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在人类拇指屈肌的运动调制伸展反应中,皮质兴奋性并未降低。

Cortical excitability is not depressed in movement-modulated stretch response of human thumb flexor.

作者信息

Wallace C J, Miles T S

机构信息

Department of Physiology, Adelaide University, SA, Australia.

出版信息

Exp Brain Res. 2001 Aug;139(4):448-53. doi: 10.1007/s002210100803.

Abstract

There is strong evidence that the predominant pathway of the long-latency stretch reflex for flexor pollicis longus crosses the motor cortex. This reflex response is diminished during active thumb movements. We tested the hypothesis that this could be due to a decrease in the excitability of the transcortical component during movement. During isometric, concentric and eccentric thumb movements, transcranial magnetic stimulation (TMS) of the motor cortex was given at a time when the reflex signal was traversing the motor cortex. TMS was also given earlier in separate runs when the signal was traversing the spinal cord under each of the three contractile conditions. The electromyogram was analysed for non-linear summation between stretch responses and the potential evoked by the cortical stimulus. The response to TMS alone was uniform across the three types of contraction, and the lack of cortical involvement in the short-latency reflex was confirmed. The TMS-evoked response summed in a non-linear manner with the long-latency reflex response, confirming that the excitability of the motor cortex was increased as the reflex signal passed through it. The long-latency response was markedly depressed during isotonic compared with isometric contractions. However, the non-linear summation was not greater during the isometric contractions. Thus, the depressed reflex responses during isotonic movements do not stem from reduced motor cortical responsiveness or afferent input to the transcortical pathway, and may instead reflect modulation of cutaneous reflexes during isotonic contractions.

摘要

有强有力的证据表明,拇长屈肌长潜伏期牵张反射的主要通路穿过运动皮层。在拇指主动运动期间,这种反射反应会减弱。我们测试了这样一种假设,即这可能是由于运动过程中跨皮层成分的兴奋性降低所致。在等长、向心和离心拇指运动期间,当反射信号穿过运动皮层时,对运动皮层进行经颅磁刺激(TMS)。在单独的实验中,当信号在三种收缩条件下分别穿过脊髓时,也提前进行TMS。分析肌电图中牵张反应与皮层刺激诱发电位之间的非线性总和。在三种收缩类型中,单独对TMS的反应是一致的,并且证实了短潜伏期反射中不存在皮层参与。TMS诱发的反应与长潜伏期反射反应以非线性方式总和,证实随着反射信号通过运动皮层,其兴奋性增加。与等长收缩相比,等张收缩期间长潜伏期反应明显受到抑制。然而,等长收缩期间的非线性总和并不更大。因此,等张运动期间反射反应的抑制并非源于运动皮层反应性降低或跨皮层通路的传入输入减少,而可能反映了等张收缩期间皮肤反射的调制。

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