Category:Videos of biomechanics
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This category has the following 7 subcategories, out of 7 total.
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S
V
- Videos of cell biomechanics (13 F)
- Videos of dental research (3 F)
- Videos of protein mechanics (1 F)
Media in category "Videos of biomechanics"
The following 194 files are in this category, out of 194 total.
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A-Possible-Role-for-Integrin-Signaling-in-Diffuse-Axonal-Injury-pone.0022899.s012.ogv 3.0 s, 560 × 992; 815 KB
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A-universal-self-charging-system-driven-by-random-biomechanical-energy-for-sustainable-operation-of-ncomms9975-s2.ogv 2 min 12 s, 608 × 448; 8.67 MB
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A-universal-self-charging-system-driven-by-random-biomechanical-energy-for-sustainable-operation-of-ncomms9975-s5.ogv 1 min 51 s, 608 × 448; 6.98 MB
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A-universal-self-charging-system-driven-by-random-biomechanical-energy-for-sustainable-operation-of-ncomms9975-s7.ogv 2 min 12 s, 608 × 448; 9.28 MB
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A-universal-self-charging-system-driven-by-random-biomechanical-energy-for-sustainable-operation-of-ncomms9975-s9.ogv 1 min 6 s, 720 × 536; 2.15 MB
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Analyse menschlicher Bewegungen.ogv 7 min 23 s, 1,280 × 720; 71.31 MB
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CSF-contacting-neurons-regulate-locomotion-by-relaying-mechanical-stimuli-to-spinal-circuits-ncomms10866-s4.ogv 12 s, 1,000 × 1,000; 2.31 MB
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Discovery-of-New-Hydrothermal-Activity-and-Chemosynthetic-Fauna-on-the-Central-Indian-Ridge-at-pone.0032965.s001.ogv 3 min 26 s, 640 × 480; 96.11 MB
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Dynamic-Modelling-of-Tooth-Deformation-Using-Occlusal-Kinematics-and-Finite-Element-Analysis-pone.0152663.s008.ogv 34 s, 1,920 × 1,080; 1.72 MB
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Dynamic-Modelling-of-Tooth-Deformation-Using-Occlusal-Kinematics-and-Finite-Element-Analysis-pone.0152663.s010.ogv 8.2 s, 1,920 × 1,080; 3.5 MB
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Flagellar-Kinematics-and-Swimming-of-Algal-Cells-in-Viscoelastic-Fluids-srep09190-s2.ogv 7.0 s, 286 × 226; 1.17 MB
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Flagellar-Kinematics-and-Swimming-of-Algal-Cells-in-Viscoelastic-Fluids-srep09190-s3.ogv 6.5 s, 352 × 208; 666 KB
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Flagellar-Kinematics-and-Swimming-of-Algal-Cells-in-Viscoelastic-Fluids-srep09190-s4.ogv 6.5 s, 234 × 190; 570 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s008.ogv 11 s, 498 × 160; 537 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s009.ogv 14 s, 393 × 144; 545 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s010.ogv 5.5 s, 864 × 160; 510 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s011.ogv 6.7 s, 258 × 94; 158 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s012.ogv 16 s, 384 × 272; 1.09 MB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s013.ogv 8.0 s, 608 × 176; 543 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s014.ogv 8.0 s, 738 × 208; 323 KB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s015.ogv 12 s, 608 × 248; 1.07 MB
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Force-Generation-upon-T-Cell-Receptor-Engagement-pone.0019680.s016.ogv 15 s, 394 × 243; 778 KB
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Geometrical-and-Mechanical-Properties-Control-Actin-Filament-Organization-pcbi.1004245.s009.ogv 8.0 s, 3,456 × 1,152; 23.87 MB
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Hydrodynamic-schooling-of-flapping-swimmers-ncomms9514-s1.ogv 43 s, 1,920 × 1,080; 47.23 MB
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Hydrodynamic-schooling-of-flapping-swimmers-ncomms9514-s2.ogv 17 s, 1,184 × 660; 55.84 MB
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Hydrodynamic-schooling-of-flapping-swimmers-ncomms9514-s3.ogv 11 s, 1,188 × 628; 30.83 MB
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Hydrodynamic-schooling-of-flapping-swimmers-ncomms9514-s4.ogv 6.7 s, 780 × 388; 2.48 MB
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Hydrodynamic-schooling-of-flapping-swimmers-ncomms9514-s5.ogv 6.3 s, 778 × 387; 2.29 MB
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Interdisziplinarität in der Robotik.ogv 6 min 44 s, 1,920 × 1,080; 82.45 MB
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Large-scale-synchronized-activity-in-the-embryonic-brainstem-and-spinal-cord-Movie1.ogv 2 min 1 s, 960 × 540; 3.16 MB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s001.ogv 10 s, 640 × 360; 709 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s002.ogv 10 s, 640 × 360; 775 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s003.ogv 10 s, 640 × 360; 792 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s004.ogv 10 s, 640 × 360; 809 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s005.ogv 10 s, 640 × 360; 826 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s006.ogv 10 s, 640 × 360; 885 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s007.ogv 10 s, 640 × 360; 923 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s008.ogv 10 s, 640 × 360; 883 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s009.ogv 10 s, 640 × 360; 859 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s010.ogv 10 s, 640 × 360; 871 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s011.ogv 10 s, 640 × 360; 875 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s012.ogv 10 s, 640 × 360; 872 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s013.ogv 10 s, 640 × 360; 898 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s014.ogv 10 s, 640 × 360; 914 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s015.ogv 10 s, 640 × 360; 895 KB
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March-of-the-Titans-The-Locomotor-Capabilities-of-Sauropod-Dinosaurs-pone.0078733.s016.ogv 10 s, 640 × 360; 870 KB
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Mechanical-Network-in-Titin-Immunoglobulin-from-Force-Distribution-Analysis-pcbi.1000306.s012.ogv 10 s, 640 × 480; 3.45 MB
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Mitotic-Spindle-Orients-Perpendicular-to-the-Forces-Imposed-by-Dynamic-Shear-pone.0028965.s001.ogv 5.3 s, 1,040 × 1,040; 958 KB
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Mitotic-Spindle-Orients-Perpendicular-to-the-Forces-Imposed-by-Dynamic-Shear-pone.0028965.s002.ogv 4.5 s, 840 × 720; 1.09 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s1.ogv 1 min 14 s, 960 × 600; 5.52 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s10.ogv 11 s, 1,280 × 720; 8.95 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s11.ogv 9.0 s, 1,280 × 720; 5.31 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s5.ogv 1 min 34 s, 960 × 480; 8.58 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s7.ogv 1 min 5 s, 450 × 300; 6.86 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s8.ogv 16 s, 1,280 × 720; 8.62 MB
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Nanotwin-governed-toughening-mechanism-in-hierarchically-structured-biological-materials-ncomms10772-s9.ogv 12 s, 1,280 × 720; 6.32 MB
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Real-time-intermembrane-force-measurements-and-imaging-of-lipid-domain-morphology-during-hemifusion-ncomms8238-s4.ogv 8 min 17 s, 320 × 240; 14.82 MB
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Reinforcement-versus-Fluidization-in-Cytoskeletal-Mechanoresponsiveness-pone.0005486.s009.ogv 23 s, 1,018 × 678; 874 KB
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Reinforcement-versus-Fluidization-in-Cytoskeletal-Mechanoresponsiveness-pone.0005486.s010.ogv 9.0 s, 800 × 560; 372 KB
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Reinforcement-versus-Fluidization-in-Cytoskeletal-Mechanoresponsiveness-pone.0005486.s011.ogv 1.3 s, 800 × 800; 238 KB
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Reinforcement-versus-Fluidization-in-Cytoskeletal-Mechanoresponsiveness-pone.0005486.s012.ogv 2.3 s, 800 × 800; 27 KB
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Salvia-pratensis-staminal-lever-honeybee.webm 18 s, 1,080 × 1,920; 16.98 MB
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Sibernetic C. elegans crawling.webm 1 min 54 s, 640 × 480; 28.65 MB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s10.ogv 40 s, 640 × 480; 983 KB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s2.ogv 37 s, 530 × 722; 2.36 MB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s3.ogv 50 s, 530 × 722; 3.07 MB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s4.ogv 38 s, 530 × 361; 1.24 MB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s5.ogv 16 s, 922 × 776; 4.54 MB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s6.ogv 8.2 s, 1,095 × 776; 911 KB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s7.ogv 26 s, 426 × 240; 453 KB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s8.ogv 17 s, 426 × 240; 259 KB
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Swimming-by-reciprocal-motion-at-low-Reynolds-number-ncomms6119-s9.ogv 35 s, 426 × 240; 526 KB
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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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The-Mechanochemistry-of-Endocytosis-pbio.1000204.s011.ogv 13 s, 2,200 × 1,700; 281 KB
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The-Mechanochemistry-of-Endocytosis-pbio.1000204.s012.ogv 9.5 s, 2,200 × 1,700; 227 KB
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The-Predatory-Ecology-of-Deinonychus-and-the-Origin-of-Flapping-in-Birds-pone.0028964.s002.ogv 59 s, 320 × 240; 4.22 MB
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The-Predatory-Ecology-of-Deinonychus-and-the-Origin-of-Flapping-in-Birds-pone.0028964.s003.ogv 54 s, 320 × 240; 2.54 MB
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Theoretical-Model-for-Cellular-Shapes-Driven-by-Protrusive-and-Adhesive-Forces-pcbi.1001127.s003.ogv 4.6 s, 508 × 364; 435 KB
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Theoretical-Model-for-Cellular-Shapes-Driven-by-Protrusive-and-Adhesive-Forces-pcbi.1001127.s004.ogv 5.3 s, 508 × 364; 228 KB
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VASP-zyxin-and-TES-are-tension-dependent-members-of-Focal-Adherens-Junctions-independent-of-the-α-srep17225-s8.ogv 8.7 s, 1,590 × 530; 35.19 MB
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Wall-mechanics-and-exocytosis-define-the-shape-of-growth-domains-in-fission-yeast-ncomms9400-s2.ogv 4.6 s, 120 × 267; 330 KB
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Wall-mechanics-and-exocytosis-define-the-shape-of-growth-domains-in-fission-yeast-ncomms9400-s3.ogv 3.7 s, 226 × 248; 257 KB
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Wall-mechanics-and-exocytosis-define-the-shape-of-growth-domains-in-fission-yeast-ncomms9400-s4.ogv 3.7 s, 519 × 290; 537 KB
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Wall-mechanics-and-exocytosis-define-the-shape-of-growth-domains-in-fission-yeast-ncomms9400-s5.ogv 1.4 s, 532 × 374; 145 KB
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Wall-mechanics-and-exocytosis-define-the-shape-of-growth-domains-in-fission-yeast-ncomms9400-s6.ogv 8.0 s, 294 × 702; 684 KB