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下落跳过程中脊髓和皮质脊髓兴奋性的差异调节。

Differential modulation of spinal and corticospinal excitability during drop jumps.

作者信息

Taube Wolfgang, Leukel Christian, Schubert Martin, Gruber Markus, Rantalainen Timo, Gollhofer Albert

机构信息

Department of Sport Science, University of Freiburg, Schwarzwaldstrasse 175, 79117 Freiburg i.Br., Germany.

出版信息

J Neurophysiol. 2008 Mar;99(3):1243-52. doi: 10.1152/jn.01118.2007. Epub 2008 Jan 16.

Abstract

Previously it was shown that spinal excitability during hopping and drop jumping is high in the initial phase of ground contact when the muscle is stretched but decreases toward takeoff. To further understand motor control of stretch-shortening cycle, this study aimed to compare modulation of spinal and corticospinal excitability at distinct phases following ground contact in drop jump. Motor-evoked potentials (MEPs) induced by transcranial magnetic stimulation (TMS) and H-reflexes were elicited at the time of the short (SLR)-, medium (MLR)-, and long (LLR, LLR(2))-latency responses of the soleus muscle (SOL) after jumps from 31 cm height. MEPs and H-reflexes were expressed relative to the background electromyographic (EMG) activity. H-reflexes were highly facilitated at SLR (172%) and then progressively decreased (MLR = 133%; LLR = 123%; LLR(2) = 110%). TMS showed no effect at SLR, MLR, and LLR, whereas MEPs were significantly facilitated at the LLR(2) (122%; P = 0.003). Background EMG was highest at LLR and lowest at LLR(2). Strong H-reflex facilitation at the beginning of the stance phase indicated significant contribution of Iotaa-afferent input to the alpha-motoneurons during this phase that then progressively declined toward takeoff. Conversely, corticospinal excitability was exclusively increased at the phase of push off (LLR(2), approximately 120 ms). It is argued that corticomotoneurons increased their excitability at LLR(2). At LLR ( approximately 90 ms), Iotaa-afferent transmission as well as corticospinal excitability was low, whereas background EMG was high. Therefore it is speculated that other sources, presumably subcortical in origin, contributed to the EMG activity at LLR in drop jumps.

摘要

先前的研究表明,在单脚跳和跳深过程中,当肌肉伸展时,在与地面接触的初始阶段脊髓兴奋性较高,但在起跳时会降低。为了进一步了解拉长缩短周期的运动控制,本研究旨在比较跳深过程中与地面接触后不同阶段脊髓和皮质脊髓兴奋性的调节情况。在从31厘米高度跳下后,在比目鱼肌(SOL)的短潜伏期反应(SLR)、中潜伏期反应(MLR)和长潜伏期反应(LLR、LLR(2))时,通过经颅磁刺激(TMS)诱发运动诱发电位(MEP)并引出Hoffmann反射(H反射)。MEP和H反射相对于背景肌电图(EMG)活动进行表达。H反射在SLR时高度易化(172%),然后逐渐降低(MLR = 133%;LLR = 123%;LLR(2) = 110%)。TMS在SLR、MLR和LLR时无影响,而MEP在LLR(2)时显著易化(122%;P = 0.003)。背景EMG在LLR时最高,在LLR(2)时最低。站立期开始时强烈的H反射易化表明在此阶段Ia类传入输入对α运动神经元有显著贡献,然后在起跳时逐渐下降。相反,皮质脊髓兴奋性仅在蹬离阶段(LLR(2),约120毫秒)增加。有人认为皮质运动神经元在LLR(2)时增加了其兴奋性。在LLR(约90毫秒)时,Ia类传入传导以及皮质脊髓兴奋性较低,而背景EMG较高。因此推测,在跳深的LLR时,其他来源(可能起源于皮层下)对EMG活动有贡献。

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