase. D. diastolic blood pressure increase occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then systolic blood pressure increase, then temperature decrease, and finally white blood cell count increase.","episode_id":"iv_000230","anchor_time":48} {"id":"CVR_multivariable_iv_000362_w48_2","question":"Across the first 48 hours, does the first respiratory rate decrease happen before the first diastolic blood pressure decrease, MAP increase, and urine output increase?\nOptions: A. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and urine output increase, but after the first MAP increase. B. The first respiratory rate decrease occurs after the first diastolic blood pressure decrease, MAP increase, and urine output increase. C. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, MAP increase, and urine output increase. D. The first respiratory rate decrease occurs before the first urine output increase, but after the first diastolic blood pressure decrease and MAP increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first urine output increase, but after the first diastolic blood pressure decrease and MAP increase.","episode_id":"iv_000362","anchor_time":48} {"id":"CVR_multivariable_iv_000362_w24_0","question":"Across the first 24 hours, how did the first changes in SpO2, respiratory rate, urine output, and diastolic blood pressure unfold?\nOptions: A. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then SpO2 increase, and finally urine output increase. B. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then urine output increase, and finally SpO2 increase. C. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then SpO2 increase, and finally urine output increase. D. respiratory rate increase occurs first, followed by SpO2 increase, then diastolic blood pressure increase, and finally urine output increase.","answer":"A","answer_text":"respiratory rate increase occurs first, followed by diastolic blood pressure increase, then SpO2 increase, and finally urine output increase.","episode_id":"iv_000362","anchor_time":24} {"id":"CVR_multivariable_iv_000237_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how MAP, urine output, respiratory rate, and systolic blood pressure changed over time?\nOptions: A. MAP decrease occurs first, followed by systolic blood pressure increase, then urine output increase, and finally respiratory rate increase. B. MAP decrease occurs first, followed by respiratory rate increase, then systolic blood pressure increase, and finally urine output increase. C. MAP decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally urine output increase. D. systolic blood pressure increase occurs first, followed by MAP decrease, then respiratory rate increase, and finally urine output increase.","answer":"C","answer_text":"MAP decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally urine output increase.","episode_id":"iv_000237","anchor_time":24} {"id":"CVR_multivariable_iv_000237_w48_2","question":"For the initial 48 hours, was the first systolic blood pressure increase earlier than the first MAP decrease, respiratory rate increase, and urine output increase?\nOptions: A. The first systolic blood pressure increase occurs after the first MAP decrease, respiratory rate increase, and urine output increase. B. The first systolic blood pressure increase occurs before the first respiratory rate increase and urine output increase, but after the first MAP decrease. C. The first systolic blood pressure increase occurs before the first urine output increase, but after the first MAP decrease and respiratory rate increase. D. The first systolic blood pressure increase occurs before the first MAP decrease, respiratory rate increase, and urine output increase.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase and urine output increase, but after the first MAP decrease.","episode_id":"iv_000237","anchor_time":48} {"id":"CVR_multivariable_iv_000353_w48_0","question":"In the opening 48 hours, compare the first systolic blood pressure increase with the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase; which option is correct?\nOptions: A. The first systolic blood pressure increase occurs after the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase. B. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease, urine output decrease, and white blood cell count increase. C. The first systolic blood pressure increase occurs before the first white blood cell count increase, but after the first diastolic blood pressure decrease and urine output decrease. D. The first systolic blood pressure increase occurs before the first urine output decrease and white blood cell count increase, but after the first diastolic blood pressure decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first urine output decrease and white blood cell count increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000353","anchor_time":48} {"id":"CVR_multivariable_iv_000353_w24_0","question":"In the first 24 hours, which option puts the first changes in systolic blood pressure, urine output, respiratory rate, and white blood cell count in the right order?\nOptions: A. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally white blood cell count increase. B. systolic blood pressure increase occurs first, followed by respiratory rate decrease, then urine output decrease, and finally white blood cell count increase. C. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then white blood cell count increase, and finally urine output decrease. D. respiratory rate decrease occurs first, followed by urine output decrease, then systolic blood pressure increase, and finally white blood cell count increase.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally white blood cell count increase.","episode_id":"iv_000353","anchor_time":24} {"id":"CVR_multivariable_iv_000085_w48_0","question":"In the first 48 hours, how does the timing of the first systolic blood pressure increase compare with the first respiratory rate increase, white blood cell count decrease, and temperature increase?\nOptions: A. The first systolic blood pressure increase occurs before the first respiratory rate increase, white blood cell count decrease, and temperature increase. B. The first systolic blood pressure increase occurs before the first respiratory rate increase and temperature increase, but after the first white blood cell count decrease. C. The first systolic blood pressure increase occurs after the first respiratory rate increase, white blood cell count decrease, and temperature increase. D. The first systolic blood pressure increase occurs before the first white blood cell count decrease and temperature increase, but after the first respiratory rate increase.","answer":"A","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, white blood cell count decrease, and temperature increase.","episode_id":"iv_000085","anchor_time":48} {"id":"CVR_multivariable_iv_000085_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first heart rate increase, MAP increase, and respiratory rate increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate increase, MAP increase, and respiratory rate increase. B. The first SpO2 increase occurs before the first MAP increase and respiratory rate increase, but after the first heart rate increase. C. The first SpO2 increase occurs before the first respiratory rate increase, but after the first heart rate increase and MAP increase. D. The first SpO2 increase occurs after the first heart rate increase, MAP increase, and respiratory rate increase.","answer":"B","answer_text":"The first SpO2 increase occurs before the first MAP increase and respiratory rate increase, but after the first heart rate increase.","episode_id":"iv_000085","anchor_time":48} {"id":"CVR_multivariable_iv_000323_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving SpO2, white blood cell count, lactate, temperature, and urine output?\nOptions: A. SpO2 decrease occurs first, followed by temperature decrease, then urine output decrease, then lactate increase, and finally white blood cell count decrease. B. temperature decrease occurs first, followed by SpO2 decrease, then urine output decrease, then lactate increase, and finally white blood cell count decrease. C. temperature decrease occurs first, followed by urine output decrease, then SpO2 decrease, then lactate increase, and finally white blood cell count decrease. D. temperature decrease occurs first, followed by SpO2 decrease, then lactate increase, then urine output decrease, and finally white blood cell count decrease.","answer":"B","answer_text":"temperature decrease occurs first, followed by SpO2 decrease, then urine output decrease, then lactate increase, and finally white blood cell count decrease.","episode_id":"iv_000323","anchor_time":48} {"id":"CVR_multivariable_iv_000323_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP increase relative to the first heart rate increase, white blood cell count increase, and lactate decrease?\nOptions: A. The first MAP increase occurs before the first heart rate increase, white blood cell count increase, and lactate decrease. B. The first MAP increase occurs after the first heart rate increase, white blood cell count increase, and lactate decrease. C. The first MAP increase occurs before the first heart rate increase and lactate decrease, but after the first white blood cell count increase. D. The first MAP increase occurs before the first lactate decrease, but after the first heart rate increase and white blood cell count increase.","answer":"D","answer_text":"The first MAP increase occurs before the first lactate decrease, but after the first heart rate increase and white blood cell count increase.","episode_id":"iv_000323","anchor_time":48} {"id":"CVR_multivariable_iv_000153_w48_2","question":"For the initial 48 hours, which option best matches the order in which temperature, diastolic blood pressure, creatinine, lactate, and urine output first changed?\nOptions: A. diastolic blood pressure increase occurs first, followed by urine output increase, then temperature increase, then creatinine decrease, and finally lactate decrease. B. urine output increase occurs first, followed by diastolic blood pressure increase, then creatinine decrease, then temperature increase, and finally lactate decrease. C. diastolic blood pressure increase occurs first, followed by urine output increase, then creatinine decrease, then temperature increase, and finally lactate decrease. D. diastolic blood pressure increase occurs first, followed by creatinine decrease, then urine output increase, then temperature increase, and finally lactate decrease.","answer":"C","answer_text":"diastolic blood pressure increase occurs first, followed by urine output increase, then creatinine decrease, then temperature increase, and finally lactate decrease.","episode_id":"iv_000153","anchor_time":48} {"id":"CVR_multivariable_iv_000313_w48_1","question":"In the first 48 hours, how does the timing of the first heart rate decrease compare with the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first diastolic blood pressure decrease and systolic blood pressure decrease, but after the first MAP increase. B. The first heart rate decrease occurs after the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease. C. The first heart rate decrease occurs before the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease. D. The first heart rate decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease.","episode_id":"iv_000313","anchor_time":48} {"id":"CVR_multivariable_iv_000313_w48_2","question":"For the initial 48 hours, was the first respiratory rate increase earlier than the first heart rate decrease, diastolic blood pressure increase, and MAP decrease?\nOptions: A. The first respiratory rate increase occurs after the first heart rate decrease, diastolic blood pressure increase, and MAP decrease. B. The first respiratory rate increase occurs before the first MAP decrease, but after the first heart rate decrease and diastolic blood pressure increase. C. The first respiratory rate increase occurs before the first heart rate decrease, diastolic blood pressure increase, and MAP decrease. D. The first respiratory rate increase occurs before the first diastolic blood pressure increase and MAP decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure increase and MAP decrease, but after the first heart rate decrease.","episode_id":"iv_000313","anchor_time":48} {"id":"CVR_multivariable_iv_000392_w48_0","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first heart rate increase, MAP decrease, and urine output decrease?\nOptions: A. The first respiratory rate increase occurs before the first heart rate increase, MAP decrease, and urine output decrease. B. The first respiratory rate increase occurs after the first heart rate increase, MAP decrease, and urine output decrease. C. The first respiratory rate increase occurs before the first urine output decrease, but after the first heart rate increase and MAP decrease. D. The first respiratory rate increase occurs before the first MAP decrease and urine output decrease, but after the first heart rate increase.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first MAP decrease and urine output decrease, but after the first heart rate increase.","episode_id":"iv_000392","anchor_time":48} {"id":"CVR_multivariable_iv_000392_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in respiratory rate, urine output, MAP, and SpO2?\nOptions: A. SpO2 increase occurs first, followed by respiratory rate increase, then MAP decrease, and finally urine output decrease. B. SpO2 increase occurs first, followed by respiratory rate increase, then urine output decrease, and finally MAP decrease. C. SpO2 increase occurs first, followed by MAP decrease, then respiratory rate increase, and finally urine output decrease. D. respiratory rate increase occurs first, followed by SpO2 increase, then MAP decrease, and finally urine output decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by respiratory rate increase, then MAP decrease, and finally urine output decrease.","episode_id":"iv_000392","anchor_time":24} {"id":"CVR_multivariable_iv_000392_w48_2","question":"In the first 48 hours, how does the timing of the first systolic blood pressure increase compare with the first respiratory rate increase, diastolic blood pressure decrease, and urine output decrease?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease and urine output decrease, but after the first respiratory rate increase. B. The first systolic blood pressure increase occurs after the first respiratory rate increase, diastolic blood pressure decrease, and urine output decrease. C. The first systolic blood pressure increase occurs before the first respiratory rate increase, diastolic blood pressure decrease, and urine output decrease. D. The first systolic blood pressure increase occurs before the first respiratory rate increase and urine output decrease, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, diastolic blood pressure decrease, and urine output decrease.","episode_id":"iv_000392","anchor_time":48} {"id":"CVR_multivariable_iv_000069_w48_0","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first heart rate increase, urine output decrease, and diastolic blood pressure increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate increase, urine output decrease, and diastolic blood pressure increase. B. The first SpO2 decrease occurs before the first urine output decrease and diastolic blood pressure increase, but after the first heart rate increase. C. The first SpO2 decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first urine output decrease. D. The first SpO2 decrease occurs after the first heart rate increase, urine output decrease, and diastolic blood pressure increase.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first heart rate increase, urine output decrease, and diastolic blood pressure increase.","episode_id":"iv_000069","anchor_time":48} {"id":"CVR_multivariable_iv_000069_w48_1","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first MAP increase, heart rate increase, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs after the first MAP increase, heart rate increase, and urine output decrease. B. The first SpO2 decrease occurs before the first heart rate increase and urine output decrease, but after the first MAP increase. C. The first SpO2 decrease occurs before the first urine output decrease, but after the first MAP increase and heart rate increase. D. The first SpO2 decrease occurs before the first MAP increase, heart rate increase, and urine output decrease.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first heart rate increase and urine output decrease, but after the first MAP increase.","episode_id":"iv_000069","anchor_time":48} {"id":"CVR_multivariable_iv_000106_w48_1","question":"Across the first 48 hours, does the first MAP increase happen before the first SpO2 increase, respiratory rate increase, and urine output decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 increase and urine output decrease, but after the first respiratory rate increase. B. The first MAP increase occurs after the first SpO2 increase, respiratory rate increase, and urine output decrease. C. The first MAP increase occurs before the first SpO2 increase, respiratory rate increase, and urine output decrease. D. The first MAP increase occurs before the first urine output decrease, but after the first SpO2 increase and respiratory rate increase.","answer":"D","answer_text":"The first MAP increase occurs before the first urine output decrease, but after the first SpO2 increase and respiratory rate increase.","episode_id":"iv_000106","anchor_time":48} {"id":"CVR_multivariable_iv_000348_w48_0","question":"For the initial 48 hours, which option best matches the order in which white blood cell count, lactate, urine output, creatinine, and diastolic blood pressure first changed?\nOptions: A. lactate decrease occurs first, followed by diastolic blood pressure decrease, then urine output increase, then white blood cell count decrease, and finally creatinine decrease. B. diastolic blood pressure decrease occurs first, followed by lactate decrease, then white blood cell count decrease, then urine output increase, and finally creatinine decrease. C. diastolic blood pressure decrease occurs first, followed by lactate decrease, then urine output increase, then white blood cell count decrease, and finally creatinine decrease. D. diastolic blood pressure decrease occurs first, followed by urine output increase, then lactate decrease, then white blood cell count decrease, and finally creatinine decrease.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by lactate decrease, then urine output increase, then white blood cell count decrease, and finally creatinine decrease.","episode_id":"iv_000348","anchor_time":48} {"id":"CVR_multivariable_iv_000348_w48_2","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first heart rate increase, urine output decrease, and MAP increase?\nOptions: A. The first SpO2 decrease occurs before the first MAP increase, but after the first heart rate increase and urine output decrease. B. The first SpO2 decrease occurs before the first urine output decrease and MAP increase, but after the first heart rate increase. C. The first SpO2 decrease occurs after the first heart rate increase, urine output decrease, and MAP increase. D. The first SpO2 decrease occurs before the first heart rate increase, urine output decrease, and MAP increase.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first urine output decrease and MAP increase, but after the first heart rate increase.","episode_id":"iv_000348","anchor_time":48} {"id":"CVR_multivariable_iv_000428_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase. B. The first heart rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first respiratory rate decrease. C. The first heart rate decrease occurs after the first respiratory rate decrease, diastolic blood pressure decrease, and MAP increase. D. The first heart rate decrease occurs before the first MAP increase, but after the first respiratory rate decrease and diastolic blood pressure decrease.","answer":"B","answer_text":"The first heart rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first respiratory rate decrease.","episode_id":"iv_000428","anchor_time":48} {"id":"CVR_multivariable_iv_000158_w48_1","question":"In the first 48 hours, how does the timing of the first heart rate decrease compare with the first respiratory rate increase, temperature increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first temperature increase and systolic blood pressure decrease, but after the first respiratory rate increase. B. The first heart rate decrease occurs before the first respiratory rate increase and systolic blood pressure decrease, but after the first temperature increase. C. The first heart rate decrease occurs before the first respiratory rate increase, temperature increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs after the first respiratory rate increase, temperature increase, and systolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first respiratory rate increase, temperature increase, and systolic blood pressure decrease.","episode_id":"iv_000158","anchor_time":48} {"id":"CVR_multivariable_iv_000158_w48_2","question":"In the opening 48 hours, compare the first temperature increase with the first heart rate decrease, respiratory rate increase, and systolic blood pressure decrease; which option is correct?\nOptions: A. The first temperature increase occurs before the first heart rate decrease, respiratory rate increase, and systolic blood pressure decrease. B. The first temperature increase occurs after the first heart rate decrease, respiratory rate increase, and systolic blood pressure decrease. C. The first temperature increase occurs before the first heart rate decrease and systolic blood pressure decrease, but after the first respiratory rate increase. D. The first temperature increase occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and respiratory rate increase.","answer":"D","answer_text":"The first temperature increase occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and respiratory rate increase.","episode_id":"iv_000158","anchor_time":48} {"id":"CVR_multivariable_iv_000031_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate increase falls relative to the first heart rate increase, diastolic blood pressure increase, and temperature increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate increase, diastolic blood pressure increase, and temperature increase. B. The first respiratory rate increase occurs before the first heart rate increase and temperature increase, but after the first diastolic blood pressure increase. C. The first respiratory rate increase occurs after the first heart rate increase, diastolic blood pressure increase, and temperature increase. D. The first respiratory rate increase occurs before the first diastolic blood pressure increase and temperature increase, but after the first heart rate increase.","answer":"A","answer_text":"The first respiratory rate increase occurs before the first heart rate increase, diastolic blood pressure increase, and temperature increase.","episode_id":"iv_000031","anchor_time":48} {"id":"CVR_multivariable_iv_000031_w48_2","question":"In the first 48 hours, how does the timing of the first SpO2 increase compare with the first heart rate decrease, diastolic blood pressure increase, and temperature increase?\nOptions: A. The first SpO2 increase occurs before the first temperature increase, but after the first heart rate decrease and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first diastolic blood pressure increase and temperature increase, but after the first heart rate decrease. C. The first SpO2 increase occurs after the first heart rate decrease, diastolic blood pressure increase, and temperature increase. D. The first SpO2 increase occurs before the first heart rate decrease, diastolic blood pressure increase, and temperature increase.","answer":"B","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure increase and temperature increase, but after the first heart rate decrease.","episode_id":"iv_000031","anchor_time":48} {"id":"CVR_multivariable_iv_000244_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first white blood cell count increase relative to the first respiratory rate increase, heart rate increase, and MAP increase?\nOptions: A. The first white blood cell count increase occurs before the first respiratory rate increase, heart rate increase, and MAP increase. B. The first white blood cell count increase occurs before the first MAP increase, but after the first respiratory rate increase and heart rate increase. C. The first white blood cell count increase occurs after the first respiratory rate increase, heart rate increase, and MAP increase. D. The first white blood cell count increase occurs before the first heart rate increase and MAP increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first white blood cell count increase occurs before the first heart rate increase and MAP increase, but after the first respiratory rate increase.","episode_id":"iv_000244","anchor_time":48} {"id":"CVR_multivariable_iv_000244_w48_1","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for MAP, lactate, white blood cell count, temperature, and heart rate?\nOptions: A. heart rate increase occurs first, followed by MAP increase, then temperature increase, then white blood cell count decrease, and finally lactate decrease. B. heart rate increase occurs first, followed by temperature increase, then MAP increase, then white blood cell count decrease, and finally lactate decrease. C. MAP increase occurs first, followed by heart rate increase, then temperature increase, then white blood cell count decrease, and finally lactate decrease. D. heart rate increase occurs first, followed by MAP increase, then white blood cell count decrease, then temperature increase, and finally lactate decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by MAP increase, then temperature increase, then white blood cell count decrease, and finally lactate decrease.","episode_id":"iv_000244","anchor_time":48} {"id":"CVR_multivariable_iv_000244_w48_2","question":"In the opening 48 hours, compare the first diastolic blood pressure increase with the first white blood cell count increase, SpO2 increase, and MAP increase; which option is correct?\nOptions: A. The first diastolic blood pressure increase occurs before the first SpO2 increase and MAP increase, but after the first white blood cell count increase. B. The first diastolic blood pressure increase occurs after the first white blood cell count increase, SpO2 increase, and MAP increase. C. The first diastolic blood pressure increase occurs before the first white blood cell count increase, SpO2 increase, and MAP increase. D. The first diastolic blood pressure increase occurs before the first white blood cell count increase and MAP increase, but after the first SpO2 increase.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first white blood cell count increase, SpO2 increase, and MAP increase.","episode_id":"iv_000244","anchor_time":48} {"id":"CVR_multivariable_iv_000008_w48_1","question":"Across the first 48 hours, does the first systolic blood pressure increase happen before the first respiratory rate increase, diastolic blood pressure increase, and lactate decrease?\nOptions: A. The first systolic blood pressure increase occurs before the first respiratory rate increase, diastolic blood pressure increase, and lactate decrease. B. The first systolic blood pressure increase occurs before the first lactate decrease, but after the first respiratory rate increase and diastolic blood pressure increase. C. The first systolic blood pressure increase occurs before the first respiratory rate increase and lactate decrease, but after the first diastolic blood pressure increase. D. The first systolic blood pressure increase occurs after the first respiratory rate increase, diastolic blood pressure increase, and lactate decrease.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first lactate decrease, but after the first respiratory rate increase and diastolic blood pressure increase.","episode_id":"iv_000008","anchor_time":48} {"id":"CVR_multivariable_iv_000267_w48_2","question":"In the opening 48 hours, compare the first systolic blood pressure increase with the first diastolic blood pressure increase, MAP increase, and respiratory rate decrease; which option is correct?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase and respiratory rate decrease, but after the first MAP increase. B. The first systolic blood pressure increase occurs after the first diastolic blood pressure increase, MAP increase, and respiratory rate decrease. C. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase, MAP increase, and respiratory rate decrease. D. The first systolic blood pressure increase occurs before the first respiratory rate decrease, but after the first diastolic blood pressure increase and MAP increase.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate decrease, but after the first diastolic blood pressure increase and MAP increase.","episode_id":"iv_000267","anchor_time":48} {"id":"CVR_multivariable_iv_000485_w24_0","question":"Across the first 24 hours, how did the first changes in respiratory rate, systolic blood pressure, heart rate, and urine output unfold?\nOptions: A. heart rate decrease occurs first, followed by urine output decrease, then systolic blood pressure increase, and finally respiratory rate increase. B. systolic blood pressure increase occurs first, followed by heart rate decrease, then urine output decrease, and finally respiratory rate increase. C. heart rate decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally respiratory rate increase. D. heart rate decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally urine output decrease.","answer":"C","answer_text":"heart rate decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally respiratory rate increase.","episode_id":"iv_000485","anchor_time":24} {"id":"CVR_multivariable_iv_000485_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP increase relative to the first urine output decrease, respiratory rate increase, and systolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first urine output decrease, respiratory rate increase, and systolic blood pressure decrease. B. The first MAP increase occurs before the first respiratory rate increase and systolic blood pressure decrease, but after the first urine output decrease. C. The first MAP increase occurs after the first urine output decrease, respiratory rate increase, and systolic blood pressure decrease. D. The first MAP increase occurs before the first urine output decrease and systolic blood pressure decrease, but after the first respiratory rate increase.","answer":"A","answer_text":"The first MAP increase occurs before the first urine output decrease, respiratory rate increase, and systolic blood pressure decrease.","episode_id":"iv_000485","anchor_time":48} {"id":"CVR_multivariable_iv_000485_w48_2","question":"Across the first 48 hours, does the first diastolic blood pressure increase happen before the first heart rate decrease, urine output decrease, and respiratory rate increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate decrease, urine output decrease, and respiratory rate increase. B. The first diastolic blood pressure increase occurs before the first urine output decrease and respiratory rate increase, but after the first heart rate decrease. C. The first diastolic blood pressure increase occurs after the first heart rate decrease, urine output decrease, and respiratory rate increase. D. The first diastolic blood pressure increase occurs before the first respiratory rate increase, but after the first heart rate decrease and urine output decrease.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first urine output decrease and respiratory rate increase, but after the first heart rate decrease.","episode_id":"iv_000485","anchor_time":48} {"id":"CVR_multivariable_iv_000233_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first heart rate decrease, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate decrease and MAP increase, but after the first diastolic blood pressure decrease. B. The first SpO2 increase occurs before the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. C. The first SpO2 increase occurs after the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. D. The first SpO2 increase occurs before the first MAP increase, but after the first heart rate decrease and diastolic blood pressure decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first MAP increase, but after the first heart rate decrease and diastolic blood pressure decrease.","episode_id":"iv_000233","anchor_time":48} {"id":"CVR_multivariable_iv_000261_w48_1","question":"Across the first 48 hours, does the first diastolic blood pressure decrease happen before the first heart rate decrease, respiratory rate increase, and systolic blood pressure increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate decrease, respiratory rate increase, and systolic blood pressure increase. B. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first heart rate decrease. C. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, but after the first heart rate decrease and respiratory rate increase. D. The first diastolic blood pressure decrease occurs after the first heart rate decrease, respiratory rate increase, and systolic blood pressure increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000261","anchor_time":48} {"id":"CVR_multivariable_iv_000401_w24_0","question":"For the initial 24 hours, which option best matches the order in which SpO2, urine output, heart rate, and respiratory rate first changed?\nOptions: A. heart rate increase occurs first, followed by respiratory rate decrease, then urine output increase, and finally SpO2 increase. B. heart rate increase occurs first, followed by respiratory rate decrease, then SpO2 increase, and finally urine output increase. C. heart rate increase occurs first, followed by SpO2 increase, then respiratory rate decrease, and finally urine output increase. D. respiratory rate decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally urine output increase.","answer":"B","answer_text":"heart rate increase occurs first, followed by respiratory rate decrease, then SpO2 increase, and finally urine output increase.","episode_id":"iv_000401","anchor_time":24} {"id":"CVR_multivariable_iv_000401_w48_1","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure decrease preceded the first heart rate increase, SpO2 increase, and urine output increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first urine output increase, but after the first heart rate increase and SpO2 increase. B. The first diastolic blood pressure decrease occurs before the first heart rate increase, SpO2 increase, and urine output increase. C. The first diastolic blood pressure decrease occurs after the first heart rate increase, SpO2 increase, and urine output increase. D. The first diastolic blood pressure decrease occurs before the first SpO2 increase and urine output increase, but after the first heart rate increase.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 increase and urine output increase, but after the first heart rate increase.","episode_id":"iv_000401","anchor_time":48} {"id":"CVR_multivariable_iv_000291_w48_2","question":"Looking only at the first 48 hours, did the first urine output decrease come before the first diastolic blood pressure increase, SpO2 decrease, and heart rate increase?\nOptions: A. The first urine output decrease occurs before the first diastolic blood pressure increase and heart rate increase, but after the first SpO2 decrease. B. The first urine output decrease occurs before the first heart rate increase, but after the first diastolic blood pressure increase and SpO2 decrease. C. The first urine output decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and heart rate increase. D. The first urine output decrease occurs after the first diastolic blood pressure increase, SpO2 decrease, and heart rate increase.","answer":"B","answer_text":"The first urine output decrease occurs before the first heart rate increase, but after the first diastolic blood pressure increase and SpO2 decrease.","episode_id":"iv_000291","anchor_time":48} {"id":"CVR_multivariable_iv_000198_w48_0","question":"During the first 48 hours, which option correctly describes whether the first SpO2 increase preceded the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate increase and diastolic blood pressure decrease, but after the first heart rate decrease. B. The first SpO2 increase occurs after the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease. C. The first SpO2 increase occurs before the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease. D. The first SpO2 increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease.","episode_id":"iv_000198","anchor_time":48} {"id":"CVR_multivariable_iv_000198_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving SpO2, systolic blood pressure, respiratory rate, and heart rate?\nOptions: A. heart rate increase occurs first, followed by respiratory rate decrease, then systolic blood pressure decrease, and finally SpO2 increase. B. heart rate increase occurs first, followed by respiratory rate decrease, then SpO2 increase, and finally systolic blood pressure decrease. C. heart rate increase occurs first, followed by SpO2 increase, then respiratory rate decrease, and finally systolic blood pressure decrease. D. respiratory rate decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally systolic blood pressure decrease.","answer":"B","answer_text":"heart rate increase occurs first, followed by respiratory rate decrease, then SpO2 increase, and finally systolic blood pressure decrease.","episode_id":"iv_000198","anchor_time":24} {"id":"CVR_multivariable_iv_000198_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first SpO2 increase, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase and MAP increase, but after the first diastolic blood pressure decrease. B. The first heart rate decrease occurs after the first SpO2 increase, diastolic blood pressure decrease, and MAP increase. C. The first heart rate decrease occurs before the first SpO2 increase, diastolic blood pressure decrease, and MAP increase. D. The first heart rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first SpO2 increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first SpO2 increase, diastolic blood pressure decrease, and MAP increase.","episode_id":"iv_000198","anchor_time":48} {"id":"CVR_multivariable_iv_000132_w48_1","question":"Looking only at the first 48 hours, did the first respiratory rate increase come before the first heart rate decrease, SpO2 decrease, and MAP increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate decrease and MAP increase, but after the first SpO2 decrease. B. The first respiratory rate increase occurs before the first MAP increase, but after the first heart rate decrease and SpO2 decrease. C. The first respiratory rate increase occurs after the first heart rate decrease, SpO2 decrease, and MAP increase. D. The first respiratory rate increase occurs before the first heart rate decrease, SpO2 decrease, and MAP increase.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first MAP increase, but after the first heart rate decrease and SpO2 decrease.","episode_id":"iv_000132","anchor_time":48} {"id":"CVR_multivariable_iv_000324_w48_1","question":"For the initial 48 hours, was the first respiratory rate increase earlier than the first heart rate decrease, SpO2 increase, and systolic blood pressure increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate decrease, SpO2 increase, and systolic blood pressure increase. B. The first respiratory rate increase occurs before the first systolic blood pressure increase, but after the first heart rate decrease and SpO2 increase. C. The first respiratory rate increase occurs after the first heart rate decrease, SpO2 increase, and systolic blood pressure increase. D. The first respiratory rate increase occurs before the first SpO2 increase and systolic blood pressure increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first SpO2 increase and systolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000324","anchor_time":48} {"id":"CVR_multivariable_iv_000322_w48_1","question":"For the initial 48 hours, was the first diastolic blood pressure decrease earlier than the first systolic blood pressure decrease, SpO2 decrease, and heart rate increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first systolic blood pressure decrease, SpO2 decrease, and heart rate increase. B. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and heart rate increase, but after the first systolic blood pressure decrease. C. The first diastolic blood pressure decrease occurs before the first systolic blood pressure decrease and heart rate increase, but after the first SpO2 decrease. D. The first diastolic blood pressure decrease occurs after the first systolic blood pressure decrease, SpO2 decrease, and heart rate increase.","answer":"A","answer_text":"The first diastolic blood pressure decrease occurs before the first systolic blood pressure decrease, SpO2 decrease, and heart rate increase.","episode_id":"iv_000322","anchor_time":48} {"id":"CVR_multivariable_iv_000322_w48_2","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first diastolic blood pressure decrease, urine output decrease, and heart rate increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate increase, but after the first diastolic blood pressure decrease and urine output decrease. B. The first respiratory rate increase occurs before the first urine output decrease and heart rate increase, but after the first diastolic blood pressure decrease. C. The first respiratory rate increase occurs after the first diastolic blood pressure decrease, urine output decrease, and heart rate increase. D. The first respiratory rate increase occurs before the first diastolic blood pressure decrease, urine output decrease, and heart rate increase.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first urine output decrease and heart rate increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000322","anchor_time":48} {"id":"CVR_multivariable_iv_000002_w48_0","question":"During the first 48 hours, which option correctly describes whether the first white blood cell count increase preceded the first diastolic blood pressure increase, SpO2 increase, and temperature increase?\nOptions: A. The first white blood cell count increase occurs before the first temperature increase, but after the first diastolic blood pressure increase and SpO2 increase. B. The first white blood cell count increase occurs before the first diastolic blood pressure increase, SpO2 increase, and temperature increase. C. The first white blood cell count increase occurs after the first diastolic blood pressure increase, SpO2 increase, and temperature increase. D. The first white blood cell count increase occurs before the first SpO2 increase and temperature increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first white blood cell count increase occurs before the first SpO2 increase and temperature increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000002","anchor_time":48} {"id":"CVR_multivariable_iv_000002_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in temperature, SpO2, MAP, and white blood cell count?\nOptions: A. MAP increase occurs first, followed by white blood cell count increase, then temperature increase, and finally SpO2 decrease. B. MAP increase occurs first, followed by temperature increase, then white blood cell count increase, and finally SpO2 decrease. C. white blood cell count increase occurs first, followed by MAP increase, then temperature increase, and finally SpO2 decrease. D. MAP increase occurs first, followed by white blood cell count increase, then SpO2 decrease, and finally temperature increase.","answer":"A","answer_text":"MAP increase occurs first, followed by white blood cell count increase, then temperature increase, and finally SpO2 decrease.","episode_id":"iv_000002","anchor_time":24} {"id":"CVR_multivariable_iv_000018_w48_0","question":"During the first 48 hours, which option correctly describes whether the first urine output decrease preceded the first diastolic blood pressure decrease, respiratory rate increase, and temperature increase?\nOptions: A. The first urine output decrease occurs before the first diastolic blood pressure decrease, respiratory rate increase, and temperature increase. B. The first urine output decrease occurs after the first diastolic blood pressure decrease, respiratory rate increase, and temperature increase. C. The first urine output decrease occurs before the first diastolic blood pressure decrease and temperature increase, but after the first respiratory rate increase. D. The first urine output decrease occurs before the first respiratory rate increase and temperature increase, but after the first diastolic blood pressure decrease.","answer":"A","answer_text":"The first urine output decrease occurs before the first diastolic blood pressure decrease, respiratory rate increase, and temperature increase.","episode_id":"iv_000018","anchor_time":48} {"id":"CVR_multivariable_iv_000018_w48_1","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate increase preceded the first systolic blood pressure decrease, temperature increase, and urine output increase?\nOptions: A. The first respiratory rate increase occurs after the first systolic blood pressure decrease, temperature increase, and urine output increase. B. The first respiratory rate increase occurs before the first temperature increase and urine output increase, but after the first systolic blood pressure decrease. C. The first respiratory rate increase occurs before the first systolic blood pressure decrease, temperature increase, and urine output increase. D. The first respiratory rate increase occurs before the first urine output increase, but after the first systolic blood pressure decrease and temperature increase.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first temperature increase and urine output increase, but after the first systolic blood pressure decrease.","episode_id":"iv_000018","anchor_time":48} {"id":"CVR_multivariable_iv_000018_w48_2","question":"Looking only at the first 48 hours, which sequence best captures how MAP, urine output, heart rate, temperature, and systolic blood pressure changed over time?\nOptions: A. heart rate decrease occurs first, followed by MAP decrease, then temperature decrease, then systolic blood pressure decrease, and finally urine output increase. B. heart rate decrease occurs first, followed by temperature decrease, then systolic blood pressure decrease, then MAP decrease, and finally urine output increase. C. heart rate decrease occurs first, followed by temperature decrease, then MAP decrease, then systolic blood pressure decrease, and finally urine output increase. D. temperature decrease occurs first, followed by heart rate decrease, then MAP decrease, then systolic blood pressure decrease, and finally urine output increase.","answer":"C","answer_text":"heart rate decrease occurs first, followed by temperature decrease, then MAP decrease, then systolic blood pressure decrease, and finally urine output increase.","episode_id":"iv_000018","anchor_time":48} {"id":"CVR_multivariable_iv_000488_w48_2","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure decrease compare with the first systolic blood pressure decrease, SpO2 increase, and respiratory rate decrease?\nOptions: A. The first diastolic blood pressure decrease occurs after the first systolic blood pressure decrease, SpO2 increase, and respiratory rate decrease. B. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease, but after the first systolic blood pressure decrease and SpO2 increase. C. The first diastolic blood pressure decrease occurs before the first systolic blood pressure decrease, SpO2 increase, and respiratory rate decrease. D. The first diastolic blood pressure decrease occurs before the first SpO2 increase and respiratory rate decrease, but after the first systolic blood pressure decrease.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 increase and respiratory rate decrease, but after the first systolic blood pressure decrease.","episode_id":"iv_000488","anchor_time":48} {"id":"CVR_multivariable_iv_000488_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, urine output, respiratory rate, and systolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, and finally urine output decrease. B. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, and finally respiratory rate decrease. C. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally urine output decrease. D. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, and finally urine output decrease.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, and finally urine output decrease.","episode_id":"iv_000488","anchor_time":24} {"id":"CVR_multivariable_iv_000263_w48_2","question":"In the opening 48 hours, compare the first MAP decrease with the first heart rate increase, SpO2 decrease, and systolic blood pressure increase; which option is correct?\nOptions: A. The first MAP decrease occurs after the first heart rate increase, SpO2 decrease, and systolic blood pressure increase. B. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first heart rate increase and SpO2 decrease. C. The first MAP decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first SpO2 decrease. D. The first MAP decrease occurs before the first heart rate increase, SpO2 decrease, and systolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first systolic blood pressure increase, but after the first heart rate increase and SpO2 decrease.","episode_id":"iv_000263","anchor_time":48} {"id":"CVR_multivariable_iv_000076_w48_0","question":"Across the first 48 hours, does the first diastolic blood pressure decrease happen before the first SpO2 increase, urine output increase, and temperature decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 increase and temperature decrease, but after the first urine output increase. B. The first diastolic blood pressure decrease occurs before the first SpO2 increase, urine output increase, and temperature decrease. C. The first diastolic blood pressure decrease occurs after the first SpO2 increase, urine output increase, and temperature decrease. D. The first diastolic blood pressure decrease occurs before the first temperature decrease, but after the first SpO2 increase and urine output increase.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first temperature decrease, but after the first SpO2 increase and urine output increase.","episode_id":"iv_000076","anchor_time":48} {"id":"CVR_multivariable_iv_000076_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving systolic blood pressure, urine output, diastolic blood pressure, and respiratory rate?\nOptions: A. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then urine output increase, and finally diastolic blood pressure decrease. B. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure decrease, and finally urine output increase. C. systolic blood pressure decrease occurs first, followed by respiratory rate decrease, then urine output increase, and finally diastolic blood pressure decrease. D. respiratory rate decrease occurs first, followed by urine output increase, then systolic blood pressure decrease, and finally diastolic blood pressure decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then urine output increase, and finally diastolic blood pressure decrease.","episode_id":"iv_000076","anchor_time":24} {"id":"CVR_multivariable_iv_000076_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in heart rate, white blood cell count, temperature, creatinine, and lactate?\nOptions: A. temperature increase occurs first, followed by white blood cell count decrease, then heart rate decrease, then lactate decrease, and finally creatinine decrease. B. temperature increase occurs first, followed by heart rate decrease, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease. C. temperature increase occurs first, followed by heart rate decrease, then lactate decrease, then white blood cell count decrease, and finally creatinine decrease. D. heart rate decrease occurs first, followed by temperature increase, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease.","answer":"B","answer_text":"temperature increase occurs first, followed by heart rate decrease, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease.","episode_id":"iv_000076","anchor_time":48} {"id":"CVR_multivariable_iv_000253_w48_1","question":"Across the first 48 hours, does the first SpO2 decrease happen before the first heart rate decrease, respiratory rate increase, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs before the first urine output decrease, but after the first heart rate decrease and respiratory rate increase. B. The first SpO2 decrease occurs before the first respiratory rate increase and urine output decrease, but after the first heart rate decrease. C. The first SpO2 decrease occurs before the first heart rate decrease, respiratory rate increase, and urine output decrease. D. The first SpO2 decrease occurs after the first heart rate decrease, respiratory rate increase, and urine output decrease.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first respiratory rate increase and urine output decrease, but after the first heart rate decrease.","episode_id":"iv_000253","anchor_time":48} {"id":"CVR_multivariable_iv_000253_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving respiratory rate, urine output, MAP, and SpO2?\nOptions: A. MAP decrease occurs first, followed by SpO2 decrease, then urine output decrease, and finally respiratory rate increase. B. MAP decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, and finally urine output decrease. C. MAP decrease occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally urine output decrease. D. SpO2 decrease occurs first, followed by MAP decrease, then respiratory rate increase, and finally urine output decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally urine output decrease.","episode_id":"iv_000253","anchor_time":24} {"id":"CVR_multivariable_iv_000314_w48_2","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first diastolic blood pressure increase, MAP decrease, and urine output increase?\nOptions: A. The first respiratory rate increase occurs after the first diastolic blood pressure increase, MAP decrease, and urine output increase. B. The first respiratory rate increase occurs before the first diastolic blood pressure increase, MAP decrease, and urine output increase. C. The first respiratory rate increase occurs before the first urine output increase, but after the first diastolic blood pressure increase and MAP decrease. D. The first respiratory rate increase occurs before the first MAP decrease and urine output increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first MAP decrease and urine output increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000314","anchor_time":48} {"id":"CVR_multivariable_iv_000471_w48_0","question":"In the opening 48 hours, compare the first SpO2 decrease with the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease; which option is correct?\nOptions: A. The first SpO2 decrease occurs before the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease. B. The first SpO2 decrease occurs before the first heart rate decrease and systolic blood pressure decrease, but after the first respiratory rate decrease. C. The first SpO2 decrease occurs after the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease. D. The first SpO2 decrease occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and respiratory rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and respiratory rate decrease.","episode_id":"iv_000471","anchor_time":48} {"id":"CVR_multivariable_iv_000471_w48_1","question":"For the initial 48 hours, which option best matches the order in which temperature, systolic blood pressure, lactate, urine output, and diastolic blood pressure first changed?\nOptions: A. diastolic blood pressure increase occurs first, followed by systolic blood pressure increase, then temperature decrease, then urine output decrease, and finally lactate increase. B. diastolic blood pressure increase occurs first, followed by temperature decrease, then systolic blood pressure increase, then urine output decrease, and finally lactate increase. C. diastolic blood pressure increase occurs first, followed by systolic blood pressure increase, then urine output decrease, then temperature decrease, and finally lactate increase. D. systolic blood pressure increase occurs first, followed by diastolic blood pressure increase, then temperature decrease, then urine output decrease, and finally lactate increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by systolic blood pressure increase, then temperature decrease, then urine output decrease, and finally lactate increase.","episode_id":"iv_000471","anchor_time":48} {"id":"CVR_multivariable_iv_000143_w48_1","question":"For the initial 48 hours, was the first heart rate decrease earlier than the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first respiratory rate increase. B. The first heart rate decrease occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate increase. C. The first heart rate decrease occurs before the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs after the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease.","answer":"B","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate increase.","episode_id":"iv_000143","anchor_time":48} {"id":"CVR_multivariable_iv_000449_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving urine output, SpO2, systolic blood pressure, temperature, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then SpO2 decrease, then temperature decrease, and finally urine output decrease. B. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, then temperature decrease, and finally urine output decrease. C. systolic blood pressure increase occurs first, followed by SpO2 decrease, then diastolic blood pressure decrease, then temperature decrease, and finally urine output decrease. D. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then temperature decrease, then SpO2 decrease, and finally urine output decrease.","answer":"B","answer_text":"systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, then temperature decrease, and finally urine output decrease.","episode_id":"iv_000449","anchor_time":48} {"id":"CVR_multivariable_iv_000449_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure increase relative to the first heart rate decrease, SpO2 decrease, and respiratory rate increase?\nOptions: A. The first diastolic blood pressure increase occurs after the first heart rate decrease, SpO2 decrease, and respiratory rate increase. B. The first diastolic blood pressure increase occurs before the first heart rate decrease and respiratory rate increase, but after the first SpO2 decrease. C. The first diastolic blood pressure increase occurs before the first heart rate decrease, SpO2 decrease, and respiratory rate increase. D. The first diastolic blood pressure increase occurs before the first SpO2 decrease and respiratory rate increase, but after the first heart rate decrease.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate decrease, SpO2 decrease, and respiratory rate increase.","episode_id":"iv_000449","anchor_time":48} {"id":"CVR_multivariable_iv_000449_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first diastolic blood pressure increase, heart rate decrease, and SpO2 decrease?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 decrease, but after the first diastolic blood pressure increase and heart rate decrease. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, heart rate decrease, and SpO2 decrease. C. The first respiratory rate decrease occurs after the first diastolic blood pressure increase, heart rate decrease, and SpO2 decrease. D. The first respiratory rate decrease occurs before the first heart rate decrease and SpO2 decrease, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first heart rate decrease and SpO2 decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000449","anchor_time":48} {"id":"CVR_multivariable_iv_000066_w48_2","question":"In the opening 48 hours, compare the first diastolic blood pressure decrease with the first SpO2 decrease, MAP decrease, and systolic blood pressure increase; which option is correct?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and systolic blood pressure increase, but after the first MAP decrease. B. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, but after the first SpO2 decrease and MAP decrease. C. The first diastolic blood pressure decrease occurs before the first SpO2 decrease, MAP decrease, and systolic blood pressure increase. D. The first diastolic blood pressure decrease occurs after the first SpO2 decrease, MAP decrease, and systolic blood pressure increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, but after the first SpO2 decrease and MAP decrease.","episode_id":"iv_000066","anchor_time":48} {"id":"CVR_multivariable_iv_000179_w48_0","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase. B. The first SpO2 decrease occurs before the first respiratory rate increase, but after the first heart rate increase and diastolic blood pressure increase. C. The first SpO2 decrease occurs after the first heart rate increase, diastolic blood pressure increase, and respiratory rate increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate increase.","episode_id":"iv_000179","anchor_time":48} {"id":"CVR_multivariable_iv_000133_w48_1","question":"In the opening 48 hours, compare the first systolic blood pressure increase with the first heart rate decrease, MAP increase, and diastolic blood pressure increase; which option is correct?\nOptions: A. The first systolic blood pressure increase occurs before the first heart rate decrease and diastolic blood pressure increase, but after the first MAP increase. B. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and MAP increase. C. The first systolic blood pressure increase occurs before the first heart rate decrease, MAP increase, and diastolic blood pressure increase. D. The first systolic blood pressure increase occurs after the first heart rate decrease, MAP increase, and diastolic blood pressure increase.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and MAP increase.","episode_id":"iv_000133","anchor_time":48} {"id":"CVR_multivariable_iv_000133_w24_0","question":"In the first 24 hours, which option puts the first changes in respiratory rate, SpO2, diastolic blood pressure, and MAP in the right order?\nOptions: A. SpO2 decrease occurs first, followed by respiratory rate increase, then MAP increase, and finally diastolic blood pressure increase. B. MAP increase occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally diastolic blood pressure increase. C. SpO2 decrease occurs first, followed by MAP increase, then respiratory rate increase, and finally diastolic blood pressure increase. D. SpO2 decrease occurs first, followed by MAP increase, then diastolic blood pressure increase, and finally respiratory rate increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by MAP increase, then respiratory rate increase, and finally diastolic blood pressure increase.","episode_id":"iv_000133","anchor_time":24} {"id":"CVR_multivariable_iv_000406_w48_0","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for temperature, heart rate, creatinine, systolic blood pressure, and diastolic blood pressure?\nOptions: A. heart rate decrease occurs first, followed by systolic blood pressure increase, then temperature decrease, then diastolic blood pressure decrease, and finally creatinine decrease. B. systolic blood pressure increase occurs first, followed by heart rate decrease, then diastolic blood pressure decrease, then temperature decrease, and finally creatinine decrease. C. heart rate decrease occurs first, followed by systolic blood pressure increase, then diastolic blood pressure decrease, then temperature decrease, and finally creatinine decrease. D. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, then temperature decrease, and finally creatinine decrease.","answer":"C","answer_text":"heart rate decrease occurs first, followed by systolic blood pressure increase, then diastolic blood pressure decrease, then temperature decrease, and finally creatinine decrease.","episode_id":"iv_000406","anchor_time":48} {"id":"CVR_multivariable_iv_000406_w48_2","question":"Across the first 48 hours, does the first heart rate increase happen before the first temperature increase, lactate decrease, and SpO2 decrease?\nOptions: A. The first heart rate increase occurs before the first temperature increase and SpO2 decrease, but after the first lactate decrease. B. The first heart rate increase occurs before the first SpO2 decrease, but after the first temperature increase and lactate decrease. C. The first heart rate increase occurs before the first temperature increase, lactate decrease, and SpO2 decrease. D. The first heart rate increase occurs after the first temperature increase, lactate decrease, and SpO2 decrease.","answer":"B","answer_text":"The first heart rate increase occurs before the first SpO2 decrease, but after the first temperature increase and lactate decrease.","episode_id":"iv_000406","anchor_time":48} {"id":"CVR_multivariable_iv_000280_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate decrease falls relative to the first diastolic blood pressure decrease, heart rate decrease, and MAP increase?\nOptions: A. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, heart rate decrease, and MAP increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first heart rate decrease. C. The first respiratory rate decrease occurs after the first diastolic blood pressure decrease, heart rate decrease, and MAP increase. D. The first respiratory rate decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate decrease.","episode_id":"iv_000280","anchor_time":48} {"id":"CVR_multivariable_iv_000280_w48_1","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for MAP, respiratory rate, urine output, temperature, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by respiratory rate decrease, then MAP increase, then temperature increase, and finally urine output increase. B. heart rate decrease occurs first, followed by respiratory rate decrease, then temperature increase, then MAP increase, and finally urine output increase. C. heart rate decrease occurs first, followed by MAP increase, then respiratory rate decrease, then temperature increase, and finally urine output increase. D. respiratory rate decrease occurs first, followed by heart rate decrease, then MAP increase, then temperature increase, and finally urine output increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by respiratory rate decrease, then MAP increase, then temperature increase, and finally urine output increase.","episode_id":"iv_000280","anchor_time":48} {"id":"CVR_multivariable_iv_000280_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in SpO2, diastolic blood pressure, systolic blood pressure, and heart rate?\nOptions: A. heart rate increase occurs first, followed by systolic blood pressure increase, then diastolic blood pressure decrease, and finally SpO2 decrease. B. heart rate increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, and finally SpO2 decrease. C. diastolic blood pressure decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally SpO2 decrease. D. heart rate increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, and finally systolic blood pressure increase.","answer":"B","answer_text":"heart rate increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, and finally SpO2 decrease.","episode_id":"iv_000280","anchor_time":24} {"id":"CVR_multivariable_iv_000269_w24_0","question":"In the first 24 hours, which option puts the first changes in diastolic blood pressure, heart rate, MAP, and SpO2 in the right order?\nOptions: A. heart rate increase occurs first, followed by SpO2 increase, then MAP decrease, and finally diastolic blood pressure increase. B. SpO2 increase occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally MAP decrease. C. heart rate increase occurs first, followed by SpO2 increase, then diastolic blood pressure increase, and finally MAP decrease. D. heart rate increase occurs first, followed by diastolic blood pressure increase, then SpO2 increase, and finally MAP decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by SpO2 increase, then diastolic blood pressure increase, and finally MAP decrease.","episode_id":"iv_000269","anchor_time":24} {"id":"CVR_multivariable_iv_000466_w48_1","question":"In the opening 48 hours, compare the first respiratory rate increase with the first SpO2 decrease, heart rate increase, and temperature decrease; which option is correct?\nOptions: A. The first respiratory rate increase occurs before the first heart rate increase and temperature decrease, but after the first SpO2 decrease. B. The first respiratory rate increase occurs after the first SpO2 decrease, heart rate increase, and temperature decrease. C. The first respiratory rate increase occurs before the first SpO2 decrease, heart rate increase, and temperature decrease. D. The first respiratory rate increase occurs before the first SpO2 decrease and temperature decrease, but after the first heart rate increase.","answer":"C","answer_text":"The first respiratory rate increase occurs before the first SpO2 decrease, heart rate increase, and temperature decrease.","episode_id":"iv_000466","anchor_time":48} {"id":"CVR_multivariable_iv_000466_w48_2","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first SpO2 decrease, respiratory rate decrease, and MAP decrease?\nOptions: A. The first heart rate decrease occurs after the first SpO2 decrease, respiratory rate decrease, and MAP decrease. B. The first heart rate decrease occurs before the first SpO2 decrease and MAP decrease, but after the first respiratory rate decrease. C. The first heart rate decrease occurs before the first SpO2 decrease, respiratory rate decrease, and MAP decrease. D. The first heart rate decrease occurs before the first MAP decrease, but after the first SpO2 decrease and respiratory rate decrease.","answer":"D","answer_text":"The first heart rate decrease occurs before the first MAP decrease, but after the first SpO2 decrease and respiratory rate decrease.","episode_id":"iv_000466","anchor_time":48} {"id":"CVR_multivariable_iv_000208_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving urine output, heart rate, creatinine, SpO2, and temperature?\nOptions: A. urine output increase occurs first, followed by SpO2 decrease, then heart rate increase, then temperature increase, and finally creatinine decrease. B. SpO2 decrease occurs first, followed by heart rate increase, then urine output increase, then temperature increase, and finally creatinine decrease. C. SpO2 decrease occurs first, followed by urine output increase, then heart rate increase, then temperature increase, and finally creatinine decrease. D. SpO2 decrease occurs first, followed by urine output increase, then temperature increase, then heart rate increase, and finally creatinine decrease.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by urine output increase, then heart rate increase, then temperature increase, and finally creatinine decrease.","episode_id":"iv_000208","anchor_time":48} {"id":"CVR_multivariable_iv_000208_w48_2","question":"Across the first 48 hours, does the first heart rate decrease happen before the first respiratory rate decrease, MAP increase, and white blood cell count increase?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate decrease and white blood cell count increase, but after the first MAP increase. B. The first heart rate decrease occurs before the first white blood cell count increase, but after the first respiratory rate decrease and MAP increase. C. The first heart rate decrease occurs before the first respiratory rate decrease, MAP increase, and white blood cell count increase. D. The first heart rate decrease occurs after the first respiratory rate decrease, MAP increase, and white blood cell count increase.","answer":"B","answer_text":"The first heart rate decrease occurs before the first white blood cell count increase, but after the first respiratory rate decrease and MAP increase.","episode_id":"iv_000208","anchor_time":48} {"id":"CVR_multivariable_iv_000145_w48_0","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first heart rate decrease, MAP increase, and urine output increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate decrease, MAP increase, and urine output increase. B. The first SpO2 decrease occurs before the first heart rate decrease and urine output increase, but after the first MAP increase. C. The first SpO2 decrease occurs after the first heart rate decrease, MAP increase, and urine output increase. D. The first SpO2 decrease occurs before the first urine output increase, but after the first heart rate decrease and MAP increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first urine output increase, but after the first heart rate decrease and MAP increase.","episode_id":"iv_000145","anchor_time":48} {"id":"CVR_multivariable_iv_000145_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how SpO2, systolic blood pressure, heart rate, and temperature changed over time?\nOptions: A. SpO2 increase occurs first, followed by systolic blood pressure increase, then temperature increase, and finally heart rate increase. B. SpO2 increase occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally temperature increase. C. SpO2 increase occurs first, followed by temperature increase, then systolic blood pressure increase, and finally heart rate increase. D. systolic blood pressure increase occurs first, followed by SpO2 increase, then temperature increase, and finally heart rate increase.","answer":"A","answer_text":"SpO2 increase occurs first, followed by systolic blood pressure increase, then temperature increase, and finally heart rate increase.","episode_id":"iv_000145","anchor_time":24} {"id":"CVR_multivariable_iv_000145_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in lactate, creatinine, white blood cell count, urine output, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by creatinine decrease, then lactate decrease, then urine output decrease, and finally white blood cell count decrease. B. diastolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output decrease, then lactate decrease, and finally white blood cell count decrease. C. diastolic blood pressure decrease occurs first, followed by urine output decrease, then creatinine decrease, then lactate decrease, and finally white blood cell count decrease. D. creatinine decrease occurs first, followed by diastolic blood pressure decrease, then urine output decrease, then lactate decrease, and finally white blood cell count decrease.","answer":"B","answer_text":"diastolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output decrease, then lactate decrease, and finally white blood cell count decrease.","episode_id":"iv_000145","anchor_time":48} {"id":"CVR_multivariable_iv_000432_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for MAP, respiratory rate, SpO2, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by SpO2 decrease, then MAP increase, and finally respiratory rate decrease. B. SpO2 decrease occurs first, followed by MAP increase, then heart rate decrease, and finally respiratory rate decrease. C. SpO2 decrease occurs first, followed by heart rate decrease, then MAP increase, and finally respiratory rate decrease. D. SpO2 decrease occurs first, followed by heart rate decrease, then respiratory rate decrease, and finally MAP increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by heart rate decrease, then MAP increase, and finally respiratory rate decrease.","episode_id":"iv_000432","anchor_time":24} {"id":"CVR_multivariable_iv_000277_w48_1","question":"In the first 48 hours, how does the timing of the first respiratory rate decrease compare with the first MAP increase, heart rate decrease, and SpO2 increase?\nOptions: A. The first respiratory rate decrease occurs before the first heart rate decrease and SpO2 increase, but after the first MAP increase. B. The first respiratory rate decrease occurs after the first MAP increase, heart rate decrease, and SpO2 increase. C. The first respiratory rate decrease occurs before the first MAP increase, heart rate decrease, and SpO2 increase. D. The first respiratory rate decrease occurs before the first MAP increase and SpO2 increase, but after the first heart rate decrease.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first MAP increase, heart rate decrease, and SpO2 increase.","episode_id":"iv_000277","anchor_time":48} {"id":"CVR_multivariable_iv_000277_w48_2","question":"In the opening 48 hours, compare the first heart rate decrease with the first diastolic blood pressure increase, white blood cell count increase, and SpO2 increase; which option is correct?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase, but after the first diastolic blood pressure increase and white blood cell count increase. B. The first heart rate decrease occurs before the first diastolic blood pressure increase, white blood cell count increase, and SpO2 increase. C. The first heart rate decrease occurs after the first diastolic blood pressure increase, white blood cell count increase, and SpO2 increase. D. The first heart rate decrease occurs before the first white blood cell count increase and SpO2 increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first white blood cell count increase and SpO2 increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000277","anchor_time":48} {"id":"CVR_multivariable_iv_000341_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, MAP, urine output, and SpO2?\nOptions: A. diastolic blood pressure decrease occurs first, followed by MAP increase, then SpO2 increase, and finally urine output increase. B. MAP increase occurs first, followed by diastolic blood pressure decrease, then urine output increase, and finally SpO2 increase. C. MAP increase occurs first, followed by diastolic blood pressure decrease, then SpO2 increase, and finally urine output increase. D. MAP increase occurs first, followed by SpO2 increase, then diastolic blood pressure decrease, and finally urine output increase.","answer":"C","answer_text":"MAP increase occurs first, followed by diastolic blood pressure decrease, then SpO2 increase, and finally urine output increase.","episode_id":"iv_000341","anchor_time":24} {"id":"CVR_multivariable_iv_000341_w48_2","question":"During the first 48 hours, which option correctly describes whether the first MAP decrease preceded the first diastolic blood pressure increase, SpO2 increase, and urine output increase?\nOptions: A. The first MAP decrease occurs after the first diastolic blood pressure increase, SpO2 increase, and urine output increase. B. The first MAP decrease occurs before the first SpO2 increase and urine output increase, but after the first diastolic blood pressure increase. C. The first MAP decrease occurs before the first diastolic blood pressure increase, SpO2 increase, and urine output increase. D. The first MAP decrease occurs before the first urine output increase, but after the first diastolic blood pressure increase and SpO2 increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first SpO2 increase and urine output increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000341","anchor_time":48} {"id":"CVR_multivariable_iv_000465_w48_0","question":"Across the first 48 hours, does the first respiratory rate decrease happen before the first heart rate increase, MAP decrease, and systolic blood pressure decrease?\nOptions: A. The first respiratory rate decrease occurs after the first heart rate increase, MAP decrease, and systolic blood pressure decrease. B. The first respiratory rate decrease occurs before the first heart rate increase, MAP decrease, and systolic blood pressure decrease. C. The first respiratory rate decrease occurs before the first heart rate increase and systolic blood pressure decrease, but after the first MAP decrease. D. The first respiratory rate decrease occurs before the first systolic blood pressure decrease, but after the first heart rate increase and MAP decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first systolic blood pressure decrease, but after the first heart rate increase and MAP decrease.","episode_id":"iv_000465","anchor_time":48} {"id":"CVR_multivariable_iv_000317_w48_1","question":"Across the first 48 hours, does the first heart rate decrease happen before the first respiratory rate decrease, systolic blood pressure decrease, and MAP increase?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate decrease and MAP increase, but after the first systolic blood pressure decrease. B. The first heart rate decrease occurs before the first MAP increase, but after the first respiratory rate decrease and systolic blood pressure decrease. C. The first heart rate decrease occurs after the first respiratory rate decrease, systolic blood pressure decrease, and MAP increase. D. The first heart rate decrease occurs before the first respiratory rate decrease, systolic blood pressure decrease, and MAP increase.","answer":"B","answer_text":"The first heart rate decrease occurs before the first MAP increase, but after the first respiratory rate decrease and systolic blood pressure decrease.","episode_id":"iv_000317","anchor_time":48} {"id":"CVR_multivariable_iv_000317_w24_0","question":"In the first 24 hours, which option puts the first changes in systolic blood pressure, urine output, diastolic blood pressure, and heart rate in the right order?\nOptions: A. systolic blood pressure decrease occurs first, followed by diastolic blood pressure increase, then heart rate decrease, and finally urine output decrease. B. heart rate decrease occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, and finally urine output decrease. C. systolic blood pressure decrease occurs first, followed by heart rate decrease, then diastolic blood pressure increase, and finally urine output decrease. D. systolic blood pressure decrease occurs first, followed by heart rate decrease, then urine output decrease, and finally diastolic blood pressure increase.","answer":"C","answer_text":"systolic blood pressure decrease occurs first, followed by heart rate decrease, then diastolic blood pressure increase, and finally urine output decrease.","episode_id":"iv_000317","anchor_time":24} {"id":"CVR_multivariable_iv_000017_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure increase falls relative to the first heart rate increase, MAP increase, and respiratory rate decrease?\nOptions: A. The first diastolic blood pressure increase occurs after the first heart rate increase, MAP increase, and respiratory rate decrease. B. The first diastolic blood pressure increase occurs before the first MAP increase and respiratory rate decrease, but after the first heart rate increase. C. The first diastolic blood pressure increase occurs before the first heart rate increase, MAP increase, and respiratory rate decrease. D. The first diastolic blood pressure increase occurs before the first heart rate increase and respiratory rate decrease, but after the first MAP increase.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate increase, MAP increase, and respiratory rate decrease.","episode_id":"iv_000017","anchor_time":48} {"id":"CVR_multivariable_iv_000017_w48_2","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure increase compare with the first respiratory rate increase, heart rate increase, and MAP increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first MAP increase, but after the first respiratory rate increase and heart rate increase. B. The first diastolic blood pressure increase occurs before the first respiratory rate increase, heart rate increase, and MAP increase. C. The first diastolic blood pressure increase occurs after the first respiratory rate increase, heart rate increase, and MAP increase. D. The first diastolic blood pressure increase occurs before the first heart rate increase and MAP increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate increase and MAP increase, but after the first respiratory rate increase.","episode_id":"iv_000017","anchor_time":48} {"id":"CVR_multivariable_iv_000017_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how respiratory rate, SpO2, heart rate, and MAP changed over time?\nOptions: A. respiratory rate increase occurs first, followed by heart rate increase, then MAP increase, and finally SpO2 decrease. B. respiratory rate increase occurs first, followed by MAP increase, then heart rate increase, and finally SpO2 decrease. C. heart rate increase occurs first, followed by respiratory rate increase, then MAP increase, and finally SpO2 decrease. D. respiratory rate increase occurs first, followed by heart rate increase, then SpO2 decrease, and finally MAP increase.","answer":"A","answer_text":"respiratory rate increase occurs first, followed by heart rate increase, then MAP increase, and finally SpO2 decrease.","episode_id":"iv_000017","anchor_time":24} {"id":"CVR_multivariable_iv_000448_w48_0","question":"Looking only at the first 48 hours, which sequence best captures how respiratory rate, systolic blood pressure, white blood cell count, urine output, and diastolic blood pressure changed over time?\nOptions: A. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then white blood cell count increase, then systolic blood pressure decrease, and finally urine output increase. B. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, then white blood cell count increase, and finally urine output increase. C. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase. D. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase.","answer":"C","answer_text":"respiratory rate increase occurs first, followed by diastolic blood pressure increase, then systolic blood pressure decrease, then white blood cell count increase, and finally urine output increase.","episode_id":"iv_000448","anchor_time":48} {"id":"CVR_multivariable_iv_000020_w48_0","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease?\nOptions: A. The first SpO2 decrease occurs after the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease. B. The first SpO2 decrease occurs before the first systolic blood pressure decrease, but after the first heart rate decrease and respiratory rate decrease. C. The first SpO2 decrease occurs before the first heart rate decrease, respiratory rate decrease, and systolic blood pressure decrease. D. The first SpO2 decrease occurs before the first respiratory rate decrease and systolic blood pressure decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first respiratory rate decrease and systolic blood pressure decrease, but after the first heart rate decrease.","episode_id":"iv_000020","anchor_time":48} {"id":"CVR_multivariable_iv_000020_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in SpO2, heart rate, MAP, and systolic blood pressure?\nOptions: A. heart rate decrease occurs first, followed by SpO2 increase, then MAP decrease, and finally systolic blood pressure decrease. B. heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure decrease, and finally MAP decrease. C. SpO2 increase occurs first, followed by heart rate decrease, then systolic blood pressure decrease, and finally MAP decrease. D. heart rate decrease occurs first, followed by systolic blood pressure decrease, then SpO2 increase, and finally MAP decrease.","answer":"B","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure decrease, and finally MAP decrease.","episode_id":"iv_000020","anchor_time":24} {"id":"CVR_multivariable_iv_000130_w48_1","question":"Across the first 48 hours, does the first systolic blood pressure decrease happen before the first heart rate decrease, MAP increase, and SpO2 decrease?\nOptions: A. The first systolic blood pressure decrease occurs after the first heart rate decrease, MAP increase, and SpO2 decrease. B. The first systolic blood pressure decrease occurs before the first MAP increase and SpO2 decrease, but after the first heart rate decrease. C. The first systolic blood pressure decrease occurs before the first heart rate decrease, MAP increase, and SpO2 decrease. D. The first systolic blood pressure decrease occurs before the first SpO2 decrease, but after the first heart rate decrease and MAP increase.","answer":"B","answer_text":"The first systolic blood pressure decrease occurs before the first MAP increase and SpO2 decrease, but after the first heart rate decrease.","episode_id":"iv_000130","anchor_time":48} {"id":"CVR_multivariable_iv_000238_w48_2","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first heart rate increase, SpO2 decrease, and MAP increase?\nOptions: A. The first respiratory rate increase occurs before the first MAP increase, but after the first heart rate increase and SpO2 decrease. B. The first respiratory rate increase occurs after the first heart rate increase, SpO2 decrease, and MAP increase. C. The first respiratory rate increase occurs before the first heart rate increase, SpO2 decrease, and MAP increase. D. The first respiratory rate increase occurs before the first SpO2 decrease and MAP increase, but after the first heart rate increase.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first SpO2 decrease and MAP increase, but after the first heart rate increase.","episode_id":"iv_000238","anchor_time":48} {"id":"CVR_multivariable_iv_000238_w24_0","question":"Based on the first 24 hours of data, which option gives the most accurate ordering for the first changes in SpO2, MAP, heart rate, and respiratory rate?\nOptions: A. heart rate increase occurs first, followed by respiratory rate increase, then SpO2 decrease, and finally MAP increase. B. respiratory rate increase occurs first, followed by heart rate increase, then SpO2 decrease, and finally MAP increase. C. heart rate increase occurs first, followed by respiratory rate increase, then MAP increase, and finally SpO2 decrease. D. heart rate increase occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally MAP increase.","answer":"A","answer_text":"heart rate increase occurs first, followed by respiratory rate increase, then SpO2 decrease, and finally MAP increase.","episode_id":"iv_000238","anchor_time":24} {"id":"CVR_multivariable_iv_000296_w48_1","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first respiratory rate increase, systolic blood pressure decrease, and MAP increase?\nOptions: A. The first SpO2 decrease occurs before the first respiratory rate increase, systolic blood pressure decrease, and MAP increase. B. The first SpO2 decrease occurs after the first respiratory rate increase, systolic blood pressure decrease, and MAP increase. C. The first SpO2 decrease occurs before the first systolic blood pressure decrease and MAP increase, but after the first respiratory rate increase. D. The first SpO2 decrease occurs before the first respiratory rate increase and MAP increase, but after the first systolic blood pressure decrease.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first respiratory rate increase, systolic blood pressure decrease, and MAP increase.","episode_id":"iv_000296","anchor_time":48} {"id":"CVR_multivariable_iv_000296_w48_2","question":"For the initial 48 hours, was the first systolic blood pressure increase earlier than the first heart rate decrease, diastolic blood pressure decrease, and respiratory rate decrease?\nOptions: A. The first systolic blood pressure increase occurs before the first heart rate decrease, diastolic blood pressure decrease, and respiratory rate decrease. B. The first systolic blood pressure increase occurs before the first respiratory rate decrease, but after the first heart rate decrease and diastolic blood pressure decrease. C. The first systolic blood pressure increase occurs after the first heart rate decrease, diastolic blood pressure decrease, and respiratory rate decrease. D. The first systolic blood pressure increase occurs before the first heart rate decrease and respiratory rate decrease, but after the first diastolic blood pressure decrease.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate decrease, but after the first heart rate decrease and diastolic blood pressure decrease.","episode_id":"iv_000296","anchor_time":48} {"id":"CVR_multivariable_iv_000286_w48_0","question":"For the initial 48 hours, was the first SpO2 increase earlier than the first heart rate decrease, temperature increase, and urine output increase?\nOptions: A. The first SpO2 increase occurs before the first urine output increase, but after the first heart rate decrease and temperature increase. B. The first SpO2 increase occurs before the first heart rate decrease, temperature increase, and urine output increase. C. The first SpO2 increase occurs after the first heart rate decrease, temperature increase, and urine output increase. D. The first SpO2 increase occurs before the first temperature increase and urine output increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first temperature increase and urine output increase, but after the first heart rate decrease.","episode_id":"iv_000286","anchor_time":48} {"id":"CVR_multivariable_iv_000336_w48_1","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure decrease preceded the first respiratory rate increase, heart rate increase, and white blood cell count decrease?\nOptions: A. The first diastolic blood pressure decrease occurs after the first respiratory rate increase, heart rate increase, and white blood cell count decrease. B. The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, but after the first respiratory rate increase and heart rate increase. C. The first diastolic blood pressure decrease occurs before the first respiratory rate increase, heart rate increase, and white blood cell count decrease. D. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and white blood cell count decrease, but after the first heart rate increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, but after the first respiratory rate increase and heart rate increase.","episode_id":"iv_000336","anchor_time":48} {"id":"CVR_multivariable_iv_000300_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure increase falls relative to the first heart rate decrease, systolic blood pressure increase, and MAP decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate decrease, systolic blood pressure increase, and MAP decrease. B. The first diastolic blood pressure increase occurs before the first MAP decrease, but after the first heart rate decrease and systolic blood pressure increase. C. The first diastolic blood pressure increase occurs after the first heart rate decrease, systolic blood pressure increase, and MAP decrease. D. The first diastolic blood pressure increase occurs before the first systolic blood pressure increase and MAP decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first systolic blood pressure increase and MAP decrease, but after the first heart rate decrease.","episode_id":"iv_000300","anchor_time":48} {"id":"CVR_multivariable_iv_000149_w48_2","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate decrease preceded the first heart rate decrease, SpO2 increase, and white blood cell count decrease?\nOptions: A. The first respiratory rate decrease occurs before the first heart rate decrease, SpO2 increase, and white blood cell count decrease. B. The first respiratory rate decrease occurs before the first white blood cell count decrease, but after the first heart rate decrease and SpO2 increase. C. The first respiratory rate decrease occurs before the first heart rate decrease and white blood cell count decrease, but after the first SpO2 increase. D. The first respiratory rate decrease occurs after the first heart rate decrease, SpO2 increase, and white blood cell count decrease.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first white blood cell count decrease, but after the first heart rate decrease and SpO2 increase.","episode_id":"iv_000149","anchor_time":48} {"id":"CVR_multivariable_iv_000203_w48_1","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in heart rate, respiratory rate, temperature, systolic blood pressure, and urine output?\nOptions: A. heart rate increase occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, then urine output decrease, and finally temperature decrease. B. heart rate increase occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then urine output decrease, and finally temperature decrease. C. heart rate increase occurs first, followed by systolic blood pressure increase, then urine output decrease, then respiratory rate decrease, and finally temperature decrease. D. systolic blood pressure increase occurs first, followed by heart rate increase, then respiratory rate decrease, then urine output decrease, and finally temperature decrease.","answer":"B","answer_text":"heart rate increase occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then urine output decrease, and finally temperature decrease.","episode_id":"iv_000203","anchor_time":48} {"id":"CVR_multivariable_iv_000387_w48_1","question":"In the opening 48 hours, compare the first MAP increase with the first heart rate decrease, SpO2 increase, and respiratory rate increase; which option is correct?\nOptions: A. The first MAP increase occurs before the first heart rate decrease and respiratory rate increase, but after the first SpO2 increase. B. The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate decrease and SpO2 increase. C. The first MAP increase occurs before the first heart rate decrease, SpO2 increase, and respiratory rate increase. D. The first MAP increase occurs after the first heart rate decrease, SpO2 increase, and respiratory rate increase.","answer":"B","answer_text":"The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate decrease and SpO2 increase.","episode_id":"iv_000387","anchor_time":48} {"id":"CVR_multivariable_iv_000398_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP increase relative to the first heart rate decrease, SpO2 decrease, and respiratory rate increase?\nOptions: A. The first MAP increase occurs before the first heart rate decrease and respiratory rate increase, but after the first SpO2 decrease. B. The first MAP increase occurs after the first heart rate decrease, SpO2 decrease, and respiratory rate increase. C. The first MAP increase occurs before the first heart rate decrease, SpO2 decrease, and respiratory rate increase. D. The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate decrease and SpO2 decrease.","answer":"D","answer_text":"The first MAP increase occurs before the first respiratory rate increase, but after the first heart rate decrease and SpO2 decrease.","episode_id":"iv_000398","anchor_time":48} {"id":"CVR_multivariable_iv_000398_w48_2","question":"In the first 48 hours, which option puts the first changes in MAP, temperature, respiratory rate, white blood cell count, and diastolic blood pressure in the right order?\nOptions: A. diastolic blood pressure increase occurs first, followed by MAP decrease, then respiratory rate decrease, then temperature decrease, and finally white blood cell count decrease. B. MAP decrease occurs first, followed by diastolic blood pressure increase, then respiratory rate decrease, then temperature decrease, and finally white blood cell count decrease. C. diastolic blood pressure increase occurs first, followed by respiratory rate decrease, then MAP decrease, then temperature decrease, and finally white blood cell count decrease. D. diastolic blood pressure increase occurs first, followed by MAP decrease, then temperature decrease, then respiratory rate decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by MAP decrease, then respiratory rate decrease, then temperature decrease, and finally white blood cell count decrease.","episode_id":"iv_000398","anchor_time":48} {"id":"CVR_multivariable_iv_000190_w48_2","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure decrease preceded the first respiratory rate increase, SpO2 decrease, and heart rate increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first respiratory rate increase, SpO2 decrease, and heart rate increase. B. The first diastolic blood pressure decrease occurs before the first heart rate increase, but after the first respiratory rate increase and SpO2 decrease. C. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and heart rate increase, but after the first SpO2 decrease. D. The first diastolic blood pressure decrease occurs after the first respiratory rate increase, SpO2 decrease, and heart rate increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first heart rate increase, but after the first respiratory rate increase and SpO2 decrease.","episode_id":"iv_000190","anchor_time":48} {"id":"CVR_multivariable_iv_000418_w48_1","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate increase preceded the first heart rate increase, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first respiratory rate increase occurs before the first heart rate increase, diastolic blood pressure decrease, and MAP increase. B. The first respiratory rate increase occurs before the first MAP increase, but after the first heart rate increase and diastolic blood pressure decrease. C. The first respiratory rate increase occurs after the first heart rate increase, diastolic blood pressure decrease, and MAP increase. D. The first respiratory rate increase occurs before the first heart rate increase and MAP increase, but after the first diastolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first MAP increase, but after the first heart rate increase and diastolic blood pressure decrease.","episode_id":"iv_000418","anchor_time":48} {"id":"CVR_multivariable_iv_000014_w48_1","question":"Looking only at the first 48 hours, did the first heart rate increase come before the first SpO2 decrease, urine output increase, and MAP increase?\nOptions: A. The first heart rate increase occurs after the first SpO2 decrease, urine output increase, and MAP increase. B. The first heart rate increase occurs before the first SpO2 decrease, urine output increase, and MAP increase. C. The first heart rate increase occurs before the first MAP increase, but after the first SpO2 decrease and urine output increase. D. The first heart rate increase occurs before the first urine output increase and MAP increase, but after the first SpO2 decrease.","answer":"D","answer_text":"The first heart rate increase occurs before the first urine output increase and MAP increase, but after the first SpO2 decrease.","episode_id":"iv_000014","anchor_time":48} {"id":"CVR_multivariable_iv_000055_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving temperature, white blood cell count, creatinine, urine output, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by urine output decrease, then creatinine decrease, then white blood cell count decrease, and finally temperature increase. B. creatinine decrease occurs first, followed by diastolic blood pressure decrease, then urine output decrease, then white blood cell count decrease, and finally temperature increase. C. diastolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output decrease, then white blood cell count decrease, and finally temperature increase. D. diastolic blood pressure decrease occurs first, followed by creatinine decrease, then white blood cell count decrease, then urine output decrease, and finally temperature increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output decrease, then white blood cell count decrease, and finally temperature increase.","episode_id":"iv_000055","anchor_time":48} {"id":"CVR_multivariable_iv_000055_w48_2","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure increase preceded the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease. B. The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate increase. C. The first diastolic blood pressure increase occurs after the first SpO2 increase, respiratory rate increase, and systolic blood pressure decrease. D. The first diastolic blood pressure increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first respiratory rate increase.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate increase.","episode_id":"iv_000055","anchor_time":48} {"id":"CVR_multivariable_iv_000075_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first urine output increase falls relative to the first MAP increase, temperature decrease, and systolic blood pressure increase?\nOptions: A. The first urine output increase occurs before the first MAP increase, temperature decrease, and systolic blood pressure increase. B. The first urine output increase occurs before the first systolic blood pressure increase, but after the first MAP increase and temperature decrease. C. The first urine output increase occurs after the first MAP increase, temperature decrease, and systolic blood pressure increase. D. The first urine output increase occurs before the first temperature decrease and systolic blood pressure increase, but after the first MAP increase.","answer":"D","answer_text":"The first urine output increase occurs before the first temperature decrease and systolic blood pressure increase, but after the first MAP increase.","episode_id":"iv_000075","anchor_time":48} {"id":"CVR_multivariable_iv_000075_w24_0","question":"In the first 24 hours, which option puts the first changes in urine output, heart rate, temperature, and systolic blood pressure in the right order?\nOptions: A. heart rate increase occurs first, followed by urine output increase, then temperature decrease, and finally systolic blood pressure increase. B. urine output increase occurs first, followed by heart rate increase, then temperature decrease, and finally systolic blood pressure increase. C. heart rate increase occurs first, followed by temperature decrease, then urine output increase, and finally systolic blood pressure increase. D. heart rate increase occurs first, followed by urine output increase, then systolic blood pressure increase, and finally temperature decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by urine output increase, then temperature decrease, and finally systolic blood pressure increase.","episode_id":"iv_000075","anchor_time":24} {"id":"CVR_multivariable_iv_000284_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate increase relative to the first diastolic blood pressure decrease, systolic blood pressure increase, and urine output increase?\nOptions: A. The first heart rate increase occurs before the first diastolic blood pressure decrease, systolic blood pressure increase, and urine output increase. B. The first heart rate increase occurs before the first urine output increase, but after the first diastolic blood pressure decrease and systolic blood pressure increase. C. The first heart rate increase occurs before the first diastolic blood pressure decrease and urine output increase, but after the first systolic blood pressure increase. D. The first heart rate increase occurs after the first diastolic blood pressure decrease, systolic blood pressure increase, and urine output increase.","answer":"B","answer_text":"The first heart rate increase occurs before the first urine output increase, but after the first diastolic blood pressure decrease and systolic blood pressure increase.","episode_id":"iv_000284","anchor_time":48} {"id":"CVR_multivariable_iv_000039_w48_2","question":"Across the first 48 hours, does the first MAP decrease happen before the first diastolic blood pressure increase, heart rate increase, and urine output decrease?\nOptions: A. The first MAP decrease occurs before the first diastolic blood pressure increase, heart rate increase, and urine output decrease. B. The first MAP decrease occurs after the first diastolic blood pressure increase, heart rate increase, and urine output decrease. C. The first MAP decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first heart rate increase. D. The first MAP decrease occurs before the first urine output decrease, but after the first diastolic blood pressure increase and heart rate increase.","answer":"D","answer_text":"The first MAP decrease occurs before the first urine output decrease, but after the first diastolic blood pressure increase and heart rate increase.","episode_id":"iv_000039","anchor_time":48} {"id":"CVR_multivariable_iv_000391_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for diastolic blood pressure, lactate, urine output, and respiratory rate?\nOptions: A. respiratory rate decrease occurs first, followed by lactate decrease, then urine output increase, and finally diastolic blood pressure increase. B. lactate decrease occurs first, followed by respiratory rate decrease, then diastolic blood pressure increase, and finally urine output increase. C. lactate decrease occurs first, followed by respiratory rate decrease, then urine output increase, and finally diastolic blood pressure increase. D. lactate decrease occurs first, followed by urine output increase, then respiratory rate decrease, and finally diastolic blood pressure increase.","answer":"C","answer_text":"lactate decrease occurs first, followed by respiratory rate decrease, then urine output increase, and finally diastolic blood pressure increase.","episode_id":"iv_000391","anchor_time":24} {"id":"CVR_multivariable_iv_000391_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first lactate decrease falls relative to the first SpO2 increase, MAP decrease, and respiratory rate decrease?\nOptions: A. The first lactate decrease occurs before the first SpO2 increase, MAP decrease, and respiratory rate decrease. B. The first lactate decrease occurs before the first respiratory rate decrease, but after the first SpO2 increase and MAP decrease. C. The first lactate decrease occurs after the first SpO2 increase, MAP decrease, and respiratory rate decrease. D. The first lactate decrease occurs before the first SpO2 increase and respiratory rate decrease, but after the first MAP decrease.","answer":"B","answer_text":"The first lactate decrease occurs before the first respiratory rate decrease, but after the first SpO2 increase and MAP decrease.","episode_id":"iv_000391","anchor_time":48} {"id":"CVR_multivariable_iv_000460_w48_0","question":"In the opening 48 hours, compare the first respiratory rate decrease with the first SpO2 increase, heart rate increase, and systolic blood pressure increase; which option is correct?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 increase and systolic blood pressure increase, but after the first heart rate increase. B. The first respiratory rate decrease occurs after the first SpO2 increase, heart rate increase, and systolic blood pressure increase. C. The first respiratory rate decrease occurs before the first SpO2 increase, heart rate increase, and systolic blood pressure increase. D. The first respiratory rate decrease occurs before the first systolic blood pressure increase, but after the first SpO2 increase and heart rate increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first systolic blood pressure increase, but after the first SpO2 increase and heart rate increase.","episode_id":"iv_000460","anchor_time":48} {"id":"CVR_multivariable_iv_000460_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving respiratory rate, systolic blood pressure, diastolic blood pressure, and heart rate?\nOptions: A. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, and finally heart rate decrease. B. respiratory rate decrease occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, and finally heart rate decrease. C. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then heart rate decrease, and finally systolic blood pressure increase. D. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, and finally heart rate decrease.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, and finally heart rate decrease.","episode_id":"iv_000460","anchor_time":24} {"id":"CVR_multivariable_iv_000460_w48_1","question":"Looking only at the first 48 hours, which sequence best captures how urine output, white blood cell count, lactate, heart rate, and temperature changed over time?\nOptions: A. heart rate decrease occurs first, followed by urine output decrease, then temperature increase, then lactate increase, and finally white blood cell count increase. B. heart rate decrease occurs first, followed by temperature increase, then urine output decrease, then lactate increase, and finally white blood cell count increase. C. heart rate decrease occurs first, followed by temperature increase, then lactate increase, then urine output decrease, and finally white blood cell count increase. D. temperature increase occurs first, followed by heart rate decrease, then urine output decrease, then lactate increase, and finally white blood cell count increase.","answer":"B","answer_text":"heart rate decrease occurs first, followed by temperature increase, then urine output decrease, then lactate increase, and finally white blood cell count increase.","episode_id":"iv_000460","anchor_time":48} {"id":"CVR_multivariable_iv_000460_w48_2","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure decrease compare with the first respiratory rate decrease, SpO2 decrease, and heart rate decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and heart rate decrease, but after the first respiratory rate decrease. B. The first diastolic blood pressure decrease occurs after the first respiratory rate decrease, SpO2 decrease, and heart rate decrease. C. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease, SpO2 decrease, and heart rate decrease. D. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease and heart rate decrease, but after the first SpO2 decrease.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate decrease, SpO2 decrease, and heart rate decrease.","episode_id":"iv_000460","anchor_time":48} {"id":"CVR_multivariable_iv_000257_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first heart rate decrease, temperature increase, and systolic blood pressure increase?\nOptions: A. The first diastolic blood pressure decrease occurs after the first heart rate decrease, temperature increase, and systolic blood pressure increase. B. The first diastolic blood pressure decrease occurs before the first temperature increase and systolic blood pressure increase, but after the first heart rate decrease. C. The first diastolic blood pressure decrease occurs before the first heart rate decrease, temperature increase, and systolic blood pressure increase. D. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, but after the first heart rate decrease and temperature increase.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first temperature increase and systolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000257","anchor_time":48} {"id":"CVR_multivariable_iv_000257_w48_2","question":"For the initial 48 hours, which option best matches the order in which white blood cell count, MAP, lactate, urine output, and temperature first changed?\nOptions: A. MAP increase occurs first, followed by temperature decrease, then lactate increase, then white blood cell count decrease, and finally urine output increase. B. MAP increase occurs first, followed by lactate increase, then white blood cell count decrease, then temperature decrease, and finally urine output increase. C. MAP increase occurs first, followed by lactate increase, then temperature decrease, then white blood cell count decrease, and finally urine output increase. D. lactate increase occurs first, followed by MAP increase, then temperature decrease, then white blood cell count decrease, and finally urine output increase.","answer":"C","answer_text":"MAP increase occurs first, followed by lactate increase, then temperature decrease, then white blood cell count decrease, and finally urine output increase.","episode_id":"iv_000257","anchor_time":48} {"id":"CVR_multivariable_iv_000178_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first MAP increase, respiratory rate increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs after the first MAP increase, respiratory rate increase, and systolic blood pressure decrease. B. The first heart rate decrease occurs before the first respiratory rate increase and systolic blood pressure decrease, but after the first MAP increase. C. The first heart rate decrease occurs before the first MAP increase, respiratory rate increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first respiratory rate increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first MAP increase, respiratory rate increase, and systolic blood pressure decrease.","episode_id":"iv_000178","anchor_time":48} {"id":"CVR_multivariable_iv_000178_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure increase falls relative to the first SpO2 decrease, heart rate decrease, and respiratory rate increase?\nOptions: A. The first systolic blood pressure increase occurs after the first SpO2 decrease, heart rate decrease, and respiratory rate increase. B. The first systolic blood pressure increase occurs before the first SpO2 decrease and respiratory rate increase, but after the first heart rate decrease. C. The first systolic blood pressure increase occurs before the first SpO2 decrease, heart rate decrease, and respiratory rate increase. D. The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first SpO2 decrease and heart rate decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first SpO2 decrease and heart rate decrease.","episode_id":"iv_000178","anchor_time":48} {"id":"CVR_multivariable_iv_000212_w48_0","question":"In the first 48 hours, which option puts the first changes in white blood cell count, respiratory rate, MAP, systolic blood pressure, and urine output in the right order?\nOptions: A. systolic blood pressure increase occurs first, followed by MAP decrease, then urine output decrease, then respiratory rate increase, and finally white blood cell count decrease. B. MAP decrease occurs first, followed by urine output decrease, then systolic blood pressure increase, then respiratory rate increase, and finally white blood cell count decrease. C. MAP decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, then respiratory rate increase, and finally white blood cell count decrease. D. MAP decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, then urine output decrease, and finally white blood cell count decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by systolic blood pressure increase, then urine output decrease, then respiratory rate increase, and finally white blood cell count decrease.","episode_id":"iv_000212","anchor_time":48} {"id":"CVR_multivariable_iv_000212_w48_1","question":"Looking only at the first 48 hours, did the first respiratory rate decrease come before the first MAP increase, heart rate decrease, and temperature decrease?\nOptions: A. The first respiratory rate decrease occurs before the first MAP increase, heart rate decrease, and temperature decrease. B. The first respiratory rate decrease occurs before the first MAP increase and temperature decrease, but after the first heart rate decrease. C. The first respiratory rate decrease occurs before the first heart rate decrease and temperature decrease, but after the first MAP increase. D. The first respiratory rate decrease occurs after the first MAP increase, heart rate decrease, and temperature decrease.","answer":"A","answer_text":"The first respiratory rate decrease occurs before the first MAP increase, heart rate decrease, and temperature decrease.","episode_id":"iv_000212","anchor_time":48} {"id":"CVR_multivariable_iv_000472_w48_0","question":"Looking only at the first 48 hours, did the first SpO2 increase come before the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase?\nOptions: A. The first SpO2 increase occurs after the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase. B. The first SpO2 increase occurs before the first respiratory rate increase, but after the first heart rate increase and systolic blood pressure decrease. C. The first SpO2 increase occurs before the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase. D. The first SpO2 increase occurs before the first systolic blood pressure decrease and respiratory rate increase, but after the first heart rate increase.","answer":"D","answer_text":"The first SpO2 increase occurs before the first systolic blood pressure decrease and respiratory rate increase, but after the first heart rate increase.","episode_id":"iv_000472","anchor_time":48} {"id":"CVR_multivariable_iv_000472_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in urine output, systolic blood pressure, respiratory rate, white blood cell count, and lactate?\nOptions: A. systolic blood pressure decrease occurs first, followed by respiratory rate increase, then lactate decrease, then urine output decrease, and finally white blood cell count decrease. B. systolic blood pressure decrease occurs first, followed by respiratory rate increase, then urine output decrease, then lactate decrease, and finally white blood cell count decrease. C. systolic blood pressure decrease occurs first, followed by lactate decrease, then respiratory rate increase, then urine output decrease, and finally white blood cell count decrease. D. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then lactate decrease, then urine output decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"systolic blood pressure decrease occurs first, followed by respiratory rate increase, then lactate decrease, then urine output decrease, and finally white blood cell count decrease.","episode_id":"iv_000472","anchor_time":48} {"id":"CVR_multivariable_iv_000420_w48_1","question":"During the first 48 hours, which option correctly describes whether the first systolic blood pressure increase preceded the first diastolic blood pressure decrease, SpO2 increase, and respiratory rate increase?\nOptions: A. The first systolic blood pressure increase occurs after the first diastolic blood pressure decrease, SpO2 increase, and respiratory rate increase. B. The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first diastolic blood pressure decrease and SpO2 increase. C. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease and respiratory rate increase, but after the first SpO2 increase. D. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease, SpO2 increase, and respiratory rate increase.","answer":"B","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first diastolic blood pressure decrease and SpO2 increase.","episode_id":"iv_000420","anchor_time":48} {"id":"CVR_multivariable_iv_000420_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how respiratory rate, SpO2, temperature, and systolic blood pressure changed over time?\nOptions: A. SpO2 increase occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, and finally temperature decrease. B. respiratory rate decrease occurs first, followed by SpO2 increase, then temperature decrease, and finally systolic blood pressure increase. C. respiratory rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally temperature decrease. D. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then SpO2 increase, and finally temperature decrease.","answer":"C","answer_text":"respiratory rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally temperature decrease.","episode_id":"iv_000420","anchor_time":24} {"id":"CVR_multivariable_iv_000067_w48_0","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for creatinine, urine output, temperature, white blood cell count, and systolic blood pressure?\nOptions: A. systolic blood pressure decrease occurs first, followed by temperature increase, then urine output increase, then white blood cell count decrease, and finally creatinine increase. B. systolic blood pressure decrease occurs first, followed by temperature increase, then white blood cell count decrease, then urine output increase, and finally creatinine increase. C. temperature increase occurs first, followed by systolic blood pressure decrease, then white blood cell count decrease, then urine output increase, and finally creatinine increase. D. systolic blood pressure decrease occurs first, followed by white blood cell count decrease, then temperature increase, then urine output increase, and finally creatinine increase.","answer":"B","answer_text":"systolic blood pressure decrease occurs first, followed by temperature increase, then white blood cell count decrease, then urine output increase, and finally creatinine increase.","episode_id":"iv_000067","anchor_time":48} {"id":"CVR_multivariable_iv_000067_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure decrease falls relative to the first temperature increase, creatinine decrease, and lactate decrease?\nOptions: A. The first systolic blood pressure decrease occurs before the first temperature increase and lactate decrease, but after the first creatinine decrease. B. The first systolic blood pressure decrease occurs after the first temperature increase, creatinine decrease, and lactate decrease. C. The first systolic blood pressure decrease occurs before the first temperature increase, creatinine decrease, and lactate decrease. D. The first systolic blood pressure decrease occurs before the first creatinine decrease and lactate decrease, but after the first temperature increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first temperature increase, creatinine decrease, and lactate decrease.","episode_id":"iv_000067","anchor_time":48} {"id":"CVR_multivariable_iv_000067_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first heart rate decrease, MAP decrease, and diastolic blood pressure increase?\nOptions: A. The first SpO2 increase occurs before the first heart rate decrease, MAP decrease, and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first heart rate decrease and diastolic blood pressure increase, but after the first MAP decrease. C. The first SpO2 increase occurs after the first heart rate decrease, MAP decrease, and diastolic blood pressure increase. D. The first SpO2 increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and MAP decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and MAP decrease.","episode_id":"iv_000067","anchor_time":48} {"id":"CVR_multivariable_iv_000067_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in temperature, MAP, SpO2, and heart rate?\nOptions: A. heart rate increase occurs first, followed by SpO2 increase, then MAP increase, and finally temperature decrease. B. heart rate increase occurs first, followed by SpO2 increase, then temperature decrease, and finally MAP increase. C. SpO2 increase occurs first, followed by heart rate increase, then MAP increase, and finally temperature decrease. D. heart rate increase occurs first, followed by MAP increase, then SpO2 increase, and finally temperature decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by SpO2 increase, then MAP increase, and finally temperature decrease.","episode_id":"iv_000067","anchor_time":24} {"id":"CVR_multivariable_iv_000099_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 increase falls relative to the first heart rate decrease, systolic blood pressure increase, and MAP decrease?\nOptions: A. The first SpO2 increase occurs before the first MAP decrease, but after the first heart rate decrease and systolic blood pressure increase. B. The first SpO2 increase occurs before the first systolic blood pressure increase and MAP decrease, but after the first heart rate decrease. C. The first SpO2 increase occurs after the first heart rate decrease, systolic blood pressure increase, and MAP decrease. D. The first SpO2 increase occurs before the first heart rate decrease, systolic blood pressure increase, and MAP decrease.","answer":"B","answer_text":"The first SpO2 increase occurs before the first systolic blood pressure increase and MAP decrease, but after the first heart rate decrease.","episode_id":"iv_000099","anchor_time":48} {"id":"CVR_multivariable_iv_000097_w48_1","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output increase?\nOptions: A. The first heart rate decrease occurs before the first urine output increase, but after the first diastolic blood pressure increase and systolic blood pressure decrease. B. The first heart rate decrease occurs before the first systolic blood pressure decrease and urine output increase, but after the first diastolic blood pressure increase. C. The first heart rate decrease occurs before the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output increase. D. The first heart rate decrease occurs after the first diastolic blood pressure increase, systolic blood pressure decrease, and urine output increase.","answer":"B","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure decrease and urine output increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000097","anchor_time":48} {"id":"CVR_multivariable_iv_000097_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in temperature, systolic blood pressure, white blood cell count, respiratory rate, and heart rate?\nOptions: A. systolic blood pressure decrease occurs first, followed by respiratory rate increase, then heart rate increase, then white blood cell count decrease, and finally temperature increase. B. respiratory rate increase occurs first, followed by heart rate increase, then systolic blood pressure decrease, then white blood cell count decrease, and finally temperature increase. C. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then heart rate increase, then white blood cell count decrease, and finally temperature increase. D. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then white blood cell count decrease, then heart rate increase, and finally temperature increase.","answer":"C","answer_text":"respiratory rate increase occurs first, followed by systolic blood pressure decrease, then heart rate increase, then white blood cell count decrease, and finally temperature increase.","episode_id":"iv_000097","anchor_time":48} {"id":"CVR_multivariable_iv_000196_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first MAP increase, respiratory rate increase, and heart rate decrease?\nOptions: A. The first systolic blood pressure decrease occurs after the first MAP increase, respiratory rate increase, and heart rate decrease. B. The first systolic blood pressure decrease occurs before the first MAP increase and heart rate decrease, but after the first respiratory rate increase. C. The first systolic blood pressure decrease occurs before the first MAP increase, respiratory rate increase, and heart rate decrease. D. The first systolic blood pressure decrease occurs before the first heart rate decrease, but after the first MAP increase and respiratory rate increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first heart rate decrease, but after the first MAP increase and respiratory rate increase.","episode_id":"iv_000196","anchor_time":48} {"id":"CVR_multivariable_iv_000339_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving diastolic blood pressure, heart rate, respiratory rate, and systolic blood pressure?\nOptions: A. systolic blood pressure decrease occurs first, followed by heart rate increase, then respiratory rate decrease, and finally diastolic blood pressure increase. B. heart rate increase occurs first, followed by respiratory rate decrease, then systolic blood pressure decrease, and finally diastolic blood pressure increase. C. heart rate increase occurs first, followed by systolic blood pressure decrease, then respiratory rate decrease, and finally diastolic blood pressure increase. D. heart rate increase occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, and finally respiratory rate decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by systolic blood pressure decrease, then respiratory rate decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000339","anchor_time":24} {"id":"CVR_multivariable_iv_000339_w48_2","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate decrease preceded the first heart rate increase, MAP decrease, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first MAP decrease. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first heart rate increase and MAP decrease. C. The first respiratory rate decrease occurs after the first heart rate increase, MAP decrease, and diastolic blood pressure increase. D. The first respiratory rate decrease occurs before the first heart rate increase, MAP decrease, and diastolic blood pressure increase.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first heart rate increase and MAP decrease.","episode_id":"iv_000339","anchor_time":48} {"id":"CVR_multivariable_iv_000288_w48_0","question":"Looking only at the first 48 hours, did the first systolic blood pressure increase come before the first MAP decrease, heart rate decrease, and urine output increase?\nOptions: A. The first systolic blood pressure increase occurs before the first urine output increase, but after the first MAP decrease and heart rate decrease. B. The first systolic blood pressure increase occurs after the first MAP decrease, heart rate decrease, and urine output increase. C. The first systolic blood pressure increase occurs before the first MAP decrease, heart rate decrease, and urine output increase. D. The first systolic blood pressure increase occurs before the first heart rate decrease and urine output increase, but after the first MAP decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first heart rate decrease and urine output increase, but after the first MAP decrease.","episode_id":"iv_000288","anchor_time":48} {"id":"CVR_multivariable_iv_000288_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how systolic blood pressure, respiratory rate, heart rate, and MAP changed over time?\nOptions: A. MAP decrease occurs first, followed by systolic blood pressure increase, then heart rate decrease, and finally respiratory rate increase. B. systolic blood pressure increase occurs first, followed by MAP decrease, then heart rate decrease, and finally respiratory rate increase. C. MAP decrease occurs first, followed by systolic blood pressure increase, then respiratory rate increase, and finally heart rate decrease. D. MAP decrease occurs first, followed by heart rate decrease, then systolic blood pressure increase, and finally respiratory rate increase.","answer":"A","answer_text":"MAP decrease occurs first, followed by systolic blood pressure increase, then heart rate decrease, and finally respiratory rate increase.","episode_id":"iv_000288","anchor_time":24} {"id":"CVR_multivariable_iv_000457_w48_2","question":"Looking only at the first 48 hours, did the first temperature increase come before the first heart rate decrease, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first temperature increase occurs after the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. B. The first temperature increase occurs before the first heart rate decrease, diastolic blood pressure decrease, and MAP increase. C. The first temperature increase occurs before the first heart rate decrease and MAP increase, but after the first diastolic blood pressure decrease. D. The first temperature increase occurs before the first MAP increase, but after the first heart rate decrease and diastolic blood pressure decrease.","answer":"D","answer_text":"The first temperature increase occurs before the first MAP increase, but after the first heart rate decrease and diastolic blood pressure decrease.","episode_id":"iv_000457","anchor_time":48} {"id":"CVR_multivariable_iv_000457_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, MAP, diastolic blood pressure, and SpO2?\nOptions: A. heart rate decrease occurs first, followed by MAP decrease, then diastolic blood pressure increase, and finally SpO2 decrease. B. heart rate decrease occurs first, followed by MAP decrease, then SpO2 decrease, and finally diastolic blood pressure increase. C. MAP decrease occurs first, followed by heart rate decrease, then diastolic blood pressure increase, and finally SpO2 decrease. D. heart rate decrease occurs first, followed by diastolic blood pressure increase, then MAP decrease, and finally SpO2 decrease.","answer":"A","answer_text":"heart rate decrease occurs first, followed by MAP decrease, then diastolic blood pressure increase, and finally SpO2 decrease.","episode_id":"iv_000457","anchor_time":24} {"id":"CVR_multivariable_iv_000124_w48_2","question":"During the first 48 hours, which option correctly describes whether the first MAP increase preceded the first heart rate decrease, SpO2 increase, and temperature increase?\nOptions: A. The first MAP increase occurs before the first heart rate decrease and temperature increase, but after the first SpO2 increase. B. The first MAP increase occurs before the first temperature increase, but after the first heart rate decrease and SpO2 increase. C. The first MAP increase occurs before the first heart rate decrease, SpO2 increase, and temperature increase. D. The first MAP increase occurs after the first heart rate decrease, SpO2 increase, and temperature increase.","answer":"B","answer_text":"The first MAP increase occurs before the first temperature increase, but after the first heart rate decrease and SpO2 increase.","episode_id":"iv_000124","anchor_time":48} {"id":"CVR_multivariable_iv_000242_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first SpO2 increase, diastolic blood pressure increase, and temperature increase?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase and temperature increase, but after the first diastolic blood pressure increase. B. The first heart rate decrease occurs before the first SpO2 increase, diastolic blood pressure increase, and temperature increase. C. The first heart rate decrease occurs after the first SpO2 increase, diastolic blood pressure increase, and temperature increase. D. The first heart rate decrease occurs before the first temperature increase, but after the first SpO2 increase and diastolic blood pressure increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first temperature increase, but after the first SpO2 increase and diastolic blood pressure increase.","episode_id":"iv_000242","anchor_time":48} {"id":"CVR_multivariable_iv_000242_w48_1","question":"In the first 48 hours, which option puts the first changes in diastolic blood pressure, systolic blood pressure, temperature, respiratory rate, and urine output in the right order?\nOptions: A. temperature increase occurs first, followed by systolic blood pressure increase, then diastolic blood pressure decrease, then respiratory rate decrease, and finally urine output increase. B. temperature increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, then respiratory rate decrease, and finally urine output increase. C. temperature increase occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then diastolic blood pressure decrease, and finally urine output increase. D. systolic blood pressure increase occurs first, followed by temperature increase, then diastolic blood pressure decrease, then respiratory rate decrease, and finally urine output increase.","answer":"A","answer_text":"temperature increase occurs first, followed by systolic blood pressure increase, then diastolic blood pressure decrease, then respiratory rate decrease, and finally urine output increase.","episode_id":"iv_000242","anchor_time":48} {"id":"CVR_multivariable_iv_000242_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first SpO2 decrease, temperature increase, and systolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs after the first SpO2 decrease, temperature increase, and systolic blood pressure increase. B. The first heart rate decrease occurs before the first SpO2 decrease and systolic blood pressure increase, but after the first temperature increase. C. The first heart rate decrease occurs before the first SpO2 decrease, temperature increase, and systolic blood pressure increase. D. The first heart rate decrease occurs before the first temperature increase and systolic blood pressure increase, but after the first SpO2 decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first SpO2 decrease, temperature increase, and systolic blood pressure increase.","episode_id":"iv_000242","anchor_time":48} {"id":"CVR_multivariable_iv_000042_w48_1","question":"Looking only at the first 48 hours, did the first respiratory rate increase come before the first SpO2 decrease, heart rate increase, and MAP decrease?\nOptions: A. The first respiratory rate increase occurs before the first SpO2 decrease and MAP decrease, but after the first heart rate increase. B. The first respiratory rate increase occurs before the first MAP decrease, but after the first SpO2 decrease and heart rate increase. C. The first respiratory rate increase occurs before the first SpO2 decrease, heart rate increase, and MAP decrease. D. The first respiratory rate increase occurs after the first SpO2 decrease, heart rate increase, and MAP decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first MAP decrease, but after the first SpO2 decrease and heart rate increase.","episode_id":"iv_000042","anchor_time":48} {"id":"CVR_multivariable_iv_000060_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for systolic blood pressure, SpO2, respiratory rate, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by respiratory rate increase, then systolic blood pressure increase, and finally SpO2 decrease. B. heart rate decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, and finally systolic blood pressure increase. C. heart rate decrease occurs first, followed by SpO2 decrease, then respiratory rate increase, and finally systolic blood pressure increase. D. respiratory rate increase occurs first, followed by heart rate decrease, then SpO2 decrease, and finally systolic blood pressure increase.","answer":"B","answer_text":"heart rate decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, and finally systolic blood pressure increase.","episode_id":"iv_000060","anchor_time":24} {"id":"CVR_multivariable_iv_000060_w48_0","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure increase compare with the first MAP decrease, urine output decrease, and systolic blood pressure decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first urine output decrease and systolic blood pressure decrease, but after the first MAP decrease. B. The first diastolic blood pressure increase occurs after the first MAP decrease, urine output decrease, and systolic blood pressure decrease. C. The first diastolic blood pressure increase occurs before the first MAP decrease, urine output decrease, and systolic blood pressure decrease. D. The first diastolic blood pressure increase occurs before the first MAP decrease and systolic blood pressure decrease, but after the first urine output decrease.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first MAP decrease, urine output decrease, and systolic blood pressure decrease.","episode_id":"iv_000060","anchor_time":48} {"id":"CVR_multivariable_iv_000060_w48_1","question":"Looking only at the first 48 hours, did the first urine output decrease come before the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease?\nOptions: A. The first urine output decrease occurs after the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease. B. The first urine output decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first diastolic blood pressure decrease. C. The first urine output decrease occurs before the first MAP increase, diastolic blood pressure decrease, and systolic blood pressure decrease. D. The first urine output decrease occurs before the first systolic blood pressure decrease, but after the first MAP increase and diastolic blood pressure decrease.","answer":"D","answer_text":"The first urine output decrease occurs before the first systolic blood pressure decrease, but after the first MAP increase and diastolic blood pressure decrease.","episode_id":"iv_000060","anchor_time":48} {"id":"CVR_multivariable_iv_000060_w48_2","question":"In the first 48 hours, which option puts the first changes in creatinine, diastolic blood pressure, MAP, urine output, and systolic blood pressure in the right order?\nOptions: A. MAP increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure decrease, then urine output increase, and finally creatinine decrease. B. MAP increase occurs first, followed by diastolic blood pressure decrease, then urine output increase, then systolic blood pressure decrease, and finally creatinine decrease. C. MAP increase occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure decrease, then urine output increase, and finally creatinine decrease. D. diastolic blood pressure decrease occurs first, followed by MAP increase, then systolic blood pressure decrease, then urine output increase, and finally creatinine decrease.","answer":"A","answer_text":"MAP increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure decrease, then urine output increase, and finally creatinine decrease.","episode_id":"iv_000060","anchor_time":48} {"id":"CVR_multivariable_iv_000422_w48_0","question":"In the first 48 hours, how does the timing of the first temperature decrease compare with the first systolic blood pressure decrease, white blood cell count increase, and urine output decrease?\nOptions: A. The first temperature decrease occurs before the first systolic blood pressure decrease, white blood cell count increase, and urine output decrease. B. The first temperature decrease occurs before the first systolic blood pressure decrease and urine output decrease, but after the first white blood cell count increase. C. The first temperature decrease occurs after the first systolic blood pressure decrease, white blood cell count increase, and urine output decrease. D. The first temperature decrease occurs before the first urine output decrease, but after the first systolic blood pressure decrease and white blood cell count increase.","answer":"D","answer_text":"The first temperature decrease occurs before the first urine output decrease, but after the first systolic blood pressure decrease and white blood cell count increase.","episode_id":"iv_000422","anchor_time":48} {"id":"CVR_multivariable_iv_000422_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in MAP, urine output, diastolic blood pressure, and white blood cell count?\nOptions: A. white blood cell count increase occurs first, followed by MAP decrease, then urine output decrease, and finally diastolic blood pressure increase. B. white blood cell count increase occurs first, followed by urine output decrease, then MAP decrease, and finally diastolic blood pressure increase. C. MAP decrease occurs first, followed by white blood cell count increase, then urine output decrease, and finally diastolic blood pressure increase. D. white blood cell count increase occurs first, followed by MAP decrease, then diastolic blood pressure increase, and finally urine output decrease.","answer":"A","answer_text":"white blood cell count increase occurs first, followed by MAP decrease, then urine output decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000422","anchor_time":24} {"id":"CVR_multivariable_iv_000422_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first white blood cell count increase relative to the first MAP decrease, urine output decrease, and systolic blood pressure increase?\nOptions: A. The first white blood cell count increase occurs after the first MAP decrease, urine output decrease, and systolic blood pressure increase. B. The first white blood cell count increase occurs before the first MAP decrease and systolic blood pressure increase, but after the first urine output decrease. C. The first white blood cell count increase occurs before the first MAP decrease, urine output decrease, and systolic blood pressure increase. D. The first white blood cell count increase occurs before the first urine output decrease and systolic blood pressure increase, but after the first MAP decrease.","answer":"C","answer_text":"The first white blood cell count increase occurs before the first MAP decrease, urine output decrease, and systolic blood pressure increase.","episode_id":"iv_000422","anchor_time":48} {"id":"CVR_multivariable_iv_000254_w48_1","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first diastolic blood pressure decrease, MAP increase, and lactate decrease?\nOptions: A. The first respiratory rate increase occurs before the first MAP increase and lactate decrease, but after the first diastolic blood pressure decrease. B. The first respiratory rate increase occurs after the first diastolic blood pressure decrease, MAP increase, and lactate decrease. C. The first respiratory rate increase occurs before the first diastolic blood pressure decrease, MAP increase, and lactate decrease. D. The first respiratory rate increase occurs before the first diastolic blood pressure decrease and lactate decrease, but after the first MAP increase.","answer":"C","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure decrease, MAP increase, and lactate decrease.","episode_id":"iv_000254","anchor_time":48} {"id":"CVR_multivariable_iv_000254_w48_2","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first respiratory rate increase, systolic blood pressure increase, and lactate decrease?\nOptions: A. The first SpO2 decrease occurs after the first respiratory rate increase, systolic blood pressure increase, and lactate decrease. B. The first SpO2 decrease occurs before the first respiratory rate increase, systolic blood pressure increase, and lactate decrease. C. The first SpO2 decrease occurs before the first lactate decrease, but after the first respiratory rate increase and systolic blood pressure increase. D. The first SpO2 decrease occurs before the first systolic blood pressure increase and lactate decrease, but after the first respiratory rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure increase and lactate decrease, but after the first respiratory rate increase.","episode_id":"iv_000254","anchor_time":48} {"id":"CVR_multivariable_iv_000254_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how heart rate, respiratory rate, SpO2, and MAP changed over time?\nOptions: A. SpO2 increase occurs first, followed by respiratory rate increase, then heart rate decrease, and finally MAP increase. B. SpO2 increase occurs first, followed by respiratory rate increase, then MAP increase, and finally heart rate decrease. C. respiratory rate increase occurs first, followed by SpO2 increase, then heart rate decrease, and finally MAP increase. D. SpO2 increase occurs first, followed by heart rate decrease, then respiratory rate increase, and finally MAP increase.","answer":"A","answer_text":"SpO2 increase occurs first, followed by respiratory rate increase, then heart rate decrease, and finally MAP increase.","episode_id":"iv_000254","anchor_time":24} {"id":"CVR_multivariable_iv_000384_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for diastolic blood pressure, respiratory rate, systolic blood pressure, and heart rate?\nOptions: A. heart rate increase occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally systolic blood pressure decrease. B. heart rate increase occurs first, followed by respiratory rate decrease, then systolic blood pressure decrease, and finally diastolic blood pressure decrease. C. heart rate increase occurs first, followed by respiratory rate decrease, then diastolic blood pressure decrease, and finally systolic blood pressure decrease. D. respiratory rate decrease occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally systolic blood pressure decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by respiratory rate decrease, then diastolic blood pressure decrease, and finally systolic blood pressure decrease.","episode_id":"iv_000384","anchor_time":24} {"id":"CVR_multivariable_iv_000384_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first MAP decrease falls relative to the first diastolic blood pressure increase, heart rate decrease, and temperature increase?\nOptions: A. The first MAP decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and heart rate decrease. B. The first MAP decrease occurs before the first heart rate decrease and temperature increase, but after the first diastolic blood pressure increase. C. The first MAP decrease occurs after the first diastolic blood pressure increase, heart rate decrease, and temperature increase. D. The first MAP decrease occurs before the first diastolic blood pressure increase, heart rate decrease, and temperature increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first heart rate decrease and temperature increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000384","anchor_time":48} {"id":"CVR_multivariable_iv_000497_w48_0","question":"For the initial 48 hours, was the first urine output increase earlier than the first heart rate decrease, systolic blood pressure decrease, and respiratory rate increase?\nOptions: A. The first urine output increase occurs before the first heart rate decrease, systolic blood pressure decrease, and respiratory rate increase. B. The first urine output increase occurs before the first respiratory rate increase, but after the first heart rate decrease and systolic blood pressure decrease. C. The first urine output increase occurs after the first heart rate decrease, systolic blood pressure decrease, and respiratory rate increase. D. The first urine output increase occurs before the first systolic blood pressure decrease and respiratory rate increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first urine output increase occurs before the first systolic blood pressure decrease and respiratory rate increase, but after the first heart rate decrease.","episode_id":"iv_000497","anchor_time":48} {"id":"CVR_multivariable_iv_000497_w48_1","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for systolic blood pressure, temperature, heart rate, urine output, and respiratory rate?\nOptions: A. heart rate increase occurs first, followed by systolic blood pressure decrease, then respiratory rate increase, then temperature increase, and finally urine output decrease. B. heart rate increase occurs first, followed by systolic blood pressure decrease, then temperature increase, then respiratory rate increase, and finally urine output decrease. C. systolic blood pressure decrease occurs first, followed by heart rate increase, then respiratory rate increase, then temperature increase, and finally urine output decrease. D. heart rate increase occurs first, followed by respiratory rate increase, then systolic blood pressure decrease, then temperature increase, and finally urine output decrease.","answer":"A","answer_text":"heart rate increase occurs first, followed by systolic blood pressure decrease, then respiratory rate increase, then temperature increase, and finally urine output decrease.","episode_id":"iv_000497","anchor_time":48} {"id":"CVR_multivariable_iv_000497_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase?\nOptions: A. The first SpO2 decrease occurs before the first heart rate increase and respiratory rate increase, but after the first systolic blood pressure decrease. B. The first SpO2 decrease occurs before the first systolic blood pressure decrease and respiratory rate increase, but after the first heart rate increase. C. The first SpO2 decrease occurs before the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase. D. The first SpO2 decrease occurs after the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase.","answer":"C","answer_text":"The first SpO2 decrease occurs before the first heart rate increase, systolic blood pressure decrease, and respiratory rate increase.","episode_id":"iv_000497","anchor_time":48} {"id":"CVR_multivariable_iv_000226_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first SpO2 increase, diastolic blood pressure decrease, and MAP increase?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase, diastolic blood pressure decrease, and MAP increase. B. The first heart rate decrease occurs before the first SpO2 increase and MAP increase, but after the first diastolic blood pressure decrease. C. The first heart rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first SpO2 increase. D. The first heart rate decrease occurs after the first SpO2 increase, diastolic blood pressure decrease, and MAP increase.","answer":"A","answer_text":"The first heart rate decrease occurs before the first SpO2 increase, diastolic blood pressure decrease, and MAP increase.","episode_id":"iv_000226","anchor_time":48} {"id":"CVR_multivariable_iv_000495_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, respiratory rate, SpO2, and MAP?\nOptions: A. heart rate decrease occurs first, followed by respiratory rate increase, then SpO2 increase, and finally MAP increase. B. heart rate decrease occurs first, followed by SpO2 increase, then respiratory rate increase, and finally MAP increase. C. heart rate decrease occurs first, followed by SpO2 increase, then MAP increase, and finally respiratory rate increase. D. SpO2 increase occurs first, followed by heart rate decrease, then respiratory rate increase, and finally MAP increase.","answer":"B","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then respiratory rate increase, and finally MAP increase.","episode_id":"iv_000495","anchor_time":24} {"id":"CVR_multivariable_iv_000495_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in MAP, creatinine, temperature, white blood cell count, and urine output?\nOptions: A. MAP increase occurs first, followed by temperature increase, then urine output decrease, then creatinine decrease, and finally white blood cell count increase. B. MAP increase occurs first, followed by temperature increase, then creatinine decrease, then urine output decrease, and finally white blood cell count increase. C. MAP increase occurs first, followed by urine output decrease, then temperature increase, then creatinine decrease, and finally white blood cell count increase. D. temperature increase occurs first, followed by MAP increase, then urine output decrease, then creatinine decrease, and finally white blood cell count increase.","answer":"A","answer_text":"MAP increase occurs first, followed by temperature increase, then urine output decrease, then creatinine decrease, and finally white blood cell count increase.","episode_id":"iv_000495","anchor_time":48} {"id":"CVR_multivariable_iv_000113_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure increase relative to the first heart rate decrease, respiratory rate decrease, and MAP decrease?\nOptions: A. The first diastolic blood pressure increase occurs after the first heart rate decrease, respiratory rate decrease, and MAP decrease. B. The first diastolic blood pressure increase occurs before the first MAP decrease, but after the first heart rate decrease and respiratory rate decrease. C. The first diastolic blood pressure increase occurs before the first heart rate decrease, respiratory rate decrease, and MAP decrease. D. The first diastolic blood pressure increase occurs before the first heart rate decrease and MAP decrease, but after the first respiratory rate decrease.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first MAP decrease, but after the first heart rate decrease and respiratory rate decrease.","episode_id":"iv_000113","anchor_time":48} {"id":"CVR_multivariable_iv_000019_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 decrease compare with the first respiratory rate increase, heart rate increase, and diastolic blood pressure decrease?\nOptions: A. The first SpO2 decrease occurs before the first respiratory rate increase and diastolic blood pressure decrease, but after the first heart rate increase. B. The first SpO2 decrease occurs after the first respiratory rate increase, heart rate increase, and diastolic blood pressure decrease. C. The first SpO2 decrease occurs before the first respiratory rate increase, heart rate increase, and diastolic blood pressure decrease. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate increase.","episode_id":"iv_000019","anchor_time":48} {"id":"CVR_multivariable_iv_000019_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first MAP decrease, temperature decrease, and diastolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first temperature decrease and diastolic blood pressure increase, but after the first MAP decrease. B. The first heart rate decrease occurs before the first MAP decrease and diastolic blood pressure increase, but after the first temperature decrease. C. The first heart rate decrease occurs before the first MAP decrease, temperature decrease, and diastolic blood pressure increase. D. The first heart rate decrease occurs after the first MAP decrease, temperature decrease, and diastolic blood pressure increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first MAP decrease, temperature decrease, and diastolic blood pressure increase.","episode_id":"iv_000019","anchor_time":48} {"id":"CVR_multivariable_iv_000218_w48_1","question":"In the opening 48 hours, compare the first respiratory rate increase with the first heart rate increase, SpO2 increase, and diastolic blood pressure increase; which option is correct?\nOptions: A. The first respiratory rate increase occurs after the first heart rate increase, SpO2 increase, and diastolic blood pressure increase. B. The first respiratory rate increase occurs before the first diastolic blood pressure increase, but after the first heart rate increase and SpO2 increase. C. The first respiratory rate increase occurs before the first heart rate increase and diastolic blood pressure increase, but after the first SpO2 increase. D. The first respiratory rate increase occurs before the first heart rate increase, SpO2 increase, and diastolic blood pressure increase.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure increase, but after the first heart rate increase and SpO2 increase.","episode_id":"iv_000218","anchor_time":48} {"id":"CVR_multivariable_iv_000118_w48_2","question":"In the opening 48 hours, compare the first urine output decrease with the first heart rate decrease, systolic blood pressure decrease, and MAP decrease; which option is correct?\nOptions: A. The first urine output decrease occurs before the first MAP decrease, but after the first heart rate decrease and systolic blood pressure decrease. B. The first urine output decrease occurs before the first heart rate decrease, systolic blood pressure decrease, and MAP decrease. C. The first urine output decrease occurs after the first heart rate decrease, systolic blood pressure decrease, and MAP decrease. D. The first urine output decrease occurs before the first systolic blood pressure decrease and MAP decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first urine output decrease occurs before the first systolic blood pressure decrease and MAP decrease, but after the first heart rate decrease.","episode_id":"iv_000118","anchor_time":48} {"id":"CVR_multivariable_iv_000364_w48_2","question":"For the initial 48 hours, was the first MAP decrease earlier than the first respiratory rate decrease, temperature decrease, and systolic blood pressure increase?\nOptions: A. The first MAP decrease occurs after the first respiratory rate decrease, temperature decrease, and systolic blood pressure increase. B. The first MAP decrease occurs before the first temperature decrease and systolic blood pressure increase, but after the first respiratory rate decrease. C. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first respiratory rate decrease and temperature decrease. D. The first MAP decrease occurs before the first respiratory rate decrease, temperature decrease, and systolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first temperature decrease and systolic blood pressure increase, but after the first respiratory rate decrease.","episode_id":"iv_000364","anchor_time":48} {"id":"CVR_multivariable_iv_000385_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first MAP decrease falls relative to the first SpO2 increase, heart rate decrease, and respiratory rate decrease?\nOptions: A. The first MAP decrease occurs before the first SpO2 increase and respiratory rate decrease, but after the first heart rate decrease. B. The first MAP decrease occurs after the first SpO2 increase, heart rate decrease, and respiratory rate decrease. C. The first MAP decrease occurs before the first SpO2 increase, heart rate decrease, and respiratory rate decrease. D. The first MAP decrease occurs before the first respiratory rate decrease, but after the first SpO2 increase and heart rate decrease.","answer":"D","answer_text":"The first MAP decrease occurs before the first respiratory rate decrease, but after the first SpO2 increase and heart rate decrease.","episode_id":"iv_000385","anchor_time":48} {"id":"CVR_multivariable_iv_000385_w48_1","question":"Looking only at the first 48 hours, which sequence best captures how SpO2, temperature, heart rate, MAP, and diastolic blood pressure changed over time?\nOptions: A. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, then MAP increase, and finally temperature increase. B. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, then SpO2 decrease, and finally temperature increase. C. diastolic blood pressure decrease occurs first, followed by heart rate decrease, then MAP increase, then SpO2 decrease, and finally temperature increase. D. heart rate decrease occurs first, followed by MAP increase, then diastolic blood pressure decrease, then SpO2 decrease, and finally temperature increase.","answer":"B","answer_text":"heart rate decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, then SpO2 decrease, and finally temperature increase.","episode_id":"iv_000385","anchor_time":48} {"id":"CVR_multivariable_iv_000437_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first respiratory rate increase, systolic blood pressure decrease, and MAP increase?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate increase, systolic blood pressure decrease, and MAP increase. B. The first SpO2 increase occurs before the first systolic blood pressure decrease and MAP increase, but after the first respiratory rate increase. C. The first SpO2 increase occurs after the first respiratory rate increase, systolic blood pressure decrease, and MAP increase. D. The first SpO2 increase occurs before the first respiratory rate increase and MAP increase, but after the first systolic blood pressure decrease.","answer":"A","answer_text":"The first SpO2 increase occurs before the first respiratory rate increase, systolic blood pressure decrease, and MAP increase.","episode_id":"iv_000437","anchor_time":48} {"id":"CVR_multivariable_iv_000437_w48_1","question":"Looking only at the first 48 hours, did the first SpO2 increase come before the first respiratory rate decrease, heart rate decrease, and systolic blood pressure decrease?\nOptions: A. The first SpO2 increase occurs after the first respiratory rate decrease, heart rate decrease, and systolic blood pressure decrease. B. The first SpO2 increase occurs before the first heart rate decrease and systolic blood pressure decrease, but after the first respiratory rate decrease. C. The first SpO2 increase occurs before the first respiratory rate decrease, heart rate decrease, and systolic blood pressure decrease. D. The first SpO2 increase occurs before the first systolic blood pressure decrease, but after the first respiratory rate decrease and heart rate decrease.","answer":"B","answer_text":"The first SpO2 increase occurs before the first heart rate decrease and systolic blood pressure decrease, but after the first respiratory rate decrease.","episode_id":"iv_000437","anchor_time":48} {"id":"CVR_multivariable_iv_000293_w48_0","question":"For the initial 48 hours, which option best matches the order in which diastolic blood pressure, lactate, temperature, urine output, and respiratory rate first changed?\nOptions: A. diastolic blood pressure decrease occurs first, followed by temperature decrease, then lactate decrease, then respiratory rate decrease, and finally urine output increase. B. diastolic blood pressure decrease occurs first, followed by temperature decrease, then respiratory rate decrease, then lactate decrease, and finally urine output increase. C. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then temperature decrease, then lactate decrease, and finally urine output increase. D. temperature decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, then lactate decrease, and finally urine output increase.","answer":"B","answer_text":"diastolic blood pressure decrease occurs first, followed by temperature decrease, then respiratory rate decrease, then lactate decrease, and finally urine output increase.","episode_id":"iv_000293","anchor_time":48} {"id":"CVR_multivariable_iv_000293_w48_2","question":"For the initial 48 hours, was the first diastolic blood pressure increase earlier than the first heart rate increase, SpO2 increase, and systolic blood pressure decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease, but after the first heart rate increase and SpO2 increase. B. The first diastolic blood pressure increase occurs after the first heart rate increase, SpO2 increase, and systolic blood pressure decrease. C. The first diastolic blood pressure increase occurs before the first heart rate increase, SpO2 increase, and systolic blood pressure decrease. D. The first diastolic blood pressure increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first heart rate increase.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000293","anchor_time":48} {"id":"CVR_multivariable_iv_000293_w24_0","question":"Across the first 24 hours, how did the first changes in SpO2, systolic blood pressure, MAP, and diastolic blood pressure unfold?\nOptions: A. systolic blood pressure increase occurs first, followed by diastolic blood pressure increase, then SpO2 increase, and finally MAP decrease. B. systolic blood pressure increase occurs first, followed by SpO2 increase, then diastolic blood pressure increase, and finally MAP decrease. C. diastolic blood pressure increase occurs first, followed by systolic blood pressure increase, then SpO2 increase, and finally MAP decrease. D. systolic blood pressure increase occurs first, followed by diastolic blood pressure increase, then MAP decrease, and finally SpO2 increase.","answer":"A","answer_text":"systolic blood pressure increase occurs first, followed by diastolic blood pressure increase, then SpO2 increase, and finally MAP decrease.","episode_id":"iv_000293","anchor_time":24} {"id":"CVR_multivariable_iv_000493_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP decrease relative to the first SpO2 increase, respiratory rate increase, and systolic blood pressure increase?\nOptions: A. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first SpO2 increase and respiratory rate increase. B. The first MAP decrease occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first SpO2 increase. C. The first MAP decrease occurs after the first SpO2 increase, respiratory rate increase, and systolic blood pressure increase. D. The first MAP decrease occurs before the first SpO2 increase, respiratory rate increase, and systolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first SpO2 increase.","episode_id":"iv_000493","anchor_time":48} {"id":"CVR_multivariable_iv_000378_w48_0","question":"Across the first 48 hours, does the first creatinine decrease happen before the first diastolic blood pressure decrease, systolic blood pressure increase, and respiratory rate increase?\nOptions: A. The first creatinine decrease occurs before the first diastolic blood pressure decrease, systolic blood pressure increase, and respiratory rate increase. B. The first creatinine decrease occurs after the first diastolic blood pressure decrease, systolic blood pressure increase, and respiratory rate increase. C. The first creatinine decrease occurs before the first diastolic blood pressure decrease and respiratory rate increase, but after the first systolic blood pressure increase. D. The first creatinine decrease occurs before the first respiratory rate increase, but after the first diastolic blood pressure decrease and systolic blood pressure increase.","answer":"D","answer_text":"The first creatinine decrease occurs before the first respiratory rate increase, but after the first diastolic blood pressure decrease and systolic blood pressure increase.","episode_id":"iv_000378","anchor_time":48} {"id":"CVR_multivariable_iv_000241_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate increase relative to the first MAP increase, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first heart rate increase occurs before the first MAP increase, respiratory rate decrease, and diastolic blood pressure decrease. B. The first heart rate increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first MAP increase. C. The first heart rate increase occurs before the first diastolic blood pressure decrease, but after the first MAP increase and respiratory rate decrease. D. The first heart rate increase occurs after the first MAP increase, respiratory rate decrease, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first heart rate increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first MAP increase.","episode_id":"iv_000241","anchor_time":48} {"id":"CVR_multivariable_iv_000027_w48_0","question":"During the first 48 hours, which option correctly describes whether the first MAP decrease preceded the first temperature increase, diastolic blood pressure increase, and urine output increase?\nOptions: A. The first MAP decrease occurs before the first urine output increase, but after the first temperature increase and diastolic blood pressure increase. B. The first MAP decrease occurs before the first temperature increase, diastolic blood pressure increase, and urine output increase. C. The first MAP decrease occurs after the first temperature increase, diastolic blood pressure increase, and urine output increase. D. The first MAP decrease occurs before the first diastolic blood pressure increase and urine output increase, but after the first temperature increase.","answer":"D","answer_text":"The first MAP decrease occurs before the first diastolic blood pressure increase and urine output increase, but after the first temperature increase.","episode_id":"iv_000027","anchor_time":48} {"id":"CVR_multivariable_iv_000027_w48_1","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in MAP, lactate, white blood cell count, SpO2, and creatinine?\nOptions: A. MAP increase occurs first, followed by SpO2 decrease, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease. B. MAP increase occurs first, followed by white blood cell count decrease, then SpO2 decrease, then lactate decrease, and finally creatinine decrease. C. MAP increase occurs first, followed by SpO2 decrease, then lactate decrease, then white blood cell count decrease, and finally creatinine decrease. D. SpO2 decrease occurs first, followed by MAP increase, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease.","answer":"A","answer_text":"MAP increase occurs first, followed by SpO2 decrease, then white blood cell count decrease, then lactate decrease, and finally creatinine decrease.","episode_id":"iv_000027","anchor_time":48} {"id":"CVR_multivariable_iv_000220_w48_1","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure increase compare with the first SpO2 decrease, respiratory rate decrease, and MAP decrease?\nOptions: A. The first diastolic blood pressure increase occurs after the first SpO2 decrease, respiratory rate decrease, and MAP decrease. B. The first diastolic blood pressure increase occurs before the first respiratory rate decrease and MAP decrease, but after the first SpO2 decrease. C. The first diastolic blood pressure increase occurs before the first MAP decrease, but after the first SpO2 decrease and respiratory rate decrease. D. The first diastolic blood pressure increase occurs before the first SpO2 decrease, respiratory rate decrease, and MAP decrease.","answer":"B","answer_text":"The first diastolic blood pressure increase occurs before the first respiratory rate decrease and MAP decrease, but after the first SpO2 decrease.","episode_id":"iv_000220","anchor_time":48} {"id":"CVR_multivariable_iv_000103_w48_0","question":"In the opening 48 hours, compare the first SpO2 decrease with the first MAP increase, systolic blood pressure decrease, and heart rate increase; which option is correct?\nOptions: A. The first SpO2 decrease occurs before the first MAP increase, systolic blood pressure decrease, and heart rate increase. B. The first SpO2 decrease occurs before the first MAP increase and heart rate increase, but after the first systolic blood pressure decrease. C. The first SpO2 decrease occurs before the first systolic blood pressure decrease and heart rate increase, but after the first MAP increase. D. The first SpO2 decrease occurs after the first MAP increase, systolic blood pressure decrease, and heart rate increase.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first MAP increase, systolic blood pressure decrease, and heart rate increase.","episode_id":"iv_000103","anchor_time":48} {"id":"CVR_multivariable_iv_000103_w48_1","question":"In the opening 48 hours, compare the first MAP decrease with the first SpO2 decrease, diastolic blood pressure increase, and heart rate increase; which option is correct?\nOptions: A. The first MAP decrease occurs after the first SpO2 decrease, diastolic blood pressure increase, and heart rate increase. B. The first MAP decrease occurs before the first heart rate increase, but after the first SpO2 decrease and diastolic blood pressure increase. C. The first MAP decrease occurs before the first SpO2 decrease, diastolic blood pressure increase, and heart rate increase. D. The first MAP decrease occurs before the first SpO2 decrease and heart rate increase, but after the first diastolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first heart rate increase, but after the first SpO2 decrease and diastolic blood pressure increase.","episode_id":"iv_000103","anchor_time":48} {"id":"CVR_multivariable_iv_000481_w48_1","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate decrease preceded the first MAP decrease, systolic blood pressure increase, and white blood cell count increase?\nOptions: A. The first respiratory rate decrease occurs before the first white blood cell count increase, but after the first MAP decrease and systolic blood pressure increase. B. The first respiratory rate decrease occurs before the first MAP decrease, systolic blood pressure increase, and white blood cell count increase. C. The first respiratory rate decrease occurs after the first MAP decrease, systolic blood pressure increase, and white blood cell count increase. D. The first respiratory rate decrease occurs before the first systolic blood pressure increase and white blood cell count increase, but after the first MAP decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first systolic blood pressure increase and white blood cell count increase, but after the first MAP decrease.","episode_id":"iv_000481","anchor_time":48} {"id":"CVR_multivariable_iv_000481_w48_2","question":"Across the first 48 hours, how did the first changes in lactate, white blood cell count, urine output, temperature, and SpO2 unfold?\nOptions: A. SpO2 decrease occurs first, followed by temperature increase, then urine output increase, then lactate decrease, and finally white blood cell count decrease. B. SpO2 decrease occurs first, followed by temperature increase, then lactate decrease, then urine output increase, and finally white blood cell count decrease. C. SpO2 decrease occurs first, followed by urine output increase, then temperature increase, then lactate decrease, and finally white blood cell count decrease. D. temperature increase occurs first, followed by SpO2 decrease, then urine output increase, then lactate decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by temperature increase, then urine output increase, then lactate decrease, and finally white blood cell count decrease.","episode_id":"iv_000481","anchor_time":48} {"id":"CVR_multivariable_iv_000025_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first respiratory rate increase, systolic blood pressure increase, and SpO2 increase?\nOptions: A. The first heart rate decrease occurs before the first SpO2 increase, but after the first respiratory rate increase and systolic blood pressure increase. B. The first heart rate decrease occurs before the first systolic blood pressure increase and SpO2 increase, but after the first respiratory rate increase. C. The first heart rate decrease occurs after the first respiratory rate increase, systolic blood pressure increase, and SpO2 increase. D. The first heart rate decrease occurs before the first respiratory rate increase, systolic blood pressure increase, and SpO2 increase.","answer":"B","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure increase and SpO2 increase, but after the first respiratory rate increase.","episode_id":"iv_000025","anchor_time":48} {"id":"CVR_multivariable_iv_000307_w48_0","question":"For the initial 48 hours, was the first systolic blood pressure increase earlier than the first diastolic blood pressure increase, lactate decrease, and respiratory rate increase?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first lactate decrease. B. The first systolic blood pressure increase occurs before the first diastolic blood pressure increase, lactate decrease, and respiratory rate increase. C. The first systolic blood pressure increase occurs after the first diastolic blood pressure increase, lactate decrease, and respiratory rate increase. D. The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first diastolic blood pressure increase and lactate decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, but after the first diastolic blood pressure increase and lactate decrease.","episode_id":"iv_000307","anchor_time":48} {"id":"CVR_multivariable_iv_000307_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in temperature, white blood cell count, urine output, creatinine, and respiratory rate?\nOptions: A. urine output decrease occurs first, followed by respiratory rate increase, then white blood cell count increase, then creatinine decrease, and finally temperature decrease. B. respiratory rate increase occurs first, followed by urine output decrease, then white blood cell count increase, then creatinine decrease, and finally temperature decrease. C. respiratory rate increase occurs first, followed by urine output decrease, then creatinine decrease, then white blood cell count increase, and finally temperature decrease. D. respiratory rate increase occurs first, followed by white blood cell count increase, then urine output decrease, then creatinine decrease, and finally temperature decrease.","answer":"B","answer_text":"respiratory rate increase occurs first, followed by urine output decrease, then white blood cell count increase, then creatinine decrease, and finally temperature decrease.","episode_id":"iv_000307","anchor_time":48} {"id":"CVR_multivariable_iv_000450_w48_0","question":"In the first 48 hours, which option puts the first changes in lactate, white blood cell count, urine output, temperature, and systolic blood pressure in the right order?\nOptions: A. systolic blood pressure increase occurs first, followed by urine output increase, then temperature decrease, then white blood cell count increase, and finally lactate decrease. B. systolic blood pressure increase occurs first, followed by temperature decrease, then urine output increase, then white blood cell count increase, and finally lactate decrease. C. systolic blood pressure increase occurs first, followed by temperature decrease, then white blood cell count increase, then urine output increase, and finally lactate decrease. D. temperature decrease occurs first, followed by systolic blood pressure increase, then urine output increase, then white blood cell count increase, and finally lactate decrease.","answer":"B","answer_text":"systolic blood pressure increase occurs first, followed by temperature decrease, then urine output increase, then white blood cell count increase, and finally lactate decrease.","episode_id":"iv_000450","anchor_time":48} {"id":"CVR_multivariable_iv_000450_w48_2","question":"Looking only at the first 48 hours, did the first MAP increase come before the first respiratory rate decrease, heart rate increase, and diastolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first respiratory rate decrease, heart rate increase, and diastolic blood pressure decrease. B. The first MAP increase occurs after the first respiratory rate decrease, heart rate increase, and diastolic blood pressure decrease. C. The first MAP increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first heart rate increase. D. The first MAP increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate decrease and heart rate increase.","answer":"D","answer_text":"The first MAP increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate decrease and heart rate increase.","episode_id":"iv_000450","anchor_time":48} {"id":"CVR_multivariable_iv_000450_w24_0","question":"In the first 24 hours, which option puts the first changes in heart rate, respiratory rate, diastolic blood pressure, and SpO2 in the right order?\nOptions: A. SpO2 decrease occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally respiratory rate increase. B. SpO2 decrease occurs first, followed by heart rate increase, then respiratory rate increase, and finally diastolic blood pressure increase. C. heart rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, and finally respiratory rate increase. D. SpO2 decrease occurs first, followed by diastolic blood pressure increase, then heart rate increase, and finally respiratory rate increase.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by heart rate increase, then diastolic blood pressure increase, and finally respiratory rate increase.","episode_id":"iv_000450","anchor_time":24} {"id":"CVR_multivariable_iv_000475_w48_0","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for systolic blood pressure, lactate, temperature, urine output, and white blood cell count?\nOptions: A. urine output increase occurs first, followed by systolic blood pressure increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase. B. systolic blood pressure increase occurs first, followed by lactate decrease, then urine output increase, then white blood cell count decrease, and finally temperature increase. C. systolic blood pressure increase occurs first, followed by urine output increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase. D. systolic blood pressure increase occurs first, followed by urine output increase, then white blood cell count decrease, then lactate decrease, and finally temperature increase.","answer":"C","answer_text":"systolic blood pressure increase occurs first, followed by urine output increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase.","episode_id":"iv_000475","anchor_time":48} {"id":"CVR_multivariable_iv_000475_w48_1","question":"In the opening 48 hours, compare the first SpO2 increase with the first heart rate decrease, systolic blood pressure decrease, and white blood cell count increase; which option is correct?\nOptions: A. The first SpO2 increase occurs before the first heart rate decrease, systolic blood pressure decrease, and white blood cell count increase. B. The first SpO2 increase occurs before the first systolic blood pressure decrease and white blood cell count increase, but after the first heart rate decrease. C. The first SpO2 increase occurs before the first heart rate decrease and white blood cell count increase, but after the first systolic blood pressure decrease. D. The first SpO2 increase occurs after the first heart rate decrease, systolic blood pressure decrease, and white blood cell count increase.","answer":"A","answer_text":"The first SpO2 increase occurs before the first heart rate decrease, systolic blood pressure decrease, and white blood cell count increase.","episode_id":"iv_000475","anchor_time":48} {"id":"CVR_multivariable_iv_000475_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first SpO2 increase, MAP decrease, and diastolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs after the first SpO2 increase, MAP decrease, and diastolic blood pressure increase. B. The first heart rate decrease occurs before the first MAP decrease and diastolic blood pressure increase, but after the first SpO2 increase. C. The first heart rate decrease occurs before the first diastolic blood pressure increase, but after the first SpO2 increase and MAP decrease. D. The first heart rate decrease occurs before the first SpO2 increase, MAP decrease, and diastolic blood pressure increase.","answer":"B","answer_text":"The first heart rate decrease occurs before the first MAP decrease and diastolic blood pressure increase, but after the first SpO2 increase.","episode_id":"iv_000475","anchor_time":48} {"id":"CVR_multivariable_iv_000221_w48_0","question":"In the opening 48 hours, compare the first SpO2 decrease with the first lactate increase, diastolic blood pressure increase, and respiratory rate increase; which option is correct?\nOptions: A. The first SpO2 decrease occurs before the first lactate increase, diastolic blood pressure increase, and respiratory rate increase. B. The first SpO2 decrease occurs after the first lactate increase, diastolic blood pressure increase, and respiratory rate increase. C. The first SpO2 decrease occurs before the first lactate increase and respiratory rate increase, but after the first diastolic blood pressure increase. D. The first SpO2 decrease occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first lactate increase.","answer":"A","answer_text":"The first SpO2 decrease occurs before the first lactate increase, diastolic blood pressure increase, and respiratory rate increase.","episode_id":"iv_000221","anchor_time":48} {"id":"CVR_multivariable_iv_000221_w48_1","question":"In the opening 48 hours, compare the first lactate increase with the first heart rate decrease, diastolic blood pressure increase, and respiratory rate increase; which option is correct?\nOptions: A. The first lactate increase occurs before the first respiratory rate increase, but after the first heart rate decrease and diastolic blood pressure increase. B. The first lactate increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate decrease. C. The first lactate increase occurs after the first heart rate decrease, diastolic blood pressure increase, and respiratory rate increase. D. The first lactate increase occurs before the first heart rate decrease, diastolic blood pressure increase, and respiratory rate increase.","answer":"B","answer_text":"The first lactate increase occurs before the first diastolic blood pressure increase and respiratory rate increase, but after the first heart rate decrease.","episode_id":"iv_000221","anchor_time":48} {"id":"CVR_multivariable_iv_000221_w48_2","question":"For the initial 48 hours, which option best matches the order in which temperature, respiratory rate, lactate, creatinine, and diastolic blood pressure first changed?\nOptions: A. diastolic blood pressure increase occurs first, followed by lactate decrease, then respiratory rate increase, then temperature increase, and finally creatinine increase. B. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then lactate decrease, then temperature increase, and finally creatinine increase. C. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then lactate decrease, then temperature increase, and finally creatinine increase. D. diastolic blood pressure increase occurs first, followed by respiratory rate increase, then temperature increase, then lactate decrease, and finally creatinine increase.","answer":"C","answer_text":"diastolic blood pressure increase occurs first, followed by respiratory rate increase, then lactate decrease, then temperature increase, and finally creatinine increase.","episode_id":"iv_000221","anchor_time":48} {"id":"CVR_multivariable_iv_000416_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 increase falls relative to the first respiratory rate increase, systolic blood pressure decrease, and heart rate decrease?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate increase and heart rate decrease, but after the first systolic blood pressure decrease. B. The first SpO2 increase occurs after the first respiratory rate increase, systolic blood pressure decrease, and heart rate decrease. C. The first SpO2 increase occurs before the first respiratory rate increase, systolic blood pressure decrease, and heart rate decrease. D. The first SpO2 increase occurs before the first systolic blood pressure decrease and heart rate decrease, but after the first respiratory rate increase.","answer":"C","answer_text":"The first SpO2 increase occurs before the first respiratory rate increase, systolic blood pressure decrease, and heart rate decrease.","episode_id":"iv_000416","anchor_time":48} {"id":"CVR_multivariable_iv_000416_w48_2","question":"In the opening 48 hours, compare the first MAP decrease with the first respiratory rate increase, heart rate decrease, and systolic blood pressure increase; which option is correct?\nOptions: A. The first MAP decrease occurs before the first respiratory rate increase, heart rate decrease, and systolic blood pressure increase. B. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first respiratory rate increase and heart rate decrease. C. The first MAP decrease occurs after the first respiratory rate increase, heart rate decrease, and systolic blood pressure increase. D. The first MAP decrease occurs before the first heart rate decrease and systolic blood pressure increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first MAP decrease occurs before the first heart rate decrease and systolic blood pressure increase, but after the first respiratory rate increase.","episode_id":"iv_000416","anchor_time":48} {"id":"CVR_multivariable_iv_000416_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for diastolic blood pressure, heart rate, respiratory rate, and urine output?\nOptions: A. respiratory rate increase occurs first, followed by urine output decrease, then heart rate decrease, and finally diastolic blood pressure increase. B. respiratory rate increase occurs first, followed by urine output decrease, then diastolic blood pressure increase, and finally heart rate decrease. C. respiratory rate increase occurs first, followed by heart rate decrease, then urine output decrease, and finally diastolic blood pressure increase. D. urine output decrease occurs first, followed by respiratory rate increase, then heart rate decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"respiratory rate increase occurs first, followed by urine output decrease, then heart rate decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000416","anchor_time":24} {"id":"CVR_multivariable_iv_000105_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in lactate, temperature, urine output, white blood cell count, and creatinine?\nOptions: A. temperature decrease occurs first, followed by lactate decrease, then urine output increase, then white blood cell count decrease, and finally creatinine decrease. B. lactate decrease occurs first, followed by temperature decrease, then white blood cell count decrease, then urine output increase, and finally creatinine decrease. C. temperature decrease occurs first, followed by lactate decrease, then white blood cell count decrease, then urine output increase, and finally creatinine decrease. D. temperature decrease occurs first, followed by white blood cell count decrease, then lactate decrease, then urine output increase, and finally creatinine decrease.","answer":"C","answer_text":"temperature decrease occurs first, followed by lactate decrease, then white blood cell count decrease, then urine output increase, and finally creatinine decrease.","episode_id":"iv_000105","anchor_time":48} {"id":"CVR_multivariable_iv_000105_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP decrease relative to the first respiratory rate increase, heart rate increase, and systolic blood pressure increase?\nOptions: A. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first respiratory rate increase and heart rate increase. B. The first MAP decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first respiratory rate increase. C. The first MAP decrease occurs before the first respiratory rate increase, heart rate increase, and systolic blood pressure increase. D. The first MAP decrease occurs after the first respiratory rate increase, heart rate increase, and systolic blood pressure increase.","answer":"B","answer_text":"The first MAP decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first respiratory rate increase.","episode_id":"iv_000105","anchor_time":48} {"id":"CVR_multivariable_iv_000090_w48_1","question":"Across the first 48 hours, does the first respiratory rate increase happen before the first MAP increase, systolic blood pressure decrease, and diastolic blood pressure decrease?\nOptions: A. The first respiratory rate increase occurs before the first MAP increase and diastolic blood pressure decrease, but after the first systolic blood pressure decrease. B. The first respiratory rate increase occurs before the first diastolic blood pressure decrease, but after the first MAP increase and systolic blood pressure decrease. C. The first respiratory rate increase occurs after the first MAP increase, systolic blood pressure decrease, and diastolic blood pressure decrease. D. The first respiratory rate increase occurs before the first MAP increase, systolic blood pressure decrease, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure decrease, but after the first MAP increase and systolic blood pressure decrease.","episode_id":"iv_000090","anchor_time":48} {"id":"CVR_multivariable_iv_000452_w48_1","question":"Across the first 48 hours, does the first diastolic blood pressure increase happen before the first SpO2 decrease, heart rate increase, and systolic blood pressure decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first SpO2 decrease, heart rate increase, and systolic blood pressure decrease. B. The first diastolic blood pressure increase occurs after the first SpO2 decrease, heart rate increase, and systolic blood pressure decrease. C. The first diastolic blood pressure increase occurs before the first systolic blood pressure decrease, but after the first SpO2 decrease and heart rate increase. D. The first diastolic blood pressure increase occurs before the first heart rate increase and systolic blood pressure decrease, but after the first SpO2 decrease.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first heart rate increase and systolic blood pressure decrease, but after the first SpO2 decrease.","episode_id":"iv_000452","anchor_time":48} {"id":"CVR_multivariable_iv_000168_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure decrease relative to the first diastolic blood pressure decrease, heart rate increase, and MAP increase?\nOptions: A. The first systolic blood pressure decrease occurs after the first diastolic blood pressure decrease, heart rate increase, and MAP increase. B. The first systolic blood pressure decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate increase. C. The first systolic blood pressure decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first heart rate increase. D. The first systolic blood pressure decrease occurs before the first diastolic blood pressure decrease, heart rate increase, and MAP increase.","answer":"B","answer_text":"The first systolic blood pressure decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate increase.","episode_id":"iv_000168","anchor_time":48} {"id":"CVR_multivariable_iv_000240_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first urine output decrease falls relative to the first MAP decrease, diastolic blood pressure decrease, and heart rate decrease?\nOptions: A. The first urine output decrease occurs before the first MAP decrease, diastolic blood pressure decrease, and heart rate decrease. B. The first urine output decrease occurs before the first MAP decrease and heart rate decrease, but after the first diastolic blood pressure decrease. C. The first urine output decrease occurs after the first MAP decrease, diastolic blood pressure decrease, and heart rate decrease. D. The first urine output decrease occurs before the first heart rate decrease, but after the first MAP decrease and diastolic blood pressure decrease.","answer":"D","answer_text":"The first urine output decrease occurs before the first heart rate decrease, but after the first MAP decrease and diastolic blood pressure decrease.","episode_id":"iv_000240","anchor_time":48} {"id":"CVR_multivariable_iv_000402_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in systolic blood pressure, temperature, white blood cell count, creatinine, and urine output?\nOptions: A. systolic blood pressure decrease occurs first, followed by urine output decrease, then temperature decrease, then creatinine decrease, and finally white blood cell count decrease. B. systolic blood pressure decrease occurs first, followed by creatinine decrease, then urine output decrease, then temperature decrease, and finally white blood cell count decrease. C. systolic blood pressure decrease occurs first, followed by urine output decrease, then creatinine decrease, then temperature decrease, and finally white blood cell count decrease. D. urine output decrease occurs first, followed by systolic blood pressure decrease, then creatinine decrease, then temperature decrease, and finally white blood cell count decrease.","answer":"C","answer_text":"systolic blood pressure decrease occurs first, followed by urine output decrease, then creatinine decrease, then temperature decrease, and finally white blood cell count decrease.","episode_id":"iv_000402","anchor_time":48} {"id":"CVR_multivariable_iv_000048_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first SpO2 increase, heart rate decrease, and MAP increase?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 increase, heart rate decrease, and MAP increase. B. The first respiratory rate decrease occurs after the first SpO2 increase, heart rate decrease, and MAP increase. C. The first respiratory rate decrease occurs before the first MAP increase, but after the first SpO2 increase and heart rate decrease. D. The first respiratory rate decrease occurs before the first heart rate decrease and MAP increase, but after the first SpO2 increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first heart rate decrease and MAP increase, but after the first SpO2 increase.","episode_id":"iv_000048","anchor_time":48} {"id":"CVR_multivariable_iv_000104_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first MAP increase falls relative to the first urine output decrease, SpO2 decrease, and systolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first urine output decrease, SpO2 decrease, and systolic blood pressure decrease. B. The first MAP increase occurs after the first urine output decrease, SpO2 decrease, and systolic blood pressure decrease. C. The first MAP increase occurs before the first SpO2 decrease and systolic blood pressure decrease, but after the first urine output decrease. D. The first MAP increase occurs before the first urine output decrease and systolic blood pressure decrease, but after the first SpO2 decrease.","answer":"A","answer_text":"The first MAP increase occurs before the first urine output decrease, SpO2 decrease, and systolic blood pressure decrease.","episode_id":"iv_000104","anchor_time":48} {"id":"CVR_multivariable_iv_000104_w48_2","question":"In the first 48 hours, how does the timing of the first MAP increase compare with the first heart rate increase, urine output decrease, and SpO2 decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 decrease, but after the first heart rate increase and urine output decrease. B. The first MAP increase occurs before the first urine output decrease and SpO2 decrease, but after the first heart rate increase. C. The first MAP increase occurs after the first heart rate increase, urine output decrease, and SpO2 decrease. D. The first MAP increase occurs before the first heart rate increase, urine output decrease, and SpO2 decrease.","answer":"B","answer_text":"The first MAP increase occurs before the first urine output decrease and SpO2 decrease, but after the first heart rate increase.","episode_id":"iv_000104","anchor_time":48} {"id":"CVR_multivariable_iv_000206_w48_0","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first MAP decrease, diastolic blood pressure increase, and urine output decrease?\nOptions: A. The first heart rate increase occurs after the first MAP decrease, diastolic blood pressure increase, and urine output decrease. B. The first heart rate increase occurs before the first MAP decrease and urine output decrease, but after the first diastolic blood pressure increase. C. The first heart rate increase occurs before the first MAP decrease, diastolic blood pressure increase, and urine output decrease. D. The first heart rate increase occurs before the first urine output decrease, but after the first MAP decrease and diastolic blood pressure increase.","answer":"D","answer_text":"The first heart rate increase occurs before the first urine output decrease, but after the first MAP decrease and diastolic blood pressure increase.","episode_id":"iv_000206","anchor_time":48} {"id":"CVR_multivariable_iv_000206_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in lactate, temperature, creatinine, white blood cell count, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by temperature increase, then white blood cell count decrease, then lactate decrease, and finally creatinine increase. B. heart rate decrease occurs first, followed by temperature increase, then lactate decrease, then white blood cell count decrease, and finally creatinine increase. C. temperature increase occurs first, followed by heart rate decrease, then white blood cell count decrease, then lactate decrease, and finally creatinine increase. D. heart rate decrease occurs first, followed by white blood cell count decrease, then temperature increase, then lactate decrease, and finally creatinine increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by temperature increase, then white blood cell count decrease, then lactate decrease, and finally creatinine increase.","episode_id":"iv_000206","anchor_time":48} {"id":"CVR_multivariable_iv_000247_w48_1","question":"In the opening 48 hours, compare the first respiratory rate increase with the first heart rate decrease, systolic blood pressure decrease, and MAP decrease; which option is correct?\nOptions: A. The first respiratory rate increase occurs after the first heart rate decrease, systolic blood pressure decrease, and MAP decrease. B. The first respiratory rate increase occurs before the first MAP decrease, but after the first heart rate decrease and systolic blood pressure decrease. C. The first respiratory rate increase occurs before the first heart rate decrease, systolic blood pressure decrease, and MAP decrease. D. The first respiratory rate increase occurs before the first heart rate decrease and MAP decrease, but after the first systolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first MAP decrease, but after the first heart rate decrease and systolic blood pressure decrease.","episode_id":"iv_000247","anchor_time":48} {"id":"CVR_multivariable_iv_000200_w48_1","question":"Across the first 48 hours, does the first diastolic blood pressure increase happen before the first SpO2 increase, heart rate increase, and MAP decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate increase and MAP decrease, but after the first SpO2 increase. B. The first diastolic blood pressure increase occurs after the first SpO2 increase, heart rate increase, and MAP decrease. C. The first diastolic blood pressure increase occurs before the first SpO2 increase, heart rate increase, and MAP decrease. D. The first diastolic blood pressure increase occurs before the first SpO2 increase and MAP decrease, but after the first heart rate increase.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first SpO2 increase, heart rate increase, and MAP decrease.","episode_id":"iv_000200","anchor_time":48} {"id":"CVR_multivariable_iv_000200_w48_2","question":"In the opening 48 hours, compare the first systolic blood pressure increase with the first respiratory rate increase, SpO2 increase, and heart rate increase; which option is correct?\nOptions: A. The first systolic blood pressure increase occurs before the first heart rate increase, but after the first respiratory rate increase and SpO2 increase. B. The first systolic blood pressure increase occurs before the first respiratory rate increase, SpO2 increase, and heart rate increase. C. The first systolic blood pressure increase occurs after the first respiratory rate increase, SpO2 increase, and heart rate increase. D. The first systolic blood pressure increase occurs before the first SpO2 increase and heart rate increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first SpO2 increase and heart rate increase, but after the first respiratory rate increase.","episode_id":"iv_000200","anchor_time":48} {"id":"CVR_multivariable_iv_000200_w24_0","question":"Across the first 24 hours, how did the first changes in diastolic blood pressure, heart rate, MAP, and SpO2 unfold?\nOptions: A. diastolic blood pressure increase occurs first, followed by SpO2 increase, then heart rate increase, and finally MAP decrease. B. diastolic blood pressure increase occurs first, followed by SpO2 increase, then MAP decrease, and finally heart rate increase. C. SpO2 increase occurs first, followed by diastolic blood pressure increase, then heart rate increase, and finally MAP decrease. D. diastolic blood pressure increase occurs first, followed by heart rate increase, then SpO2 increase, and finally MAP decrease.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by SpO2 increase, then heart rate increase, and finally MAP decrease.","episode_id":"iv_000200","anchor_time":24} {"id":"CVR_multivariable_iv_000062_w48_1","question":"For the initial 48 hours, was the first respiratory rate decrease earlier than the first diastolic blood pressure decrease, urine output decrease, and heart rate decrease?\nOptions: A. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, urine output decrease, and heart rate decrease. B. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and heart rate decrease, but after the first urine output decrease. C. The first respiratory rate decrease occurs before the first urine output decrease and heart rate decrease, but after the first diastolic blood pressure decrease. D. The first respiratory rate decrease occurs after the first diastolic blood pressure decrease, urine output decrease, and heart rate decrease.","answer":"A","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, urine output decrease, and heart rate decrease.","episode_id":"iv_000062","anchor_time":48} {"id":"CVR_multivariable_iv_000062_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 decrease falls relative to the first diastolic blood pressure decrease, heart rate decrease, and MAP increase?\nOptions: A. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, heart rate decrease, and MAP increase. B. The first SpO2 decrease occurs before the first heart rate decrease and MAP increase, but after the first diastolic blood pressure decrease. C. The first SpO2 decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate decrease. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, heart rate decrease, and MAP increase.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first heart rate decrease and MAP increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000062","anchor_time":48} {"id":"CVR_multivariable_iv_000477_w48_0","question":"During the first 48 hours, which option correctly describes whether the first MAP increase preceded the first SpO2 increase, respiratory rate decrease, and systolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 increase, respiratory rate decrease, and systolic blood pressure decrease. B. The first MAP increase occurs after the first SpO2 increase, respiratory rate decrease, and systolic blood pressure decrease. C. The first MAP increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first respiratory rate decrease. D. The first MAP increase occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate decrease.","answer":"D","answer_text":"The first MAP increase occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and respiratory rate decrease.","episode_id":"iv_000477","anchor_time":48} {"id":"CVR_multivariable_iv_000477_w48_1","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in temperature, urine output, creatinine, MAP, and diastolic blood pressure?\nOptions: A. diastolic blood pressure decrease occurs first, followed by MAP decrease, then temperature increase, then urine output increase, and finally creatinine increase. B. diastolic blood pressure decrease occurs first, followed by MAP decrease, then urine output increase, then temperature increase, and finally creatinine increase. C. MAP decrease occurs first, followed by diastolic blood pressure decrease, then temperature increase, then urine output increase, and finally creatinine increase. D. diastolic blood pressure decrease occurs first, followed by temperature increase, then MAP decrease, then urine output increase, and finally creatinine increase.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by MAP decrease, then temperature increase, then urine output increase, and finally creatinine increase.","episode_id":"iv_000477","anchor_time":48} {"id":"CVR_multivariable_iv_000477_w24_0","question":"For the initial 24 hours, which option best matches the order in which heart rate, SpO2, diastolic blood pressure, and systolic blood pressure first changed?\nOptions: A. heart rate increase occurs first, followed by SpO2 decrease, then systolic blood pressure increase, and finally diastolic blood pressure decrease. B. heart rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure decrease, and finally systolic blood pressure increase. C. SpO2 decrease occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally systolic blood pressure increase. D. heart rate increase occurs first, followed by diastolic blood pressure decrease, then SpO2 decrease, and finally systolic blood pressure increase.","answer":"B","answer_text":"heart rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure decrease, and finally systolic blood pressure increase.","episode_id":"iv_000477","anchor_time":24} {"id":"CVR_multivariable_iv_000146_w48_0","question":"For the initial 48 hours, which option best matches the order in which MAP, white blood cell count, SpO2, temperature, and urine output first changed?\nOptions: A. SpO2 decrease occurs first, followed by MAP increase, then temperature increase, then urine output increase, and finally white blood cell count decrease. B. MAP increase occurs first, followed by SpO2 decrease, then temperature increase, then urine output increase, and finally white blood cell count decrease. C. MAP increase occurs first, followed by temperature increase, then SpO2 decrease, then urine output increase, and finally white blood cell count decrease. D. MAP increase occurs first, followed by SpO2 decrease, then urine output increase, then temperature increase, and finally white blood cell count decrease.","answer":"B","answer_text":"MAP increase occurs first, followed by SpO2 decrease, then temperature increase, then urine output increase, and finally white blood cell count decrease.","episode_id":"iv_000146","anchor_time":48} {"id":"CVR_multivariable_iv_000146_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate increase relative to the first heart rate increase, systolic blood pressure increase, and urine output decrease?\nOptions: A. The first respiratory rate increase occurs after the first heart rate increase, systolic blood pressure increase, and urine output decrease. B. The first respiratory rate increase occurs before the first urine output decrease, but after the first heart rate increase and systolic blood pressure increase. C. The first respiratory rate increase occurs before the first heart rate increase, systolic blood pressure increase, and urine output decrease. D. The first respiratory rate increase occurs before the first systolic blood pressure increase and urine output decrease, but after the first heart rate increase.","answer":"D","answer_text":"The first respiratory rate increase occurs before the first systolic blood pressure increase and urine output decrease, but after the first heart rate increase.","episode_id":"iv_000146","anchor_time":48} {"id":"CVR_multivariable_iv_000225_w48_2","question":"In the first 48 hours, how does the timing of the first respiratory rate increase compare with the first SpO2 increase, heart rate decrease, and urine output increase?\nOptions: A. The first respiratory rate increase occurs before the first SpO2 increase, heart rate decrease, and urine output increase. B. The first respiratory rate increase occurs before the first heart rate decrease and urine output increase, but after the first SpO2 increase. C. The first respiratory rate increase occurs before the first urine output increase, but after the first SpO2 increase and heart rate decrease. D. The first respiratory rate increase occurs after the first SpO2 increase, heart rate decrease, and urine output increase.","answer":"B","answer_text":"The first respiratory rate increase occurs before the first heart rate decrease and urine output increase, but after the first SpO2 increase.","episode_id":"iv_000225","anchor_time":48} {"id":"CVR_multivariable_iv_000421_w48_0","question":"Looking only at the first 48 hours, did the first systolic blood pressure decrease come before the first respiratory rate increase, heart rate increase, and diastolic blood pressure increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first respiratory rate increase and diastolic blood pressure increase, but after the first heart rate increase. B. The first systolic blood pressure decrease occurs before the first respiratory rate increase, heart rate increase, and diastolic blood pressure increase. C. The first systolic blood pressure decrease occurs after the first respiratory rate increase, heart rate increase, and diastolic blood pressure increase. D. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase, but after the first respiratory rate increase and heart rate increase.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase, but after the first respiratory rate increase and heart rate increase.","episode_id":"iv_000421","anchor_time":48} {"id":"CVR_multivariable_iv_000421_w48_1","question":"Looking only at the first 48 hours, which sequence best captures how white blood cell count, MAP, temperature, urine output, and diastolic blood pressure changed over time?\nOptions: A. MAP increase occurs first, followed by temperature increase, then urine output decrease, then diastolic blood pressure decrease, and finally white blood cell count decrease. B. MAP increase occurs first, followed by temperature increase, then diastolic blood pressure decrease, then urine output decrease, and finally white blood cell count decrease. C. temperature increase occurs first, followed by MAP increase, then diastolic blood pressure decrease, then urine output decrease, and finally white blood cell count decrease. D. MAP increase occurs first, followed by diastolic blood pressure decrease, then temperature increase, then urine output decrease, and finally white blood cell count decrease.","answer":"B","answer_text":"MAP increase occurs first, followed by temperature increase, then diastolic blood pressure decrease, then urine output decrease, and finally white blood cell count decrease.","episode_id":"iv_000421","anchor_time":48} {"id":"CVR_multivariable_iv_000491_w48_1","question":"For the initial 48 hours, was the first MAP increase earlier than the first SpO2 decrease, heart rate increase, and white blood cell count increase?\nOptions: A. The first MAP increase occurs before the first heart rate increase and white blood cell count increase, but after the first SpO2 decrease. B. The first MAP increase occurs after the first SpO2 decrease, heart rate increase, and white blood cell count increase. C. The first MAP increase occurs before the first SpO2 decrease, heart rate increase, and white blood cell count increase. D. The first MAP increase occurs before the first SpO2 decrease and white blood cell count increase, but after the first heart rate increase.","answer":"C","answer_text":"The first MAP increase occurs before the first SpO2 decrease, heart rate increase, and white blood cell count increase.","episode_id":"iv_000491","anchor_time":48} {"id":"CVR_multivariable_iv_000491_w48_2","question":"In the first 48 hours, how does the timing of the first MAP decrease compare with the first diastolic blood pressure decrease, SpO2 decrease, and white blood cell count increase?\nOptions: A. The first MAP decrease occurs before the first diastolic blood pressure decrease, SpO2 decrease, and white blood cell count increase. B. The first MAP decrease occurs after the first diastolic blood pressure decrease, SpO2 decrease, and white blood cell count increase. C. The first MAP decrease occurs before the first diastolic blood pressure decrease and white blood cell count increase, but after the first SpO2 decrease. D. The first MAP decrease occurs before the first white blood cell count increase, but after the first diastolic blood pressure decrease and SpO2 decrease.","answer":"D","answer_text":"The first MAP decrease occurs before the first white blood cell count increase, but after the first diastolic blood pressure decrease and SpO2 decrease.","episode_id":"iv_000491","anchor_time":48} {"id":"CVR_multivariable_iv_000491_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how MAP, SpO2, white blood cell count, and respiratory rate changed over time?\nOptions: A. MAP increase occurs first, followed by SpO2 decrease, then respiratory rate decrease, and finally white blood cell count increase. B. MAP increase occurs first, followed by SpO2 decrease, then white blood cell count increase, and finally respiratory rate decrease. C. SpO2 decrease occurs first, followed by MAP increase, then respiratory rate decrease, and finally white blood cell count increase. D. MAP increase occurs first, followed by respiratory rate decrease, then SpO2 decrease, and finally white blood cell count increase.","answer":"A","answer_text":"MAP increase occurs first, followed by SpO2 decrease, then respiratory rate decrease, and finally white blood cell count increase.","episode_id":"iv_000491","anchor_time":24} {"id":"CVR_multivariable_iv_000109_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate decrease falls relative to the first diastolic blood pressure increase, white blood cell count decrease, and temperature increase?\nOptions: A. The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and white blood cell count decrease. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, white blood cell count decrease, and temperature increase. C. The first respiratory rate decrease occurs after the first diastolic blood pressure increase, white blood cell count decrease, and temperature increase. D. The first respiratory rate decrease occurs before the first white blood cell count decrease and temperature increase, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first white blood cell count decrease and temperature increase, but after the first diastolic blood pressure increase.","episode_id":"iv_000109","anchor_time":48} {"id":"CVR_multivariable_iv_000294_w48_1","question":"For the initial 48 hours, was the first diastolic blood pressure decrease earlier than the first MAP increase, heart rate increase, and temperature decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first temperature decrease, but after the first MAP increase and heart rate increase. B. The first diastolic blood pressure decrease occurs before the first heart rate increase and temperature decrease, but after the first MAP increase. C. The first diastolic blood pressure decrease occurs after the first MAP increase, heart rate increase, and temperature decrease. D. The first diastolic blood pressure decrease occurs before the first MAP increase, heart rate increase, and temperature decrease.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first heart rate increase and temperature decrease, but after the first MAP increase.","episode_id":"iv_000294","anchor_time":48} {"id":"CVR_multivariable_iv_000440_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 increase falls relative to the first respiratory rate decrease, MAP decrease, and diastolic blood pressure decrease?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first MAP decrease. B. The first SpO2 increase occurs after the first respiratory rate decrease, MAP decrease, and diastolic blood pressure decrease. C. The first SpO2 increase occurs before the first respiratory rate decrease, MAP decrease, and diastolic blood pressure decrease. D. The first SpO2 increase occurs before the first MAP decrease and diastolic blood pressure decrease, but after the first respiratory rate decrease.","answer":"C","answer_text":"The first SpO2 increase occurs before the first respiratory rate decrease, MAP decrease, and diastolic blood pressure decrease.","episode_id":"iv_000440","anchor_time":48} {"id":"CVR_multivariable_iv_000440_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first systolic blood pressure increase falls relative to the first SpO2 increase, heart rate increase, and MAP increase?\nOptions: A. The first systolic blood pressure increase occurs before the first SpO2 increase, heart rate increase, and MAP increase. B. The first systolic blood pressure increase occurs after the first SpO2 increase, heart rate increase, and MAP increase. C. The first systolic blood pressure increase occurs before the first SpO2 increase and MAP increase, but after the first heart rate increase. D. The first systolic blood pressure increase occurs before the first MAP increase, but after the first SpO2 increase and heart rate increase.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first MAP increase, but after the first SpO2 increase and heart rate increase.","episode_id":"iv_000440","anchor_time":48} {"id":"CVR_multivariable_iv_000121_w48_2","question":"Looking only at the first 48 hours, did the first MAP decrease come before the first diastolic blood pressure decrease, temperature decrease, and urine output decrease?\nOptions: A. The first MAP decrease occurs before the first diastolic blood pressure decrease and urine output decrease, but after the first temperature decrease. B. The first MAP decrease occurs before the first urine output decrease, but after the first diastolic blood pressure decrease and temperature decrease. C. The first MAP decrease occurs after the first diastolic blood pressure decrease, temperature decrease, and urine output decrease. D. The first MAP decrease occurs before the first diastolic blood pressure decrease, temperature decrease, and urine output decrease.","answer":"B","answer_text":"The first MAP decrease occurs before the first urine output decrease, but after the first diastolic blood pressure decrease and temperature decrease.","episode_id":"iv_000121","anchor_time":48} {"id":"CVR_multivariable_iv_000265_w48_0","question":"Looking only at the first 48 hours, did the first heart rate increase come before the first respiratory rate increase, SpO2 decrease, and MAP increase?\nOptions: A. The first heart rate increase occurs before the first respiratory rate increase and MAP increase, but after the first SpO2 decrease. B. The first heart rate increase occurs after the first respiratory rate increase, SpO2 decrease, and MAP increase. C. The first heart rate increase occurs before the first respiratory rate increase, SpO2 decrease, and MAP increase. D. The first heart rate increase occurs before the first MAP increase, but after the first respiratory rate increase and SpO2 decrease.","answer":"D","answer_text":"The first heart rate increase occurs before the first MAP increase, but after the first respiratory rate increase and SpO2 decrease.","episode_id":"iv_000265","anchor_time":48} {"id":"CVR_multivariable_iv_000265_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in MAP, systolic blood pressure, respiratory rate, and heart rate?\nOptions: A. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally MAP increase. B. systolic blood pressure increase occurs first, followed by respiratory rate decrease, then heart rate increase, and finally MAP increase. C. respiratory rate decrease occurs first, followed by systolic blood pressure increase, then MAP increase, and finally heart rate increase. D. respiratory rate decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally MAP increase.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally MAP increase.","episode_id":"iv_000265","anchor_time":24} {"id":"CVR_multivariable_iv_000265_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first respiratory rate increase falls relative to the first diastolic blood pressure increase, heart rate increase, and MAP increase?\nOptions: A. The first respiratory rate increase occurs before the first diastolic blood pressure increase and MAP increase, but after the first heart rate increase. B. The first respiratory rate increase occurs after the first diastolic blood pressure increase, heart rate increase, and MAP increase. C. The first respiratory rate increase occurs before the first diastolic blood pressure increase, heart rate increase, and MAP increase. D. The first respiratory rate increase occurs before the first heart rate increase and MAP increase, but after the first diastolic blood pressure increase.","answer":"C","answer_text":"The first respiratory rate increase occurs before the first diastolic blood pressure increase, heart rate increase, and MAP increase.","episode_id":"iv_000265","anchor_time":48} {"id":"CVR_multivariable_iv_000169_w48_1","question":"In the opening 48 hours, compare the first respiratory rate decrease with the first systolic blood pressure increase, SpO2 decrease, and diastolic blood pressure increase; which option is correct?\nOptions: A. The first respiratory rate decrease occurs after the first systolic blood pressure increase, SpO2 decrease, and diastolic blood pressure increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first systolic blood pressure increase and SpO2 decrease. C. The first respiratory rate decrease occurs before the first systolic blood pressure increase and diastolic blood pressure increase, but after the first SpO2 decrease. D. The first respiratory rate decrease occurs before the first systolic blood pressure increase, SpO2 decrease, and diastolic blood pressure increase.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first systolic blood pressure increase and SpO2 decrease.","episode_id":"iv_000169","anchor_time":48} {"id":"CVR_multivariable_iv_000169_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in systolic blood pressure, diastolic blood pressure, respiratory rate, and heart rate?\nOptions: A. systolic blood pressure increase occurs first, followed by heart rate decrease, then respiratory rate decrease, and finally diastolic blood pressure increase. B. heart rate decrease occurs first, followed by systolic blood pressure increase, then diastolic blood pressure increase, and finally respiratory rate decrease. C. heart rate decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, and finally diastolic blood pressure increase. D. heart rate decrease occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, and finally diastolic blood pressure increase.","answer":"C","answer_text":"heart rate decrease occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000169","anchor_time":24} {"id":"CVR_multivariable_iv_000381_w48_0","question":"In the opening 48 hours, compare the first diastolic blood pressure decrease with the first SpO2 decrease, heart rate increase, and MAP increase; which option is correct?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate increase and MAP increase, but after the first SpO2 decrease. B. The first diastolic blood pressure decrease occurs after the first SpO2 decrease, heart rate increase, and MAP increase. C. The first diastolic blood pressure decrease occurs before the first SpO2 decrease, heart rate increase, and MAP increase. D. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and MAP increase, but after the first heart rate increase.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 decrease, heart rate increase, and MAP increase.","episode_id":"iv_000381","anchor_time":48} {"id":"CVR_multivariable_iv_000381_w48_1","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first diastolic blood pressure decrease, heart rate increase, and MAP increase?\nOptions: A. The first SpO2 decrease occurs before the first MAP increase, but after the first diastolic blood pressure decrease and heart rate increase. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease, heart rate increase, and MAP increase. C. The first SpO2 decrease occurs after the first diastolic blood pressure decrease, heart rate increase, and MAP increase. D. The first SpO2 decrease occurs before the first heart rate increase and MAP increase, but after the first diastolic blood pressure decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first heart rate increase and MAP increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000381","anchor_time":48} {"id":"CVR_multivariable_iv_000381_w48_2","question":"Across the first 48 hours, how did the first changes in creatinine, respiratory rate, diastolic blood pressure, urine output, and temperature unfold?\nOptions: A. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then temperature increase, then urine output increase, and finally creatinine increase. B. respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then urine output increase, then temperature increase, and finally creatinine increase. C. diastolic blood pressure increase occurs first, followed by respiratory rate decrease, then temperature increase, then urine output increase, and finally creatinine increase. D. respiratory rate decrease occurs first, followed by temperature increase, then diastolic blood pressure increase, then urine output increase, and finally creatinine increase.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by diastolic blood pressure increase, then temperature increase, then urine output increase, and finally creatinine increase.","episode_id":"iv_000381","anchor_time":48} {"id":"CVR_multivariable_iv_000034_w48_2","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first heart rate increase, diastolic blood pressure decrease, and MAP decrease?\nOptions: A. The first SpO2 decrease occurs after the first heart rate increase, diastolic blood pressure decrease, and MAP decrease. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and MAP decrease, but after the first heart rate increase. C. The first SpO2 decrease occurs before the first MAP decrease, but after the first heart rate increase and diastolic blood pressure decrease. D. The first SpO2 decrease occurs before the first heart rate increase, diastolic blood pressure decrease, and MAP decrease.","answer":"B","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease and MAP decrease, but after the first heart rate increase.","episode_id":"iv_000034","anchor_time":48} {"id":"CVR_multivariable_iv_000268_w48_0","question":"Looking only at the first 48 hours, did the first heart rate decrease come before the first SpO2 increase, MAP increase, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure decrease, but after the first SpO2 increase and MAP increase. B. The first heart rate decrease occurs after the first SpO2 increase, MAP increase, and systolic blood pressure decrease. C. The first heart rate decrease occurs before the first SpO2 increase, MAP increase, and systolic blood pressure decrease. D. The first heart rate decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first SpO2 increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first MAP increase and systolic blood pressure decrease, but after the first SpO2 increase.","episode_id":"iv_000268","anchor_time":48} {"id":"CVR_multivariable_iv_000030_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 increase relative to the first MAP increase, urine output decrease, and diastolic blood pressure increase?\nOptions: A. The first SpO2 increase occurs before the first MAP increase, urine output decrease, and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first MAP increase and diastolic blood pressure increase, but after the first urine output decrease. C. The first SpO2 increase occurs after the first MAP increase, urine output decrease, and diastolic blood pressure increase. D. The first SpO2 increase occurs before the first urine output decrease and diastolic blood pressure increase, but after the first MAP increase.","answer":"A","answer_text":"The first SpO2 increase occurs before the first MAP increase, urine output decrease, and diastolic blood pressure increase.","episode_id":"iv_000030","anchor_time":48} {"id":"CVR_multivariable_iv_000030_w48_1","question":"For the initial 48 hours, was the first MAP increase earlier than the first SpO2 increase, temperature decrease, and diastolic blood pressure increase?\nOptions: A. The first MAP increase occurs before the first SpO2 increase, temperature decrease, and diastolic blood pressure increase. B. The first MAP increase occurs before the first temperature decrease and diastolic blood pressure increase, but after the first SpO2 increase. C. The first MAP increase occurs before the first diastolic blood pressure increase, but after the first SpO2 increase and temperature decrease. D. The first MAP increase occurs after the first SpO2 increase, temperature decrease, and diastolic blood pressure increase.","answer":"B","answer_text":"The first MAP increase occurs before the first temperature decrease and diastolic blood pressure increase, but after the first SpO2 increase.","episode_id":"iv_000030","anchor_time":48} {"id":"CVR_multivariable_iv_000400_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in urine output, heart rate, SpO2, lactate, and temperature?\nOptions: A. lactate decrease occurs first, followed by SpO2 decrease, then heart rate increase, then temperature decrease, and finally urine output increase. B. lactate decrease occurs first, followed by SpO2 decrease, then temperature decrease, then heart rate increase, and finally urine output increase. C. SpO2 decrease occurs first, followed by lactate decrease, then temperature decrease, then heart rate increase, and finally urine output increase. D. lactate decrease occurs first, followed by temperature decrease, then SpO2 decrease, then heart rate increase, and finally urine output increase.","answer":"B","answer_text":"lactate decrease occurs first, followed by SpO2 decrease, then temperature decrease, then heart rate increase, and finally urine output increase.","episode_id":"iv_000400","anchor_time":48} {"id":"CVR_multivariable_iv_000400_w48_2","question":"In the opening 48 hours, compare the first respiratory rate decrease with the first MAP increase, white blood cell count increase, and SpO2 decrease; which option is correct?\nOptions: A. The first respiratory rate decrease occurs after the first MAP increase, white blood cell count increase, and SpO2 decrease. B. The first respiratory rate decrease occurs before the first MAP increase, white blood cell count increase, and SpO2 decrease. C. The first respiratory rate decrease occurs before the first SpO2 decrease, but after the first MAP increase and white blood cell count increase. D. The first respiratory rate decrease occurs before the first white blood cell count increase and SpO2 decrease, but after the first MAP increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first white blood cell count increase and SpO2 decrease, but after the first MAP increase.","episode_id":"iv_000400","anchor_time":48} {"id":"CVR_multivariable_iv_000400_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how lactate, respiratory rate, white blood cell count, and SpO2 changed over time?\nOptions: A. respiratory rate decrease occurs first, followed by white blood cell count increase, then lactate decrease, and finally SpO2 decrease. B. white blood cell count increase occurs first, followed by respiratory rate decrease, then lactate decrease, and finally SpO2 decrease. C. respiratory rate decrease occurs first, followed by white blood cell count increase, then SpO2 decrease, and finally lactate decrease. D. respiratory rate decrease occurs first, followed by lactate decrease, then white blood cell count increase, and finally SpO2 decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by white blood cell count increase, then lactate decrease, and finally SpO2 decrease.","episode_id":"iv_000400","anchor_time":24} {"id":"CVR_multivariable_iv_000461_w48_2","question":"During the first 48 hours, which option correctly describes whether the first white blood cell count increase preceded the first heart rate decrease, systolic blood pressure increase, and diastolic blood pressure decrease?\nOptions: A. The first white blood cell count increase occurs after the first heart rate decrease, systolic blood pressure increase, and diastolic blood pressure decrease. B. The first white blood cell count increase occurs before the first diastolic blood pressure decrease, but after the first heart rate decrease and systolic blood pressure increase. C. The first white blood cell count increase occurs before the first heart rate decrease and diastolic blood pressure decrease, but after the first systolic blood pressure increase. D. The first white blood cell count increase occurs before the first heart rate decrease, systolic blood pressure increase, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first white blood cell count increase occurs before the first diastolic blood pressure decrease, but after the first heart rate decrease and systolic blood pressure increase.","episode_id":"iv_000461","anchor_time":48} {"id":"CVR_multivariable_iv_000354_w48_0","question":"Looking only at the first 48 hours, did the first SpO2 decrease come before the first heart rate increase, systolic blood pressure decrease, and diastolic blood pressure increase?\nOptions: A. The first SpO2 decrease occurs before the first diastolic blood pressure increase, but after the first heart rate increase and systolic blood pressure decrease. B. The first SpO2 decrease occurs before the first heart rate increase, systolic blood pressure decrease, and diastolic blood pressure increase. C. The first SpO2 decrease occurs after the first heart rate increase, systolic blood pressure decrease, and diastolic blood pressure increase. D. The first SpO2 decrease occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first heart rate increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first heart rate increase.","episode_id":"iv_000354","anchor_time":48} {"id":"CVR_multivariable_iv_000354_w48_2","question":"Looking only at the first 48 hours, did the first heart rate increase come before the first respiratory rate increase, diastolic blood pressure decrease, and systolic blood pressure increase?\nOptions: A. The first heart rate increase occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first diastolic blood pressure decrease. B. The first heart rate increase occurs after the first respiratory rate increase, diastolic blood pressure decrease, and systolic blood pressure increase. C. The first heart rate increase occurs before the first respiratory rate increase, diastolic blood pressure decrease, and systolic blood pressure increase. D. The first heart rate increase occurs before the first diastolic blood pressure decrease and systolic blood pressure increase, but after the first respiratory rate increase.","answer":"C","answer_text":"The first heart rate increase occurs before the first respiratory rate increase, diastolic blood pressure decrease, and systolic blood pressure increase.","episode_id":"iv_000354","anchor_time":48} {"id":"CVR_multivariable_iv_000382_w48_1","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure decrease compare with the first respiratory rate decrease, SpO2 increase, and white blood cell count decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease and white blood cell count decrease, but after the first SpO2 increase. B. The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, but after the first respiratory rate decrease and SpO2 increase. C. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease, SpO2 increase, and white blood cell count decrease. D. The first diastolic blood pressure decrease occurs after the first respiratory rate decrease, SpO2 increase, and white blood cell count decrease.","answer":"B","answer_text":"The first diastolic blood pressure decrease occurs before the first white blood cell count decrease, but after the first respiratory rate decrease and SpO2 increase.","episode_id":"iv_000382","anchor_time":48} {"id":"CVR_multivariable_iv_000010_w48_1","question":"For the initial 48 hours, was the first white blood cell count decrease earlier than the first respiratory rate decrease, heart rate increase, and diastolic blood pressure increase?\nOptions: A. The first white blood cell count decrease occurs before the first respiratory rate decrease, heart rate increase, and diastolic blood pressure increase. B. The first white blood cell count decrease occurs after the first respiratory rate decrease, heart rate increase, and diastolic blood pressure increase. C. The first white blood cell count decrease occurs before the first diastolic blood pressure increase, but after the first respiratory rate decrease and heart rate increase. D. The first white blood cell count decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first respiratory rate decrease.","answer":"D","answer_text":"The first white blood cell count decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first respiratory rate decrease.","episode_id":"iv_000010","anchor_time":48} {"id":"CVR_multivariable_iv_000010_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, creatinine, MAP, temperature, and urine output?\nOptions: A. diastolic blood pressure increase occurs first, followed by MAP decrease, then temperature decrease, then urine output increase, and finally creatinine increase. B. diastolic blood pressure increase occurs first, followed by temperature decrease, then MAP decrease, then urine output increase, and finally creatinine increase. C. diastolic blood pressure increase occurs first, followed by MAP decrease, then urine output increase, then temperature decrease, and finally creatinine increase. D. MAP decrease occurs first, followed by diastolic blood pressure increase, then temperature decrease, then urine output increase, and finally creatinine increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by MAP decrease, then temperature decrease, then urine output increase, and finally creatinine increase.","episode_id":"iv_000010","anchor_time":48} {"id":"CVR_multivariable_iv_000173_w48_2","question":"Looking only at the first 48 hours, did the first heart rate increase come before the first MAP increase, SpO2 increase, and respiratory rate decrease?\nOptions: A. The first heart rate increase occurs before the first respiratory rate decrease, but after the first MAP increase and SpO2 increase. B. The first heart rate increase occurs before the first SpO2 increase and respiratory rate decrease, but after the first MAP increase. C. The first heart rate increase occurs before the first MAP increase, SpO2 increase, and respiratory rate decrease. D. The first heart rate increase occurs after the first MAP increase, SpO2 increase, and respiratory rate decrease.","answer":"B","answer_text":"The first heart rate increase occurs before the first SpO2 increase and respiratory rate decrease, but after the first MAP increase.","episode_id":"iv_000173","anchor_time":48} {"id":"CVR_multivariable_iv_000342_w48_1","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in creatinine, temperature, white blood cell count, urine output, and lactate?\nOptions: A. temperature decrease occurs first, followed by urine output increase, then lactate decrease, then white blood cell count increase, and finally creatinine increase. B. urine output increase occurs first, followed by temperature decrease, then lactate decrease, then white blood cell count increase, and finally creatinine increase. C. temperature decrease occurs first, followed by lactate decrease, then urine output increase, then white blood cell count increase, and finally creatinine increase. D. temperature decrease occurs first, followed by urine output increase, then white blood cell count increase, then lactate decrease, and finally creatinine increase.","answer":"A","answer_text":"temperature decrease occurs first, followed by urine output increase, then lactate decrease, then white blood cell count increase, and finally creatinine increase.","episode_id":"iv_000342","anchor_time":48} {"id":"CVR_multivariable_iv_000115_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how SpO2, respiratory rate, MAP, and diastolic blood pressure changed over time?\nOptions: A. respiratory rate increase occurs first, followed by SpO2 decrease, then MAP increase, and finally diastolic blood pressure increase. B. respiratory rate increase occurs first, followed by diastolic blood pressure increase, then SpO2 decrease, and finally MAP increase. C. respiratory rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, and finally MAP increase. D. SpO2 decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, and finally MAP increase.","answer":"C","answer_text":"respiratory rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, and finally MAP increase.","episode_id":"iv_000115","anchor_time":24} {"id":"CVR_multivariable_iv_000363_w48_2","question":"Looking only at the first 48 hours, did the first respiratory rate decrease come before the first diastolic blood pressure increase, SpO2 decrease, and temperature increase?\nOptions: A. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and temperature increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase and temperature increase, but after the first SpO2 decrease. C. The first respiratory rate decrease occurs after the first diastolic blood pressure increase, SpO2 decrease, and temperature increase. D. The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and SpO2 decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure increase and SpO2 decrease.","episode_id":"iv_000363","anchor_time":48} {"id":"CVR_multivariable_iv_000061_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first SpO2 increase falls relative to the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first SpO2 increase occurs before the first respiratory rate increase and diastolic blood pressure decrease, but after the first heart rate decrease. B. The first SpO2 increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease. C. The first SpO2 increase occurs after the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease. D. The first SpO2 increase occurs before the first respiratory rate increase, heart rate decrease, and diastolic blood pressure decrease.","answer":"B","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure decrease, but after the first respiratory rate increase and heart rate decrease.","episode_id":"iv_000061","anchor_time":48} {"id":"CVR_multivariable_iv_000231_w48_0","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first SpO2 increase, MAP increase, and urine output increase?\nOptions: A. The first heart rate decrease occurs after the first SpO2 increase, MAP increase, and urine output increase. B. The first heart rate decrease occurs before the first urine output increase, but after the first SpO2 increase and MAP increase. C. The first heart rate decrease occurs before the first SpO2 increase, MAP increase, and urine output increase. D. The first heart rate decrease occurs before the first MAP increase and urine output increase, but after the first SpO2 increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first MAP increase and urine output increase, but after the first SpO2 increase.","episode_id":"iv_000231","anchor_time":48} {"id":"CVR_multivariable_iv_000264_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate increase relative to the first temperature increase, systolic blood pressure increase, and MAP decrease?\nOptions: A. The first heart rate increase occurs after the first temperature increase, systolic blood pressure increase, and MAP decrease. B. The first heart rate increase occurs before the first MAP decrease, but after the first temperature increase and systolic blood pressure increase. C. The first heart rate increase occurs before the first temperature increase, systolic blood pressure increase, and MAP decrease. D. The first heart rate increase occurs before the first temperature increase and MAP decrease, but after the first systolic blood pressure increase.","answer":"B","answer_text":"The first heart rate increase occurs before the first MAP decrease, but after the first temperature increase and systolic blood pressure increase.","episode_id":"iv_000264","anchor_time":48} {"id":"CVR_multivariable_iv_000224_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for MAP, SpO2, diastolic blood pressure, and respiratory rate?\nOptions: A. respiratory rate increase occurs first, followed by MAP increase, then diastolic blood pressure increase, and finally SpO2 increase. B. MAP increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, and finally SpO2 increase. C. MAP increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, and finally SpO2 increase. D. MAP increase occurs first, followed by respiratory rate increase, then SpO2 increase, and finally diastolic blood pressure increase.","answer":"B","answer_text":"MAP increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, and finally SpO2 increase.","episode_id":"iv_000224","anchor_time":24} {"id":"CVR_multivariable_iv_000224_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first systolic blood pressure increase relative to the first respiratory rate increase, temperature decrease, and SpO2 increase?\nOptions: A. The first systolic blood pressure increase occurs before the first temperature decrease and SpO2 increase, but after the first respiratory rate increase. B. The first systolic blood pressure increase occurs after the first respiratory rate increase, temperature decrease, and SpO2 increase. C. The first systolic blood pressure increase occurs before the first respiratory rate increase, temperature decrease, and SpO2 increase. D. The first systolic blood pressure increase occurs before the first respiratory rate increase and SpO2 increase, but after the first temperature decrease.","answer":"C","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase, temperature decrease, and SpO2 increase.","episode_id":"iv_000224","anchor_time":48} {"id":"CVR_multivariable_iv_000224_w48_1","question":"In the first 48 hours, how does the timing of the first temperature decrease compare with the first respiratory rate increase, SpO2 increase, and white blood cell count increase?\nOptions: A. The first temperature decrease occurs after the first respiratory rate increase, SpO2 increase, and white blood cell count increase. B. The first temperature decrease occurs before the first respiratory rate increase, SpO2 increase, and white blood cell count increase. C. The first temperature decrease occurs before the first white blood cell count increase, but after the first respiratory rate increase and SpO2 increase. D. The first temperature decrease occurs before the first SpO2 increase and white blood cell count increase, but after the first respiratory rate increase.","answer":"D","answer_text":"The first temperature decrease occurs before the first SpO2 increase and white blood cell count increase, but after the first respiratory rate increase.","episode_id":"iv_000224","anchor_time":48} {"id":"CVR_multivariable_iv_000224_w48_2","question":"During the first 48 hours, which answer correctly orders the first observed changes involving SpO2, MAP, heart rate, urine output, and white blood cell count?\nOptions: A. MAP decrease occurs first, followed by SpO2 increase, then white blood cell count increase, then heart rate decrease, and finally urine output increase. B. MAP decrease occurs first, followed by white blood cell count increase, then SpO2 increase, then heart rate decrease, and finally urine output increase. C. SpO2 increase occurs first, followed by MAP decrease, then white blood cell count increase, then heart rate decrease, and finally urine output increase. D. MAP decrease occurs first, followed by SpO2 increase, then heart rate decrease, then white blood cell count increase, and finally urine output increase.","answer":"A","answer_text":"MAP decrease occurs first, followed by SpO2 increase, then white blood cell count increase, then heart rate decrease, and finally urine output increase.","episode_id":"iv_000224","anchor_time":48} {"id":"CVR_multivariable_iv_000312_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first MAP increase falls relative to the first urine output decrease, SpO2 decrease, and temperature increase?\nOptions: A. The first MAP increase occurs before the first urine output decrease, SpO2 decrease, and temperature increase. B. The first MAP increase occurs after the first urine output decrease, SpO2 decrease, and temperature increase. C. The first MAP increase occurs before the first urine output decrease and temperature increase, but after the first SpO2 decrease. D. The first MAP increase occurs before the first SpO2 decrease and temperature increase, but after the first urine output decrease.","answer":"A","answer_text":"The first MAP increase occurs before the first urine output decrease, SpO2 decrease, and temperature increase.","episode_id":"iv_000312","anchor_time":48} {"id":"CVR_multivariable_iv_000312_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first urine output decrease falls relative to the first diastolic blood pressure increase, SpO2 decrease, and systolic blood pressure decrease?\nOptions: A. The first urine output decrease occurs after the first diastolic blood pressure increase, SpO2 decrease, and systolic blood pressure decrease. B. The first urine output decrease occurs before the first SpO2 decrease and systolic blood pressure decrease, but after the first diastolic blood pressure increase. C. The first urine output decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and systolic blood pressure decrease. D. The first urine output decrease occurs before the first systolic blood pressure decrease, but after the first diastolic blood pressure increase and SpO2 decrease.","answer":"B","answer_text":"The first urine output decrease occurs before the first SpO2 decrease and systolic blood pressure decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000312","anchor_time":48} {"id":"CVR_multivariable_iv_000356_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first heart rate increase, SpO2 increase, and systolic blood pressure decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first systolic blood pressure decrease, but after the first heart rate increase and SpO2 increase. B. The first diastolic blood pressure decrease occurs before the first heart rate increase, SpO2 increase, and systolic blood pressure decrease. C. The first diastolic blood pressure decrease occurs after the first heart rate increase, SpO2 increase, and systolic blood pressure decrease. D. The first diastolic blood pressure decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first heart rate increase.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first heart rate increase.","episode_id":"iv_000356","anchor_time":48} {"id":"CVR_multivariable_iv_000356_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for SpO2, heart rate, MAP, and systolic blood pressure?\nOptions: A. heart rate increase occurs first, followed by MAP decrease, then systolic blood pressure decrease, and finally SpO2 increase. B. heart rate increase occurs first, followed by MAP decrease, then SpO2 increase, and finally systolic blood pressure decrease. C. MAP decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally systolic blood pressure decrease. D. heart rate increase occurs first, followed by SpO2 increase, then MAP decrease, and finally systolic blood pressure decrease.","answer":"B","answer_text":"heart rate increase occurs first, followed by MAP decrease, then SpO2 increase, and finally systolic blood pressure decrease.","episode_id":"iv_000356","anchor_time":24} {"id":"CVR_multivariable_iv_000159_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first SpO2 decrease, systolic blood pressure decrease, and diastolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 decrease, systolic blood pressure decrease, and diastolic blood pressure increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first SpO2 decrease and systolic blood pressure decrease. C. The first respiratory rate decrease occurs after the first SpO2 decrease, systolic blood pressure decrease, and diastolic blood pressure increase. D. The first respiratory rate decrease occurs before the first SpO2 decrease and diastolic blood pressure increase, but after the first systolic blood pressure decrease.","answer":"B","answer_text":"The first respiratory rate decrease occurs before the first diastolic blood pressure increase, but after the first SpO2 decrease and systolic blood pressure decrease.","episode_id":"iv_000159","anchor_time":48} {"id":"CVR_multivariable_iv_000102_w24_0","question":"Across the first 24 hours, how did the first changes in lactate, diastolic blood pressure, respiratory rate, and SpO2 unfold?\nOptions: A. SpO2 decrease occurs first, followed by lactate decrease, then diastolic blood pressure decrease, and finally respiratory rate decrease. B. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then lactate decrease, and finally respiratory rate decrease. C. diastolic blood pressure decrease occurs first, followed by SpO2 decrease, then lactate decrease, and finally respiratory rate decrease. D. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally lactate decrease.","answer":"B","answer_text":"SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then lactate decrease, and finally respiratory rate decrease.","episode_id":"iv_000102","anchor_time":24} {"id":"CVR_multivariable_iv_000102_w48_1","question":"Looking only at the first 48 hours, did the first lactate increase come before the first MAP increase, heart rate decrease, and SpO2 increase?\nOptions: A. The first lactate increase occurs after the first MAP increase, heart rate decrease, and SpO2 increase. B. The first lactate increase occurs before the first SpO2 increase, but after the first MAP increase and heart rate decrease. C. The first lactate increase occurs before the first MAP increase, heart rate decrease, and SpO2 increase. D. The first lactate increase occurs before the first heart rate decrease and SpO2 increase, but after the first MAP increase.","answer":"D","answer_text":"The first lactate increase occurs before the first heart rate decrease and SpO2 increase, but after the first MAP increase.","episode_id":"iv_000102","anchor_time":48} {"id":"CVR_multivariable_iv_000310_w48_1","question":"In the opening 48 hours, compare the first urine output increase with the first MAP decrease, temperature decrease, and SpO2 decrease; which option is correct?\nOptions: A. The first urine output increase occurs before the first MAP decrease, temperature decrease, and SpO2 decrease. B. The first urine output increase occurs after the first MAP decrease, temperature decrease, and SpO2 decrease. C. The first urine output increase occurs before the first MAP decrease and SpO2 decrease, but after the first temperature decrease. D. The first urine output increase occurs before the first temperature decrease and SpO2 decrease, but after the first MAP decrease.","answer":"A","answer_text":"The first urine output increase occurs before the first MAP decrease, temperature decrease, and SpO2 decrease.","episode_id":"iv_000310","anchor_time":48} {"id":"CVR_multivariable_iv_000310_w48_2","question":"For the initial 48 hours, was the first MAP decrease earlier than the first respiratory rate decrease, temperature decrease, and SpO2 decrease?\nOptions: A. The first MAP decrease occurs before the first respiratory rate decrease, temperature decrease, and SpO2 decrease. B. The first MAP decrease occurs before the first temperature decrease and SpO2 decrease, but after the first respiratory rate decrease. C. The first MAP decrease occurs before the first SpO2 decrease, but after the first respiratory rate decrease and temperature decrease. D. The first MAP decrease occurs after the first respiratory rate decrease, temperature decrease, and SpO2 decrease.","answer":"B","answer_text":"The first MAP decrease occurs before the first temperature decrease and SpO2 decrease, but after the first respiratory rate decrease.","episode_id":"iv_000310","anchor_time":48} {"id":"CVR_multivariable_iv_000372_w24_0","question":"Across the first 24 hours, how did the first changes in MAP, diastolic blood pressure, SpO2, and respiratory rate unfold?\nOptions: A. SpO2 increase occurs first, followed by MAP decrease, then respiratory rate decrease, and finally diastolic blood pressure increase. B. SpO2 increase occurs first, followed by respiratory rate decrease, then MAP decrease, and finally diastolic blood pressure increase. C. MAP decrease occurs first, followed by SpO2 increase, then respiratory rate decrease, and finally diastolic blood pressure increase. D. SpO2 increase occurs first, followed by MAP decrease, then diastolic blood pressure increase, and finally respiratory rate decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by MAP decrease, then respiratory rate decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000372","anchor_time":24} {"id":"CVR_multivariable_iv_000344_w48_1","question":"Across the first 48 hours, does the first MAP increase happen before the first diastolic blood pressure decrease, heart rate decrease, and SpO2 decrease?\nOptions: A. The first MAP increase occurs before the first diastolic blood pressure decrease and SpO2 decrease, but after the first heart rate decrease. B. The first MAP increase occurs before the first SpO2 decrease, but after the first diastolic blood pressure decrease and heart rate decrease. C. The first MAP increase occurs after the first diastolic blood pressure decrease, heart rate decrease, and SpO2 decrease. D. The first MAP increase occurs before the first diastolic blood pressure decrease, heart rate decrease, and SpO2 decrease.","answer":"B","answer_text":"The first MAP increase occurs before the first SpO2 decrease, but after the first diastolic blood pressure decrease and heart rate decrease.","episode_id":"iv_000344","anchor_time":48} {"id":"CVR_multivariable_iv_000337_w48_2","question":"Across the first 48 hours, does the first heart rate increase happen before the first systolic blood pressure increase, SpO2 decrease, and respiratory rate increase?\nOptions: A. The first heart rate increase occurs before the first systolic blood pressure increase, SpO2 decrease, and respiratory rate increase. B. The first heart rate increase occurs after the first systolic blood pressure increase, SpO2 decrease, and respiratory rate increase. C. The first heart rate increase occurs before the first systolic blood pressure increase and respiratory rate increase, but after the first SpO2 decrease. D. The first heart rate increase occurs before the first respiratory rate increase, but after the first systolic blood pressure increase and SpO2 decrease.","answer":"D","answer_text":"The first heart rate increase occurs before the first respiratory rate increase, but after the first systolic blood pressure increase and SpO2 decrease.","episode_id":"iv_000337","anchor_time":48} {"id":"CVR_multivariable_iv_000365_w48_0","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for temperature, urine output, heart rate, systolic blood pressure, and white blood cell count?\nOptions: A. heart rate increase occurs first, followed by systolic blood pressure decrease, then temperature decrease, then white blood cell count increase, and finally urine output increase. B. systolic blood pressure decrease occurs first, followed by temperature decrease, then heart rate increase, then white blood cell count increase, and finally urine output increase. C. systolic blood pressure decrease occurs first, followed by heart rate increase, then temperature decrease, then white blood cell count increase, and finally urine output increase. D. systolic blood pressure decrease occurs first, followed by heart rate increase, then white blood cell count increase, then temperature decrease, and finally urine output increase.","answer":"C","answer_text":"systolic blood pressure decrease occurs first, followed by heart rate increase, then temperature decrease, then white blood cell count increase, and finally urine output increase.","episode_id":"iv_000365","anchor_time":48} {"id":"CVR_multivariable_iv_000365_w48_1","question":"Across the first 48 hours, does the first MAP increase happen before the first SpO2 increase, diastolic blood pressure decrease, and systolic blood pressure decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 increase, diastolic blood pressure decrease, and systolic blood pressure decrease. B. The first MAP increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first diastolic blood pressure decrease. C. The first MAP increase occurs before the first diastolic blood pressure decrease and systolic blood pressure decrease, but after the first SpO2 increase. D. The first MAP increase occurs after the first SpO2 increase, diastolic blood pressure decrease, and systolic blood pressure decrease.","answer":"A","answer_text":"The first MAP increase occurs before the first SpO2 increase, diastolic blood pressure decrease, and systolic blood pressure decrease.","episode_id":"iv_000365","anchor_time":48} {"id":"CVR_multivariable_iv_000084_w48_0","question":"For the initial 48 hours, was the first respiratory rate decrease earlier than the first diastolic blood pressure decrease, urine output increase, and temperature increase?\nOptions: A. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease and temperature increase, but after the first urine output increase. B. The first respiratory rate decrease occurs before the first diastolic blood pressure decrease, urine output increase, and temperature increase. C. The first respiratory rate decrease occurs after the first diastolic blood pressure decrease, urine output increase, and temperature increase. D. The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure decrease and urine output increase.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first temperature increase, but after the first diastolic blood pressure decrease and urine output increase.","episode_id":"iv_000084","anchor_time":48} {"id":"CVR_multivariable_iv_000084_w24_0","question":"For the initial 24 hours, which option best matches the order in which systolic blood pressure, urine output, diastolic blood pressure, and SpO2 first changed?\nOptions: A. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then urine output increase, and finally diastolic blood pressure increase. B. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, and finally urine output increase. C. SpO2 decrease occurs first, followed by urine output increase, then systolic blood pressure decrease, and finally diastolic blood pressure increase. D. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then urine output increase, and finally diastolic blood pressure increase.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by systolic blood pressure decrease, then urine output increase, and finally diastolic blood pressure increase.","episode_id":"iv_000084","anchor_time":24} {"id":"CVR_multivariable_iv_000281_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in white blood cell count, temperature, SpO2, urine output, and lactate?\nOptions: A. SpO2 decrease occurs first, followed by temperature increase, then urine output decrease, then white blood cell count increase, and finally lactate increase. B. SpO2 decrease occurs first, followed by urine output decrease, then white blood cell count increase, then temperature increase, and finally lactate increase. C. SpO2 decrease occurs first, followed by urine output decrease, then temperature increase, then white blood cell count increase, and finally lactate increase. D. urine output decrease occurs first, followed by SpO2 decrease, then temperature increase, then white blood cell count increase, and finally lactate increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by urine output decrease, then temperature increase, then white blood cell count increase, and finally lactate increase.","episode_id":"iv_000281","anchor_time":48} {"id":"CVR_multivariable_iv_000243_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first diastolic blood pressure decrease falls relative to the first heart rate decrease, MAP decrease, and respiratory rate decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease, but after the first heart rate decrease and MAP decrease. B. The first diastolic blood pressure decrease occurs after the first heart rate decrease, MAP decrease, and respiratory rate decrease. C. The first diastolic blood pressure decrease occurs before the first heart rate decrease, MAP decrease, and respiratory rate decrease. D. The first diastolic blood pressure decrease occurs before the first MAP decrease and respiratory rate decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first MAP decrease and respiratory rate decrease, but after the first heart rate decrease.","episode_id":"iv_000243","anchor_time":48} {"id":"CVR_multivariable_iv_000243_w48_2","question":"During the first 48 hours, which answer correctly orders the first observed changes involving lactate, creatinine, urine output, white blood cell count, and temperature?\nOptions: A. urine output increase occurs first, followed by creatinine increase, then temperature decrease, then white blood cell count increase, and finally lactate decrease. B. urine output increase occurs first, followed by creatinine increase, then white blood cell count increase, then temperature decrease, and finally lactate decrease. C. creatinine increase occurs first, followed by urine output increase, then temperature decrease, then white blood cell count increase, and finally lactate decrease. D. urine output increase occurs first, followed by temperature decrease, then creatinine increase, then white blood cell count increase, and finally lactate decrease.","answer":"A","answer_text":"urine output increase occurs first, followed by creatinine increase, then temperature decrease, then white blood cell count increase, and finally lactate decrease.","episode_id":"iv_000243","anchor_time":48} {"id":"CVR_multivariable_iv_000065_w48_0","question":"For the initial 48 hours, which option best matches the order in which diastolic blood pressure, systolic blood pressure, temperature, urine output, and creatinine first changed?\nOptions: A. diastolic blood pressure decrease occurs first, followed by urine output increase, then temperature decrease, then systolic blood pressure increase, and finally creatinine increase. B. urine output increase occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, then temperature decrease, and finally creatinine increase. C. diastolic blood pressure decrease occurs first, followed by urine output increase, then systolic blood pressure increase, then temperature decrease, and finally creatinine increase. D. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then urine output increase, then temperature decrease, and finally creatinine increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by urine output increase, then systolic blood pressure increase, then temperature decrease, and finally creatinine increase.","episode_id":"iv_000065","anchor_time":48} {"id":"CVR_multivariable_iv_000064_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 decrease compare with the first respiratory rate decrease, diastolic blood pressure increase, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs after the first respiratory rate decrease, diastolic blood pressure increase, and urine output decrease. B. The first SpO2 decrease occurs before the first urine output decrease, but after the first respiratory rate decrease and diastolic blood pressure increase. C. The first SpO2 decrease occurs before the first respiratory rate decrease, diastolic blood pressure increase, and urine output decrease. D. The first SpO2 decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first respiratory rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first respiratory rate decrease.","episode_id":"iv_000064","anchor_time":48} {"id":"CVR_multivariable_iv_000064_w48_1","question":"During the first 48 hours, which answer correctly orders the first observed changes involving MAP, diastolic blood pressure, white blood cell count, creatinine, and temperature?\nOptions: A. diastolic blood pressure increase occurs first, followed by MAP decrease, then temperature increase, then white blood cell count increase, and finally creatinine increase. B. diastolic blood pressure increase occurs first, followed by MAP decrease, then white blood cell count increase, then temperature increase, and finally creatinine increase. C. diastolic blood pressure increase occurs first, followed by temperature increase, then MAP decrease, then white blood cell count increase, and finally creatinine increase. D. MAP decrease occurs first, followed by diastolic blood pressure increase, then temperature increase, then white blood cell count increase, and finally creatinine increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by MAP decrease, then temperature increase, then white blood cell count increase, and finally creatinine increase.","episode_id":"iv_000064","anchor_time":48} {"id":"CVR_multivariable_iv_000423_w48_1","question":"In the opening 48 hours, compare the first SpO2 decrease with the first systolic blood pressure decrease, heart rate decrease, and MAP increase; which option is correct?\nOptions: A. The first SpO2 decrease occurs after the first systolic blood pressure decrease, heart rate decrease, and MAP increase. B. The first SpO2 decrease occurs before the first heart rate decrease and MAP increase, but after the first systolic blood pressure decrease. C. The first SpO2 decrease occurs before the first systolic blood pressure decrease, heart rate decrease, and MAP increase. D. The first SpO2 decrease occurs before the first systolic blood pressure decrease and MAP increase, but after the first heart rate decrease.","answer":"C","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease, heart rate decrease, and MAP increase.","episode_id":"iv_000423","anchor_time":48} {"id":"CVR_multivariable_iv_000423_w48_2","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure decrease preceded the first SpO2 decrease, respiratory rate increase, and MAP increase?\nOptions: A. The first diastolic blood pressure decrease occurs after the first SpO2 decrease, respiratory rate increase, and MAP increase. B. The first diastolic blood pressure decrease occurs before the first SpO2 decrease, respiratory rate increase, and MAP increase. C. The first diastolic blood pressure decrease occurs before the first MAP increase, but after the first SpO2 decrease and respiratory rate increase. D. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and MAP increase, but after the first SpO2 decrease.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate increase and MAP increase, but after the first SpO2 decrease.","episode_id":"iv_000423","anchor_time":48} {"id":"CVR_multivariable_iv_000375_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first MAP increase relative to the first lactate decrease, systolic blood pressure increase, and urine output increase?\nOptions: A. The first MAP increase occurs after the first lactate decrease, systolic blood pressure increase, and urine output increase. B. The first MAP increase occurs before the first lactate decrease, systolic blood pressure increase, and urine output increase. C. The first MAP increase occurs before the first lactate decrease and urine output increase, but after the first systolic blood pressure increase. D. The first MAP increase occurs before the first urine output increase, but after the first lactate decrease and systolic blood pressure increase.","answer":"D","answer_text":"The first MAP increase occurs before the first urine output increase, but after the first lactate decrease and systolic blood pressure increase.","episode_id":"iv_000375","anchor_time":48} {"id":"CVR_multivariable_iv_000375_w48_2","question":"During the first 48 hours, which answer correctly orders the first observed changes involving white blood cell count, temperature, systolic blood pressure, MAP, and urine output?\nOptions: A. systolic blood pressure increase occurs first, followed by MAP increase, then temperature decrease, then urine output decrease, and finally white blood cell count decrease. B. systolic blood pressure increase occurs first, followed by temperature decrease, then MAP increase, then urine output decrease, and finally white blood cell count decrease. C. MAP increase occurs first, followed by systolic blood pressure increase, then temperature decrease, then urine output decrease, and finally white blood cell count decrease. D. systolic blood pressure increase occurs first, followed by MAP increase, then urine output decrease, then temperature decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"systolic blood pressure increase occurs first, followed by MAP increase, then temperature decrease, then urine output decrease, and finally white blood cell count decrease.","episode_id":"iv_000375","anchor_time":48} {"id":"CVR_multivariable_iv_000029_w48_0","question":"During the first 48 hours, which option correctly describes whether the first systolic blood pressure increase preceded the first diastolic blood pressure decrease, respiratory rate increase, and heart rate increase?\nOptions: A. The first systolic blood pressure increase occurs before the first diastolic blood pressure decrease, respiratory rate increase, and heart rate increase. B. The first systolic blood pressure increase occurs before the first heart rate increase, but after the first diastolic blood pressure decrease and respiratory rate increase. C. The first systolic blood pressure increase occurs after the first diastolic blood pressure decrease, respiratory rate increase, and heart rate increase. D. The first systolic blood pressure increase occurs before the first respiratory rate increase and heart rate increase, but after the first diastolic blood pressure decrease.","answer":"D","answer_text":"The first systolic blood pressure increase occurs before the first respiratory rate increase and heart rate increase, but after the first diastolic blood pressure decrease.","episode_id":"iv_000029","anchor_time":48} {"id":"CVR_multivariable_iv_000029_w48_2","question":"During the first 48 hours, which option correctly describes whether the first diastolic blood pressure decrease preceded the first systolic blood pressure increase, heart rate increase, and respiratory rate decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first heart rate increase and respiratory rate decrease, but after the first systolic blood pressure increase. B. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase and respiratory rate decrease, but after the first heart rate increase. C. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, heart rate increase, and respiratory rate decrease. D. The first diastolic blood pressure decrease occurs after the first systolic blood pressure increase, heart rate increase, and respiratory rate decrease.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase, heart rate increase, and respiratory rate decrease.","episode_id":"iv_000029","anchor_time":48} {"id":"CVR_multivariable_iv_000122_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, respiratory rate, creatinine, urine output, and temperature?\nOptions: A. creatinine decrease occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then temperature decrease, and finally urine output decrease. B. creatinine decrease occurs first, followed by respiratory rate increase, then temperature decrease, then diastolic blood pressure increase, and finally urine output decrease. C. creatinine decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then temperature decrease, and finally urine output decrease. D. respiratory rate increase occurs first, followed by creatinine decrease, then diastolic blood pressure increase, then temperature decrease, and finally urine output decrease.","answer":"C","answer_text":"creatinine decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then temperature decrease, and finally urine output decrease.","episode_id":"iv_000122","anchor_time":48} {"id":"CVR_multivariable_iv_000157_w48_1","question":"In the first 48 hours, how does the timing of the first diastolic blood pressure decrease compare with the first heart rate increase, urine output decrease, and SpO2 increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 increase, but after the first heart rate increase and urine output decrease. B. The first diastolic blood pressure decrease occurs after the first heart rate increase, urine output decrease, and SpO2 increase. C. The first diastolic blood pressure decrease occurs before the first heart rate increase, urine output decrease, and SpO2 increase. D. The first diastolic blood pressure decrease occurs before the first urine output decrease and SpO2 increase, but after the first heart rate increase.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first urine output decrease and SpO2 increase, but after the first heart rate increase.","episode_id":"iv_000157","anchor_time":48} {"id":"CVR_multivariable_iv_000009_w24_0","question":"In the first 24 hours, which option puts the first changes in heart rate, creatinine, MAP, and respiratory rate in the right order?\nOptions: A. creatinine increase occurs first, followed by MAP decrease, then heart rate decrease, and finally respiratory rate decrease. B. MAP decrease occurs first, followed by creatinine increase, then respiratory rate decrease, and finally heart rate decrease. C. MAP decrease occurs first, followed by creatinine increase, then heart rate decrease, and finally respiratory rate decrease. D. MAP decrease occurs first, followed by heart rate decrease, then creatinine increase, and finally respiratory rate decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by creatinine increase, then heart rate decrease, and finally respiratory rate decrease.","episode_id":"iv_000009","anchor_time":24} {"id":"CVR_multivariable_iv_000250_w48_1","question":"During the first 48 hours, which option correctly describes whether the first SpO2 decrease preceded the first MAP decrease, diastolic blood pressure increase, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs before the first urine output decrease, but after the first MAP decrease and diastolic blood pressure increase. B. The first SpO2 decrease occurs after the first MAP decrease, diastolic blood pressure increase, and urine output decrease. C. The first SpO2 decrease occurs before the first MAP decrease, diastolic blood pressure increase, and urine output decrease. D. The first SpO2 decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first MAP decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first MAP decrease.","episode_id":"iv_000250","anchor_time":48} {"id":"CVR_multivariable_iv_000250_w48_2","question":"For the initial 48 hours, which option best matches the order in which heart rate, SpO2, urine output, temperature, and creatinine first changed?\nOptions: A. SpO2 increase occurs first, followed by urine output decrease, then temperature decrease, then heart rate increase, and finally creatinine decrease. B. SpO2 increase occurs first, followed by urine output decrease, then heart rate increase, then temperature decrease, and finally creatinine decrease. C. SpO2 increase occurs first, followed by temperature decrease, then urine output decrease, then heart rate increase, and finally creatinine decrease. D. urine output decrease occurs first, followed by SpO2 increase, then temperature decrease, then heart rate increase, and finally creatinine decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by urine output decrease, then temperature decrease, then heart rate increase, and finally creatinine decrease.","episode_id":"iv_000250","anchor_time":48} {"id":"CVR_multivariable_iv_000306_w48_0","question":"For the initial 48 hours, was the first SpO2 decrease earlier than the first diastolic blood pressure increase, white blood cell count increase, and MAP decrease?\nOptions: A. The first SpO2 decrease occurs before the first diastolic blood pressure increase, white blood cell count increase, and MAP decrease. B. The first SpO2 decrease occurs after the first diastolic blood pressure increase, white blood cell count increase, and MAP decrease. C. The first SpO2 decrease occurs before the first diastolic blood pressure increase and MAP decrease, but after the first white blood cell count increase. D. The first SpO2 decrease occurs before the first MAP decrease, but after the first diastolic blood pressure increase and white blood cell count increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first MAP decrease, but after the first diastolic blood pressure increase and white blood cell count increase.","episode_id":"iv_000306","anchor_time":48} {"id":"CVR_multivariable_iv_000306_w24_0","question":"Across the first 24 hours, how did the first changes in diastolic blood pressure, white blood cell count, MAP, and heart rate unfold?\nOptions: A. MAP increase occurs first, followed by white blood cell count increase, then heart rate decrease, and finally diastolic blood pressure decrease. B. white blood cell count increase occurs first, followed by MAP increase, then heart rate decrease, and finally diastolic blood pressure decrease. C. MAP increase occurs first, followed by white blood cell count increase, then diastolic blood pressure decrease, and finally heart rate decrease. D. MAP increase occurs first, followed by heart rate decrease, then white blood cell count increase, and finally diastolic blood pressure decrease.","answer":"A","answer_text":"MAP increase occurs first, followed by white blood cell count increase, then heart rate decrease, and finally diastolic blood pressure decrease.","episode_id":"iv_000306","anchor_time":24} {"id":"CVR_multivariable_iv_000306_w48_2","question":"Looking only at the first 48 hours, did the first diastolic blood pressure increase come before the first white blood cell count increase, heart rate decrease, and SpO2 increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first heart rate decrease and SpO2 increase, but after the first white blood cell count increase. B. The first diastolic blood pressure increase occurs after the first white blood cell count increase, heart rate decrease, and SpO2 increase. C. The first diastolic blood pressure increase occurs before the first white blood cell count increase, heart rate decrease, and SpO2 increase. D. The first diastolic blood pressure increase occurs before the first white blood cell count increase and SpO2 increase, but after the first heart rate decrease.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first white blood cell count increase, heart rate decrease, and SpO2 increase.","episode_id":"iv_000306","anchor_time":48} {"id":"CVR_multivariable_iv_000271_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how SpO2, diastolic blood pressure, respiratory rate, and MAP changed over time?\nOptions: A. SpO2 decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure decrease, and finally MAP increase. B. SpO2 decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate increase, and finally MAP increase. C. respiratory rate increase occurs first, followed by SpO2 decrease, then diastolic blood pressure decrease, and finally MAP increase. D. SpO2 decrease occurs first, followed by respiratory rate increase, then MAP increase, and finally diastolic blood pressure decrease.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure decrease, and finally MAP increase.","episode_id":"iv_000271","anchor_time":24} {"id":"CVR_multivariable_iv_000276_w48_1","question":"Looking only at the first 48 hours, did the first heart rate decrease come before the first systolic blood pressure decrease, urine output decrease, and diastolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure decrease, urine output decrease, and diastolic blood pressure increase. B. The first heart rate decrease occurs before the first urine output decrease and diastolic blood pressure increase, but after the first systolic blood pressure decrease. C. The first heart rate decrease occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first urine output decrease. D. The first heart rate decrease occurs after the first systolic blood pressure decrease, urine output decrease, and diastolic blood pressure increase.","answer":"A","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure decrease, urine output decrease, and diastolic blood pressure increase.","episode_id":"iv_000276","anchor_time":48} {"id":"CVR_multivariable_iv_000347_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in systolic blood pressure, diastolic blood pressure, urine output, and SpO2?\nOptions: A. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then urine output decrease, and finally diastolic blood pressure increase. B. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, and finally urine output decrease. C. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then urine output decrease, and finally diastolic blood pressure increase. D. systolic blood pressure decrease occurs first, followed by urine output decrease, then SpO2 decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"systolic blood pressure decrease occurs first, followed by SpO2 decrease, then urine output decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000347","anchor_time":24} {"id":"CVR_multivariable_iv_000399_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first white blood cell count increase relative to the first heart rate increase, respiratory rate decrease, and SpO2 increase?\nOptions: A. The first white blood cell count increase occurs before the first heart rate increase, respiratory rate decrease, and SpO2 increase. B. The first white blood cell count increase occurs before the first SpO2 increase, but after the first heart rate increase and respiratory rate decrease. C. The first white blood cell count increase occurs after the first heart rate increase, respiratory rate decrease, and SpO2 increase. D. The first white blood cell count increase occurs before the first respiratory rate decrease and SpO2 increase, but after the first heart rate increase.","answer":"D","answer_text":"The first white blood cell count increase occurs before the first respiratory rate decrease and SpO2 increase, but after the first heart rate increase.","episode_id":"iv_000399","anchor_time":48} {"id":"CVR_multivariable_iv_000399_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure increase relative to the first white blood cell count increase, respiratory rate decrease, and SpO2 increase?\nOptions: A. The first diastolic blood pressure increase occurs before the first respiratory rate decrease and SpO2 increase, but after the first white blood cell count increase. B. The first diastolic blood pressure increase occurs after the first white blood cell count increase, respiratory rate decrease, and SpO2 increase. C. The first diastolic blood pressure increase occurs before the first white blood cell count increase, respiratory rate decrease, and SpO2 increase. D. The first diastolic blood pressure increase occurs before the first white blood cell count increase and SpO2 increase, but after the first respiratory rate decrease.","answer":"C","answer_text":"The first diastolic blood pressure increase occurs before the first white blood cell count increase, respiratory rate decrease, and SpO2 increase.","episode_id":"iv_000399","anchor_time":48} {"id":"CVR_multivariable_iv_000054_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in creatinine, heart rate, temperature, urine output, and white blood cell count?\nOptions: A. heart rate decrease occurs first, followed by white blood cell count decrease, then temperature decrease, then urine output decrease, and finally creatinine increase. B. heart rate decrease occurs first, followed by temperature decrease, then urine output decrease, then white blood cell count decrease, and finally creatinine increase. C. heart rate decrease occurs first, followed by temperature decrease, then white blood cell count decrease, then urine output decrease, and finally creatinine increase. D. temperature decrease occurs first, followed by heart rate decrease, then white blood cell count decrease, then urine output decrease, and finally creatinine increase.","answer":"C","answer_text":"heart rate decrease occurs first, followed by temperature decrease, then white blood cell count decrease, then urine output decrease, and finally creatinine increase.","episode_id":"iv_000054","anchor_time":48} {"id":"CVR_multivariable_iv_000259_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first MAP increase, diastolic blood pressure decrease, and respiratory rate increase?\nOptions: A. The first heart rate decrease occurs after the first MAP increase, diastolic blood pressure decrease, and respiratory rate increase. B. The first heart rate decrease occurs before the first respiratory rate increase, but after the first MAP increase and diastolic blood pressure decrease. C. The first heart rate decrease occurs before the first MAP increase, diastolic blood pressure decrease, and respiratory rate increase. D. The first heart rate decrease occurs before the first diastolic blood pressure decrease and respiratory rate increase, but after the first MAP increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first diastolic blood pressure decrease and respiratory rate increase, but after the first MAP increase.","episode_id":"iv_000259","anchor_time":48} {"id":"CVR_multivariable_iv_000259_w24_0","question":"For the initial 24 hours, which option best matches the order in which respiratory rate, systolic blood pressure, MAP, and heart rate first changed?\nOptions: A. systolic blood pressure increase occurs first, followed by heart rate decrease, then MAP decrease, and finally respiratory rate increase. B. systolic blood pressure increase occurs first, followed by MAP decrease, then heart rate decrease, and finally respiratory rate increase. C. heart rate decrease occurs first, followed by systolic blood pressure increase, then MAP decrease, and finally respiratory rate increase. D. systolic blood pressure increase occurs first, followed by heart rate decrease, then respiratory rate increase, and finally MAP decrease.","answer":"A","answer_text":"systolic blood pressure increase occurs first, followed by heart rate decrease, then MAP decrease, and finally respiratory rate increase.","episode_id":"iv_000259","anchor_time":24} {"id":"CVR_multivariable_iv_000091_w48_0","question":"In the opening 48 hours, compare the first diastolic blood pressure increase with the first urine output increase, SpO2 increase, and systolic blood pressure decrease; which option is correct?\nOptions: A. The first diastolic blood pressure increase occurs before the first urine output increase, SpO2 increase, and systolic blood pressure decrease. B. The first diastolic blood pressure increase occurs before the first urine output increase and systolic blood pressure decrease, but after the first SpO2 increase. C. The first diastolic blood pressure increase occurs before the first SpO2 increase and systolic blood pressure decrease, but after the first urine output increase. D. The first diastolic blood pressure increase occurs after the first urine output increase, SpO2 increase, and systolic blood pressure decrease.","answer":"A","answer_text":"The first diastolic blood pressure increase occurs before the first urine output increase, SpO2 increase, and systolic blood pressure decrease.","episode_id":"iv_000091","anchor_time":48} {"id":"CVR_multivariable_iv_000256_w48_1","question":"In the opening 48 hours, compare the first white blood cell count increase with the first diastolic blood pressure increase, heart rate increase, and MAP decrease; which option is correct?\nOptions: A. The first white blood cell count increase occurs before the first MAP decrease, but after the first diastolic blood pressure increase and heart rate increase. B. The first white blood cell count increase occurs after the first diastolic blood pressure increase, heart rate increase, and MAP decrease. C. The first white blood cell count increase occurs before the first diastolic blood pressure increase, heart rate increase, and MAP decrease. D. The first white blood cell count increase occurs before the first heart rate increase and MAP decrease, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first white blood cell count increase occurs before the first heart rate increase and MAP decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000256","anchor_time":48} {"id":"CVR_multivariable_iv_000256_w48_2","question":"Looking only at the first 48 hours, which sequence best captures how diastolic blood pressure, creatinine, lactate, SpO2, and temperature changed over time?\nOptions: A. diastolic blood pressure decrease occurs first, followed by SpO2 increase, then temperature decrease, then lactate decrease, and finally creatinine increase. B. diastolic blood pressure decrease occurs first, followed by temperature decrease, then SpO2 increase, then lactate decrease, and finally creatinine increase. C. diastolic blood pressure decrease occurs first, followed by SpO2 increase, then lactate decrease, then temperature decrease, and finally creatinine increase. D. SpO2 increase occurs first, followed by diastolic blood pressure decrease, then temperature decrease, then lactate decrease, and finally creatinine increase.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by SpO2 increase, then temperature decrease, then lactate decrease, and finally creatinine increase.","episode_id":"iv_000256","anchor_time":48} {"id":"CVR_multivariable_iv_000001_w48_0","question":"For the initial 48 hours, was the first temperature increase earlier than the first heart rate decrease, SpO2 decrease, and diastolic blood pressure increase?\nOptions: A. The first temperature increase occurs before the first heart rate decrease and diastolic blood pressure increase, but after the first SpO2 decrease. B. The first temperature increase occurs after the first heart rate decrease, SpO2 decrease, and diastolic blood pressure increase. C. The first temperature increase occurs before the first heart rate decrease, SpO2 decrease, and diastolic blood pressure increase. D. The first temperature increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and SpO2 decrease.","answer":"D","answer_text":"The first temperature increase occurs before the first diastolic blood pressure increase, but after the first heart rate decrease and SpO2 decrease.","episode_id":"iv_000001","anchor_time":48} {"id":"CVR_multivariable_iv_000001_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in heart rate, diastolic blood pressure, MAP, and SpO2?\nOptions: A. heart rate decrease occurs first, followed by SpO2 decrease, then MAP decrease, and finally diastolic blood pressure increase. B. heart rate decrease occurs first, followed by MAP decrease, then SpO2 decrease, and finally diastolic blood pressure increase. C. heart rate decrease occurs first, followed by SpO2 decrease, then diastolic blood pressure increase, and finally MAP decrease. D. SpO2 decrease occurs first, followed by heart rate decrease, then MAP decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by SpO2 decrease, then MAP decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000001","anchor_time":24} {"id":"CVR_multivariable_iv_000001_w48_2","question":"Across the first 48 hours, does the first heart rate decrease happen before the first respiratory rate decrease, MAP decrease, and systolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first respiratory rate decrease and systolic blood pressure decrease, but after the first MAP decrease. B. The first heart rate decrease occurs before the first MAP decrease and systolic blood pressure decrease, but after the first respiratory rate decrease. C. The first heart rate decrease occurs before the first respiratory rate decrease, MAP decrease, and systolic blood pressure decrease. D. The first heart rate decrease occurs after the first respiratory rate decrease, MAP decrease, and systolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first respiratory rate decrease, MAP decrease, and systolic blood pressure decrease.","episode_id":"iv_000001","anchor_time":48} {"id":"CVR_multivariable_iv_000080_w48_1","question":"In the first 48 hours, how does the timing of the first respiratory rate decrease compare with the first heart rate increase, MAP decrease, and systolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs after the first heart rate increase, MAP decrease, and systolic blood pressure increase. B. The first respiratory rate decrease occurs before the first heart rate increase and systolic blood pressure increase, but after the first MAP decrease. C. The first respiratory rate decrease occurs before the first heart rate increase, MAP decrease, and systolic blood pressure increase. D. The first respiratory rate decrease occurs before the first systolic blood pressure increase, but after the first heart rate increase and MAP decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first systolic blood pressure increase, but after the first heart rate increase and MAP decrease.","episode_id":"iv_000080","anchor_time":48} {"id":"CVR_multivariable_iv_000431_w48_0","question":"Across the first 48 hours, does the first white blood cell count decrease happen before the first systolic blood pressure increase, diastolic blood pressure decrease, and urine output decrease?\nOptions: A. The first white blood cell count decrease occurs before the first systolic blood pressure increase, diastolic blood pressure decrease, and urine output decrease. B. The first white blood cell count decrease occurs before the first systolic blood pressure increase and urine output decrease, but after the first diastolic blood pressure decrease. C. The first white blood cell count decrease occurs after the first systolic blood pressure increase, diastolic blood pressure decrease, and urine output decrease. D. The first white blood cell count decrease occurs before the first urine output decrease, but after the first systolic blood pressure increase and diastolic blood pressure decrease.","answer":"D","answer_text":"The first white blood cell count decrease occurs before the first urine output decrease, but after the first systolic blood pressure increase and diastolic blood pressure decrease.","episode_id":"iv_000431","anchor_time":48} {"id":"CVR_multivariable_iv_000431_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in diastolic blood pressure, MAP, heart rate, and white blood cell count?\nOptions: A. heart rate decrease occurs first, followed by MAP increase, then diastolic blood pressure decrease, and finally white blood cell count decrease. B. heart rate decrease occurs first, followed by MAP increase, then white blood cell count decrease, and finally diastolic blood pressure decrease. C. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then MAP increase, and finally white blood cell count decrease. D. MAP increase occurs first, followed by heart rate decrease, then diastolic blood pressure decrease, and finally white blood cell count decrease.","answer":"A","answer_text":"heart rate decrease occurs first, followed by MAP increase, then diastolic blood pressure decrease, and finally white blood cell count decrease.","episode_id":"iv_000431","anchor_time":24} {"id":"CVR_multivariable_iv_000455_w48_2","question":"Across the first 48 hours, does the first MAP increase happen before the first white blood cell count increase, respiratory rate decrease, and heart rate decrease?\nOptions: A. The first MAP increase occurs before the first white blood cell count increase and heart rate decrease, but after the first respiratory rate decrease. B. The first MAP increase occurs after the first white blood cell count increase, respiratory rate decrease, and heart rate decrease. C. The first MAP increase occurs before the first white blood cell count increase, respiratory rate decrease, and heart rate decrease. D. The first MAP increase occurs before the first heart rate decrease, but after the first white blood cell count increase and respiratory rate decrease.","answer":"D","answer_text":"The first MAP increase occurs before the first heart rate decrease, but after the first white blood cell count increase and respiratory rate decrease.","episode_id":"iv_000455","anchor_time":48} {"id":"CVR_multivariable_iv_000455_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how heart rate, MAP, systolic blood pressure, and diastolic blood pressure changed over time?\nOptions: A. MAP decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally diastolic blood pressure decrease. B. MAP decrease occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally systolic blood pressure increase. C. MAP decrease occurs first, followed by systolic blood pressure increase, then heart rate increase, and finally diastolic blood pressure decrease. D. heart rate increase occurs first, followed by MAP decrease, then systolic blood pressure increase, and finally diastolic blood pressure decrease.","answer":"A","answer_text":"MAP decrease occurs first, followed by heart rate increase, then systolic blood pressure increase, and finally diastolic blood pressure decrease.","episode_id":"iv_000455","anchor_time":24} {"id":"CVR_multivariable_iv_000404_w48_0","question":"In the first 48 hours, how does the timing of the first MAP decrease compare with the first heart rate decrease, lactate decrease, and systolic blood pressure increase?\nOptions: A. The first MAP decrease occurs before the first heart rate decrease, lactate decrease, and systolic blood pressure increase. B. The first MAP decrease occurs before the first systolic blood pressure increase, but after the first heart rate decrease and lactate decrease. C. The first MAP decrease occurs after the first heart rate decrease, lactate decrease, and systolic blood pressure increase. D. The first MAP decrease occurs before the first lactate decrease and systolic blood pressure increase, but after the first heart rate decrease.","answer":"D","answer_text":"The first MAP decrease occurs before the first lactate decrease and systolic blood pressure increase, but after the first heart rate decrease.","episode_id":"iv_000404","anchor_time":48} {"id":"CVR_multivariable_iv_000404_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how SpO2, systolic blood pressure, heart rate, and diastolic blood pressure changed over time?\nOptions: A. heart rate decrease occurs first, followed by systolic blood pressure decrease, then SpO2 increase, and finally diastolic blood pressure increase. B. systolic blood pressure decrease occurs first, followed by heart rate decrease, then SpO2 increase, and finally diastolic blood pressure increase. C. heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure decrease, and finally diastolic blood pressure increase. D. heart rate decrease occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, and finally SpO2 increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by systolic blood pressure decrease, then SpO2 increase, and finally diastolic blood pressure increase.","episode_id":"iv_000404","anchor_time":24} {"id":"CVR_multivariable_iv_000404_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first diastolic blood pressure decrease, lactate decrease, and MAP increase?\nOptions: A. The first heart rate decrease occurs before the first diastolic blood pressure decrease and MAP increase, but after the first lactate decrease. B. The first heart rate decrease occurs after the first diastolic blood pressure decrease, lactate decrease, and MAP increase. C. The first heart rate decrease occurs before the first diastolic blood pressure decrease, lactate decrease, and MAP increase. D. The first heart rate decrease occurs before the first lactate decrease and MAP increase, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first diastolic blood pressure decrease, lactate decrease, and MAP increase.","episode_id":"iv_000404","anchor_time":48} {"id":"CVR_multivariable_iv_000058_w48_1","question":"Across the first 48 hours, does the first diastolic blood pressure increase happen before the first respiratory rate decrease, MAP decrease, and SpO2 decrease?\nOptions: A. The first diastolic blood pressure increase occurs before the first SpO2 decrease, but after the first respiratory rate decrease and MAP decrease. B. The first diastolic blood pressure increase occurs before the first respiratory rate decrease, MAP decrease, and SpO2 decrease. C. The first diastolic blood pressure increase occurs after the first respiratory rate decrease, MAP decrease, and SpO2 decrease. D. The first diastolic blood pressure increase occurs before the first MAP decrease and SpO2 decrease, but after the first respiratory rate decrease.","answer":"D","answer_text":"The first diastolic blood pressure increase occurs before the first MAP decrease and SpO2 decrease, but after the first respiratory rate decrease.","episode_id":"iv_000058","anchor_time":48} {"id":"CVR_multivariable_iv_000058_w48_2","question":"In the first 48 hours, which option puts the first changes in urine output, SpO2, systolic blood pressure, diastolic blood pressure, and heart rate in the right order?\nOptions: A. diastolic blood pressure increase occurs first, followed by systolic blood pressure decrease, then SpO2 decrease, then heart rate increase, and finally urine output increase. B. diastolic blood pressure increase occurs first, followed by SpO2 decrease, then systolic blood pressure decrease, then heart rate increase, and finally urine output increase. C. systolic blood pressure decrease occurs first, followed by diastolic blood pressure increase, then SpO2 decrease, then heart rate increase, and finally urine output increase. D. diastolic blood pressure increase occurs first, followed by systolic blood pressure decrease, then heart rate increase, then SpO2 decrease, and finally urine output increase.","answer":"A","answer_text":"diastolic blood pressure increase occurs first, followed by systolic blood pressure decrease, then SpO2 decrease, then heart rate increase, and finally urine output increase.","episode_id":"iv_000058","anchor_time":48} {"id":"CVR_multivariable_iv_000005_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure increase. B. The first heart rate decrease occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first respiratory rate decrease. C. The first heart rate decrease occurs before the first respiratory rate decrease and diastolic blood pressure increase, but after the first systolic blood pressure decrease. D. The first heart rate decrease occurs after the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure increase.","answer":"A","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure increase.","episode_id":"iv_000005","anchor_time":48} {"id":"CVR_multivariable_iv_000283_w48_0","question":"For the initial 48 hours, was the first diastolic blood pressure decrease earlier than the first SpO2 decrease, respiratory rate decrease, and lactate decrease?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 decrease, respiratory rate decrease, and lactate decrease. B. The first diastolic blood pressure decrease occurs before the first lactate decrease, but after the first SpO2 decrease and respiratory rate decrease. C. The first diastolic blood pressure decrease occurs after the first SpO2 decrease, respiratory rate decrease, and lactate decrease. D. The first diastolic blood pressure decrease occurs before the first respiratory rate decrease and lactate decrease, but after the first SpO2 decrease.","answer":"D","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate decrease and lactate decrease, but after the first SpO2 decrease.","episode_id":"iv_000283","anchor_time":48} {"id":"CVR_multivariable_iv_000283_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for lactate, heart rate, temperature, and SpO2?\nOptions: A. SpO2 decrease occurs first, followed by temperature increase, then heart rate decrease, and finally lactate decrease. B. SpO2 decrease occurs first, followed by heart rate decrease, then temperature increase, and finally lactate decrease. C. temperature increase occurs first, followed by SpO2 decrease, then heart rate decrease, and finally lactate decrease. D. SpO2 decrease occurs first, followed by temperature increase, then lactate decrease, and finally heart rate decrease.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by temperature increase, then heart rate decrease, and finally lactate decrease.","episode_id":"iv_000283","anchor_time":24} {"id":"CVR_multivariable_iv_000128_w48_0","question":"Looking only at the first 48 hours, did the first heart rate decrease come before the first systolic blood pressure increase, diastolic blood pressure decrease, and temperature decrease?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure increase, diastolic blood pressure decrease, and temperature decrease. B. The first heart rate decrease occurs before the first diastolic blood pressure decrease and temperature decrease, but after the first systolic blood pressure increase. C. The first heart rate decrease occurs after the first systolic blood pressure increase, diastolic blood pressure decrease, and temperature decrease. D. The first heart rate decrease occurs before the first systolic blood pressure increase and temperature decrease, but after the first diastolic blood pressure decrease.","answer":"A","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure increase, diastolic blood pressure decrease, and temperature decrease.","episode_id":"iv_000128","anchor_time":48} {"id":"CVR_multivariable_iv_000270_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first respiratory rate decrease, systolic blood pressure increase, and temperature decrease?\nOptions: A. The first heart rate decrease occurs after the first respiratory rate decrease, systolic blood pressure increase, and temperature decrease. B. The first heart rate decrease occurs before the first systolic blood pressure increase and temperature decrease, but after the first respiratory rate decrease. C. The first heart rate decrease occurs before the first respiratory rate decrease, systolic blood pressure increase, and temperature decrease. D. The first heart rate decrease occurs before the first respiratory rate decrease and temperature decrease, but after the first systolic blood pressure increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first respiratory rate decrease, systolic blood pressure increase, and temperature decrease.","episode_id":"iv_000270","anchor_time":48} {"id":"CVR_multivariable_iv_000270_w48_1","question":"During the first 48 hours, which option correctly describes whether the first respiratory rate decrease preceded the first heart rate decrease, systolic blood pressure increase, and SpO2 decrease?\nOptions: A. The first respiratory rate decrease occurs after the first heart rate decrease, systolic blood pressure increase, and SpO2 decrease. B. The first respiratory rate decrease occurs before the first heart rate decrease, systolic blood pressure increase, and SpO2 decrease. C. The first respiratory rate decrease occurs before the first SpO2 decrease, but after the first heart rate decrease and systolic blood pressure increase. D. The first respiratory rate decrease occurs before the first systolic blood pressure increase and SpO2 decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first respiratory rate decrease occurs before the first systolic blood pressure increase and SpO2 decrease, but after the first heart rate decrease.","episode_id":"iv_000270","anchor_time":48} {"id":"CVR_multivariable_iv_000405_w48_0","question":"In the first 48 hours, how does the timing of the first SpO2 decrease compare with the first diastolic blood pressure increase, respiratory rate increase, and urine output decrease?\nOptions: A. The first SpO2 decrease occurs after the first diastolic blood pressure increase, respiratory rate increase, and urine output decrease. B. The first SpO2 decrease occurs before the first diastolic blood pressure increase, respiratory rate increase, and urine output decrease. C. The first SpO2 decrease occurs before the first urine output decrease, but after the first diastolic blood pressure increase and respiratory rate increase. D. The first SpO2 decrease occurs before the first respiratory rate increase and urine output decrease, but after the first diastolic blood pressure increase.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first respiratory rate increase and urine output decrease, but after the first diastolic blood pressure increase.","episode_id":"iv_000405","anchor_time":48} {"id":"CVR_multivariable_iv_000405_w48_1","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in lactate, SpO2, white blood cell count, temperature, and urine output?\nOptions: A. SpO2 increase occurs first, followed by lactate decrease, then temperature increase, then urine output increase, and finally white blood cell count decrease. B. SpO2 increase occurs first, followed by lactate decrease, then urine output increase, then temperature increase, and finally white blood cell count decrease. C. SpO2 increase occurs first, followed by temperature increase, then lactate decrease, then urine output increase, and finally white blood cell count decrease. D. lactate decrease occurs first, followed by SpO2 increase, then temperature increase, then urine output increase, and finally white blood cell count decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by lactate decrease, then temperature increase, then urine output increase, and finally white blood cell count decrease.","episode_id":"iv_000405","anchor_time":48} {"id":"CVR_multivariable_iv_000195_w48_0","question":"Looking only at the first 48 hours, did the first MAP decrease come before the first SpO2 increase, heart rate decrease, and urine output decrease?\nOptions: A. The first MAP decrease occurs before the first SpO2 increase, heart rate decrease, and urine output decrease. B. The first MAP decrease occurs before the first SpO2 increase and urine output decrease, but after the first heart rate decrease. C. The first MAP decrease occurs after the first SpO2 increase, heart rate decrease, and urine output decrease. D. The first MAP decrease occurs before the first heart rate decrease and urine output decrease, but after the first SpO2 increase.","answer":"A","answer_text":"The first MAP decrease occurs before the first SpO2 increase, heart rate decrease, and urine output decrease.","episode_id":"iv_000195","anchor_time":48} {"id":"CVR_multivariable_iv_000197_w48_2","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure decrease. B. The first heart rate decrease occurs after the first systolic blood pressure decrease, respiratory rate decrease, and diastolic blood pressure decrease. C. The first heart rate decrease occurs before the first diastolic blood pressure decrease, but after the first systolic blood pressure decrease and respiratory rate decrease. D. The first heart rate decrease occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first systolic blood pressure decrease.","answer":"D","answer_text":"The first heart rate decrease occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first systolic blood pressure decrease.","episode_id":"iv_000197","anchor_time":48} {"id":"CVR_multivariable_iv_000197_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving SpO2, diastolic blood pressure, heart rate, and respiratory rate?\nOptions: A. heart rate decrease occurs first, followed by SpO2 increase, then diastolic blood pressure decrease, and finally respiratory rate increase. B. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then SpO2 increase, and finally respiratory rate increase. C. heart rate decrease occurs first, followed by SpO2 increase, then respiratory rate increase, and finally diastolic blood pressure decrease. D. SpO2 increase occurs first, followed by heart rate decrease, then diastolic blood pressure decrease, and finally respiratory rate increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then diastolic blood pressure decrease, and finally respiratory rate increase.","episode_id":"iv_000197","anchor_time":24} {"id":"CVR_multivariable_iv_000305_w48_0","question":"In the opening 48 hours, compare the first SpO2 decrease with the first heart rate decrease, diastolic blood pressure decrease, and temperature decrease; which option is correct?\nOptions: A. The first SpO2 decrease occurs after the first heart rate decrease, diastolic blood pressure decrease, and temperature decrease. B. The first SpO2 decrease occurs before the first heart rate decrease, diastolic blood pressure decrease, and temperature decrease. C. The first SpO2 decrease occurs before the first temperature decrease, but after the first heart rate decrease and diastolic blood pressure decrease. D. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and temperature decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 decrease occurs before the first diastolic blood pressure decrease and temperature decrease, but after the first heart rate decrease.","episode_id":"iv_000305","anchor_time":48} {"id":"CVR_multivariable_iv_000305_w48_1","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for SpO2, urine output, white blood cell count, temperature, and respiratory rate?\nOptions: A. SpO2 decrease occurs first, followed by respiratory rate decrease, then urine output decrease, then temperature increase, and finally white blood cell count increase. B. SpO2 decrease occurs first, followed by urine output decrease, then respiratory rate decrease, then temperature increase, and finally white blood cell count increase. C. SpO2 decrease occurs first, followed by respiratory rate decrease, then temperature increase, then urine output decrease, and finally white blood cell count increase. D. respiratory rate decrease occurs first, followed by SpO2 decrease, then urine output decrease, then temperature increase, and finally white blood cell count increase.","answer":"A","answer_text":"SpO2 decrease occurs first, followed by respiratory rate decrease, then urine output decrease, then temperature increase, and finally white blood cell count increase.","episode_id":"iv_000305","anchor_time":48} {"id":"CVR_multivariable_iv_000305_w48_2","question":"During the first 48 hours, which option correctly describes whether the first MAP increase preceded the first SpO2 decrease, systolic blood pressure decrease, and temperature decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 decrease and temperature decrease, but after the first systolic blood pressure decrease. B. The first MAP increase occurs before the first systolic blood pressure decrease and temperature decrease, but after the first SpO2 decrease. C. The first MAP increase occurs before the first SpO2 decrease, systolic blood pressure decrease, and temperature decrease. D. The first MAP increase occurs after the first SpO2 decrease, systolic blood pressure decrease, and temperature decrease.","answer":"C","answer_text":"The first MAP increase occurs before the first SpO2 decrease, systolic blood pressure decrease, and temperature decrease.","episode_id":"iv_000305","anchor_time":48} {"id":"CVR_multivariable_iv_000078_w48_0","question":"In the opening 48 hours, compare the first SpO2 increase with the first heart rate decrease, diastolic blood pressure increase, and urine output decrease; which option is correct?\nOptions: A. The first SpO2 increase occurs before the first urine output decrease, but after the first heart rate decrease and diastolic blood pressure increase. B. The first SpO2 increase occurs before the first heart rate decrease, diastolic blood pressure increase, and urine output decrease. C. The first SpO2 increase occurs after the first heart rate decrease, diastolic blood pressure increase, and urine output decrease. D. The first SpO2 increase occurs before the first diastolic blood pressure increase and urine output decrease, but after the first heart rate decrease.","answer":"D","answer_text":"The first SpO2 increase occurs before the first diastolic blood pressure increase and urine output decrease, but after the first heart rate decrease.","episode_id":"iv_000078","anchor_time":48} {"id":"CVR_multivariable_iv_000078_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving systolic blood pressure, heart rate, SpO2, and urine output?\nOptions: A. heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally urine output decrease. B. heart rate decrease occurs first, followed by systolic blood pressure increase, then SpO2 increase, and finally urine output decrease. C. SpO2 increase occurs first, followed by heart rate decrease, then systolic blood pressure increase, and finally urine output decrease. D. heart rate decrease occurs first, followed by SpO2 increase, then urine output decrease, and finally systolic blood pressure increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure increase, and finally urine output decrease.","episode_id":"iv_000078","anchor_time":24} {"id":"CVR_multivariable_iv_000078_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first systolic blood pressure decrease, diastolic blood pressure increase, and urine output decrease?\nOptions: A. The first heart rate decrease occurs after the first systolic blood pressure decrease, diastolic blood pressure increase, and urine output decrease. B. The first heart rate decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first systolic blood pressure decrease. C. The first heart rate decrease occurs before the first systolic blood pressure decrease, diastolic blood pressure increase, and urine output decrease. D. The first heart rate decrease occurs before the first systolic blood pressure decrease and urine output decrease, but after the first diastolic blood pressure increase.","answer":"C","answer_text":"The first heart rate decrease occurs before the first systolic blood pressure decrease, diastolic blood pressure increase, and urine output decrease.","episode_id":"iv_000078","anchor_time":48} {"id":"CVR_multivariable_iv_000024_w48_0","question":"For the initial 48 hours, was the first urine output increase earlier than the first heart rate decrease, systolic blood pressure increase, and MAP increase?\nOptions: A. The first urine output increase occurs after the first heart rate decrease, systolic blood pressure increase, and MAP increase. B. The first urine output increase occurs before the first systolic blood pressure increase and MAP increase, but after the first heart rate decrease. C. The first urine output increase occurs before the first heart rate decrease, systolic blood pressure increase, and MAP increase. D. The first urine output increase occurs before the first heart rate decrease and MAP increase, but after the first systolic blood pressure increase.","answer":"C","answer_text":"The first urine output increase occurs before the first heart rate decrease, systolic blood pressure increase, and MAP increase.","episode_id":"iv_000024","anchor_time":48} {"id":"CVR_multivariable_iv_000024_w48_1","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first urine output increase, temperature increase, and diastolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first diastolic blood pressure increase, but after the first urine output increase and temperature increase. B. The first heart rate decrease occurs before the first urine output increase, temperature increase, and diastolic blood pressure increase. C. The first heart rate decrease occurs after the first urine output increase, temperature increase, and diastolic blood pressure increase. D. The first heart rate decrease occurs before the first temperature increase and diastolic blood pressure increase, but after the first urine output increase.","answer":"D","answer_text":"The first heart rate decrease occurs before the first temperature increase and diastolic blood pressure increase, but after the first urine output increase.","episode_id":"iv_000024","anchor_time":48} {"id":"CVR_multivariable_iv_000024_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in SpO2, respiratory rate, temperature, diastolic blood pressure, and MAP?\nOptions: A. MAP decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then SpO2 decrease, and finally temperature decrease. B. MAP decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, then diastolic blood pressure increase, and finally temperature decrease. C. MAP decrease occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then SpO2 decrease, and finally temperature decrease. D. respiratory rate increase occurs first, followed by MAP decrease, then diastolic blood pressure increase, then SpO2 decrease, and finally temperature decrease.","answer":"A","answer_text":"MAP decrease occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then SpO2 decrease, and finally temperature decrease.","episode_id":"iv_000024","anchor_time":48} {"id":"CVR_multivariable_iv_000046_w48_1","question":"Across the first 48 hours, does the first MAP decrease happen before the first diastolic blood pressure increase, SpO2 decrease, and urine output decrease?\nOptions: A. The first MAP decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and urine output decrease. B. The first MAP decrease occurs before the first diastolic blood pressure increase and urine output decrease, but after the first SpO2 decrease. C. The first MAP decrease occurs after the first diastolic blood pressure increase, SpO2 decrease, and urine output decrease. D. The first MAP decrease occurs before the first SpO2 decrease and urine output decrease, but after the first diastolic blood pressure increase.","answer":"A","answer_text":"The first MAP decrease occurs before the first diastolic blood pressure increase, SpO2 decrease, and urine output decrease.","episode_id":"iv_000046","anchor_time":48} {"id":"CVR_multivariable_iv_000252_w48_0","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first systolic blood pressure decrease, SpO2 decrease, and diastolic blood pressure increase?\nOptions: A. The first heart rate increase occurs before the first systolic blood pressure decrease, SpO2 decrease, and diastolic blood pressure increase. B. The first heart rate increase occurs before the first systolic blood pressure decrease and diastolic blood pressure increase, but after the first SpO2 decrease. C. The first heart rate increase occurs after the first systolic blood pressure decrease, SpO2 decrease, and diastolic blood pressure increase. D. The first heart rate increase occurs before the first diastolic blood pressure increase, but after the first systolic blood pressure decrease and SpO2 decrease.","answer":"D","answer_text":"The first heart rate increase occurs before the first diastolic blood pressure increase, but after the first systolic blood pressure decrease and SpO2 decrease.","episode_id":"iv_000252","anchor_time":48} {"id":"CVR_multivariable_iv_000252_w24_0","question":"In the opening 24 hours, which listed sequence is consistent with the first changes seen in MAP, SpO2, diastolic blood pressure, and heart rate?\nOptions: A. heart rate decrease occurs first, followed by MAP decrease, then SpO2 increase, and finally diastolic blood pressure increase. B. heart rate decrease occurs first, followed by MAP decrease, then diastolic blood pressure increase, and finally SpO2 increase. C. MAP decrease occurs first, followed by heart rate decrease, then SpO2 increase, and finally diastolic blood pressure increase. D. heart rate decrease occurs first, followed by SpO2 increase, then MAP decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"heart rate decrease occurs first, followed by MAP decrease, then SpO2 increase, and finally diastolic blood pressure increase.","episode_id":"iv_000252","anchor_time":24} {"id":"CVR_multivariable_iv_000252_w48_2","question":"In the first 48 hours, how does the timing of the first systolic blood pressure decrease compare with the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first heart rate increase and diastolic blood pressure increase, but after the first SpO2 decrease. B. The first systolic blood pressure decrease occurs before the first SpO2 decrease and diastolic blood pressure increase, but after the first heart rate increase. C. The first systolic blood pressure decrease occurs before the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase. D. The first systolic blood pressure decrease occurs after the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase.","answer":"C","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 decrease, heart rate increase, and diastolic blood pressure increase.","episode_id":"iv_000252","anchor_time":48} {"id":"CVR_multivariable_iv_000260_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in MAP, respiratory rate, diastolic blood pressure, temperature, and urine output?\nOptions: A. urine output increase occurs first, followed by diastolic blood pressure increase, then MAP increase, then respiratory rate increase, and finally temperature decrease. B. urine output increase occurs first, followed by respiratory rate increase, then diastolic blood pressure increase, then MAP increase, and finally temperature decrease. C. urine output increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then MAP increase, and finally temperature decrease. D. diastolic blood pressure increase occurs first, followed by urine output increase, then respiratory rate increase, then MAP increase, and finally temperature decrease.","answer":"C","answer_text":"urine output increase occurs first, followed by diastolic blood pressure increase, then respiratory rate increase, then MAP increase, and finally temperature decrease.","episode_id":"iv_000260","anchor_time":48} {"id":"CVR_multivariable_iv_000070_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first diastolic blood pressure decrease, SpO2 increase, and systolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs after the first diastolic blood pressure decrease, SpO2 increase, and systolic blood pressure increase. B. The first heart rate decrease occurs before the first diastolic blood pressure decrease and systolic blood pressure increase, but after the first SpO2 increase. C. The first heart rate decrease occurs before the first diastolic blood pressure decrease, SpO2 increase, and systolic blood pressure increase. D. The first heart rate decrease occurs before the first SpO2 increase and systolic blood pressure increase, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first diastolic blood pressure decrease, SpO2 increase, and systolic blood pressure increase.","episode_id":"iv_000070","anchor_time":48} {"id":"CVR_multivariable_iv_000070_w48_2","question":"In the first 48 hours, how does the timing of the first systolic blood pressure decrease compare with the first respiratory rate decrease, SpO2 increase, and diastolic blood pressure increase?\nOptions: A. The first systolic blood pressure decrease occurs before the first respiratory rate decrease, SpO2 increase, and diastolic blood pressure increase. B. The first systolic blood pressure decrease occurs before the first diastolic blood pressure increase, but after the first respiratory rate decrease and SpO2 increase. C. The first systolic blood pressure decrease occurs after the first respiratory rate decrease, SpO2 increase, and diastolic blood pressure increase. D. The first systolic blood pressure decrease occurs before the first SpO2 increase and diastolic blood pressure increase, but after the first respiratory rate decrease.","answer":"D","answer_text":"The first systolic blood pressure decrease occurs before the first SpO2 increase and diastolic blood pressure increase, but after the first respiratory rate decrease.","episode_id":"iv_000070","anchor_time":48} {"id":"CVR_multivariable_iv_000427_w48_1","question":"During the first 48 hours, which answer correctly orders the first observed changes involving creatinine and white blood cell count?\nOptions: A. creatinine decrease occurs first, followed by white blood cell count decrease, then white blood cell count increase, and finally creatinine increase. B. creatinine decrease occurs first, followed by white blood cell count decrease, then creatinine increase, and finally white blood cell count increase. C. creatinine decrease occurs first, followed by white blood cell count increase, then white blood cell count decrease, and finally creatinine increase. D. white blood cell count decrease occurs first, followed by creatinine decrease, then white blood cell count increase, and finally creatinine increase.","answer":"A","answer_text":"creatinine decrease occurs first, followed by white blood cell count decrease, then white blood cell count increase, and finally creatinine increase.","episode_id":"iv_000427","anchor_time":48} {"id":"CVR_multivariable_iv_000427_w48_3","question":"Reviewing the first 48 hours, which option best captures where the first creatinine decrease falls relative to the first white blood cell count decrease, white blood cell count increase, and creatinine increase?\nOptions: A. The first creatinine decrease occurs before the first white blood cell count decrease and creatinine increase, but after the first white blood cell count increase. B. The first creatinine decrease occurs before the first white blood cell count increase and creatinine increase, but after the first white blood cell count decrease. C. The first creatinine decrease occurs before the first white blood cell count decrease, white blood cell count increase, and creatinine increase. D. The first creatinine decrease occurs after the first white blood cell count decrease, white blood cell count increase, and creatinine increase.","answer":"C","answer_text":"The first creatinine decrease occurs before the first white blood cell count decrease, white blood cell count increase, and creatinine increase.","episode_id":"iv_000427","anchor_time":48} {"id":"CVR_multivariable_iv_000298_w24_0","question":"During the first 24 hours, which answer correctly orders the first observed changes involving heart rate, SpO2, systolic blood pressure, and MAP?\nOptions: A. heart rate decrease occurs first, followed by SpO2 increase, then MAP decrease, and finally systolic blood pressure decrease. B. heart rate decrease occurs first, followed by MAP decrease, then SpO2 increase, and finally systolic blood pressure decrease. C. heart rate decrease occurs first, followed by SpO2 increase, then systolic blood pressure decrease, and finally MAP decrease. D. SpO2 increase occurs first, followed by heart rate decrease, then MAP decrease, and finally systolic blood pressure decrease.","answer":"A","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then MAP decrease, and finally systolic blood pressure decrease.","episode_id":"iv_000298","anchor_time":24} {"id":"CVR_multivariable_iv_000219_w48_0","question":"For the initial 48 hours, which option best matches the order in which temperature, diastolic blood pressure, SpO2, lactate, and urine output first changed?\nOptions: A. SpO2 increase occurs first, followed by urine output decrease, then diastolic blood pressure increase, then temperature decrease, and finally lactate decrease. B. diastolic blood pressure increase occurs first, followed by SpO2 increase, then urine output decrease, then temperature decrease, and finally lactate decrease. C. SpO2 increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, then temperature decrease, and finally lactate decrease. D. SpO2 increase occurs first, followed by diastolic blood pressure increase, then temperature decrease, then urine output decrease, and finally lactate decrease.","answer":"C","answer_text":"SpO2 increase occurs first, followed by diastolic blood pressure increase, then urine output decrease, then temperature decrease, and finally lactate decrease.","episode_id":"iv_000219","anchor_time":48} {"id":"CVR_multivariable_iv_000299_w48_2","question":"Looking only at the first 48 hours, did the first MAP increase come before the first SpO2 decrease, heart rate increase, and respiratory rate decrease?\nOptions: A. The first MAP increase occurs before the first SpO2 decrease and respiratory rate decrease, but after the first heart rate increase. B. The first MAP increase occurs after the first SpO2 decrease, heart rate increase, and respiratory rate decrease. C. The first MAP increase occurs before the first SpO2 decrease, heart rate increase, and respiratory rate decrease. D. The first MAP increase occurs before the first heart rate increase and respiratory rate decrease, but after the first SpO2 decrease.","answer":"C","answer_text":"The first MAP increase occurs before the first SpO2 decrease, heart rate increase, and respiratory rate decrease.","episode_id":"iv_000299","anchor_time":48} {"id":"CVR_multivariable_iv_000134_w24_0","question":"Reviewing the first 24 hours, which option most accurately summarizes the timing sequence for white blood cell count, respiratory rate, urine output, and SpO2?\nOptions: A. SpO2 decrease occurs first, followed by urine output decrease, then respiratory rate increase, and finally white blood cell count increase. B. SpO2 decrease occurs first, followed by white blood cell count increase, then urine output decrease, and finally respiratory rate increase. C. SpO2 decrease occurs first, followed by urine output decrease, then white blood cell count increase, and finally respiratory rate increase. D. urine output decrease occurs first, followed by SpO2 decrease, then white blood cell count increase, and finally respiratory rate increase.","answer":"C","answer_text":"SpO2 decrease occurs first, followed by urine output decrease, then white blood cell count increase, and finally respiratory rate increase.","episode_id":"iv_000134","anchor_time":24} {"id":"CVR_multivariable_iv_000126_w48_2","question":"In the opening 48 hours, compare the first diastolic blood pressure decrease with the first SpO2 decrease, systolic blood pressure increase, and temperature increase; which option is correct?\nOptions: A. The first diastolic blood pressure decrease occurs before the first SpO2 decrease and temperature increase, but after the first systolic blood pressure increase. B. The first diastolic blood pressure decrease occurs after the first SpO2 decrease, systolic blood pressure increase, and temperature increase. C. The first diastolic blood pressure decrease occurs before the first SpO2 decrease, systolic blood pressure increase, and temperature increase. D. The first diastolic blood pressure decrease occurs before the first systolic blood pressure increase and temperature increase, but after the first SpO2 decrease.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 decrease, systolic blood pressure increase, and temperature increase.","episode_id":"iv_000126","anchor_time":48} {"id":"CVR_multivariable_iv_000255_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how respiratory rate, MAP, heart rate, and temperature changed over time?\nOptions: A. heart rate increase occurs first, followed by temperature decrease, then respiratory rate decrease, and finally MAP decrease. B. heart rate increase occurs first, followed by respiratory rate decrease, then MAP decrease, and finally temperature decrease. C. heart rate increase occurs first, followed by respiratory rate decrease, then temperature decrease, and finally MAP decrease. D. respiratory rate decrease occurs first, followed by heart rate increase, then temperature decrease, and finally MAP decrease.","answer":"C","answer_text":"heart rate increase occurs first, followed by respiratory rate decrease, then temperature decrease, and finally MAP decrease.","episode_id":"iv_000255","anchor_time":24} {"id":"CVR_multivariable_iv_000367_w48_0","question":"During the first 48 hours, which answer correctly orders the first observed changes involving diastolic blood pressure, MAP, respiratory rate, creatinine, and SpO2?\nOptions: A. respiratory rate increase occurs first, followed by diastolic blood pressure decrease, then MAP increase, then SpO2 decrease, and finally creatinine increase. B. diastolic blood pressure decrease occurs first, followed by MAP increase, then respiratory rate increase, then SpO2 decrease, and finally creatinine increase. C. diastolic blood pressure decrease occurs first, followed by respiratory rate increase, then MAP increase, then SpO2 decrease, and finally creatinine increase. D. diastolic blood pressure decrease occurs first, followed by respiratory rate increase, then SpO2 decrease, then MAP increase, and finally creatinine increase.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by respiratory rate increase, then MAP increase, then SpO2 decrease, and finally creatinine increase.","episode_id":"iv_000367","anchor_time":48} {"id":"CVR_multivariable_iv_000367_w48_1","question":"Reviewing the first 48 hours, which option best captures where the first heart rate decrease falls relative to the first temperature increase, diastolic blood pressure increase, and SpO2 decrease?\nOptions: A. The first heart rate decrease occurs before the first temperature increase, diastolic blood pressure increase, and SpO2 decrease. B. The first heart rate decrease occurs after the first temperature increase, diastolic blood pressure increase, and SpO2 decrease. C. The first heart rate decrease occurs before the first temperature increase and SpO2 decrease, but after the first diastolic blood pressure increase. D. The first heart rate decrease occurs before the first diastolic blood pressure increase and SpO2 decrease, but after the first temperature increase.","answer":"A","answer_text":"The first heart rate decrease occurs before the first temperature increase, diastolic blood pressure increase, and SpO2 decrease.","episode_id":"iv_000367","anchor_time":48} {"id":"CVR_multivariable_iv_000108_w48_0","question":"For the initial 48 hours, was the first urine output decrease earlier than the first white blood cell count increase, heart rate decrease, and SpO2 decrease?\nOptions: A. The first urine output decrease occurs before the first white blood cell count increase, heart rate decrease, and SpO2 decrease. B. The first urine output decrease occurs after the first white blood cell count increase, heart rate decrease, and SpO2 decrease. C. The first urine output decrease occurs before the first heart rate decrease and SpO2 decrease, but after the first white blood cell count increase. D. The first urine output decrease occurs before the first white blood cell count increase and SpO2 decrease, but after the first heart rate decrease.","answer":"A","answer_text":"The first urine output decrease occurs before the first white blood cell count increase, heart rate decrease, and SpO2 decrease.","episode_id":"iv_000108","anchor_time":48} {"id":"CVR_multivariable_iv_000482_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first MAP decrease, urine output decrease, and systolic blood pressure increase?\nOptions: A. The first respiratory rate decrease occurs before the first MAP decrease and systolic blood pressure increase, but after the first urine output decrease. B. The first respiratory rate decrease occurs after the first MAP decrease, urine output decrease, and systolic blood pressure increase. C. The first respiratory rate decrease occurs before the first MAP decrease, urine output decrease, and systolic blood pressure increase. D. The first respiratory rate decrease occurs before the first urine output decrease and systolic blood pressure increase, but after the first MAP decrease.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first MAP decrease, urine output decrease, and systolic blood pressure increase.","episode_id":"iv_000482","anchor_time":48} {"id":"CVR_multivariable_iv_000482_w24_0","question":"For the initial 24 hours, which option best matches the order in which systolic blood pressure, diastolic blood pressure, urine output, and respiratory rate first changed?\nOptions: A. respiratory rate decrease occurs first, followed by diastolic blood pressure decrease, then urine output decrease, and finally systolic blood pressure increase. B. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then urine output decrease, and finally systolic blood pressure increase. C. respiratory rate decrease occurs first, followed by urine output decrease, then diastolic blood pressure decrease, and finally systolic blood pressure increase. D. respiratory rate decrease occurs first, followed by diastolic blood pressure decrease, then systolic blood pressure increase, and finally urine output decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by diastolic blood pressure decrease, then urine output decrease, and finally systolic blood pressure increase.","episode_id":"iv_000482","anchor_time":24} {"id":"CVR_multivariable_iv_000028_w48_2","question":"In the first 48 hours, how does the timing of the first respiratory rate decrease compare with the first MAP decrease, urine output increase, and diastolic blood pressure decrease?\nOptions: A. The first respiratory rate decrease occurs before the first MAP decrease and diastolic blood pressure decrease, but after the first urine output increase. B. The first respiratory rate decrease occurs after the first MAP decrease, urine output increase, and diastolic blood pressure decrease. C. The first respiratory rate decrease occurs before the first MAP decrease, urine output increase, and diastolic blood pressure decrease. D. The first respiratory rate decrease occurs before the first urine output increase and diastolic blood pressure decrease, but after the first MAP decrease.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first MAP decrease, urine output increase, and diastolic blood pressure decrease.","episode_id":"iv_000028","anchor_time":48} {"id":"CVR_multivariable_iv_000463_w24_0","question":"In the first 24 hours, which option puts the first changes in temperature, heart rate, diastolic blood pressure, and respiratory rate in the right order?\nOptions: A. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally temperature increase. B. heart rate decrease occurs first, followed by respiratory rate decrease, then diastolic blood pressure decrease, and finally temperature increase. C. diastolic blood pressure decrease occurs first, followed by heart rate decrease, then respiratory rate decrease, and finally temperature increase. D. heart rate decrease occurs first, followed by diastolic blood pressure decrease, then temperature increase, and finally respiratory rate decrease.","answer":"A","answer_text":"heart rate decrease occurs first, followed by diastolic blood pressure decrease, then respiratory rate decrease, and finally temperature increase.","episode_id":"iv_000463","anchor_time":24} {"id":"CVR_multivariable_iv_000438_w48_1","question":"For the initial 48 hours, which option best matches the order in which MAP, urine output, systolic blood pressure, SpO2, and temperature first changed?\nOptions: A. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then MAP increase, then urine output decrease, and finally temperature increase. B. SpO2 decrease occurs first, followed by systolic blood pressure decrease, then MAP increase, then urine output decrease, and finally temperature increase. C. systolic blood pressure decrease occurs first, followed by SpO2 decrease, then urine output decrease, then MAP increase, and finally temperature increase. D. systolic blood pressure decrease occurs first, followed by MAP increase, then SpO2 decrease, then urine output decrease, and finally temperature increase.","answer":"A","answer_text":"systolic blood pressure decrease occurs first, followed by SpO2 decrease, then MAP increase, then urine output decrease, and finally temperature increase.","episode_id":"iv_000438","anchor_time":48} {"id":"CVR_multivariable_iv_000087_w48_0","question":"During the first 48 hours, which option correctly describes whether the first MAP increase preceded the first diastolic blood pressure increase, systolic blood pressure decrease, and white blood cell count increase?\nOptions: A. The first MAP increase occurs before the first systolic blood pressure decrease and white blood cell count increase, but after the first diastolic blood pressure increase. B. The first MAP increase occurs before the first diastolic blood pressure increase and white blood cell count increase, but after the first systolic blood pressure decrease. C. The first MAP increase occurs before the first diastolic blood pressure increase, systolic blood pressure decrease, and white blood cell count increase. D. The first MAP increase occurs after the first diastolic blood pressure increase, systolic blood pressure decrease, and white blood cell count increase.","answer":"C","answer_text":"The first MAP increase occurs before the first diastolic blood pressure increase, systolic blood pressure decrease, and white blood cell count increase.","episode_id":"iv_000087","anchor_time":48} {"id":"CVR_multivariable_iv_000311_w48_1","question":"In the first 48 hours, which option puts the first changes in white blood cell count, urine output, heart rate, systolic blood pressure, and temperature in the right order?\nOptions: A. heart rate decrease occurs first, followed by white blood cell count increase, then temperature decrease, then urine output increase, and finally systolic blood pressure decrease. B. heart rate decrease occurs first, followed by temperature decrease, then white blood cell count increase, then urine output increase, and finally systolic blood pressure decrease. C. heart rate decrease occurs first, followed by white blood cell count increase, then urine output increase, then temperature decrease, and finally systolic blood pressure decrease. D. white blood cell count increase occurs first, followed by heart rate decrease, then temperature decrease, then urine output increase, and finally systolic blood pressure decrease.","answer":"A","answer_text":"heart rate decrease occurs first, followed by white blood cell count increase, then temperature decrease, then urine output increase, and finally systolic blood pressure decrease.","episode_id":"iv_000311","anchor_time":48} {"id":"CVR_multivariable_iv_000311_w48_2","question":"Looking only at the first 48 hours, did the first white blood cell count increase come before the first MAP increase, urine output increase, and systolic blood pressure decrease?\nOptions: A. The first white blood cell count increase occurs before the first MAP increase and systolic blood pressure decrease, but after the first urine output increase. B. The first white blood cell count increase occurs after the first MAP increase, urine output increase, and systolic blood pressure decrease. C. The first white blood cell count increase occurs before the first MAP increase, urine output increase, and systolic blood pressure decrease. D. The first white blood cell count increase occurs before the first urine output increase and systolic blood pressure decrease, but after the first MAP increase.","answer":"C","answer_text":"The first white blood cell count increase occurs before the first MAP increase, urine output increase, and systolic blood pressure decrease.","episode_id":"iv_000311","anchor_time":48} {"id":"CVR_multivariable_iv_000331_w48_2","question":"Across the first 48 hours, how did the first changes in diastolic blood pressure, temperature, white blood cell count, lactate, and MAP unfold?\nOptions: A. MAP decrease occurs first, followed by diastolic blood pressure increase, then lactate increase, then temperature decrease, and finally white blood cell count decrease. B. MAP decrease occurs first, followed by lactate increase, then diastolic blood pressure increase, then temperature decrease, and finally white blood cell count decrease. C. diastolic blood pressure increase occurs first, followed by MAP decrease, then lactate increase, then temperature decrease, and finally white blood cell count decrease. D. MAP decrease occurs first, followed by diastolic blood pressure increase, then temperature decrease, then lactate increase, and finally white blood cell count decrease.","answer":"A","answer_text":"MAP decrease occurs first, followed by diastolic blood pressure increase, then lactate increase, then temperature decrease, and finally white blood cell count decrease.","episode_id":"iv_000331","anchor_time":48} {"id":"CVR_multivariable_iv_000349_w48_1","question":"Looking only at the first 48 hours, did the first respiratory rate increase come before the first heart rate decrease, urine output decrease, and MAP decrease?\nOptions: A. The first respiratory rate increase occurs before the first heart rate decrease, urine output decrease, and MAP decrease. B. The first respiratory rate increase occurs before the first heart rate decrease and MAP decrease, but after the first urine output decrease. C. The first respiratory rate increase occurs after the first heart rate decrease, urine output decrease, and MAP decrease. D. The first respiratory rate increase occurs before the first urine output decrease and MAP decrease, but after the first heart rate decrease.","answer":"A","answer_text":"The first respiratory rate increase occurs before the first heart rate decrease, urine output decrease, and MAP decrease.","episode_id":"iv_000349","anchor_time":48} {"id":"CVR_multivariable_iv_000470_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in urine output, MAP, temperature, creatinine, and respiratory rate?\nOptions: A. respiratory rate decrease occurs first, followed by MAP increase, then temperature increase, then urine output decrease, and finally creatinine decrease. B. MAP increase occurs first, followed by respiratory rate decrease, then temperature increase, then urine output decrease, and finally creatinine decrease. C. respiratory rate decrease occurs first, followed by temperature increase, then MAP increase, then urine output decrease, and finally creatinine decrease. D. respiratory rate decrease occurs first, followed by MAP increase, then urine output decrease, then temperature increase, and finally creatinine decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by MAP increase, then temperature increase, then urine output decrease, and finally creatinine decrease.","episode_id":"iv_000470","anchor_time":48} {"id":"CVR_multivariable_iv_000470_w48_2","question":"In the opening 48 hours, compare the first SpO2 decrease with the first heart rate increase, diastolic blood pressure decrease, and respiratory rate decrease; which option is correct?\nOptions: A. The first SpO2 decrease occurs after the first heart rate increase, diastolic blood pressure decrease, and respiratory rate decrease. B. The first SpO2 decrease occurs before the first diastolic blood pressure decrease and respiratory rate decrease, but after the first heart rate increase. C. The first SpO2 decrease occurs before the first heart rate increase, diastolic blood pressure decrease, and respiratory rate decrease. D. The first SpO2 decrease occurs before the first heart rate increase and respiratory rate decrease, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first SpO2 decrease occurs before the first heart rate increase, diastolic blood pressure decrease, and respiratory rate decrease.","episode_id":"iv_000470","anchor_time":48} {"id":"CVR_multivariable_iv_000343_w48_2","question":"Looking only at the first 48 hours, which sequence best captures how creatinine, diastolic blood pressure, respiratory rate, MAP, and temperature changed over time?\nOptions: A. diastolic blood pressure decrease occurs first, followed by MAP increase, then respiratory rate increase, then temperature increase, and finally creatinine increase. B. diastolic blood pressure decrease occurs first, followed by MAP increase, then temperature increase, then respiratory rate increase, and finally creatinine increase. C. MAP increase occurs first, followed by diastolic blood pressure decrease, then respiratory rate increase, then temperature increase, and finally creatinine increase. D. diastolic blood pressure decrease occurs first, followed by respiratory rate increase, then MAP increase, then temperature increase, and finally creatinine increase.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by MAP increase, then respiratory rate increase, then temperature increase, and finally creatinine increase.","episode_id":"iv_000343","anchor_time":48} {"id":"CVR_multivariable_iv_000107_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate increase relative to the first MAP decrease, SpO2 increase, and white blood cell count increase?\nOptions: A. The first respiratory rate increase occurs before the first MAP decrease, SpO2 increase, and white blood cell count increase. B. The first respiratory rate increase occurs before the first MAP decrease and white blood cell count increase, but after the first SpO2 increase. C. The first respiratory rate increase occurs after the first MAP decrease, SpO2 increase, and white blood cell count increase. D. The first respiratory rate increase occurs before the first SpO2 increase and white blood cell count increase, but after the first MAP decrease.","answer":"A","answer_text":"The first respiratory rate increase occurs before the first MAP decrease, SpO2 increase, and white blood cell count increase.","episode_id":"iv_000107","anchor_time":48} {"id":"CVR_multivariable_iv_000325_w24_0","question":"For the initial 24 hours, which option best matches the order in which urine output, MAP, temperature, and diastolic blood pressure first changed?\nOptions: A. diastolic blood pressure decrease occurs first, followed by MAP increase, then urine output decrease, and finally temperature increase. B. MAP increase occurs first, followed by diastolic blood pressure decrease, then urine output decrease, and finally temperature increase. C. diastolic blood pressure decrease occurs first, followed by urine output decrease, then MAP increase, and finally temperature increase. D. diastolic blood pressure decrease occurs first, followed by MAP increase, then temperature increase, and finally urine output decrease.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by MAP increase, then urine output decrease, and finally temperature increase.","episode_id":"iv_000325","anchor_time":24} {"id":"CVR_multivariable_iv_000325_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first diastolic blood pressure decrease relative to the first SpO2 increase, urine output decrease, and temperature increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first urine output decrease and temperature increase, but after the first SpO2 increase. B. The first diastolic blood pressure decrease occurs after the first SpO2 increase, urine output decrease, and temperature increase. C. The first diastolic blood pressure decrease occurs before the first SpO2 increase, urine output decrease, and temperature increase. D. The first diastolic blood pressure decrease occurs before the first SpO2 increase and temperature increase, but after the first urine output decrease.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first SpO2 increase, urine output decrease, and temperature increase.","episode_id":"iv_000325","anchor_time":48} {"id":"CVR_multivariable_iv_000232_w48_0","question":"During the first 48 hours, which option correctly describes whether the first urine output decrease preceded the first MAP increase, respiratory rate decrease, and temperature increase?\nOptions: A. The first urine output decrease occurs before the first MAP increase, respiratory rate decrease, and temperature increase. B. The first urine output decrease occurs after the first MAP increase, respiratory rate decrease, and temperature increase. C. The first urine output decrease occurs before the first MAP increase and temperature increase, but after the first respiratory rate decrease. D. The first urine output decrease occurs before the first respiratory rate decrease and temperature increase, but after the first MAP increase.","answer":"A","answer_text":"The first urine output decrease occurs before the first MAP increase, respiratory rate decrease, and temperature increase.","episode_id":"iv_000232","anchor_time":48} {"id":"CVR_multivariable_iv_000454_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in respiratory rate, urine output, temperature, SpO2, and lactate?\nOptions: A. SpO2 increase occurs first, followed by lactate decrease, then respiratory rate increase, then temperature decrease, and finally urine output decrease. B. SpO2 increase occurs first, followed by lactate decrease, then temperature decrease, then respiratory rate increase, and finally urine output decrease. C. SpO2 increase occurs first, followed by respiratory rate increase, then lactate decrease, then temperature decrease, and finally urine output decrease. D. lactate decrease occurs first, followed by SpO2 increase, then respiratory rate increase, then temperature decrease, and finally urine output decrease.","answer":"A","answer_text":"SpO2 increase occurs first, followed by lactate decrease, then respiratory rate increase, then temperature decrease, and finally urine output decrease.","episode_id":"iv_000454","anchor_time":48} {"id":"CVR_multivariable_iv_000338_w48_2","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in temperature, lactate, diastolic blood pressure, systolic blood pressure, and creatinine?\nOptions: A. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then creatinine increase, then temperature increase, and finally lactate decrease. B. systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then temperature increase, then creatinine increase, and finally lactate decrease. C. diastolic blood pressure decrease occurs first, followed by systolic blood pressure increase, then creatinine increase, then temperature increase, and finally lactate decrease. D. systolic blood pressure increase occurs first, followed by creatinine increase, then diastolic blood pressure decrease, then temperature increase, and finally lactate decrease.","answer":"A","answer_text":"systolic blood pressure increase occurs first, followed by diastolic blood pressure decrease, then creatinine increase, then temperature increase, and finally lactate decrease.","episode_id":"iv_000338","anchor_time":48} {"id":"CVR_multivariable_iv_000295_w48_0","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in urine output, lactate, respiratory rate, MAP, and SpO2?\nOptions: A. MAP decrease occurs first, followed by SpO2 decrease, then urine output decrease, then respiratory rate decrease, and finally lactate decrease. B. MAP decrease occurs first, followed by respiratory rate decrease, then SpO2 decrease, then urine output decrease, and finally lactate decrease. C. MAP decrease occurs first, followed by SpO2 decrease, then respiratory rate decrease, then urine output decrease, and finally lactate decrease. D. SpO2 decrease occurs first, followed by MAP decrease, then respiratory rate decrease, then urine output decrease, and finally lactate decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by SpO2 decrease, then respiratory rate decrease, then urine output decrease, and finally lactate decrease.","episode_id":"iv_000295","anchor_time":48} {"id":"CVR_multivariable_iv_000185_w48_1","question":"For the initial 48 hours, which option best matches the order in which white blood cell count, systolic blood pressure, lactate, temperature, and urine output first changed?\nOptions: A. systolic blood pressure increase occurs first, followed by urine output increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase. B. systolic blood pressure increase occurs first, followed by urine output increase, then white blood cell count decrease, then lactate decrease, and finally temperature increase. C. urine output increase occurs first, followed by systolic blood pressure increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase. D. systolic blood pressure increase occurs first, followed by lactate decrease, then urine output increase, then white blood cell count decrease, and finally temperature increase.","answer":"A","answer_text":"systolic blood pressure increase occurs first, followed by urine output increase, then lactate decrease, then white blood cell count decrease, and finally temperature increase.","episode_id":"iv_000185","anchor_time":48} {"id":"CVR_multivariable_iv_000321_w48_2","question":"Based on the first 48 hours of data, which option gives the most accurate ordering for the first changes in systolic blood pressure, heart rate, respiratory rate, temperature, and diastolic blood pressure?\nOptions: A. heart rate increase occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then diastolic blood pressure increase, and finally temperature increase. B. heart rate increase occurs first, followed by systolic blood pressure increase, then diastolic blood pressure increase, then respiratory rate decrease, and finally temperature increase. C. heart rate increase occurs first, followed by respiratory rate decrease, then systolic blood pressure increase, then diastolic blood pressure increase, and finally temperature increase. D. systolic blood pressure increase occurs first, followed by heart rate increase, then respiratory rate decrease, then diastolic blood pressure increase, and finally temperature increase.","answer":"A","answer_text":"heart rate increase occurs first, followed by systolic blood pressure increase, then respiratory rate decrease, then diastolic blood pressure increase, and finally temperature increase.","episode_id":"iv_000321","anchor_time":48} {"id":"CVR_multivariable_iv_000150_w24_0","question":"Across the first 24 hours, how did the first changes in SpO2, systolic blood pressure, diastolic blood pressure, and respiratory rate unfold?\nOptions: A. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then SpO2 decrease, and finally diastolic blood pressure increase. B. respiratory rate decrease occurs first, followed by SpO2 decrease, then systolic blood pressure decrease, and finally diastolic blood pressure increase. C. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then diastolic blood pressure increase, and finally SpO2 decrease. D. systolic blood pressure decrease occurs first, followed by respiratory rate decrease, then SpO2 decrease, and finally diastolic blood pressure increase.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then SpO2 decrease, and finally diastolic blood pressure increase.","episode_id":"iv_000150","anchor_time":24} {"id":"CVR_multivariable_iv_000282_w48_2","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for MAP, systolic blood pressure, temperature, respiratory rate, and urine output?\nOptions: A. MAP decrease occurs first, followed by urine output decrease, then respiratory rate increase, then systolic blood pressure decrease, and finally temperature decrease. B. MAP decrease occurs first, followed by systolic blood pressure decrease, then urine output decrease, then respiratory rate increase, and finally temperature decrease. C. MAP decrease occurs first, followed by urine output decrease, then systolic blood pressure decrease, then respiratory rate increase, and finally temperature decrease. D. urine output decrease occurs first, followed by MAP decrease, then systolic blood pressure decrease, then respiratory rate increase, and finally temperature decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by urine output decrease, then systolic blood pressure decrease, then respiratory rate increase, and finally temperature decrease.","episode_id":"iv_000282","anchor_time":48} {"id":"CVR_multivariable_iv_000040_w48_2","question":"For the initial 48 hours, which option best matches the order in which MAP, temperature, urine output, diastolic blood pressure, and white blood cell count first changed?\nOptions: A. diastolic blood pressure decrease occurs first, followed by temperature increase, then MAP decrease, then urine output increase, and finally white blood cell count decrease. B. diastolic blood pressure decrease occurs first, followed by temperature increase, then urine output increase, then MAP decrease, and finally white blood cell count decrease. C. temperature increase occurs first, followed by diastolic blood pressure decrease, then MAP decrease, then urine output increase, and finally white blood cell count decrease. D. diastolic blood pressure decrease occurs first, followed by MAP decrease, then temperature increase, then urine output increase, and finally white blood cell count decrease.","answer":"A","answer_text":"diastolic blood pressure decrease occurs first, followed by temperature increase, then MAP decrease, then urine output increase, and finally white blood cell count decrease.","episode_id":"iv_000040","anchor_time":48} {"id":"CVR_multivariable_iv_000063_w48_1","question":"In the first 48 hours, which option puts the first changes in SpO2, respiratory rate, temperature, urine output, and creatinine in the right order?\nOptions: A. respiratory rate decrease occurs first, followed by urine output decrease, then temperature decrease, then SpO2 increase, and finally creatinine decrease. B. urine output decrease occurs first, followed by respiratory rate decrease, then temperature decrease, then SpO2 increase, and finally creatinine decrease. C. respiratory rate decrease occurs first, followed by urine output decrease, then SpO2 increase, then temperature decrease, and finally creatinine decrease. D. respiratory rate decrease occurs first, followed by temperature decrease, then urine output decrease, then SpO2 increase, and finally creatinine decrease.","answer":"A","answer_text":"respiratory rate decrease occurs first, followed by urine output decrease, then temperature decrease, then SpO2 increase, and finally creatinine decrease.","episode_id":"iv_000063","anchor_time":48} {"id":"CVR_multivariable_iv_000373_w48_0","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for temperature, MAP, lactate, white blood cell count, and urine output?\nOptions: A. MAP decrease occurs first, followed by lactate decrease, then urine output increase, then temperature increase, and finally white blood cell count decrease. B. MAP decrease occurs first, followed by urine output increase, then temperature increase, then lactate decrease, and finally white blood cell count decrease. C. MAP decrease occurs first, followed by urine output increase, then lactate decrease, then temperature increase, and finally white blood cell count decrease. D. urine output increase occurs first, followed by MAP decrease, then lactate decrease, then temperature increase, and finally white blood cell count decrease.","answer":"C","answer_text":"MAP decrease occurs first, followed by urine output increase, then lactate decrease, then temperature increase, and finally white blood cell count decrease.","episode_id":"iv_000373","anchor_time":48} {"id":"CVR_multivariable_iv_000022_w48_1","question":"In the opening 48 hours, which listed sequence is consistent with the first changes seen in urine output, white blood cell count, temperature, lactate, and MAP?\nOptions: A. MAP decrease occurs first, followed by urine output increase, then lactate decrease, then temperature decrease, and finally white blood cell count increase. B. MAP decrease occurs first, followed by lactate decrease, then urine output increase, then temperature decrease, and finally white blood cell count increase. C. MAP decrease occurs first, followed by urine output increase, then temperature decrease, then lactate decrease, and finally white blood cell count increase. D. urine output increase occurs first, followed by MAP decrease, then lactate decrease, then temperature decrease, and finally white blood cell count increase.","answer":"A","answer_text":"MAP decrease occurs first, followed by urine output increase, then lactate decrease, then temperature decrease, and finally white blood cell count increase.","episode_id":"iv_000022","anchor_time":48} {"id":"CVR_multivariable_iv_000309_w48_0","question":"Across the first 48 hours, how did the first changes in lactate, temperature, heart rate, SpO2, and white blood cell count unfold?\nOptions: A. heart rate decrease occurs first, followed by temperature increase, then SpO2 increase, then lactate decrease, and finally white blood cell count increase. B. heart rate decrease occurs first, followed by SpO2 increase, then lactate decrease, then temperature increase, and finally white blood cell count increase. C. heart rate decrease occurs first, followed by SpO2 increase, then temperature increase, then lactate decrease, and finally white blood cell count increase. D. SpO2 increase occurs first, followed by heart rate decrease, then temperature increase, then lactate decrease, and finally white blood cell count increase.","answer":"C","answer_text":"heart rate decrease occurs first, followed by SpO2 increase, then temperature increase, then lactate decrease, and finally white blood cell count increase.","episode_id":"iv_000309","anchor_time":48} {"id":"CVR_multivariable_iv_000433_w48_2","question":"For the initial 48 hours, which option best matches the order in which systolic blood pressure, temperature, white blood cell count, respiratory rate, and creatinine first changed?\nOptions: A. respiratory rate increase occurs first, followed by temperature increase, then systolic blood pressure decrease, then white blood cell count increase, and finally creatinine increase. B. systolic blood pressure decrease occurs first, followed by respiratory rate increase, then temperature increase, then white blood cell count increase, and finally creatinine increase. C. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then temperature increase, then white blood cell count increase, and finally creatinine increase. D. respiratory rate increase occurs first, followed by systolic blood pressure decrease, then white blood cell count increase, then temperature increase, and finally creatinine increase.","answer":"C","answer_text":"respiratory rate increase occurs first, followed by systolic blood pressure decrease, then temperature increase, then white blood cell count increase, and finally creatinine increase.","episode_id":"iv_000433","anchor_time":48} {"id":"CVR_multivariable_iv_000110_w48_2","question":"Reviewing the first 48 hours, which option most accurately summarizes the timing sequence for respiratory rate, white blood cell count, diastolic blood pressure, heart rate, and temperature?\nOptions: A. respiratory rate decrease occurs first, followed by diastolic blood pressure decrease, then heart rate decrease, then temperature decrease, and finally white blood cell count decrease. B. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then temperature decrease, then heart rate decrease, and finally white blood cell count decrease. C. diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then heart rate decrease, then temperature decrease, and finally white blood cell count decrease. D. diastolic blood pressure decrease occurs first, followed by heart rate decrease, then respiratory rate decrease, then temperature decrease, and finally white blood cell count decrease.","answer":"C","answer_text":"diastolic blood pressure decrease occurs first, followed by respiratory rate decrease, then heart rate decrease, then temperature decrease, and finally white blood cell count decrease.","episode_id":"iv_000110","anchor_time":48} {"id":"CVR_multivariable_iv_000357_w48_0","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first lactate increase, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first heart rate increase occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first lactate increase. B. The first heart rate increase occurs before the first lactate increase and diastolic blood pressure decrease, but after the first respiratory rate decrease. C. The first heart rate increase occurs before the first lactate increase, respiratory rate decrease, and diastolic blood pressure decrease. D. The first heart rate increase occurs after the first lactate increase, respiratory rate decrease, and diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate increase occurs before the first lactate increase, respiratory rate decrease, and diastolic blood pressure decrease.","episode_id":"iv_000357","anchor_time":48} {"id":"CVR_multivariable_iv_000412_w48_2","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate decrease relative to the first SpO2 decrease, respiratory rate decrease, and diastolic blood pressure decrease?\nOptions: A. The first heart rate decrease occurs before the first SpO2 decrease and diastolic blood pressure decrease, but after the first respiratory rate decrease. B. The first heart rate decrease occurs after the first SpO2 decrease, respiratory rate decrease, and diastolic blood pressure decrease. C. The first heart rate decrease occurs before the first SpO2 decrease, respiratory rate decrease, and diastolic blood pressure decrease. D. The first heart rate decrease occurs before the first respiratory rate decrease and diastolic blood pressure decrease, but after the first SpO2 decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first SpO2 decrease, respiratory rate decrease, and diastolic blood pressure decrease.","episode_id":"iv_000412","anchor_time":48} {"id":"CVR_multivariable_iv_000445_w24_0","question":"Looking only at the first 24 hours, which sequence best captures how heart rate, diastolic blood pressure, SpO2, and urine output changed over time?\nOptions: A. urine output decrease occurs first, followed by heart rate increase, then diastolic blood pressure decrease, and finally SpO2 increase. B. heart rate increase occurs first, followed by urine output decrease, then SpO2 increase, and finally diastolic blood pressure decrease. C. urine output decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally diastolic blood pressure decrease. D. urine output decrease occurs first, followed by SpO2 increase, then heart rate increase, and finally diastolic blood pressure decrease.","answer":"C","answer_text":"urine output decrease occurs first, followed by heart rate increase, then SpO2 increase, and finally diastolic blood pressure decrease.","episode_id":"iv_000445","anchor_time":24} {"id":"CVR_multivariable_iv_000301_w48_0","question":"Reviewing the first 48 hours, which option best captures where the first heart rate increase falls relative to the first diastolic blood pressure decrease, temperature increase, and SpO2 decrease?\nOptions: A. The first heart rate increase occurs before the first diastolic blood pressure decrease and SpO2 decrease, but after the first temperature increase. B. The first heart rate increase occurs after the first diastolic blood pressure decrease, temperature increase, and SpO2 decrease. C. The first heart rate increase occurs before the first diastolic blood pressure decrease, temperature increase, and SpO2 decrease. D. The first heart rate increase occurs before the first temperature increase and SpO2 decrease, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate increase occurs before the first diastolic blood pressure decrease, temperature increase, and SpO2 decrease.","episode_id":"iv_000301","anchor_time":48} {"id":"CVR_multivariable_iv_000112_w48_2","question":"During the first 48 hours, which option correctly describes whether the first heart rate decrease preceded the first diastolic blood pressure decrease, creatinine decrease, and systolic blood pressure increase?\nOptions: A. The first heart rate decrease occurs before the first diastolic blood pressure decrease and systolic blood pressure increase, but after the first creatinine decrease. B. The first heart rate decrease occurs after the first diastolic blood pressure decrease, creatinine decrease, and systolic blood pressure increase. C. The first heart rate decrease occurs before the first diastolic blood pressure decrease, creatinine decrease, and systolic blood pressure increase. D. The first heart rate decrease occurs before the first creatinine decrease and systolic blood pressure increase, but after the first diastolic blood pressure decrease.","answer":"C","answer_text":"The first heart rate decrease occurs before the first diastolic blood pressure decrease, creatinine decrease, and systolic blood pressure increase.","episode_id":"iv_000112","anchor_time":48} {"id":"CVR_multivariable_iv_000486_w48_1","question":"Based on the first 48 hours of data, which statement best describes the timing of the first heart rate increase relative to the first SpO2 decrease, systolic blood pressure increase, and respiratory rate increase?\nOptions: A. The first heart rate increase occurs before the first systolic blood pressure increase and respiratory rate increase, but after the first SpO2 decrease. B. The first heart rate increase occurs after the first SpO2 decrease, systolic blood pressure increase, and respiratory rate increase. C. The first heart rate increase occurs before the first SpO2 decrease, systolic blood pressure increase, and respiratory rate increase. D. The first heart rate increase occurs before the first SpO2 decrease and respiratory rate increase, but after the first systolic blood pressure increase.","answer":"C","answer_text":"The first heart rate increase occurs before the first SpO2 decrease, systolic blood pressure increase, and respiratory rate increase.","episode_id":"iv_000486","anchor_time":48} {"id":"CVR_multivariable_iv_000101_w48_0","question":"In the first 48 hours, how does the timing of the first heart rate increase compare with the first respiratory rate decrease, diastolic blood pressure increase, and systolic blood pressure increase?\nOptions: A. The first heart rate increase occurs before the first respiratory rate decrease and systolic blood pressure increase, but after the first diastolic blood pressure increase. B. The first heart rate increase occurs before the first diastolic blood pressure increase and systolic blood pressure increase, but after the first respiratory rate decrease. C. The first heart rate increase occurs before the first respiratory rate decrease, diastolic blood pressure increase, and systolic blood pressure increase. D. The first heart rate increase occurs after the first respiratory rate decrease, diastolic blood pressure increase, and systolic blood pressure increase.","answer":"C","answer_text":"The first heart rate increase occurs before the first respiratory rate decrease, diastolic blood pressure increase, and systolic blood pressure increase.","episode_id":"iv_000101","anchor_time":48} {"id":"CVR_multivariable_iv_000258_w48_0","question":"Across the first 48 hours, does the first diastolic blood pressure decrease happen before the first respiratory rate increase, temperature decrease, and systolic blood pressure increase?\nOptions: A. The first diastolic blood pressure decrease occurs before the first temperature decrease and systolic blood pressure increase, but after the first respiratory rate increase. B. The first diastolic blood pressure decrease occurs before the first respiratory rate increase and systolic blood pressure increase, but after the first temperature decrease. C. The first diastolic blood pressure decrease occurs before the first respiratory rate increase, temperature decrease, and systolic blood pressure increase. D. The first diastolic blood pressure decrease occurs after the first respiratory rate increase, temperature decrease, and systolic blood pressure increase.","answer":"C","answer_text":"The first diastolic blood pressure decrease occurs before the first respiratory rate increase, temperature decrease, and systolic blood pressure increase.","episode_id":"iv_000258","anchor_time":48} {"id":"CVR_multivariable_iv_000119_w48_0","question":"Across the first 48 hours, how did the first changes in respiratory rate, lactate, urine output, SpO2, and white blood cell count unfold?\nOptions: A. SpO2 decrease occurs first, followed by urine output increase, then respiratory rate decrease, then lactate increase, and finally white blood cell count decrease. B. urine output increase occurs first, followed by respiratory rate decrease, then SpO2 decrease, then lactate increase, and finally white blood cell count decrease. C. urine output increase occurs first, followed by SpO2 decrease, then respiratory rate decrease, then lactate increase, and finally white blood cell count decrease. D. urine output increase occurs first, followed by SpO2 decrease, then lactate increase, then respiratory rate decrease, and finally white blood cell count decrease.","answer":"C","answer_text":"urine output increase occurs first, followed by SpO2 decrease, then respiratory rate decrease, then lactate increase, and finally white blood cell count decrease.","episode_id":"iv_000119","anchor_time":48} {"id":"CVR_multivariable_iv_000015_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first SpO2 decrease relative to the first systolic blood pressure decrease, lactate increase, and respiratory rate decrease?\nOptions: A. The first SpO2 decrease occurs before the first systolic blood pressure decrease and respiratory rate decrease, but after the first lactate increase. B. The first SpO2 decrease occurs after the first systolic blood pressure decrease, lactate increase, and respiratory rate decrease. C. The first SpO2 decrease occurs before the first systolic blood pressure decrease, lactate increase, and respiratory rate decrease. D. The first SpO2 decrease occurs before the first lactate increase and respiratory rate decrease, but after the first systolic blood pressure decrease.","answer":"C","answer_text":"The first SpO2 decrease occurs before the first systolic blood pressure decrease, lactate increase, and respiratory rate decrease.","episode_id":"iv_000015","anchor_time":48} {"id":"CVR_multivariable_iv_000016_w48_0","question":"In the first 48 hours, which option puts the first changes in urine output, systolic blood pressure, MAP, temperature, and respiratory rate in the right order?\nOptions: A. systolic blood pressure decrease occurs first, followed by MAP decrease, then respiratory rate decrease, then temperature increase, and finally urine output increase. B. systolic blood pressure decrease occurs first, followed by respiratory rate decrease, then temperature increase, then MAP decrease, and finally urine output increase. C. systolic blood pressure decrease occurs first, followed by respiratory rate decrease, then MAP decrease, then temperature increase, and finally urine output increase. D. respiratory rate decrease occurs first, followed by systolic blood pressure decrease, then MAP decrease, then temperature increase, and finally urine output increase.","answer":"C","answer_text":"systolic blood pressure decrease occurs first, followed by respiratory rate decrease, then MAP decrease, then temperature increase, and finally urine output increase.","episode_id":"iv_000016","anchor_time":48} {"id":"CVR_multivariable_iv_000114_w48_0","question":"Based on the first 48 hours of data, which statement best describes the timing of the first respiratory rate decrease relative to the first MAP decrease, SpO2 decrease, and urine output decrease?\nOptions: A. The first respiratory rate decrease occurs before the first SpO2 decrease and urine output decrease, but after the first MAP decrease. B. The first respiratory rate decrease occurs before the first MAP decrease and urine output decrease, but after the first SpO2 decrease. C. The first respiratory rate decrease occurs before the first MAP decrease, SpO2 decrease, and urine output decrease. D. The first respiratory rate decrease occurs after the first MAP decrease, SpO2 decrease, and urine output decrease.","answer":"C","answer_text":"The first respiratory rate decrease occurs before the first MAP decrease, SpO2 decrease, and urine output decrease.","episode_id":"iv_000114","anchor_time":48} {"id":"CVR_multivariable_iv_000057_w48_0","question":"Looking only at the first 48 hours, which sequence best captures how diastolic blood pressure, white blood cell count, urine output, creatinine, and temperature changed over time?\nOptions: A. white blood cell count increase occurs first, followed by diastolic blood pressure decrease, then urine output decrease, then temperature increase, and finally creatinine decrease. B. white blood cell count increase occurs first, followed by temperature increase, then diastolic blood pressure decrease, then urine output decrease, and finally creatinine decrease. C. white blood cell count increase occurs first, followed by diastolic blood pressure decrease, then temperature increase, then urine output decrease, and finally creatinine decrease. D. diastolic blood pressure decrease occurs first, followed by white blood cell count increase, then temperature increase, then urine output decrease, and finally creatinine decrease.","answer":"C","answer_text":"white blood cell count increase occurs first, followed by diastolic blood pressure decrease, then temperature increase, then urine output decrease, and finally creatinine decrease.","episode_id":"iv_000057","anchor_time":48}