Motoneuronal and muscle synergies involved in cat hindlimb control during fictive and real locomotion: a comparison study
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Organization of the Mammalian Locomotor CPG: Review of Computational Model and Circuit Architectures Based on Genetically Identified Spinal Interneurons(1,2,3)Central control of interlimb coordination and speed-dependent gait expression in quadrupedsDegradation of mouse locomotor pattern in the absence of proprioceptive sensory feedback.Hip proprioceptors preferentially modulate reflexes of the leg in human spinal cord injury.Motor adaptation to prosthetic cycling in people with trans-tibial amputation.Body stability and muscle and motor cortex activity during walking with wide stance.Task-dependent inhibition of slow-twitch soleus and excitation of fast-twitch gastrocnemius do not require high movement speed and velocity-dependent sensory feedbackThree-dimensional ankle moments and nonlinear summation of rat triceps surae musclesPyramidal tract neurons receptive to different forelimb joints act differently during locomotionComparison of muscle synergies for running between different foot strike patternsAccurate stepping on a narrow path: mechanics, EMG, and motor cortex activity in the cat.A combination therapy of neural and glial restricted precursor cells and chronic quipazine treatment paired with passive cycling promotes quipazine-induced stepping in adult spinalized rats.Modular organization of the multipartite central pattern generator for turtle rostral scratch: knee-related interneurons during deletions.Joint-specific changes in locomotor complexity in the absence of muscle atrophy following incomplete spinal cord injury.Distinguishing synchronous and time-varying synergies using point process interval statistics: motor primitives in frog and rat.Synergistic Co-activation Increases the Extent of Mechanical Interaction between Rat Ankle Plantar-Flexors.The flexion synergy, mother of all synergies and father of new models of gait.Motor cortical regulation of sparse synergies provides a framework for the flexible control of precision walkingTask constraints and minimization of muscle effort result in a small number of muscle synergies during gait.Synergy temporal sequences and topography in the spinal cord: evidence for a traveling wave in frog locomotion.Distributed force feedback in the spinal cord and the regulation of limb mechanics.Modeling the Organization of Spinal Cord Neural Circuits Controlling Two-Joint Muscles
P2860
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P2860
Motoneuronal and muscle synergies involved in cat hindlimb control during fictive and real locomotion: a comparison study
description
2011 nî lūn-bûn
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2011年の論文
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2011年論文
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2011年論文
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2011年論文
@zh-hk
2011年論文
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2011年論文
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2011年论文
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name
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@ast
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@en
type
label
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@ast
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@en
prefLabel
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@ast
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@en
P2093
P2860
P356
P1476
Motoneuronal and muscle synerg ...... locomotion: a comparison study
@en
P2093
Boris I Prilutsky
Ilya A Rybak
Michel A Lemay
Sergey N Markin
P2860
P304
P356
10.1152/JN.00865.2011
P407
P577
2011-12-21T00:00:00Z