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刺激初级运动皮层后经颅磁刺激诱发的两种运动变异性类型。

Two types of TMS-induced movement variability after stimulation of the primary motor cortex.

作者信息

Verstynen Timothy, Konkle Talia, Ivry Richard B

机构信息

Department of Psychology, University of California, Berkeley, CA 94720, USA.

出版信息

J Neurophysiol. 2006 Sep;96(3):1018-29. doi: 10.1152/jn.01358.2005. Epub 2006 May 3.

Abstract

Using transcranial magnetic stimulation, we studied the role of the primary motor cortex (M1) in repetitive movements, examining whether the functional contribution of this region is associated with controlling response timing, response implementation, or both. In two experiments, participants performed a rhythmic tapping task, attempting to produce isochronous intervals (range of 350-550 ms) while stimulation was applied over M1 or a control site. M1 stimulation was associated with increased variability of the inter-tap intervals (ITI), and, by manipulating stimulation intensity, we identified two distinct changes in performance: a generalized increase in ITI variability and a delay in the subsequent response when the pulse fell within a restricted window prior to movement onset. Using a series of simulations, we demonstrate that the general increase in variability and the temporally specific delay reflect disruption of response implementation processes rather than an increase in noise associated with response timing.

摘要

我们使用经颅磁刺激技术研究了初级运动皮层(M1)在重复运动中的作用,探究该区域的功能贡献是否与控制反应时机、反应执行或两者都有关。在两个实验中,参与者执行一项有节奏的敲击任务,在对M1或一个对照部位施加刺激的同时,尝试产生等时的间隔(范围为350 - 550毫秒)。M1刺激与敲击间隔(ITI)的变异性增加有关,并且通过操纵刺激强度,我们确定了表现上的两种不同变化:ITI变异性普遍增加,以及当脉冲落在运动开始前的一个受限窗口内时,后续反应出现延迟。通过一系列模拟,我们证明变异性的普遍增加和时间上特定的延迟反映了反应执行过程的中断,而不是与反应时机相关的噪声增加。

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