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直接皮质脊髓束通路有助于对姿势受扰时的神经肌肉控制。

Direct corticospinal pathways contribute to neuromuscular control of perturbed stance.

作者信息

Taube Wolfgang, Schubert Martin, Gruber Markus, Beck Sandra, Faist Michael, Gollhofer Albert

机构信息

Univ. of Freiburg, Dept. of Sport Science, Schwarzwaldstr. 175, 79117 Freiburg i.Br., Germany.

出版信息

J Appl Physiol (1985). 2006 Aug;101(2):420-9. doi: 10.1152/japplphysiol.01447.2005. Epub 2006 Apr 6.

Abstract

The antigravity soleus muscle (Sol) is crucial for compensation of stance perturbation. A corticospinal contribution to the compensatory response of the Sol is under debate. The present study assessed spinal, corticospinal, and cortical excitability at the peaks of short- (SLR), medium- (MLR), and long-latency responses (LLR) after posterior translation of the feet. Transcranial magnetic stimulation (TMS) and peripheral nerve stimulation were individually adjusted so that the peaks of either motor evoked potential (MEP) or H reflex coincided with peaks of SLR, MLR, and LLR, respectively. The influence of specific, presumably direct, corticospinal pathways was investigated by H-reflex conditioning. When TMS was triggered so that the MEP arrived in the Sol at the same time as the peaks of SLR and MLR, EMG remained unaffected. Enhanced EMG was observed when the MEP coincided with the LLR peak (P < 0.001). Similarly, conditioning of the H reflex by subthreshold TMS facilitated H reflexes only at LLR (P < 0.001). The earliest facilitation after perturbation occurred after 86 ms. The TMS-induced H-reflex facilitation at LLR suggests that increased cortical excitability contributes to the augmentation of the LLR peaks. This provides evidence that the LLR in the Sol muscle is at least partly transcortical, involving direct corticospinal pathways. Additionally, these results demonstrate that approximately 86 ms after perturbation, postural compensatory responses are cortically mediated.

摘要

抗重力比目鱼肌(Sol)对于补偿姿势扰动至关重要。皮质脊髓束对比目鱼肌补偿反应的作用仍存在争议。本研究评估了足部向后平移后短潜伏期反应(SLR)、中潜伏期反应(MLR)和长潜伏期反应(LLR)峰值时的脊髓、皮质脊髓束和皮质兴奋性。分别调整经颅磁刺激(TMS)和外周神经刺激,使运动诱发电位(MEP)或H反射的峰值分别与SLR、MLR和LLR的峰值重合。通过H反射条件化研究了特定的、可能是直接的皮质脊髓束通路的影响。当触发TMS使MEP与SLR和MLR的峰值同时到达比目鱼肌时,肌电图(EMG)未受影响。当MEP与LLR峰值重合时,观察到EMG增强(P < 0.001)。同样,阈下TMS对H反射的条件化仅在LLR时促进H反射(P < 0.001)。扰动后最早的促进作用发生在86毫秒后。TMS在LLR时诱导的H反射促进作用表明,皮质兴奋性增加有助于LLR峰值的增强。这提供了证据表明比目鱼肌中的LLR至少部分是经皮质的,涉及直接的皮质脊髓束通路。此外,这些结果表明,在扰动后约86毫秒,姿势补偿反应是由皮质介导的。

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