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人类腕伸肌中的突触前抑制:运动任务和皮肤传入活动的影响。

Ia presynaptic inhibition in human wrist extensor muscles: effects of motor task and cutaneous afferent activity.

作者信息

Aimonetti J M, Schmied A, Vedel J P, Pagni S

机构信息

Laboratoire de Physiologie et Physiopathologie Neuromusculaire Humaine, CNRS-NBM, Marseille, France.

出版信息

J Physiol Paris. 1999 Sep-Oct;93(4):395-401. doi: 10.1016/s0928-4257(00)80067-4.

Abstract

The task-dependence of the presynaptic inhibition of the muscle spindle primary afferents in human forearm muscles was studied, focusing in particular on the modulation associated with the co-contraction of antagonist muscles and the activation of cutaneous afferents. The changes known to affect the motoneuron proprioceptive assistance during antagonist muscle co-activation in human leg and arm muscles were compared. The evidence available so far that these changes might reflect changes in the presynaptic inhibition of the muscle spindle afferent is briefly reviewed. The possible reasons for changes in presynaptic inhibition during the antagonist muscle co-contraction are discussed. Some new experiments on the wrist extensor muscles are briefly described. The results showed that the changes in the Ia presynaptic inhibition occurring during the co-contraction of the wrist flexor and extensor muscles while the hand cutaneous receptors were being activated (the subject's hand was clenched around a manipulandum) could be mimicked by contracting the wrist extensor muscles alone while applying extraneous stimulation to the hand cutaneous receptors. It is concluded that besides the possible contribution of inputs generated by the co-contraction of antagonist muscles and by supraspinal pathways, cutaneous inputs may play a major role in modulating the proprioceptive assistance during manipulatory movements.

摘要

研究了人类前臂肌肉中肌梭初级传入纤维突触前抑制的任务依赖性,尤其关注与拮抗肌共同收缩及皮肤传入纤维激活相关的调节作用。比较了已知影响人类腿部和手臂肌肉拮抗肌共同激活期间运动神经元本体感受辅助的变化。简要回顾了目前已有的证据,这些变化可能反映了肌梭传入纤维突触前抑制的变化。讨论了拮抗肌共同收缩期间突触前抑制变化的可能原因。简要描述了一些针对腕伸肌的新实验。结果表明,当手部皮肤感受器被激活时(受试者的手紧握在一个操作手柄上),腕屈肌和伸肌共同收缩期间发生的Ia类突触前抑制变化,可通过单独收缩腕伸肌并对手部皮肤感受器施加外部刺激来模拟。得出的结论是,除了拮抗肌共同收缩和脊髓上通路产生的输入可能起到的作用外,皮肤输入在调节操作运动期间的本体感受辅助方面可能起主要作用。

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