Category:Vascular biology
Subcategories
This category has the following 4 subcategories, out of 4 total.
Media in category "Vascular biology"
The following 109 files are in this category, out of 109 total.
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3D zebrafish vasculature.png 1,995 × 704; 897 KB
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A text-book of veterinary anatomy (Page 568) BHL18587692.jpg 2,538 × 3,923; 1.68 MB
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Alignment of VEGF-C protein sequences.svg 2,379 × 1,062; 7.02 MB
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Ang-TIE-signaling.png 2,160 × 1,800; 969 KB
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Angiogenesis-An-Adaptive-Dynamic-Biological-Patterning-Problem-pcbi.1002983.s001.ogv 27 s, 500 × 520; 3.41 MB
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CAM blood vessels.tif 1,377 × 2,074; 4.46 MB
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Choroid-Sprouting-Assay-An-Ex-Vivo-Model-of-Microvascular-Angiogenesis-pone.0069552.s004.ogv 2 min 24 s, 960 × 540; 6.23 MB
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Differential-Modulation-of-Retinal-Degeneration-by-Ccl2-and-Cx3cr1-Chemokine-Signalling-pone.0035551.s001.ogv 20 s, 1,450 × 759; 12.28 MB
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Differential-Modulation-of-Retinal-Degeneration-by-Ccl2-and-Cx3cr1-Chemokine-Signalling-pone.0035551.s002.ogv 20 s, 1,450 × 759; 13.42 MB
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Endothelial receptors and growth factors 01.png 4,800 × 3,000; 1.96 MB
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Endothelial receptors and growth factors 02.svg 4,800 × 3,000; 821 KB
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Endothelial receptors and growth factors.svg 1,311 × 815; 234 KB
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Engineering-of-In-Vitro-3D-Capillary-Beds-by-Self-Directed-Angiogenic-Sprouting-pone.0050582.s006.ogv 11 s, 1,169 × 627; 279 KB
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Fibro-Vascular-Coupling-in-the-Control-of-Cochlear-Blood-Flow-pone.0020652.s007.ogv 9.0 s, 720 × 576; 757 KB
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High-Resolution-Imaging-of-Vascular-Function-in-Zebrafish-pone.0044018.s003.ogv 33 s, 1,822 × 160; 2.52 MB
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Identification-of-Inter-Organ-Vascular-Network-Vessels-Bridging-between-Organs-pone.0065720.s002.ogv 19 s, 1,512 × 788; 234 KB
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Identification-of-Inter-Organ-Vascular-Network-Vessels-Bridging-between-Organs-pone.0065720.s004.ogv 18 s, 1,512 × 872; 6.78 MB
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Identification-of-Inter-Organ-Vascular-Network-Vessels-Bridging-between-Organs-pone.0065720.s005.ogv 9.6 s, 1,512 × 872; 1.3 MB
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Myeloid-Cells-Contribute-to-Tumor-Lymphangiogenesis-pone.0007067.s001.ogv 24 s, 720 × 480; 2.85 MB
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Myeloid-Cells-Contribute-to-Tumor-Lymphangiogenesis-pone.0007067.s002.ogv 16 s, 640 × 480; 985 KB
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Myeloid-Cells-Contribute-to-Tumor-Lymphangiogenesis-pone.0007067.s003.ogv 18 s, 768 × 512; 1.46 MB
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Permanent-Occlusion-of-Feeding-Arteries-and-Draining-Veins-in-Solid-Mouse-Tumors-by-Vascular-pone.0010282.s001.ogv 1 min 1 s, 720 × 480; 2.51 MB
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Permanent-Occlusion-of-Feeding-Arteries-and-Draining-Veins-in-Solid-Mouse-Tumors-by-Vascular-pone.0010282.s003.ogv 2 min 33 s, 352 × 288; 2.35 MB
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Terminal-Platelet-Production-is-Regulated-by-Von-Willebrand-Factor-pone.0063810.s003.ogv 31 s, 450 × 339; 1.23 MB
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Terminal-Platelet-Production-is-Regulated-by-Von-Willebrand-Factor-pone.0063810.s004.ogv 43 s, 450 × 339; 610 KB
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Terminal-Platelet-Production-is-Regulated-by-Von-Willebrand-Factor-pone.0063810.s005.ogv 1 min 14 s, 451 × 347; 2.55 MB
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The-Redox-State-of-Transglutaminase-2-Controls-Arterial-Remodeling-pone.0023067.s006.ogv 11 s, 1,024 × 1,024; 1.34 MB
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Trkb-Signaling-in-Pericytes-Is-Required-for-Cardiac-Microvessel-Stabilization-pone.0087406.s003.ogv 9.2 s, 134 × 244; 290 KB
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Trkb-Signaling-in-Pericytes-Is-Required-for-Cardiac-Microvessel-Stabilization-pone.0087406.s004.ogv 20 s, 203 × 292; 1.06 MB
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VHD Alignment.png 1,940 × 344; 238 KB
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VHD Alignment.svg 931 × 165; 65 KB
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Visualization-of-Endothelial-Actin-Cytoskeleton-in-the-Mouse-Retina-pone.0047488.s005.ogv 23 s, 571 × 454; 2.89 MB
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Waves-of-Calcium-Depletion-in-the-Sarcoplasmic-Reticulum-of-Vascular-Smooth-Muscle-Cells-An-Inside-pone.0055333.s001.ogv 1 min 49 s, 1,280 × 720; 12.35 MB
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