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Impairment of muscle force transmission in spastic-paretic muscles of stroke survivors

机译:中风幸存者痉挛性瘫痪肌肉传递的损害

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Hemispheric stroke survivors tend to have persistent motor impairments, with muscle weakness and muscle spasticity observed concurrently in the affected muscles. The objective of this preliminary study was to identify whether impairment of muscle force transmission could contribute to weakness in spastic-paretic muscles of chronic stroke survivors. To characterize the efficiency of the transmission of muscle forces to the tendon, we activated biceps brachii muscle electrically by stimulating the musculocutaneous nerve with maximum current. The ratio between the elicited maximum twitch force amplitude and the maximum M-wave peak-peak amplitude was calculated as a measure of the efficiency of force transmission. Based on the preliminary results of two stroke survivors, we show that the Force/M-wave ratio was reduced in the affected biceps brachii muscles in comparison with the contralateral muscles, indicating a potential impairment in the muscle force transmission in the affected muscles. Our findings suggest that disrupted muscle force transmission to the tendon could contribute to weakness in spastic muscles of chronic stroke survivors.
机译:半球中风幸存者往往具有持久的电机损伤,肌肉弱点和肌肉痉挛在受影响的肌肉中同时观察。初步研究的目的是鉴定肌肉力传递的损伤是否有助于慢性中风幸存者的痉挛性瘫痪肌肉的弱点。为了表征肌肉力传递到肌腱的效率,我们通过刺激最大电流刺激肌肉皮神经而电动激活二头肌肌肉。以力传输效率的量度计算引发最大抽搐力幅度和最大M波峰峰值幅度之间的比率。基于两种中风幸存者的初步结果,我们表明,与对侧肌肉相比,受影响的二头肌肌肉中的力/ m波比在受影响的肌肉中肌肉力传递的潜在损伤降低。我们的研究结果表明,破坏肌肉肌力传播对肌腱可能有助于慢性中风幸存者的痉挛性肌肉的虚弱。

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