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重复经颅磁刺激作用于左右背外侧运动前区皮质对任一手运动时间的影响。

The effect of rTMS over left and right dorsolateral premotor cortex on movement timing of either hand.

作者信息

Pollok Bettina, Rothkegel Holger, Schnitzler Alfons, Paulus Walter, Lang Nicolas

机构信息

Department of Neurology, Heinrich-Heine University, Duesseldorf, Germany.

出版信息

Eur J Neurosci. 2008 Feb;27(3):757-64. doi: 10.1111/j.1460-9568.2008.06044.x.

Abstract

It has been suggested that the left dorsolateral premotor cortex (dPMC) controls timing abilities of either hand. To further clarify its functional significance for movement timing, low-frequency repetitive transcranial magnetic stimulation (rTMS) was applied over the left and right dPMC, respectively, while subjects performed an auditorily paced finger-tapping task with each hand. rTMS over the left dPMC decreased tapping accuracy of both hands, whereas no behavioural effects occurred following right dPMC stimulation. To elucidate the time window in which left dPMC TMS disturbs synchronization abilities, pairs of TMS pulses were applied over the left dPMC and the left anterior parietal cortex serving as control condition. TMS pulses were applied randomly at 40 ms, 80 ms, 120 ms, 160 ms, 200 ms and 240 ms before pacer onset, as taps precede the pacing signal for about 20-60 ms. Again, the analysis revealed that TMS over the left dPMC disturbed synchronization abilities of either hand; however, this effect was shown at different times suggesting that the left dPMC affects the right M1 via at least one additional relay station. The present data support the hypothesis that the left dPMC is crucial for accurate timing of either hand. Additionally, they reveal a piece of evidence that the left dPMC affects the left hand not via a direct left dPMC-right M1 connection.

摘要

有人提出,左侧背外侧运动前皮质(dPMC)控制两只手的计时能力。为了进一步阐明其对运动计时的功能意义,在受试者用每只手执行听觉节奏手指敲击任务时,分别对左侧和右侧dPMC施加低频重复经颅磁刺激(rTMS)。对左侧dPMC进行rTMS会降低两只手的敲击准确性,而对右侧dPMC进行刺激后未出现行为效应。为了阐明左侧dPMC经颅磁刺激干扰同步能力的时间窗口,在左侧dPMC和作为对照条件的左侧顶叶前部皮质上施加成对的经颅磁刺激脉冲。经颅磁刺激脉冲在节拍器开始前40毫秒、80毫秒、120毫秒、160毫秒、200毫秒和240毫秒随机施加,因为敲击比节拍信号提前约20 - 60毫秒。同样,分析表明,对左侧dPMC进行经颅磁刺激会干扰两只手的同步能力;然而,这种效应在不同时间出现,表明左侧dPMC至少通过一个额外的中继站影响右侧M1。目前的数据支持这样的假设,即左侧dPMC对两只手的准确计时至关重要。此外,它们揭示了一条证据,即左侧dPMC不是通过直接的左侧dPMC - 右侧M1连接来影响左手的。

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