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与单独手指收缩相比,在精确抓握期间运动皮质网络兴奋性的任务依赖性变化。

Task-dependent changes of motor cortical network excitability during precision grip compared to isolated finger contraction.

机构信息

Université Paris 5 René Descartes, Institut de Psychologie, Boulogne-Billancourt, France.

出版信息

J Neurophysiol. 2012 Mar;107(5):1522-9. doi: 10.1152/jn.00786.2011. Epub 2011 Dec 7.

Abstract

The purpose of this study was to determine whether task-dependent differences in corticospinal pathway excitability occur in going from isolated contractions of the index finger to its coordinated activity with the thumb. Focal transcranial magnetic stimulation (TMS) was used to measure input-output (I/O) curves--a measure of corticospinal pathway excitability--of the contralateral first dorsal interosseus (FDI) muscle in 21 healthy subjects performing two isometric motor tasks: index abduction and precision grip. The level of FDI electromyographic (EMG) activity was kept constant across tasks. The amplitude of the FDI motor evoked potentials (MEPs) and the duration of FDI silent period (SP) were plotted against TMS stimulus intensity and fitted, respectively, to a Boltzmann sigmoidal function. The plateau level of the FDI MEP amplitude I/O curve increased by an average of 40% during the precision grip compared with index abduction. Likewise, the steepness of the curve, as measured by the value of the maximum slope, increased by nearly 70%. By contrast, all I/O curve parameters [plateau, stimulus intensity required to obtain 50% of maximum response (S(50)), and slope] of SP duration were similar between the two tasks. Short- and long-latency intracortical inhibitions (SICI and LICI, respectively) were also measured in each task. Both measures of inhibition decreased during precision grip compared with the isolated contraction. The results demonstrate that the motor cortical circuits controlling index and thumb muscles become functionally coupled when the muscles are used synergistically and this may be due, at least in part, to a decrease of intracortical inhibition and an increase of recurrent excitation.

摘要

本研究旨在确定在从单独收缩食指到与拇指协调活动的过程中,皮质脊髓通路兴奋性是否存在任务依赖性差异。使用聚焦经颅磁刺激(TMS)测量 21 名健康受试者在执行两个等长运动任务(食指外展和精确握持)时对侧第一背侧骨间肌(FDI)的输入-输出(I/O)曲线 - 皮质脊髓通路兴奋性的一种测量方法。在整个任务中保持 FDI 肌电图(EMG)活动水平不变。FDI 运动诱发电位(MEP)的幅度和 FDI 静息期(SP)的持续时间分别与 TMS 刺激强度作图,并分别拟合为 Boltzmann 型函数。与食指外展相比,精确握持时 FDI MEP 幅度 I/O 曲线的平台水平平均增加了 40%。同样,曲线的陡峭程度(由最大斜率值衡量)增加了近 70%。相比之下,SP 持续时间的所有 I/O 曲线参数[平台、获得最大反应 50%所需的刺激强度(S(50))和斜率]在两项任务中均相似。在每个任务中还测量了短潜伏期和长潜伏期皮质内抑制(分别为 SICI 和 LICI)。与单独收缩相比,这两种抑制措施在精确握持时均降低。研究结果表明,当肌肉协同运动时,控制食指和拇指肌肉的运动皮质回路会在功能上耦合,这至少部分归因于皮质内抑制的降低和回返兴奋的增加。

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