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Category:Motor neurons

<nowiki>motoneurona; 運動神經細胞; motoneuron; neurona motor; мотонейрон; Motoneuron; نورون حرکتی; 運動神經; Motorneuron; Motor nöron; 運動ニューロン; Motoriska nerver; мотонейрон; 運動神經元; 运动神经元; 운동 신경세포; movoneŭrono; motorický neuron; இயக்க நரம்பணு; motoneurone; motoneurone; Motoorsed neuronid; пирамидални пут; 运动神经元; Motor neyron; motor neuron; շարժանեյրոն; motoneurona; piramidalni put; пирамидални пут; Kustību neirons; Motorički neuroni; Motorinis neuronas; motorični nevron; motorische zenuwcel; neurônio motor; Motoneuron; เซลล์ประสาทสั่งการ; motorisk nervecelle; චාලක නියුරෝනය; Motor neyron; Nơron vận động; נוירון תנועתי; demarexaneya livînê; جووڵەدەمارەخانە; motoneurona; عصبون حركي; κινητήριος νευρώνας; Нейрони ҳаракатӣ; Sinir sisteminin parçası; voie de sortie du système nerveux central; Funtzio motorra duen nerbio-zelula eferentea; bide piramidal batean barrena garraiatzen ditu nerbio-kinadak. Neurona horien gorputzak garezur-nerbioen nukleoetan eta ornomuineko gai grisean daude.; מעביר הוראה לשריר להתכווץ או לבליטה לבצע הפרשה; крупная нервная клетка в передних рогах спинного мозга; மூளை மற்றும் தண்டுவடத்தில் காணப்படும் நரம்பணுக்களின் ஒரு வகை.; Nervenzelle zur Steuerung von Bewegungen; Neurônio que controla contração muscular; neuron with cell body in the motor cortex, brainstem or the spinal cord, and axon controlling effector organs, mainly muscles and glands; نوع خلية; az izmok mozgatásáért felelős idegegsejt; Cureyek ji demarexaneyan e, demareragihandin werdigire ji demarekoendama navend û digihîne xane an jî endamên armanc. Wekî mînak xaneyên masûlke an jî xaneyên rijên, xaneyên armanc in ji boy demarexaneyên livinê.; Neurona motora; Nervio locomotor; mozgató idegsejt; Motorni neuroni; neurona motriu; neurona motora; Motorisches Neuron; Motorneuron; نورون های حرکتی; 運動神經元; 运动神经元; Tractus corticospinalis; Кортикоспинални пут; Пирамидни пут; motonevron; 運動神経細胞; livînedemarexane; demarexaneya derkevtî; demarexaneya derçûn; motorisk nevron; motornevron; motonevron; neuron motorium; motoneuron; κινητικός νευρώνας; απαγωγός νευρώνας; عصب محرك; عصبون محرك; العصب الحركي; الأعصاب الحركية; عصب حركي; Motoneurony; Neuron motoryczny; Neuron ruchowy; Neurony motoryczne; Neurony ruchowe; neurone moteur; neurone efférent; Neurone motorio; Motoneuroni; 날신경세포, 운동뉴런; motoneuron; efferent neuron; motor neurons; Motoneŭrono; motorické neurony; двигательный нейрон</nowiki>
motor neuron 
neuron with cell body in the motor cortex, brainstem or the spinal cord, and axon controlling effector organs, mainly muscles and glands
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Instance of
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  • neuron
  • efferent neurons
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Wikidata Q1133903
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Subcategories

This category has the following 7 subcategories, out of 7 total.

J

  • Jaw motoneurons (4 F)

L

  • Lower motor neuron (2 F)

M

  • Motor neuron diseases (8 C, 4 F)

N

  • Neuromuscular junction (2 C, 31 F)

T

  • Tongue motoneurons (4 F)

U

  • Upper motor neuron (1 F)

V

  • Videos of motor neurons (6 F)

Media in category "Motor neurons"

The following 124 files are in this category, out of 124 total.

  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv001.ogv 31 s, 320 × 240; 1.53 MB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv003.ogv 20 s, 320 × 240; 1,024 KB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv004.ogv 1 min 46 s, 320 × 240; 4.91 MB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv005.ogv 39 s, 320 × 240; 1.7 MB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv006.ogv 1 min 5 s, 320 × 240; 3.67 MB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv007.ogv 9.9 s, 320 × 240; 161 KB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv008.ogv 1 min 4 s, 320 × 240; 3.52 MB
  • A-Novel-Molecular-Solution-for-Ultraviolet-Light-Detection-in-Caenorhabditis-elegans-pbio.0060198.sv009.ogv 34 s, 320 × 240; 2.51 MB
  • ALS Disease Pathology and Proposed Disease Mechanisms.jpg 1,052 × 1,280; 194 KB
  • An-Image-Free-Opto-Mechanical-System-for-Creating-Virtual-Environments-and-Imaging-Neuronal-pone.0024666.s003.ogv 31 s, 678 × 576; 3.28 MB
  • An-Image-Free-Opto-Mechanical-System-for-Creating-Virtual-Environments-and-Imaging-Neuronal-pone.0024666.s004.ogv 57 s, 725 × 612; 2.18 MB
  • An-Image-Free-Opto-Mechanical-System-for-Creating-Virtual-Environments-and-Imaging-Neuronal-pone.0024666.s005.ogv 59 s, 658 × 606; 2.65 MB
  • An-Image-Free-Opto-Mechanical-System-for-Creating-Virtual-Environments-and-Imaging-Neuronal-pone.0024666.s006.ogv 59 s, 550 × 560; 2.87 MB
  • An-Image-Free-Opto-Mechanical-System-for-Creating-Virtual-Environments-and-Imaging-Neuronal-pone.0024666.s007.ogv 43 s, 586 × 560; 1.98 MB
  • Anatomy and physiology of animals Motor neuron jp.png 661 × 353; 73 KB
  • Anatomy and physiology of animals Motor neuron.jpg 661 × 313; 31 KB
  • Anatomy and physiology of animals motor neuron.jpg 654 × 277; 23 KB
  • Anatomy and physiology unlabeled neuron.jpg 661 × 313; 23 KB
  • Cadherin-2-Is-Required-Cell-Autonomously-for-Collective-Migration-of-Facial-Branchiomotor-Neurons-pone.0164433.s004.ogv 0.5 s, 264 × 288; 46 KB
  • Cadherin-2-Is-Required-Cell-Autonomously-for-Collective-Migration-of-Facial-Branchiomotor-Neurons-pone.0164433.s005.ogv 0.6 s, 260 × 268; 26 KB
  • CAR-Associated-Vesicular-Transport-of-an-Adenovirus-in-Motor-Neuron-Axons-ppat.1000442.s005.ogv 13 s, 503 × 152; 64 KB
  • CAR-Associated-Vesicular-Transport-of-an-Adenovirus-in-Motor-Neuron-Axons-ppat.1000442.s006.ogv 19 s, 512 × 122; 794 KB
  • Ccdc80-l1-Is-Involved-in-Axon-Pathfinding-of-Zebrafish-Motoneurons-pone.0031851.s007.ogv 2.7 s, 720 × 576; 106 KB
  • Ccdc80-l1-Is-Involved-in-Axon-Pathfinding-of-Zebrafish-Motoneurons-pone.0031851.s008.ogv 5.0 s, 720 × 576; 242 KB
  • Coculture-of-Primary-Motor-Neurons-and-Schwann-Cells-as-a-Model-for-In-Vitro-Myelination-srep15122-s2.ogv 4.4 s, 292 × 288; 60 KB
  • Columna gris Motoneurona Cuerno Anter.jpg 362 × 459; 67 KB
  • Crmp4-deletion-promotes-recovery-from-spinal-cord-injury-by-neuroprotection-and-limited-scar-srep08269-s2.ogv 28 s, 640 × 360; 1.67 MB
  • DrPaulineNeveu 02 Jonction neuromusculaire.png 1,013 × 655; 149 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s001.ogv 5.8 s, 1,441 × 404; 570 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s002.ogv 6.8 s, 982 × 287; 209 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s003.ogv 5.9 s, 961 × 207; 134 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s004.ogv 18 s, 1,396 × 336; 678 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s005.ogv 18 s, 1,396 × 336; 923 KB
  • Extensive-Fusion-of-Mitochondria-in-Spinal-Cord-Motor-Neurons-pone.0038435.s006.ogv 18 s, 1,396 × 336; 1,021 KB
  • Fasudil-improves-survival-and-promotes-skeletal-muscle-development-in-a-mouse-model-of-spinal-1741-7015-10-24-S2.ogv 41 s, 640 × 360; 6.74 MB
  • Glial-Processes-at-the-Drosophila-Larval-Neuromuscular-Junction-Match-Synaptic-Growth-pone.0037876.s004.ogv 21 s, 528 × 528; 726 KB
  • High-efficiency-transfection-of-cultured-primary-motor-neurons-to-study-protein-localization-1750-1326-5-17-S1.ogv 19 s, 1,056 × 836; 3.65 MB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s2.ogv 40 s, 352 × 288; 796 KB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s3.ogv 40 s, 352 × 288; 1.15 MB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s4.ogv 30 s, 960 × 540; 3.47 MB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s5.ogv 26 s, 352 × 288; 943 KB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s6.ogv 1 min 16 s, 352 × 288; 1.3 MB
  • Highly-efficient-cell-type-specific-gene-inactivation-reveals-a-key-function-for-the-DrosophilaFUS-srep09107-s7.ogv 15 s, 352 × 288; 218 KB
  • Illustration of the motor neuron tract descending from primary motor cortex, via spinal cord, to skeletal muscle.jpg 8,000 × 4,500; 1.98 MB
  • Impaired-protein-translation-in-Drosophila-models-for-Charcot–Marie–Tooth-neuropathy-caused-by-ncomms8520-s2.ogv 11 s, 960 × 540; 1.42 MB
  • Impaired-protein-translation-in-Drosophila-models-for-Charcot–Marie–Tooth-neuropathy-caused-by-ncomms8520-s3.ogv 10 s, 960 × 540; 774 KB
  • Independent-Mobility-Achieved-through-a-Wireless-Brain-Machine-Interface-pone.0165773.s003.ogv 1 min 12 s, 960 × 540; 29.95 MB
  • Independent-Mobility-Achieved-through-a-Wireless-Brain-Machine-Interface-pone.0165773.s004.ogv 1 min 13 s, 960 × 540; 52.49 MB
  • Independent-Mobility-Achieved-through-a-Wireless-Brain-Machine-Interface-pone.0165773.s005.ogv 1 min 11 s, 960 × 540; 48.37 MB
  • Independent-Mobility-Achieved-through-a-Wireless-Brain-Machine-Interface-pone.0165773.s006.ogv 1 min 10 s, 960 × 540; 26.9 MB
  • Independent-Mobility-Achieved-through-a-Wireless-Brain-Machine-Interface-pone.0165773.s007.ogv 45 s, 960 × 540; 24.65 MB
  • Iron-Insufficiency-Compromises-Motor-Neurons-and-Their-Mitochondrial-Function-in-Irp2-Null-Mice-pone.0025404.s005.ogv 49 s, 704 × 288; 5.84 MB
  • Lipofuscin neuro.jpg 900 × 940; 217 KB
  • Modification-of-Superoxide-Dismutase-1-(SOD1)-Properties-by-a-GFP-Tag---Implications-for-Research-pone.0009541.s001.ogv 57 s, 320 × 240; 393 KB
  • Modulating-Behavior-in-C.-elegans-Using-Electroshock-and-Antiepileptic-Drugs-pone.0163786.s003.ogv 2 min 4 s, 640 × 480; 6.25 MB
  • Modulating-Behavior-in-C.-elegans-Using-Electroshock-and-Antiepileptic-Drugs-pone.0163786.s004.ogv 1 min 29 s, 640 × 480; 2.4 MB
  • Motoneuron.png 3,444 × 1,556; 477 KB
  • Motoneuron.svg 770 × 335; 146 KB
  • Motoneurona Asta anterior-ventral.png 257 × 258; 71 KB
  • Motor nerve cells with synopsis.jpg 2,333 × 2,312; 1.12 MB
  • Motor Neuron Before Post-Polio Syndrome.gif 766 × 834; 5.16 MB
  • Motor neurons 运动神经元1.JPG 1,280 × 720; 231 KB
  • Motor neurons 运动神经元2.JPG 1,280 × 720; 239 KB
  • Motor neurons 运动神经元3.JPG 1,280 × 720; 116 KB
  • Motor neurons 运动神经元4.JPG 1,280 × 720; 113 KB
  • Motor neurons 运动神经元5.JPG 1,280 × 720; 229 KB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s002.ogv 10 s, 640 × 480; 1.78 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s003.ogv 10 s, 640 × 480; 989 KB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s004.ogv 10 s, 640 × 480; 1.08 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s005.ogv 10 s, 640 × 480; 1.16 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s006.ogv 10 s, 640 × 480; 1.86 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s007.ogv 10 s, 640 × 480; 1.12 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s008.ogv 10 s, 640 × 480; 1.08 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s009.ogv 10 s, 640 × 480; 1.14 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s010.ogv 10 s, 640 × 480; 1.48 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s011.ogv 10 s, 640 × 480; 1.6 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s012.ogv 10 s, 640 × 480; 1.84 MB
  • Mutant-TDP-43-and-FUS-Cause-Age-Dependent-Paralysis-and-Neurodegeneration-in-C.-elegans-pone.0031321.s013.ogv 10 s, 640 × 480; 1.57 MB
  • Myosin-phosphatase-Fine-tunes-Zebrafish-Motoneuron-Position-during-Axonogenesis-pgen.1006440.s001.ogv 8.3 s, 138 × 198; 68 KB
  • Nervous Tissue Spinal Cord Motor Neuron (41850849392).jpg 3,264 × 1,840; 5.14 MB
  • Nervous Tissue Spinal Cord Motor Neuron (41850849652).jpg 3,264 × 1,840; 3.47 MB
  • Nervous Tissue Spinal Cord Motor Neuron (41850849912).jpg 3,264 × 1,840; 3.34 MB
  • Nervous Tissue Spinal Cord Motor Neuron (41850850452).jpg 3,264 × 1,840; 891 KB
  • Nervous Tissue Spinal Cord Motor Neuron (41850850692).jpg 3,264 × 1,840; 695 KB
  • Neuromuscular-regulation-in-zebrafish-by-a-large-AAA+-ATPaseubiquitin-ligase-mysterinRNF213-srep16161-s2.ogv 3.1 s, 640 × 480; 195 KB
  • Neuromuscular-regulation-in-zebrafish-by-a-large-AAA+-ATPaseubiquitin-ligase-mysterinRNF213-srep16161-s3.ogv 6.5 s, 640 × 480; 330 KB
  • Neuromuscular-regulation-in-zebrafish-by-a-large-AAA+-ATPaseubiquitin-ligase-mysterinRNF213-srep16161-s4.ogv 10 s, 640 × 480; 574 KB
  • Neurona motora A B G.jpg 845 × 302; 85 KB
  • Neurona Motora A Prolongac.png 205 × 172; 63 KB
  • Neurona motora cervical.jpg 439 × 592; 74 KB
  • Neurona motora G A.jpg 476 × 251; 63 KB
  • Neurona Motora Ultra.jpg 483 × 438; 105 KB
  • Neurona Motora Ultras Nucleo.jpg 487 × 429; 109 KB
  • Neuronas Motoras A-G.png 455 × 305; 147 KB
  • Neuronas Motoras.jpg 311 × 311; 74 KB
  • Nonmuscle-Myosin-II-helps-regulate-synaptic-vesicle-mobility-at-the-Drosophila-neuromuscular-1471-2202-11-37-S1.ogv 8.6 s, 248 × 332; 989 KB
  • Parkinson's-Disease–Associated-Kinase-PINK1-Regulates-Miro-Protein-Level-and-Axonal-Transport-of-pgen.1002537.s003.ogv 38 s, 1,024 × 111; 3.73 MB
  • Parkinson's-Disease–Associated-Kinase-PINK1-Regulates-Miro-Protein-Level-and-Axonal-Transport-of-pgen.1002537.s007.ogv 38 s, 1,023 × 155; 2.19 MB
  • Parkinson's-Disease–Associated-Kinase-PINK1-Regulates-Miro-Protein-Level-and-Axonal-Transport-of-pgen.1002537.s008.ogv 38 s, 1,024 × 125; 3.83 MB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s010.ogv 5.8 s, 300 × 298; 79 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s011.ogv 10 s, 300 × 298; 252 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s012.ogv 7.5 s, 300 × 300; 299 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s013.ogv 7.5 s, 300 × 300; 57 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s014.ogv 7.5 s, 300 × 300; 99 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s015.ogv 7.3 s, 300 × 300; 267 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s016.ogv 7.5 s, 300 × 302; 213 KB
  • PCP-Signaling-between-Migrating-Neurons-and-their-Planar-Polarized-Neuroepithelial-Environment-pgen.1005934.s017.ogv 7.3 s, 300 × 300; 166 KB
  • PSM V71 D119 Motor nerve cells of various mammals.png 1,515 × 1,871; 126 KB
  • Rabies-Internalizes-into-Primary-Peripheral-Neurons-via-Clathrin-Coated-Pits-and-Requires-Fusion-at-ppat.1005753.s002.ogv 36 s, 280 × 1,250; 6.91 MB
  • Rabies-Internalizes-into-Primary-Peripheral-Neurons-via-Clathrin-Coated-Pits-and-Requires-Fusion-at-ppat.1005753.s003.ogv 36 s, 100 × 1,260; 1.82 MB
  • Rabies-Internalizes-into-Primary-Peripheral-Neurons-via-Clathrin-Coated-Pits-and-Requires-Fusion-at-ppat.1005753.s004.ogv 10 s, 450 × 750; 1.46 MB
  • TDP-43-Mediated-Neuron-Loss-In-Vivo-Requires-RNA-Binding-Activity-pone.0012247.s005.ogv 30 s, 352 × 288; 1.34 MB
  • The-neuroepithelial-basement-membrane-serves-as-a-boundary-and-a-substrate-for-neuron-migration-in-1749-8104-5-9-S1.ogv 8.8 s, 1,080 × 720; 1.25 MB
  • The-neuroepithelial-basement-membrane-serves-as-a-boundary-and-a-substrate-for-neuron-migration-in-1749-8104-5-9-S2.ogv 17 s, 1,080 × 720; 1.85 MB
  • The-neuroepithelial-basement-membrane-serves-as-a-boundary-and-a-substrate-for-neuron-migration-in-1749-8104-5-9-S3.ogv 10 s, 1,080 × 720; 569 KB
  • The-neuroepithelial-basement-membrane-serves-as-a-boundary-and-a-substrate-for-neuron-migration-in-1749-8104-5-9-S4.ogv 6.5 s, 1,081 × 720; 304 KB
  • The-neuroepithelial-basement-membrane-serves-as-a-boundary-and-a-substrate-for-neuron-migration-in-1749-8104-5-9-S5.ogv 5.5 s, 1,080 × 720; 554 KB
  • The-Transcriptional-Activator-Krüppel-like-Factor-6-Is-Required-for-CNS-Myelination-pbio.1002467.s015.ogv 30 s, 720 × 480; 25.03 MB
  • Transformation-of-Context-dependent-Sensory-Dynamics-into-Motor-Behavior-pcbi.1002908.s001.ogv 54 s, 720 × 480; 3.74 MB
  • Transformation-of-Context-dependent-Sensory-Dynamics-into-Motor-Behavior-pcbi.1002908.s002.ogv 38 s, 720 × 480; 7.43 MB
  • Transient-Suppression-of-Dbx1-PreBötzinger-Interneurons-Disrupts-Breathing-in-Adult-Mice-pone.0162418.s001.ogv 18 s, 478 × 358; 162 KB
  • Transient-Suppression-of-Dbx1-PreBötzinger-Interneurons-Disrupts-Breathing-in-Adult-Mice-pone.0162418.s002.ogv 21 s, 478 × 358; 249 KB
  • Unlike-Physical-Exercise-Modified-Environment-Increases-the-Lifespan-of-SOD1G93A-Mice-However-Both-pone.0045503.s001.ogv 1 min 30 s, 320 × 240; 2.64 MB
  • Upper and lower motor neuron.gif 827 × 1,434; 216 KB
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