Category:Motor systems
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Subcategories
This category has the following 6 subcategories, out of 6 total.
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Media in category "Motor systems"
The following 165 files are in this category, out of 165 total.
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3-D-Worm-Tracker-for-Freely-Moving-C.-elegans-pone.0057484.s003.ogv 32 s, 1,046 × 506; 753 KB
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3-D-Worm-Tracker-for-Freely-Moving-C.-elegans-pone.0057484.s004.ogv 33 s, 800 × 600; 558 KB
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3-D-Worm-Tracker-for-Freely-Moving-C.-elegans-pone.0057484.s005.ogv 12 s, 436 × 188; 36 KB
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Aerial-Jumping-in-the-Trinidadian-Guppy-(Poecilia-reticulata)-pone.0061617.s001.ogv 2.2 s, 480 × 360; 77 KB
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Aerial-Jumping-in-the-Trinidadian-Guppy-(Poecilia-reticulata)-pone.0061617.s002.ogv 7.6 s, 640 × 480; 458 KB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s001.ogv 1 min 19 s, 288 × 318; 9.9 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s002.ogv 1 min 13 s, 304 × 318; 11.25 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s003.ogv 48 s, 296 × 320; 3.36 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s004.ogv 36 s, 296 × 318; 891 KB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s005.ogv 40 s, 494 × 512; 5.69 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s006.ogv 58 s, 496 × 512; 7.55 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s007.ogv 56 s, 492 × 514; 6.86 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s008.ogv 56 s, 492 × 512; 6.74 MB
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AHaH-Computing-From-Metastable-Switches-to-Attractors-to-Machine-Learning-pone.0085175.s009.ogv 1 min 29 s, 494 × 512; 10.25 MB
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Anaesthetic-Tricaine-Acts-Preferentially-on-Neural-Voltage-Gated-Sodium-Channels-and-Fails-to-Block-pone.0103751.s001.ogv 1 min 23 s, 1,280 × 720; 8.09 MB
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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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Characterization-of-the-Gbx1−−-Mouse-Mutant-A-Requirement-for-Gbx1-in-Normal-Locomotion-and-pone.0056214.s002.ogv 1 min 14 s, 480 × 360; 6.57 MB
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Chopin Etude op 10 n 3.oga 3 min 36 s; 1.66 MB
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Cpd-1-Null-Mice-Display-a-Subtle-Neurological-Phenotype-pone.0012649.s004.ogv 12 s, 720 × 480; 3.86 MB
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Cpd-1-Null-Mice-Display-a-Subtle-Neurological-Phenotype-pone.0012649.s005.ogv 15 s, 720 × 480; 5.74 MB
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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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MiR-153-Regulates-SNAP-25-Synaptic-Transmission-and-Neuronal-Development-pone.0057080.s007.ogv 1 min 53 s, 320 × 240; 1.31 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s007.ogv 38 s, 640 × 480; 1.03 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s008.ogv 24 s, 640 × 480; 1.59 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s010.ogv 9.5 s, 640 × 480; 1.62 MB
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Monoaminergic-Orchestration-of-Motor-Programs-in-a-Complex-C.-elegans-Behavior-pbio.1001529.s011.ogv 8.4 s, 640 × 480; 1.3 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s008.ogv 21 s, 512 × 284; 1.17 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s009.ogv 23 s, 512 × 512; 2.07 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s010.ogv 26 s, 512 × 512; 1.53 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s011.ogv 25 s, 512 × 512; 2.13 MB
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Mosaic-hoxb4a-Neuronal-Pleiotropism-in-Zebrafish-Caudal-Hindbrain-pone.0005944.s012.ogv 25 s, 512 × 512; 1.75 MB
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Neural-Substrates-for-the-Motivational-Regulation-of-Motor-Recovery-after-Spinal-Cord-Injury-pone.0024854.s001.ogv 1 min 18 s, 320 × 240; 3.02 MB
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Neurogenic-and-Myogenic-Properties-of-Pan-Colonic-Motor-Patterns-and-Their-Spatiotemporal-pone.0060474.s001.ogv 2 min 40 s, 640 × 480; 1.97 MB
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Neurogenic-and-Myogenic-Properties-of-Pan-Colonic-Motor-Patterns-and-Their-Spatiotemporal-pone.0060474.s004.ogv 2 min 20 s, 640 × 480; 1.77 MB
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Prenatal-Treatment-of-Mosaic-Mice-(Atp7a-mo-ms)-Mouse-Model-for-Menkes-Disease-with-Copper-Combined-pone.0040400.s011.ogv 1 min 10 s, 320 × 240; 2.19 MB
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Rnf165Ark2C-Enhances-BMP-Smad-Signaling-to-Mediate-Motor-Axon-Extension-pbio.1001538.s011.ogv 4.8 s, 1,066 × 908; 1.09 MB
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Rnf165Ark2C-Enhances-BMP-Smad-Signaling-to-Mediate-Motor-Axon-Extension-pbio.1001538.s012.ogv 7.9 s, 384 × 224; 1.02 MB
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Role-of-Sensory-Experience-in-Functional-Development-of-Drosophila-Motor-Circuits-pone.0062199.s002.ogv 43 s, 640 × 480; 11.78 MB
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Rostro-Caudal-Inhibition-of-Hindlimb-Movements-in-the-Spinal-Cord-of-Mice-pone.0100865.s004.ogv 18 s, 328 × 200; 3.25 MB
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Rostro-Caudal-Inhibition-of-Hindlimb-Movements-in-the-Spinal-Cord-of-Mice-pone.0100865.s005.ogv 26 s, 640 × 192; 635 KB
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Shaping-the-Dynamics-of-a-Bidirectional-Neural-Interface-pcbi.1002578.s001.ogv 2 min 37 s, 640 × 480; 5.39 MB
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The-Dopamine-Metabolite-3-Methoxytyramine-Is-a-Neuromodulator-pone.0013452.s003.ogv 25 s, 320 × 240; 1.56 MB
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The-Dopamine-Metabolite-3-Methoxytyramine-Is-a-Neuromodulator-pone.0013452.s004.ogv 44 s, 320 × 240; 2.45 MB
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The-Effect-of-Stress-on-Motor-Function-in-Drosophila-pone.0112076.s003.ogv 6.0 s, 363 × 900; 207 KB
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The-Vesicle-Protein-SAM-4-Regulates-the-Processivity-of-Synaptic-Vesicle-Transport-pgen.1004644.s014.ogv 8.6 s, 2,000 × 126; 6.42 MB
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The-Vesicle-Protein-SAM-4-Regulates-the-Processivity-of-Synaptic-Vesicle-Transport-pgen.1004644.s015.ogv 8.6 s, 2,000 × 126; 5.41 MB
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Transformation-of-Context-dependent-Sensory-Dynamics-into-Motor-Behavior-pcbi.1002908.s001.ogv 54 s, 720 × 480; 3.74 MB
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Transformation-of-Context-dependent-Sensory-Dynamics-into-Motor-Behavior-pcbi.1002908.s002.ogv 38 s, 720 × 480; 7.43 MB
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Two-Alternating-Motor-Programs-Drive-Navigation-in-Drosophila-Larva-pone.0023180.s001.ogv 13 s, 1,260 × 750; 456 KB
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Two-Alternating-Motor-Programs-Drive-Navigation-in-Drosophila-Larva-pone.0023180.s002.ogv 16 s, 1,260 × 750; 576 KB
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Two-Alternating-Motor-Programs-Drive-Navigation-in-Drosophila-Larva-pone.0023180.s003.ogv 16 s, 1,260 × 750; 633 KB
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Two-Alternating-Motor-Programs-Drive-Navigation-in-Drosophila-Larva-pone.0023180.s004.ogv 22 s, 1,260 × 750; 680 KB
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Two-Alternating-Motor-Programs-Drive-Navigation-in-Drosophila-Larva-pone.0023180.s005.ogv 22 s, 1,260 × 750; 788 KB
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Variable-Food-Begging-Calls-Are-Harbingers-of-Vocal-Learning-pone.0005929.s007.ogv 20 s, 640 × 480; 9.95 MB
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Variable-Food-Begging-Calls-Are-Harbingers-of-Vocal-Learning-pone.0005929.s008.ogv 28 s, 320 × 240; 1.57 MB
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Variable-Food-Begging-Calls-Are-Harbingers-of-Vocal-Learning-pone.0005929.s009.ogv 40 s, 320 × 240; 1.23 MB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s001.ogv 11 s, 1,229 × 768; 792 KB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s002.ogv 1 min 15 s, 256 × 256; 444 KB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s003.ogv 20 s, 224 × 168; 150 KB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s004.ogv 25 s, 560 × 420; 40 KB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s005.ogv 25 s, 560 × 420; 59 KB
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Why-Do-Sleeping-Nematodes-Adopt-a-Hockey-Stick-Like-Posture-pone.0101162.s006.ogv 25 s, 560 × 420; 71 KB
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Widespread-State-Dependent-Shifts-in-Cerebellar-Activity-in-Locomoting-Mice-pone.0042650.s002.ogv 25 s, 875 × 336; 2.82 MB
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Widespread-State-Dependent-Shifts-in-Cerebellar-Activity-in-Locomoting-Mice-pone.0042650.s003.ogv 1 min 13 s, 560 × 210; 6.49 MB
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