Category:Biological fluid mechanics
Media in category "Biological fluid mechanics"
The following 98 files are in this category, out of 98 total.
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Arachnids-Secrete-a-Fluid-over-Their-Adhesive-Pads-pone.0020485.s001.ogv 12 s, 640 × 480; 210 KB
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Arachnids-Secrete-a-Fluid-over-Their-Adhesive-Pads-pone.0020485.s002.ogv 1.1 s, 1,360 × 1,036; 135 KB
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Arachnids-Secrete-a-Fluid-over-Their-Adhesive-Pads-pone.0020485.s004.ogv 14 s, 640 × 512; 785 KB
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Arachnids-Secrete-a-Fluid-over-Their-Adhesive-Pads-pone.0020485.s005.ogv 1.0 s, 1,360 × 1,036; 115 KB
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Biomechanics-of-the-Chick-Embryonic-Heart-Outflow-Tract-at-HH18-Using-4D-Optical-Coherence-pone.0040869.s005.ogv 6.5 s, 1,280 × 720; 1.35 MB
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Biomechanika kapalin.pdf 5,208 × 3,677; 734 KB
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Biomechanika kvapalín a krvi.pdf 4,966 × 3,485; 150 KB
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Compound-Ex-Vivo-and-In-Silico-Method-for-Hemodynamic-Analysis-of-Stented-Arteries-pone.0058147.s006.ogv 30 s, 1,747 × 800; 18.43 MB
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Compound-Ex-Vivo-and-In-Silico-Method-for-Hemodynamic-Analysis-of-Stented-Arteries-pone.0058147.s007.ogv 27 s, 1,362 × 848; 18.23 MB
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Computational-Estimates-of-Membrane-Flow-and-Tension-Gradient-in-Motile-Cells-pone.0084524.s011.ogv 20 s, 800 × 600; 3.35 MB
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Computational-Estimates-of-Membrane-Flow-and-Tension-Gradient-in-Motile-Cells-pone.0084524.s012.ogv 20 s, 800 × 600; 2.28 MB
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Critical-Transitions-in-Early-Embryonic-Aortic-Arch-Patterning-and-Hemodynamics-pone.0060271.s009.ogv 9.7 s, 757 × 756; 5.21 MB
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Gliding-Swifts-Attain-Laminar-Flow-over-Rough-Wings-pone.0099901.s003.ogv 1 min 11 s, 640 × 480; 4.48 MB
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Gliding-Swifts-Attain-Laminar-Flow-over-Rough-Wings-pone.0099901.s004.ogv 53 s, 640 × 480; 9.81 MB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s001.ogv 26 s, 640 × 480; 984 KB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s002.ogv 25 s, 640 × 480; 3.82 MB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s003.ogv 26 s, 640 × 480; 2.12 MB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s004.ogv 26 s, 640 × 480; 1.69 MB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s005.ogv 4.7 s, 640 × 480; 592 KB
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Immersed-Boundary-Simulations-of-Active-Fluid-Droplets-pone.0162474.s006.ogv 17 s, 640 × 480; 1.66 MB
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In-Vitro-Shear-Stress-Measurements-Using-Particle-Image-Velocimetry-in-a-Family-of-Carotid-Artery-pone.0098209.s005.ogv 8.7 s, 1,200 × 1,570; 3.35 MB
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Interstitial-Fluid-Flow-and-Drug-Delivery-in-Vascularized-Tumors-A-Computational-Model-pone.0070395.s014.ogv 21 s, 1,200 × 1,200; 6.64 MB
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Interstitial-Fluid-Flow-and-Drug-Delivery-in-Vascularized-Tumors-A-Computational-Model-pone.0070395.s015.ogv 21 s, 1,200 × 1,200; 6.77 MB
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Mapping-of-Enzyme-Kinetics-on-a-Microfluidic-Device-pone.0153437.s006.ogv 31 s, 1,440 × 1,080; 3.82 MB
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Observation-of-Bacterial-Type-I-Pili-Extension-and-Contraction-under-Fluid-Flow-pone.0065563.s006.ogv 1 min 47 s, 320 × 240; 4.91 MB
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Origin-of-Polar-Order-in-Dense-Suspensions-of-Phototactic-Micro-Swimmers-pone.0038895.s001.ogv 20 s, 700 × 352; 19.26 MB
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Origin-of-Polar-Order-in-Dense-Suspensions-of-Phototactic-Micro-Swimmers-pone.0038895.s002.ogv 20 s, 700 × 352; 23.87 MB
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Persistent-Cellular-Motion-Control-and-Trapping-Using-Mechanotactic-Signaling-pone.0105406.s008.ogv 20 s, 900 × 760; 2.38 MB
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Persistent-Cellular-Motion-Control-and-Trapping-Using-Mechanotactic-Signaling-pone.0105406.s009.ogv 24 s, 900 × 760; 3.59 MB
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Persistent-Cellular-Motion-Control-and-Trapping-Using-Mechanotactic-Signaling-pone.0105406.s010.ogv 32 s, 900 × 760; 3.54 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s002.ogv 11 s, 1,346 × 780; 787 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s003.ogv 32 s, 798 × 348; 2.92 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s004.ogv 38 s, 1,920 × 1,080; 22.52 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s005.ogv 6.8 s, 1,920 × 1,080; 1.33 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s006.ogv 22 s, 1,450 × 758; 2.37 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s007.ogv 8.0 s, 1,294 × 512; 541 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s008.ogv 24 s, 1,698 × 730; 4.28 MB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s009.ogv 18 s, 960 × 540; 594 KB
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Simulating-the-Complex-Cell-Design-of-Trypanosoma-brucei-and-Its-Motility-pcbi.1003967.s010.ogv 6.9 s, 1,024 × 768; 715 KB
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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-Kinematics-of-Swimming-and-Relocation-Jumps-in-Copepod-Nauplii-pone.0047486.s001.ogv 49 s, 640 × 480; 11.33 MB
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The-Kinematics-of-Swimming-and-Relocation-Jumps-in-Copepod-Nauplii-pone.0047486.s002.ogv 44 s, 640 × 480; 16.15 MB
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The-Kinematics-of-Swimming-and-Relocation-Jumps-in-Copepod-Nauplii-pone.0047486.s004.ogv 55 s, 640 × 480; 52.08 MB
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Wet-Adhesion-and-Adhesive-Locomotion-of-Snails-on-Anti-Adhesive-Non-Wetting-Surfaces-pone.0036983.s001.ogv 1 min 0 s, 320 × 240; 3.18 MB