Category:Videos of musculoskeletal system
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This category has the following 4 subcategories, out of 4 total.
Media in category "Videos of musculoskeletal system"
The following 200 files are in this category, out of 349 total.
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A-Basal-Lithostrotian-Titanosaur-(Dinosauria-Sauropoda)-with-a-Complete-Skull-Implications-for-the-pone.0151661.s013.ogv 40 s, 1,920 × 1,080; 10.95 MB
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A-Role-for-Mesenchyme-Dynamics-in-Mouse-Lung-Branching-Morphogenesis-pone.0041643.s003.ogv 5.4 s, 768 × 576; 8.07 MB
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A-Role-for-Mesenchyme-Dynamics-in-Mouse-Lung-Branching-Morphogenesis-pone.0041643.s004.ogv 10 s, 1,280 × 720; 3.05 MB
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A-Role-for-Mesenchyme-Dynamics-in-Mouse-Lung-Branching-Morphogenesis-pone.0041643.s005.ogv 7.5 s, 1,552 × 917; 6.02 MB
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A-Splice-Site-Mutation-in-Laminin-α2-Results-in-a-Severe-Muscular-Dystrophy-and-Growth-pone.0043794.s001.ogv 6.6 s, 1,600 × 1,200; 127 KB
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A-Splice-Site-Mutation-in-Laminin-α2-Results-in-a-Severe-Muscular-Dystrophy-and-Growth-pone.0043794.s002.ogv 6.6 s, 1,600 × 1,200; 167 KB
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A-Total-Pleural-Covering-for-Lymphangioleiomyomatosis-Prevents-Pneumothorax-Recurrence-pone.0163637.s002.ogv 31 s, 1,920 × 1,080; 55.73 MB
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A-Total-Pleural-Covering-for-Lymphangioleiomyomatosis-Prevents-Pneumothorax-Recurrence-pone.0163637.s003.ogv 30 s, 1,920 × 1,080; 65.64 MB
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Analyse menschlicher Bewegungen.ogv 7 min 23 s, 1,280 × 720; 71.31 MB
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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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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s007.ogv 5 min 0 s, 400 × 320; 1.98 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s008.ogv 4 min 33 s, 400 × 320; 1.31 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s009.ogv 2 min 47 s, 400 × 320; 1.29 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s010.ogv 5 min 0 s, 483 × 272; 2.43 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s011.ogv 5 min 0 s, 582 × 320; 1.41 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s012.ogv 5 min 0 s, 483 × 272; 3.55 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s015.ogv 3 min 10 s, 1,000 × 1,000; 2.8 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s016.ogv 1 min 55 s, 1,000 × 1,000; 1.5 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s017.ogv 4 min 10 s, 1,000 × 1,000; 3.67 MB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s018.ogv 2 min 30 s, 1,000 × 1,000; 886 KB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s019.ogv 2 min 30 s, 1,000 × 1,000; 824 KB
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Associative-Mechanisms-Allow-for-Social-Learning-and-Cultural-Transmission-of-String-Pulling-in-an-pbio.1002564.s020.ogv 2 min 31 s, 1,000 × 1,000; 825 KB
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Calcium-Induced-Regulation-of-Skeletal-Troponin----Computational-Insights-from-Molecular-Dynamics-pone.0058313.s005.ogv 28 s, 1,680 × 1,032; 10.14 MB
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Constitutive-Expression-of-Yes-Associated-Protein-(Yap)-in-Adult-Skeletal-Muscle-Fibres-Induces-pone.0059622.s006.ogv 1 min 11 s, 640 × 480; 5.15 MB
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Creating-High-Resolution-Multiscale-Maps-of-Human-Tissue-Using-Multi-beam-SEM-pcbi.1005217.s004.ogv 5.0 s, 1,000 × 1,149; 5.71 MB
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Creating-High-Resolution-Multiscale-Maps-of-Human-Tissue-Using-Multi-beam-SEM-pcbi.1005217.s005.ogv 4.2 s, 742 × 980; 12.66 MB
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Creating-High-Resolution-Multiscale-Maps-of-Human-Tissue-Using-Multi-beam-SEM-pcbi.1005217.s006.ogv 5.0 s, 750 × 652; 24.87 MB
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Doing-It-Your-Way-How-Individual-Movement-Styles-Affect-Action-Prediction-pone.0165297.s004.ogv 1.0 s, 1,280 × 800; 251 KB
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Dopamine-Modulates-Motor-Control-in-a-Specific-Plane-Related-to-Support-pone.0155058.s001.ogv 2 min 47 s, 640 × 480; 15.29 MB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s007.ogv 5.0 s, 512 × 512; 117 KB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s008.ogv 5.0 s, 512 × 512; 28 KB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s009.ogv 5.0 s, 512 × 512; 16 KB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s010.ogv 5.0 s, 512 × 504; 77 KB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s011.ogv 56 s, 800 × 602; 2.54 MB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s012.ogv 1 min 16 s, 800 × 602; 3.22 MB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s013.ogv 25 s, 800 × 602; 1.55 MB
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Dysferlin-Peptides-Reallocate-Mutated-Dysferlin-Thereby-Restoring-Function-pone.0049603.s014.ogv 52 s, 896 × 672; 2.63 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s002.ogv 1 min 58 s, 720 × 480; 25.44 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s003.ogv 33 s, 720 × 480; 13.07 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s004.ogv 50 s, 641 × 484; 21.87 MB
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Feeding-Behavior-of-Subadult-Sixgill-Sharks-(Hexanchus-griseus)-at-a-Bait-Station-pone.0156730.s005.ogv 1 min 0 s, 641 × 484; 21.57 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s005.ogv 11 s, 640 × 480; 1.01 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s006.ogv 11 s, 640 × 480; 986 KB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s007.ogv 11 s, 640 × 480; 1.35 MB
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Feeding-Mechanics-in-Spinosaurid-Theropods-and-Extant-Crocodilians-pone.0065295.s008.ogv 11 s, 640 × 480; 774 KB
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First-Person-Perspective-Virtual-Body-Posture-Influences-Stress-A-Virtual-Reality-Body-Ownership-pone.0148060.s003.ogv 1 min 38 s, 854 × 480; 22.69 MB
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FISICO-Fast-Image-SegmentatIon-COrrection-pone.0156035.s001.ogv 1 min 47 s, 712 × 480; 12.91 MB
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Flapping-before-Flight-High-Resolution-Three-Dimensional-SkeletalKinematics-of-Wings-and-Legs-pone.0153446.s004.ogv 8.4 s, 1,440 × 1,080; 1.85 MB
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Flapping-before-Flight-High-Resolution-Three-Dimensional-SkeletalKinematics-of-Wings-and-Legs-pone.0153446.s006.ogv 0.7 s, 1,024 × 1,024; 337 KB
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Forelimb-Kinematics-of-Rats-Using-XROMM-with-Implications-for-Small-Eutherians-and-Their-Fossil-pone.0149377.s010.ogv 1 min 47 s, 1,280 × 720; 32.74 MB
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Functional-and-Psychosocial-Outcomes-of-Hand-Transplantation-Compared-with-Prosthetic-Fitting-in-pone.0162507.s001.ogv 1 min 40 s, 854 × 480; 18.14 MB
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Functional-Remineralization-of-Dentin-Lesions-Using-Polymer-Induced-Liquid-Precursor-Process-pone.0038852.s003.ogv 7.1 s, 1,088 × 896; 15.49 MB
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Gait-Transitions-in-Human-Infants-Coping-with-Extremes-of-Treadmill-Speed-pone.0148124.s002.ogv 3.5 s, 640 × 480; 4.01 MB
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Hemodynamic-Forces-Regulate-Developmental-Patterning-of-Atrial-Conduction-pone.0115207.s004.ogv 6.8 s, 406 × 426; 45 KB
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Hemodynamic-Forces-Regulate-Developmental-Patterning-of-Atrial-Conduction-pone.0115207.s005.ogv 6.8 s, 404 × 424; 132 KB
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Hemodynamic-Forces-Regulate-Developmental-Patterning-of-Atrial-Conduction-pone.0115207.s006.ogv 6.8 s, 404 × 426; 109 KB
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How-Simple-Hypothetical-Choice-Experiments-Can-Be-Utilized-to-Learn-Humans-Navigational-Escape-pone.0166908.s007.ogv 31 s, 1,920 × 1,440; 57.29 MB
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How-Simple-Hypothetical-Choice-Experiments-Can-Be-Utilized-to-Learn-Humans-Navigational-Escape-pone.0166908.s008.ogv 40 s, 1,920 × 1,440; 64.49 MB
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Increased-Muscle-Stress-Sensitivity-Induced-by-Selenoprotein-N-Inactivation-in-Mouse-A-Mammalian-pone.0023094.s006.ogv 2 min 22 s, 320 × 240; 7.59 MB
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Information-Driven-Self-Organization-of-Complex-Robotic-Behaviors-pone.0063400.s002.ogv 1 min 18 s, 800 × 600; 31.15 MB
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Information-Driven-Self-Organization-of-Complex-Robotic-Behaviors-pone.0063400.s003.ogv 3 min 47 s, 800 × 600; 28.78 MB
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Information-Driven-Self-Organization-of-Complex-Robotic-Behaviors-pone.0063400.s004.ogv 1 min 30 s, 800 × 600; 14.06 MB
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Information-Driven-Self-Organization-of-Complex-Robotic-Behaviors-pone.0063400.s005.ogv 1 min 33 s, 800 × 600; 16.14 MB
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Information-Driven-Self-Organization-of-Complex-Robotic-Behaviors-pone.0063400.s006.ogv 2 min 38 s, 800 × 600; 11.48 MB
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Internal-Soft-Tissue-Anatomy-of-Cambrian-‘Orsten’-Arthropods-as-Revealed-by-Synchrotron-X-Ray-pone.0042582.s001.ogv 1 min 2 s, 956 × 1,060; 10.55 MB
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Lateral-Diffusion-on-Tubular-Membranes-Quantification-of-Measurements-Bias-pone.0025731.s005.ogv 33 s, 436 × 155; 2.36 MB
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Lateral-Diffusion-on-Tubular-Membranes-Quantification-of-Measurements-Bias-pone.0025731.s006.ogv 8.1 s, 320 × 235; 373 KB
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Lungfish-Axial-Muscle-Function-and-the-Vertebrate-Water-to-Land-Transition-pone.0096516.s001.ogv 5.6 s, 605 × 232; 1.74 MB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s006.ogv 39 s, 640 × 360; 218 KB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s007.ogv 40 s, 640 × 360; 267 KB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s008.ogv 56 s, 640 × 360; 598 KB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s009.ogv 10 s, 640 × 360; 135 KB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s010.ogv 10 s, 640 × 360; 160 KB
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Membrane-Blebbing-Is-Required-for-Mesenchymal-Precursor-Migration-pone.0150004.s011.ogv 10 s, 640 × 360; 147 KB
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MicroRNA-3906-Regulates-Fast-Muscle-Differentiation-through-Modulating-the-Target-Gene-homer-1b-in-pone.0070187.s002.ogv 1 min 11 s, 640 × 480; 2.87 MB
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Monocytic-Cells-Become-Less-Compressible-but-More-Deformable-upon-Activation-pone.0092814.s005.ogv 18 s, 640 × 480; 1.01 MB
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Non-Linear-Optical-Microscopy-Sheds-Light-on-Cardiovascular-Disease-pone.0056136.s002.ogv 7.2 s, 256 × 256; 450 KB
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Non-Linear-Optical-Microscopy-Sheds-Light-on-Cardiovascular-Disease-pone.0056136.s003.ogv 6.4 s, 400 × 298; 302 KB
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Optogenetic-Control-of-Targeted-Peripheral-Axons-in-Freely-Moving-Animals-pone.0072691.s004.ogv 13 s, 960 × 540; 913 KB
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Optogenetic-Control-of-Targeted-Peripheral-Axons-in-Freely-Moving-Animals-pone.0072691.s005.ogv 18 s, 960 × 540; 3.19 MB
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Optogenetic-Control-of-Targeted-Peripheral-Axons-in-Freely-Moving-Animals-pone.0072691.s006.ogv 15 s, 960 × 540; 1.43 MB
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