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PMC2518220_fig4_26794.jpg | What is shown in this image? | Grading of neuronal damage in the hippocampal formation of pilocarpine-treated rats performed in toluidine blue-stained sections that were cut 3 weeks after the pilocarpine injection. (A) grading of the lesion (n = 18) from non-detectable (ND) to almost complete lesion (grade IV) is shown for different areas (see Biagi... |
PMC2518220_fig4_26796.jpg | What key item or scene is captured in this photo? | Grading of neuronal damage in the hippocampal formation of pilocarpine-treated rats performed in toluidine blue-stained sections that were cut 3 weeks after the pilocarpine injection. (A) grading of the lesion (n = 18) from non-detectable (ND) to almost complete lesion (grade IV) is shown for different areas (see Biagi... |
PMC2518220_fig4_26793.jpg | What is the central feature of this picture? | Grading of neuronal damage in the hippocampal formation of pilocarpine-treated rats performed in toluidine blue-stained sections that were cut 3 weeks after the pilocarpine injection. (A) grading of the lesion (n = 18) from non-detectable (ND) to almost complete lesion (grade IV) is shown for different areas (see Biagi... |
PMC2518512_pone-0002782-g004_26802.jpg | What is the core subject represented in this visual? | Behavioral data of the elevated plus maze (A, B), open field (C, D) and the novelty suppressed feeding test (E) presented as mean±S.E.M.All behavioral test were performed with 3 groups: saline (white bars), fluvoxamine (gray bars) and fluoxetine (black bars). Panel C shows a typical example of a walking pattern in the ... |
PMC2518512_pone-0002782-g004_26801.jpg | What key item or scene is captured in this photo? | Behavioral data of the elevated plus maze (A, B), open field (C, D) and the novelty suppressed feeding test (E) presented as mean±S.E.M.All behavioral test were performed with 3 groups: saline (white bars), fluvoxamine (gray bars) and fluoxetine (black bars). Panel C shows a typical example of a walking pattern in the ... |
PMC2518543_F1_26814.jpg | What stands out most in this visual? | A, B crush avulsion injury. C: Skelotinize the bone. D: Marking the radial forearm flap & fixing the bone graft by two crossing K wires. E, F: Raising & setting the flap. G, H, I: Marking raising & setting the sensate island (Littler flap). J, K, L: final result M: X-ray shows bone healing. |
PMC2518543_F1_26812.jpg | Can you identify the primary element in this image? | A, B crush avulsion injury. C: Skelotinize the bone. D: Marking the radial forearm flap & fixing the bone graft by two crossing K wires. E, F: Raising & setting the flap. G, H, I: Marking raising & setting the sensate island (Littler flap). J, K, L: final result M: X-ray shows bone healing. |
PMC2518543_F1_26806.jpg | What does this image primarily show? | A, B crush avulsion injury. C: Skelotinize the bone. D: Marking the radial forearm flap & fixing the bone graft by two crossing K wires. E, F: Raising & setting the flap. G, H, I: Marking raising & setting the sensate island (Littler flap). J, K, L: final result M: X-ray shows bone healing. |
PMC2518559_F2_26819.jpg | What key item or scene is captured in this photo? | Anteroposterior radiograph of the knee showing multiple small enchondroma-like metaphyseal dysplasias. The distal femoral and the proximal tibial bones show metaphyseal cupping with multiple enchondromatous lesions and an abnormal metaphyseal trabecular pattern associated with small round rings and arcs and dense foci ... |
PMC2518559_F3_26820.jpg | What object or scene is depicted here? | Anteroposterior radiograph of the ankle joint showing enchondromas with the appearance of linear lucencies. The chondrocytes appear to line up in a vertical orientation along the epimetaphyseal components associated with sclerosis of the articular surface. |
PMC2518559_F5_26821.jpg | What is the core subject represented in this visual? | Magnetic resonance imaging of the lower thoracic spine with sagittal T2 fast spin echo sequences showing the ossified anterior longitudinal ligament with subsequent anterior vertebral hyperostosis and bridging (arrows). In addition there was involvement of the posterior longitudinal ligament. Peripheral sclerotic borde... |
PMC2518620_pone-0003108-g004_26827.jpg | What is the principal component of this image? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26829.jpg | What's the most prominent thing you notice in this picture? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26823.jpg | What is shown in this image? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26830.jpg | What stands out most in this visual? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26826.jpg | What key item or scene is captured in this photo? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26825.jpg | What is the dominant medical problem in this image? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26833.jpg | What is the main focus of this visual representation? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26835.jpg | What key item or scene is captured in this photo? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26828.jpg | What is the central feature of this picture? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26834.jpg | What is the dominant medical problem in this image? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518620_pone-0003108-g004_26836.jpg | What is the core subject represented in this visual? | N-AChE-S Membranal localization and Fasciculin-2 Internalization.A. Fasciculin-2 internalization. Tetramethylrodhamine labeled Fasciculin2 was added to the medium of 293 cells co-transfected with N-AChE-S and GFP. Shown is internalization of labeled Fasciculin 2 yielding fluorescence into N-AChE-S transfected, but not ... |
PMC2518865_ppat-1000148-g003_26837.jpg | What is the core subject represented in this visual? | HPV-16 binds to and is transported on cell protrusions extracellularly.HPV-16 PsVs were covalently labeled with FITC and about 40 particles /cell were added to HeLa cells for 5 min. prior to image acquisition by epifluorescence microscopy at 2 fps. After 200 frames the extracellular medium was acidified to pH 5.5. (A) ... |
PMC2518865_ppat-1000148-g003_26841.jpg | What is the main focus of this visual representation? | HPV-16 binds to and is transported on cell protrusions extracellularly.HPV-16 PsVs were covalently labeled with FITC and about 40 particles /cell were added to HeLa cells for 5 min. prior to image acquisition by epifluorescence microscopy at 2 fps. After 200 frames the extracellular medium was acidified to pH 5.5. (A) ... |
PMC2518865_ppat-1000148-g003_26839.jpg | Describe the main subject of this image. | HPV-16 binds to and is transported on cell protrusions extracellularly.HPV-16 PsVs were covalently labeled with FITC and about 40 particles /cell were added to HeLa cells for 5 min. prior to image acquisition by epifluorescence microscopy at 2 fps. After 200 frames the extracellular medium was acidified to pH 5.5. (A) ... |
PMC2518867_pgen-1000179-g004_26845.jpg | What is shown in this image? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26855.jpg | What key item or scene is captured in this photo? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26857.jpg | What does this image primarily show? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26848.jpg | What's the most prominent thing you notice in this picture? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26854.jpg | What object or scene is depicted here? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26847.jpg | What is the core subject represented in this visual? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26852.jpg | What is the central feature of this picture? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26859.jpg | Describe the main subject of this image. | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26856.jpg | What is the dominant medical problem in this image? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26849.jpg | What does this image primarily show? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26850.jpg | What is the focal point of this photograph? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26843.jpg | What is the main focus of this visual representation? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26853.jpg | What stands out most in this visual? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26858.jpg | What is shown in this image? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518867_pgen-1000179-g004_26851.jpg | What's the most prominent thing you notice in this picture? | Novel genetic modifiers of the MeCP2 eye phenotype.A–B. MeCP2 expression by GMR-Gal4 at 30°C causes severe disorganization of the ommatidia and interommatidial bristles compared to controls. C–H. This phenotype is alleviated when combined with loss-of-function mutants in Asx, corto, osa, pbl, Scm, or overexpression of ... |
PMC2518922_F5_26868.jpg | What is the dominant medical problem in this image? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26864.jpg | Describe the main subject of this image. | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26867.jpg | What is being portrayed in this visual content? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26873.jpg | What can you see in this picture? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26861.jpg | Can you identify the primary element in this image? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26870.jpg | What can you see in this picture? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26869.jpg | What is the focal point of this photograph? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26866.jpg | What is the focal point of this photograph? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26874.jpg | Describe the main subject of this image. | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26865.jpg | What is the focal point of this photograph? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26863.jpg | What is the central feature of this picture? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26872.jpg | What is being portrayed in this visual content? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518922_F5_26871.jpg | What is the main focus of this visual representation? | BOLD response of the medial prefrontal cortex under large loss ($ -1150) condition of deck B. The detailed analysis for each monetary value found the significant activation (Random Effect: Puncorrected = 0.001, K = 30) of medial prefrontal cortex during the experience period of large loss condition. Bilateral inferior ... |
PMC2518924_F2_26877.jpg | What is the focal point of this photograph? | Electron microscopy showing progressive accumulation of inclusions in neurons of PS-NA brain. No inclusions were found in neurons of 4 wk PS-NA (A), whereas inclusion bodies were in neuron of PS-NA at 18 wk (B). An enlarged view of inclusion bodies is shown (C). Magnifications are 8,000 X for A and B. |
PMC2518924_F2_26876.jpg | What is the principal component of this image? | Electron microscopy showing progressive accumulation of inclusions in neurons of PS-NA brain. No inclusions were found in neurons of 4 wk PS-NA (A), whereas inclusion bodies were in neuron of PS-NA at 18 wk (B). An enlarged view of inclusion bodies is shown (C). Magnifications are 8,000 X for A and B. |
PMC2518924_F2_26875.jpg | What is shown in this image? | Electron microscopy showing progressive accumulation of inclusions in neurons of PS-NA brain. No inclusions were found in neurons of 4 wk PS-NA (A), whereas inclusion bodies were in neuron of PS-NA at 18 wk (B). An enlarged view of inclusion bodies is shown (C). Magnifications are 8,000 X for A and B. |
PMC2519029_f3_26879.jpg | Can you identify the primary element in this image? | Fundus photographs and optical coherence tomography images of patients IV/1 and III/2 suffering in X-linked juvenile retinoschisis. In patient IV/1, the fundi show radially oriented intraretinal foveomacular cysts in a spoke-wheel configuration, with the absence of foveal reflex (IV/1 A, B). A golden-yellow reflex call... |
PMC2519029_f3_26883.jpg | What object or scene is depicted here? | Fundus photographs and optical coherence tomography images of patients IV/1 and III/2 suffering in X-linked juvenile retinoschisis. In patient IV/1, the fundi show radially oriented intraretinal foveomacular cysts in a spoke-wheel configuration, with the absence of foveal reflex (IV/1 A, B). A golden-yellow reflex call... |
PMC2519029_f3_26881.jpg | What object or scene is depicted here? | Fundus photographs and optical coherence tomography images of patients IV/1 and III/2 suffering in X-linked juvenile retinoschisis. In patient IV/1, the fundi show radially oriented intraretinal foveomacular cysts in a spoke-wheel configuration, with the absence of foveal reflex (IV/1 A, B). A golden-yellow reflex call... |
PMC2519030_f4_26900.jpg | What is being portrayed in this visual content? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26897.jpg | What is the core subject represented in this visual? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26898.jpg | What can you see in this picture? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26905.jpg | Can you identify the primary element in this image? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26903.jpg | What is the core subject represented in this visual? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26906.jpg | What can you see in this picture? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26902.jpg | Describe the main subject of this image. | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26899.jpg | What is the main focus of this visual representation? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26895.jpg | What can you see in this picture? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f4_26901.jpg | What does this image primarily show? | CFP-containing ganglion cells express NF-L immunoreactivity in their soma, dendrites and axons in the fiber layer, optic nerve head and optic nerve. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Same section as in ... |
PMC2519030_f5_26888.jpg | What is the core subject represented in this visual? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f5_26887.jpg | What is the principal component of this image? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f5_26891.jpg | What stands out most in this visual? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f5_26893.jpg | What is being portrayed in this visual content? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f5_26890.jpg | What is the main focus of this visual representation? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f5_26889.jpg | What is the focal point of this photograph? | CFP-containing ganglion cells express NeuN immunoreactivity, a marker commonly used to identify retinal ganglion cells. A: Transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous cell bodies in the ganglion cell layer (GCL). B: Neuronal nuclei (NeuN) immunoreactivity is local... |
PMC2519030_f6_26912.jpg | What is the main focus of this visual representation? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26913.jpg | What is the central feature of this picture? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26910.jpg | What is the dominant medical problem in this image? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26908.jpg | What is the main focus of this visual representation? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26907.jpg | What is the dominant medical problem in this image? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26911.jpg | What is the principal component of this image? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f6_26914.jpg | What's the most prominent thing you notice in this picture? | Small, weak CFP fluorescent somata in the INL and GCL contain HPC-1 immunoreactivity, a marker of amacrine and displaced amacrine cells. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) expression in numerous somata in the ganglion cell layer (GCL) and weak CFP-expressing somata in the ... |
PMC2519030_f8_26927.jpg | What is the focal point of this photograph? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26921.jpg | What is being portrayed in this visual content? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26923.jpg | What is the dominant medical problem in this image? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26916.jpg | What object or scene is depicted here? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26918.jpg | What is the principal component of this image? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26925.jpg | What is the focal point of this photograph? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26917.jpg | What can you see in this picture? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26919.jpg | What is the focal point of this photograph? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519030_f8_26922.jpg | What's the most prominent thing you notice in this picture? | CFP expression colocalizes with ChAT immunoreactivity, a marker of cholinergic amacrine and displaced amacrine cells in the inner retina. A: A transverse section of peripheral retina shows cyan fluorescent protein (CFP) in numerous cell bodies in the ganglion cell layer (GCL), and weakly-CFP-expressing cell bodies in t... |
PMC2519064_F1_26930.jpg | What is the central feature of this picture? | Corpus Luteum segmentation goal and contour initialization. (a) Unprocessed ultrasound image containing a corpus luteum; a small irregularly shaped cystic cavity is visualized within the CL. (b) Manual segmentation of the CL by a human expert. (c) A circular initial contour placed within the CL in the image in (a). (d)... |
PMC2519064_F4_26928.jpg | What does this image primarily show? | Effect of the Sticks Filter. (a) An unprocessed ultrasound image of a corpus luteum. (b) The image in (a) processed with a sticks filter bank of size 17. |
PMC2519064_F4_26929.jpg | What stands out most in this visual? | Effect of the Sticks Filter. (a) An unprocessed ultrasound image of a corpus luteum. (b) The image in (a) processed with a sticks filter bank of size 17. |
PMC2519066_F3_26935.jpg | What is the dominant medical problem in this image? | Microscopic lesions in affected Atlantic salmon from the ISA outbreak. (A) Histologic section of intestine of Atlantic salmon. H&E staining. (→) indicates mucosal ulceration and haemorrhage. (B) Histologic section of liver of Atlantic salmon from the ISA outbreak H&E staining. (→) indicates hepatocellular necrosis, wit... |
PMC2519066_F3_26934.jpg | What is the dominant medical problem in this image? | Microscopic lesions in affected Atlantic salmon from the ISA outbreak. (A) Histologic section of intestine of Atlantic salmon. H&E staining. (→) indicates mucosal ulceration and haemorrhage. (B) Histologic section of liver of Atlantic salmon from the ISA outbreak H&E staining. (→) indicates hepatocellular necrosis, wit... |
PMC2519073_F2_26940.jpg | What is shown in this image? | The structure of the leaf using normal 2PLSM. |
PMC2519073_F2_26942.jpg | Describe the main subject of this image. | The structure of the leaf using normal 2PLSM. |
PMC2519073_F2_26939.jpg | What is the central feature of this picture? | The structure of the leaf using normal 2PLSM. |
PMC2519073_F2_26937.jpg | What's the most prominent thing you notice in this picture? | The structure of the leaf using normal 2PLSM. |
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