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PMC2291058_F5_19994.jpg | What is being portrayed in this visual content? | Syncytial streamers (ST) in the subplacenta (SP) and in the decidua expressed VEGF, Flt-1, KDR, B2R and eNOS in days 20, 40 and 60 of pregnancy. Bar = 100 μm. Rectangle defines the area shown at a higher magnification (400×) in Figure 6. |
PMC2291058_F5_19987.jpg | What is the main focus of this visual representation? | Syncytial streamers (ST) in the subplacenta (SP) and in the decidua expressed VEGF, Flt-1, KDR, B2R and eNOS in days 20, 40 and 60 of pregnancy. Bar = 100 μm. Rectangle defines the area shown at a higher magnification (400×) in Figure 6. |
PMC2291063_F1_20002.jpg | What does this image primarily show? | Sagittal and axial views of brain MRI scan. Image shows tumour in the nasopharynx extending from nasal cavity to brainstem posteriorly. |
PMC2291063_F1_20001.jpg | Can you identify the primary element in this image? | Sagittal and axial views of brain MRI scan. Image shows tumour in the nasopharynx extending from nasal cavity to brainstem posteriorly. |
PMC2291068_F1_20004.jpg | What is shown in this image? | a. A TP slide of colloid nodule of thyroid FNA showing a group of bland follicular cells, thick globule of colloid (cast) and thin colloid resembling wrinkled "paper tissue-like material". b. Traditional smear of the same case showing typical colloid but no follicular cells (600×, Papanicolaou stain). |
PMC2291068_F1_20003.jpg | Describe the main subject of this image. | a. A TP slide of colloid nodule of thyroid FNA showing a group of bland follicular cells, thick globule of colloid (cast) and thin colloid resembling wrinkled "paper tissue-like material". b. Traditional smear of the same case showing typical colloid but no follicular cells (600×, Papanicolaou stain). |
PMC2291068_F2_20005.jpg | What is being portrayed in this visual content? | a. A TP slide of colloid nodule with cystic change of thyroid FNA showing colloid cast, group of follicular cells and macrophages. b. Traditional smear of the same case displaying abundant colloid and macrophages, but no follicular cells (600×, Papanicolaou stain). |
PMC2291068_F2_20006.jpg | What key item or scene is captured in this photo? | a. A TP slide of colloid nodule with cystic change of thyroid FNA showing colloid cast, group of follicular cells and macrophages. b. Traditional smear of the same case displaying abundant colloid and macrophages, but no follicular cells (600×, Papanicolaou stain). |
PMC2291193_pgen-1000061-g003_20013.jpg | What is being portrayed in this visual content? | Histologic Features of Renal Disease in Pdss2 Mutant and Control Mice.Histologic features of renal disease in mutant and control mice (H & E-stained sections, original magnifications all 200x). A, B6.Podocin/cre,Pdss2loxP/loxP mouse (290 days old; 64 mg albumin; histologic score, 4+). B, B6.PEPCK/cre, Pdss2loxP/loxP (1... |
PMC2291193_pgen-1000061-g003_20011.jpg | What is the principal component of this image? | Histologic Features of Renal Disease in Pdss2 Mutant and Control Mice.Histologic features of renal disease in mutant and control mice (H & E-stained sections, original magnifications all 200x). A, B6.Podocin/cre,Pdss2loxP/loxP mouse (290 days old; 64 mg albumin; histologic score, 4+). B, B6.PEPCK/cre, Pdss2loxP/loxP (1... |
PMC2291193_pgen-1000061-g003_20012.jpg | What stands out most in this visual? | Histologic Features of Renal Disease in Pdss2 Mutant and Control Mice.Histologic features of renal disease in mutant and control mice (H & E-stained sections, original magnifications all 200x). A, B6.Podocin/cre,Pdss2loxP/loxP mouse (290 days old; 64 mg albumin; histologic score, 4+). B, B6.PEPCK/cre, Pdss2loxP/loxP (1... |
PMC2291193_pgen-1000061-g003_20014.jpg | What's the most prominent thing you notice in this picture? | Histologic Features of Renal Disease in Pdss2 Mutant and Control Mice.Histologic features of renal disease in mutant and control mice (H & E-stained sections, original magnifications all 200x). A, B6.Podocin/cre,Pdss2loxP/loxP mouse (290 days old; 64 mg albumin; histologic score, 4+). B, B6.PEPCK/cre, Pdss2loxP/loxP (1... |
PMC2291193_pgen-1000061-g004_20007.jpg | What is the principal component of this image? | Glomerular Electron Micrographs From Pdss2 Mutant and Control Mice.Electron micrographs from mutant and control mouse kidney glomeruli; original magnifications all 10,000x; scale bar = 2 microns. A, B6, 362 days old; arrows show podocyte foot processes. B, B6.Pdss2kd/kd, 267 days old; arrows show regions of foot proces... |
PMC2291193_pgen-1000061-g004_20009.jpg | What is shown in this image? | Glomerular Electron Micrographs From Pdss2 Mutant and Control Mice.Electron micrographs from mutant and control mouse kidney glomeruli; original magnifications all 10,000x; scale bar = 2 microns. A, B6, 362 days old; arrows show podocyte foot processes. B, B6.Pdss2kd/kd, 267 days old; arrows show regions of foot proces... |
PMC2291193_pgen-1000061-g004_20010.jpg | What is the core subject represented in this visual? | Glomerular Electron Micrographs From Pdss2 Mutant and Control Mice.Electron micrographs from mutant and control mouse kidney glomeruli; original magnifications all 10,000x; scale bar = 2 microns. A, B6, 362 days old; arrows show podocyte foot processes. B, B6.Pdss2kd/kd, 267 days old; arrows show regions of foot proces... |
PMC2291193_pgen-1000061-g004_20008.jpg | What is the core subject represented in this visual? | Glomerular Electron Micrographs From Pdss2 Mutant and Control Mice.Electron micrographs from mutant and control mouse kidney glomeruli; original magnifications all 10,000x; scale bar = 2 microns. A, B6, 362 days old; arrows show podocyte foot processes. B, B6.Pdss2kd/kd, 267 days old; arrows show regions of foot proces... |
PMC2291560_pone-0001983-g001_20020.jpg | What is being portrayed in this visual content? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2291560_pone-0001983-g001_20019.jpg | What does this image primarily show? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2291560_pone-0001983-g001_20017.jpg | What is the core subject represented in this visual? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2291560_pone-0001983-g001_20018.jpg | What is the principal component of this image? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2291560_pone-0001983-g001_20016.jpg | What object or scene is depicted here? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2291560_pone-0001983-g001_20022.jpg | What is shown in this image? | Intracranial GBM tumors are densely infiltrated with immune cells.(A) GL26 tumor volume 7, 14 and 21 days after implantion into the brain striatum of C57BL/6 mice was determined. Reactive astrocytic staining (GFAP+) was used to define the border of the tumor with non-malignant brain tissue. Representative sections of m... |
PMC2292149_F3_20024.jpg | What is the principal component of this image? | Negative CD 56 immuno-staining, only lymphoid cells are stained and bile ducts and ductuli remain unstained. |
PMC2292157_F1_20026.jpg | What is the core subject represented in this visual? | Histopathology of rat pancreas at week 10. A. Naïve animals were fed low soy chow and given no treatment. B. Method control animals given the alcohol and high-fat diet to induce pancreatitis were given pancreatic injection of vehicle (DMEM) only. C. Some animals with alcohol and high-fat diet induced pancreatitis were ... |
PMC2292157_F1_20027.jpg | What is shown in this image? | Histopathology of rat pancreas at week 10. A. Naïve animals were fed low soy chow and given no treatment. B. Method control animals given the alcohol and high-fat diet to induce pancreatitis were given pancreatic injection of vehicle (DMEM) only. C. Some animals with alcohol and high-fat diet induced pancreatitis were ... |
PMC2292157_F1_20025.jpg | What is the core subject represented in this visual? | Histopathology of rat pancreas at week 10. A. Naïve animals were fed low soy chow and given no treatment. B. Method control animals given the alcohol and high-fat diet to induce pancreatitis were given pancreatic injection of vehicle (DMEM) only. C. Some animals with alcohol and high-fat diet induced pancreatitis were ... |
PMC2292157_F1_20028.jpg | What is the principal component of this image? | Histopathology of rat pancreas at week 10. A. Naïve animals were fed low soy chow and given no treatment. B. Method control animals given the alcohol and high-fat diet to induce pancreatitis were given pancreatic injection of vehicle (DMEM) only. C. Some animals with alcohol and high-fat diet induced pancreatitis were ... |
PMC2292163_F2_20037.jpg | Describe the main subject of this image. | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F2_20038.jpg | Describe the main subject of this image. | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F2_20034.jpg | What key item or scene is captured in this photo? | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F2_20035.jpg | What is the dominant medical problem in this image? | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F2_20033.jpg | What key item or scene is captured in this photo? | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F2_20032.jpg | What is the core subject represented in this visual? | (A) Tyrosine hydroxylase positive (TH+) cell counts in the substantia nigra (SN). (B) Animals received, into the SN, saline (SAL) and 12 days later received an intra-striatal injection of SAL. (C) Animals received lipopolysaccharide (LPS) into the SN and 12 days later received an intra-striatal injection of SAL. (D) An... |
PMC2292163_F4_20031.jpg | Can you identify the primary element in this image? | Interleukin-1 receptor antagonist (IL-1ra) reduces the amount of tyrosine hydroxylase-immunoreactive (TH-ir) cell loss associated with LPS and 6-OHDA (t-test, *p < 0.05). Each animal received LPS into the substantia nigra (SN), 9 days later started on either IL-1ra or vehicle (Veh) which continued through the experimen... |
PMC2292163_F4_20029.jpg | Describe the main subject of this image. | Interleukin-1 receptor antagonist (IL-1ra) reduces the amount of tyrosine hydroxylase-immunoreactive (TH-ir) cell loss associated with LPS and 6-OHDA (t-test, *p < 0.05). Each animal received LPS into the substantia nigra (SN), 9 days later started on either IL-1ra or vehicle (Veh) which continued through the experimen... |
PMC2292185_F1_20039.jpg | What is the main focus of this visual representation? | Computed tomography (CT) of the abdomen and pelvis. CT scanning immediately before initial pelvic tumor debulking at 46 months after presentation shows A). Large splenic metastasis (100.3 mm), B). Metastasis to the left iliac vein lymph nodes (41.3 mm), and C). A slightly lower view of the splenic metastasis showing th... |
PMC2292185_F1_20041.jpg | What is the core subject represented in this visual? | Computed tomography (CT) of the abdomen and pelvis. CT scanning immediately before initial pelvic tumor debulking at 46 months after presentation shows A). Large splenic metastasis (100.3 mm), B). Metastasis to the left iliac vein lymph nodes (41.3 mm), and C). A slightly lower view of the splenic metastasis showing th... |
PMC2292185_F1_20040.jpg | What is the core subject represented in this visual? | Computed tomography (CT) of the abdomen and pelvis. CT scanning immediately before initial pelvic tumor debulking at 46 months after presentation shows A). Large splenic metastasis (100.3 mm), B). Metastasis to the left iliac vein lymph nodes (41.3 mm), and C). A slightly lower view of the splenic metastasis showing th... |
PMC2292185_F1_20042.jpg | What object or scene is depicted here? | Computed tomography (CT) of the abdomen and pelvis. CT scanning immediately before initial pelvic tumor debulking at 46 months after presentation shows A). Large splenic metastasis (100.3 mm), B). Metastasis to the left iliac vein lymph nodes (41.3 mm), and C). A slightly lower view of the splenic metastasis showing th... |
PMC2292201_F1_20043.jpg | Can you identify the primary element in this image? | Preoperative AP roentgenogram of the right and left distal radius and scaphoid fractures. |
PMC2292201_F1_20044.jpg | What is the principal component of this image? | Preoperative AP roentgenogram of the right and left distal radius and scaphoid fractures. |
PMC2292252_pone-0002012-g003_20047.jpg | What is the main focus of this visual representation? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g003_20049.jpg | Can you identify the primary element in this image? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g003_20048.jpg | What's the most prominent thing you notice in this picture? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g003_20045.jpg | What is the principal component of this image? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g003_20050.jpg | What does this image primarily show? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g003_20046.jpg | What stands out most in this visual? |
L. pneumophila inhibits endothelial phagolysosome fusion.Representative images showing lysosomal targeting of bacteria 1.5 hours after infection of HUVEC at a bacterial to endothelial cell ratio of approximately 300∶1. The dotI mutant strain, but not Lp01 (wt), show extensive colocalization with LAMP-1, a lysosomal ma... |
PMC2292252_pone-0002012-g004_20056.jpg | What key item or scene is captured in this photo? |
L. pneumophila replicates in membrane bound compartment associated with endoplasmic reticulum.(A, B) The Lp01strain is surrounded by ribosome studded endoplasmic reticulum (RER) at 6 hours after infection. (C) At 24 hours, many phagosomes are filled with large numbers of bacteria. In this image, RER association is sti... |
PMC2292252_pone-0002012-g004_20052.jpg | What can you see in this picture? |
L. pneumophila replicates in membrane bound compartment associated with endoplasmic reticulum.(A, B) The Lp01strain is surrounded by ribosome studded endoplasmic reticulum (RER) at 6 hours after infection. (C) At 24 hours, many phagosomes are filled with large numbers of bacteria. In this image, RER association is sti... |
PMC2292252_pone-0002012-g004_20055.jpg | What is being portrayed in this visual content? |
L. pneumophila replicates in membrane bound compartment associated with endoplasmic reticulum.(A, B) The Lp01strain is surrounded by ribosome studded endoplasmic reticulum (RER) at 6 hours after infection. (C) At 24 hours, many phagosomes are filled with large numbers of bacteria. In this image, RER association is sti... |
PMC2292252_pone-0002012-g004_20054.jpg | What is being portrayed in this visual content? |
L. pneumophila replicates in membrane bound compartment associated with endoplasmic reticulum.(A, B) The Lp01strain is surrounded by ribosome studded endoplasmic reticulum (RER) at 6 hours after infection. (C) At 24 hours, many phagosomes are filled with large numbers of bacteria. In this image, RER association is sti... |
PMC2292261_pone-0001997-g003_20066.jpg | What is the focal point of this photograph? | Cluster Declumping and Spine Stem Reattachment.A) Volumetric data showing cluster of three spines that appear merged due to limited image resolution. B) Result of clustering algorithm using the cluster declumping routine described in the text. The merged spines have been properly detected as separate clusters indicated... |
PMC2292261_pone-0001997-g007_20057.jpg | What is the focal point of this photograph? | 3D Information is Required for Accurate Spine Detection.Two- and 3D renderings of a spiny dendrite imaged with CLSM and reconstructed with NeuronStudio with results of spine detection algorithm. A) Image stack is shown as a 2D maximal projection with arrows indicating positions of three representative spines (numbered ... |
PMC2292261_pone-0001997-g007_20059.jpg | What is the central feature of this picture? | 3D Information is Required for Accurate Spine Detection.Two- and 3D renderings of a spiny dendrite imaged with CLSM and reconstructed with NeuronStudio with results of spine detection algorithm. A) Image stack is shown as a 2D maximal projection with arrows indicating positions of three representative spines (numbered ... |
PMC2292261_pone-0001997-g007_20060.jpg | What does this image primarily show? | 3D Information is Required for Accurate Spine Detection.Two- and 3D renderings of a spiny dendrite imaged with CLSM and reconstructed with NeuronStudio with results of spine detection algorithm. A) Image stack is shown as a 2D maximal projection with arrows indicating positions of three representative spines (numbered ... |
PMC2292678_F3_20068.jpg | What object or scene is depicted here? | Two sections (A, B) of the nodule. The GS staining allows the distinction between non-nodular tissue and the nodule. The broken line delineates the frontier. Figures 9, 20–25 are from section A. The upper figure is from non-nodular tissue and the lower figure is from the nodular area. Figures 4-6 are from section B (bl... |
PMC2292678_F18_20070.jpg | What can you see in this picture? | Fibrotic portal tract. A fibrotic portal tract (see Fig. 6, box on the left) is observed at higher magnification. There are several arteries and a few ducts and ductules (A – α-SMA staining). A possible portal vein remnant can also be identified (B – trichrome staining) (arrow). |
PMC2292678_F19_20071.jpg | What is the central feature of this picture? | Fibrotic portal tract. A fibrotic portal tract (see Fig. 6, box on the right) is observed at higher magnification. The wall of the portal vein appears damaged (A – trichrome staining). Remnants of small bile ducts can also be identified (B – CK7 staining), and an aberrant vessel is at the top of the figure. |
PMC2292678_F19_20072.jpg | Describe the main subject of this image. | Fibrotic portal tract. A fibrotic portal tract (see Fig. 6, box on the right) is observed at higher magnification. The wall of the portal vein appears damaged (A – trichrome staining). Remnants of small bile ducts can also be identified (B – CK7 staining), and an aberrant vessel is at the top of the figure. |
PMC2292683_F6_20075.jpg | What stands out most in this visual? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20078.jpg | What key item or scene is captured in this photo? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20079.jpg | What stands out most in this visual? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20073.jpg | What is the central feature of this picture? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20074.jpg | What is the focal point of this photograph? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20077.jpg | What does this image primarily show? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20080.jpg | What is being portrayed in this visual content? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F6_20076.jpg | What is shown in this image? | Live cell imaging of mTFP1 fusion vectors. (A)-(D) Laser scanning confocal images of a single HeLa cell expressing mTFP1-H2B-6 (N-terminus; human) progressing through prophase, metaphase, anaphase and interphase, respectively. (E)-(H) Spinning disk confocal images selected from a time-lapse series of HeLa cells express... |
PMC2292683_F7_20086.jpg | What can you see in this picture? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20091.jpg | What is being portrayed in this visual content? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20101.jpg | What is the focal point of this photograph? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20098.jpg | What does this image primarily show? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20087.jpg | What object or scene is depicted here? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20082.jpg | What is shown in this image? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20094.jpg | What key item or scene is captured in this photo? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20084.jpg | What is the central feature of this picture? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20092.jpg | What can you see in this picture? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20081.jpg | What is being portrayed in this visual content? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20085.jpg | What is the main focus of this visual representation? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20095.jpg | What is the core subject represented in this visual? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20097.jpg | What is the focal point of this photograph? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20088.jpg | What stands out most in this visual? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20089.jpg | What is the focal point of this photograph? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292683_F7_20090.jpg | What stands out most in this visual? | Live cell imaging of mWasabi fusion vectors. (A)-(J) N-terminal fusion constructs; for each fusion protein the linker amino acid length is indicated after the name of the targeted organelle or fusion protein: (A) mWasabi-α-actinin-19 (human non-muscle); (B) mWasabi-mitochondria-7 (human cytochrome C oxidase subunit VII... |
PMC2292685_F6_20105.jpg | What is the focal point of this photograph? | Lack of MAL protein expression in colorectal carcinomas. Positive cytoplasmic staining of MAL was found in kidney tubuli (A), and no staining was observed in heart muscle (B), in agreement with earlier reports [30]. The epithelial cells of colorectal carcinomas were MAL negative (C, D), whereas in normal colon tissue, ... |
PMC2292685_F6_20104.jpg | What does this image primarily show? | Lack of MAL protein expression in colorectal carcinomas. Positive cytoplasmic staining of MAL was found in kidney tubuli (A), and no staining was observed in heart muscle (B), in agreement with earlier reports [30]. The epithelial cells of colorectal carcinomas were MAL negative (C, D), whereas in normal colon tissue, ... |
PMC2292685_F6_20102.jpg | What's the most prominent thing you notice in this picture? | Lack of MAL protein expression in colorectal carcinomas. Positive cytoplasmic staining of MAL was found in kidney tubuli (A), and no staining was observed in heart muscle (B), in agreement with earlier reports [30]. The epithelial cells of colorectal carcinomas were MAL negative (C, D), whereas in normal colon tissue, ... |
PMC2292714_F4_20109.jpg | Can you identify the primary element in this image? | Labeled donor cells in recipient lung. A representative image of a QD-labeled donor cell (arrow) as detected in recipient's lung tissue under confocal microscopy (A). Blue denotes nuclei stained with Hoechst 33342, green is autofluorescence from lung tissue, and red is emission signal from quantum dots. The graph (B) s... |
PMC2292717_F3_20136.jpg | What is the core subject represented in this visual? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20142.jpg | What is the dominant medical problem in this image? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20140.jpg | What is the dominant medical problem in this image? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20145.jpg | What can you see in this picture? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20147.jpg | What's the most prominent thing you notice in this picture? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20138.jpg | What is the core subject represented in this visual? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F3_20141.jpg | What can you see in this picture? | Two distinct axon arbor morphologies formed by habenular projection neurons. (a-g, i) Dorsal, (c', f', i') lateral and (h) transverse confocal images of the IPN region in 4 dpf larvae. In all panels habenular axons were labeled by electroporation except for (h) where lipophilic dye tracing was used to visualize axon te... |
PMC2292717_F4_20134.jpg | Can you identify the primary element in this image? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
PMC2292717_F4_20126.jpg | What is the core subject represented in this visual? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
PMC2292717_F4_20133.jpg | Can you identify the primary element in this image? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
PMC2292717_F4_20127.jpg | What key item or scene is captured in this photo? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
PMC2292717_F4_20130.jpg | What's the most prominent thing you notice in this picture? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
PMC2292717_F4_20122.jpg | What is the central feature of this picture? | Morphology of IPN neurons. (a-g, f') Three-dimensional projections of confocal z-stacks showing electroporated IPN neurons expressing membrane-Cherry (gold) and the surrounding IPN neuropil (grey), visualized using the Tg(ET16:GFP) transgenic line. All panels are dorsal views, anterior top, except (f'), which is a late... |
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