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Motor unit rate coding is severely impaired during forceful and fast muscular contractions in individuals post stroke
Li Wei Chou
, Jacqueline A. Palmer, Stuart Binder-Macleod, Christopher A. Knight
物理治療暨輔助科技學系
研究成果
:
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同行評審
56
引文 斯高帕斯(Scopus)
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深入研究「Motor unit rate coding is severely impaired during forceful and fast muscular contractions in individuals post stroke」主題。共同形成了獨特的指紋。
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Keyphrases
Action Surface
25%
Ankle Dorsiflexion
25%
Coding Mechanism
25%
Constant Force
25%
Contraction Rate
25%
Discharge Rate
25%
Electromyogram
50%
Force Production Task
25%
Interspike Interval
25%
Linear Regression
25%
Maximal Voluntary Contraction
50%
Motor Unit
100%
Motor Unit Action Potential
25%
Movement Slowness
25%
Muscle Activity
25%
Muscle Weakness
25%
Muscular Contraction
100%
Neuromuscular Function
25%
Paretic Limb
75%
Post-stroke
100%
Rapid muscle Contraction
25%
Rate Coding
100%
Rate of Force Development
25%
Rehabilitation Strategies
50%
Surface Electromyography (sEMG)
25%
Tibialis Anterior
25%
Medicine and Dentistry
Apoplexy
100%
Electromyography
25%
Force Constant
25%
Isometrics
25%
Limb
75%
Linear Regression Analysis
25%
Motor Unit
100%
Motor Unit Potential
25%
Muscle Contraction
100%
Muscle Weakness
25%
Rehabilitation Engineering
50%
Slowness
25%
Nursing and Health Professions
Electromyogram
100%
Electromyography
50%
Isometrics
50%
Linear Regression Analysis
50%
Motor Unit Potential
50%
Muscle Weakness
50%
Rehabilitation Engineering
100%
Neuroscience
Action Potential
20%
Electromyography
20%
Motor Unit
100%
Neuromuscular
20%