Category:Videos of nervous system
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This category has the following 8 subcategories, out of 8 total.
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Media in category "Videos of nervous system"
The following 200 files are in this category, out of 387 total.
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A-Novel-Approach-for-Studying-the-Physiology-and-Pathophysiology-of-Myelinated-and-Non-Myelinated-pone.0165637.s005.ogv 1 min 34 s, 640 × 480; 13.45 MB
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A-Spinal-Cord-Window-Chamber-Model-for-In-Vivo-Longitudinal-Multimodal-Optical-and-Acoustic-Imaging-pone.0058081.s003.ogv 13 min 48 s, 321 × 240; 68.25 MB
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A-Surgical-Model-of-Permanent-and-Transient-Middle-Cerebral-Artery-Stroke-in-the-Sheep-pone.0042157.s001.ogv 2 min 0 s, 384 × 288; 5.47 MB
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Altered-Reward-Circuitry-in-the-Norepinephrine-Transporter-Knockout-Mouse-pone.0057597.s002.ogv 30 s, 640 × 480; 1.79 MB
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Altered-Reward-Circuitry-in-the-Norepinephrine-Transporter-Knockout-Mouse-pone.0057597.s003.ogv 50 s, 640 × 960; 3.16 MB
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Altered-Reward-Circuitry-in-the-Norepinephrine-Transporter-Knockout-Mouse-pone.0057597.s004.ogv 41 s, 640 × 960; 3.1 MB
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Altered-Reward-Circuitry-in-the-Norepinephrine-Transporter-Knockout-Mouse-pone.0057597.s005.ogv 27 s, 640 × 960; 2.77 MB
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Altered-Reward-Circuitry-in-the-Norepinephrine-Transporter-Knockout-Mouse-pone.0057597.s006.ogv 40 s, 592 × 800; 25.89 MB
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Aspartoacylase-LacZ-Knockin-Mice-An-Engineered-Model-of-Canavan-Disease-pone.0020336.s004.ogv 1 min 56 s, 768 × 576; 15.33 MB
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Astroglia-in-Thick-Tissue-with-Super-Resolution-and-Cellular-Reconstruction-pone.0160391.s002.ogv 50 s, 852 × 455; 13.19 MB
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Astroglia-in-Thick-Tissue-with-Super-Resolution-and-Cellular-Reconstruction-pone.0160391.s004.ogv 50 s, 852 × 455; 26.3 MB
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Beta-but-Not-Gamma-Band-Oscillations-Index-Visual-Form-Motion-Integration-pone.0095541.s001.ogv 1.3 s, 160 × 120; 11 KB
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Brainstem-and-Spinal-Cord-Circuitry-Regulating-REM-Sleep-and-Muscle-Atonia-pone.0024998.s001.ogv 16 s, 1,664 × 860; 1.39 MB
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Causal-Inference-in-Multisensory-Heading-Estimation-pone.0169676.s006.ogv 43 s, 540 × 960; 15.77 MB
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Ccdc80-l1-Is-Involved-in-Axon-Pathfinding-of-Zebrafish-Motoneurons-pone.0031851.s007.ogv 2.7 s, 720 × 576; 106 KB
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Ccdc80-l1-Is-Involved-in-Axon-Pathfinding-of-Zebrafish-Motoneurons-pone.0031851.s008.ogv 5.0 s, 720 × 576; 242 KB
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Cellular-Architecture-Regulates-Collective-Calcium-Signaling-and-Cell-Contractility-pcbi.1004955.s013.ogv 5.0 s, 1,280 × 1,024; 816 KB
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Cellular-Architecture-Regulates-Collective-Calcium-Signaling-and-Cell-Contractility-pcbi.1004955.s014.ogv 5.0 s, 1,280 × 1,024; 425 KB
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Cellular-Architecture-Regulates-Collective-Calcium-Signaling-and-Cell-Contractility-pcbi.1004955.s015.ogv 5.0 s, 1,392 × 1,040; 1.56 MB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s001.ogv 1 min 3 s, 640 × 480; 12.89 MB
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Collective-Signal-Processing-in-Cluster-Chemotaxis-Roles-of-Adaptation-Amplification-and-Co-pcbi.1005008.s002.ogv 1 min 3 s, 928 × 306; 11.29 MB
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Comprehensive-Evaluation-of-Peripheral-Nerve-Regeneration-in-the-Acute-Healing-Phase-Using-Tissue-pone.0094054.s008.ogv 1 min 55 s, 640 × 480; 7.81 MB
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Coordination-in-Fast-Repetitive-Violin-Bowing-Patterns-pone.0106615.s001.ogv 14 s, 1,280 × 720; 4.94 MB
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Coordination-in-Fast-Repetitive-Violin-Bowing-Patterns-pone.0106615.s002.ogv 14 s, 1,280 × 720; 4.35 MB
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Coordination-in-Fast-Repetitive-Violin-Bowing-Patterns-pone.0106615.s003.ogv 14 s, 1,280 × 720; 4.64 MB
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Cortical-Neurovascular-Coupling-Driven-by-Stimulation-of-Channelrhodopsin-2-pone.0046607.s001.ogv 35 s, 500 × 670; 5.11 MB
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Depending-on-Its-Nano-Spacing-ALCAM-Promotes-Cell-Attachment-and-Axon-Growth-pone.0040493.s006.ogv 1 min 12 s, 366 × 656; 828 KB
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Depending-on-Its-Nano-Spacing-ALCAM-Promotes-Cell-Attachment-and-Axon-Growth-pone.0040493.s007.ogv 1 min 12 s, 670 × 722; 2.58 MB
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Depending-on-Its-Nano-Spacing-ALCAM-Promotes-Cell-Attachment-and-Axon-Growth-pone.0040493.s008.ogv 1 min 12 s, 425 × 647; 1.72 MB
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Depending-on-Its-Nano-Spacing-ALCAM-Promotes-Cell-Attachment-and-Axon-Growth-pone.0040493.s009.ogv 1 min 12 s, 300 × 360; 273 KB
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Depending-on-Its-Nano-Spacing-ALCAM-Promotes-Cell-Attachment-and-Axon-Growth-pone.0040493.s010.ogv 1 min 12 s, 231 × 245; 192 KB
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Development-and-organization-of-the-larval-nervous-system-in-Phoronopsis-harmeri-new-insights-into-1742-9994-11-3-S1.ogv 1 min 15 s, 1,280 × 720; 7.11 MB
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Direct-Generation-of-Neurosphere-Like-Cells-from-Human-Dermal-Fibroblasts-pone.0021801.s010.ogv 56 s, 640 × 480; 9.47 MB
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Disorders-of-Upper-Limb-Movements-in-Ataxia-Telangiectasia-pone.0067042.s001.ogv 1 min 30 s, 320 × 240; 7.83 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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Drinking-Songs-Alcohol-Effects-on-Learned-Song-of-Zebra-Finches-pone.0115427.s006.ogv 2 min 59 s, 1,920 × 1,080; 5.14 MB
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Drosophila-Neurotrophins-Reveal-a-Common-Mechanism-for-Nervous-System-Formation-pbio.0060284.sv004.ogv 5 min 17 s, 312 × 240; 1.77 MB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s001.ogv 5.0 s, 238 × 271; 248 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s002.ogv 6.9 s, 215 × 218; 405 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s003.ogv 5.1 s, 305 × 211; 204 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s004.ogv 2.0 s, 292 × 281; 148 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s005.ogv 0.6 s, 275 × 285; 57 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s006.ogv 7.1 s, 625 × 785; 2.54 MB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s007.ogv 5.0 s, 228 × 286; 459 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s008.ogv 5.6 s, 255 × 214; 578 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s009.ogv 5.6 s, 247 × 213; 595 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s010.ogv 5.0 s, 294 × 220; 287 KB
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Early-Invasion-of-Brain-Parenchyma-by-African-Trypanosomes-pone.0043913.s011.ogv 5.0 s, 645 × 548; 2.28 MB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s001.ogv 2 min 45 s, 807 × 27; 342 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s002.ogv 3 min 29 s, 728 × 61; 468 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s003.ogv 3 min 3 s, 1,118 × 28; 303 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s004.ogv 22 s, 320 × 240; 347 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s005.ogv 13 s, 320 × 240; 257 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s006.ogv 31 s, 320 × 240; 443 KB
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Effect-of-Angle-on-Flow-Induced-Vibrations-of-Pinniped-Vibrissae-pone.0069872.s007.ogv 21 s, 320 × 240; 517 KB
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Evidence-for-the-Re-Enactment-of-a-Recently-Learned-Behavior-during-Sleepwalking-pone.0018056.s003.ogv 1 min 0 s, 768 × 576; 2.42 MB
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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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Fin-Tail-Coordination-during-Escape-and-Predatory-Behavior-in-Larval-Zebrafish-pone.0032295.s002.ogv 5.6 s, 258 × 227; 629 KB
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Fin-Tail-Coordination-during-Escape-and-Predatory-Behavior-in-Larval-Zebrafish-pone.0032295.s003.ogv 7.7 s, 224 × 133; 521 KB
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Fin-Tail-Coordination-during-Escape-and-Predatory-Behavior-in-Larval-Zebrafish-pone.0032295.s004.ogv 7.8 s, 268 × 188; 578 KB
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From-Spontaneous-Motor-Activity-to-Coordinated-Behaviour-A-Developmental-Model-pcbi.1003653.s006.ogv 1 min 31 s, 853 × 480; 1.8 MB
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Identification-of-the-Rostral-Migratory-Stream-in-the-Canine-and-Feline-Brain-pone.0036016.s001.ogv 9.0 s, 960 × 540; 795 KB
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In-Vivo-Time-Resolved-Microtomography-Reveals-the-Mechanics-of-the-Blowfly-Flight-Motor-pbio.1001823.s001.ogv 30 s, 1,280 × 720; 25.55 MB
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Intersegmental-Eye-Head-Body-Interactions-during-Complex-Whole-Body-Movements-pone.0095450.s001.ogv 9.3 s, 1,180 × 748; 2.09 MB
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Intersegmental-Eye-Head-Body-Interactions-during-Complex-Whole-Body-Movements-pone.0095450.s002.ogv 31 s, 1,180 × 744; 12.11 MB
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Intersegmental-Eye-Head-Body-Interactions-during-Complex-Whole-Body-Movements-pone.0095450.s003.ogv 1 min 7 s, 1,180 × 744; 16.17 MB
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Intersegmental-Eye-Head-Body-Interactions-during-Complex-Whole-Body-Movements-pone.0095450.s004.ogv 17 s, 1,180 × 744; 6.24 MB
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Intersegmental-Eye-Head-Body-Interactions-during-Complex-Whole-Body-Movements-pone.0095450.s005.ogv 46 s, 1,180 × 744; 17.92 MB
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Laminoplasty-and-Laminectomy-Hybrid-Decompression-for-the-Treatment-of-Cervical-Spondylotic-pone.0095482.s001.ogv 2 min 44 s, 768 × 576; 50.67 MB
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Light-evoked-Somatosensory-Perception-of-Transgenic-Rats-That-Express-Channelrhodopsin-2-in-Dorsal-pone.0032699.s001.ogv 1 min 36 s, 640 × 480; 8.8 MB
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Light-evoked-Somatosensory-Perception-of-Transgenic-Rats-That-Express-Channelrhodopsin-2-in-Dorsal-pone.0032699.s002.ogv 1 min 38 s, 640 × 480; 9.82 MB
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Light-evoked-Somatosensory-Perception-of-Transgenic-Rats-That-Express-Channelrhodopsin-2-in-Dorsal-pone.0032699.s003.ogv 1 min 37 s, 640 × 480; 8.16 MB
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Light-evoked-Somatosensory-Perception-of-Transgenic-Rats-That-Express-Channelrhodopsin-2-in-Dorsal-pone.0032699.s004.ogv 1 min 37 s, 640 × 480; 8.66 MB
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Light-evoked-Somatosensory-Perception-of-Transgenic-Rats-That-Express-Channelrhodopsin-2-in-Dorsal-pone.0032699.s005.ogv 1 min 38 s, 640 × 480; 8.23 MB
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Loss-of-the-V-ATPase-B1-Subunit-Isoform-Expressed-in-Non-Neuronal-Cells-of-the-Mouse-Olfactory-pone.0045395.s001.ogv 3 min 0 s, 960 × 540; 40.72 MB
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Loss-of-the-V-ATPase-B1-Subunit-Isoform-Expressed-in-Non-Neuronal-Cells-of-the-Mouse-Olfactory-pone.0045395.s002.ogv 3 min 0 s, 960 × 540; 40.24 MB
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Machine-Learning-of-Hierarchical-Clustering-to-Segment-2D-and-3D-Images-pone.0071715.s004.ogv 55 s, 972 × 321; 4.27 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S1.ogv 21 s, 968 × 318; 901 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S10.ogv 6.4 s, 536 × 512; 1.02 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S11.ogv 8.0 s, 510 × 510; 394 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S2.ogv 10 s, 722 × 296; 278 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S3.ogv 8.7 s, 686 × 510; 835 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S4.ogv 12 s, 636 × 632; 286 KB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S5.ogv 10 s, 636 × 516; 2.3 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S6.ogv 4.4 s, 828 × 603; 3 MB
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Making-sense-of-zebrafish-neural-development-in-the-Minervois-1749-8104-2-15-S7.ogv 6.0 s, 518 × 467; 484 KB
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Mapping-Connectivity-Damage-in-the-Case-of-Phineas-Gage-pone.0037454.s007.ogv 1 min 1 s, 640 × 480; 13.37 MB
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Mechanisms-of-Hearing-Loss-after-Blast-Injury-to-the-Ear-pone.0067618.s002.ogv 2 min 0 s, 640 × 480; 10.52 MB
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