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绘制运动前区到运动区连接的兴奋性,同时抑制或启动选定的运动。

Charting the excitability of premotor to motor connections while withholding or initiating a selected movement.

机构信息

Department of Neurology, University Medical Center Hamburg Eppendorf, Hamburg, Germany.

出版信息

Eur J Neurosci. 2010 Nov;32(10):1771-9. doi: 10.1111/j.1460-9568.2010.07442.x. Epub 2010 Nov 9.

DOI:10.1111/j.1460-9568.2010.07442.x
PMID:21059111
Abstract

In 19 healthy volunteers, we used transcranial magnetic stimulation (TMS) to probe the excitability in pathways linking the left dorsal premotor cortex and right primary motor cortex and those linking the left and right motor cortex during the response delay and the reaction time period while subjects performed a delayed response [symbol 1 (S1) - symbol 2 (S2)] Go-NoGo reaction time task with visual cues. Conditioning TMS pulses were applied to the left premotor or left motor cortex 8 ms before a test pulse was given to the right motor cortex at 300 or 1800 ms after S1 or 150 ms after S2. S1 coded for right-hand or left-hand movement, and S2 for release or stopping the prepared movement. Conditioning of the left premotor cortex led to interhemispheric inhibition at 300 ms post-S1, interhemispheric facilitation at 150 ms post-S2, and shorter reaction times in the move-left condition. Conditioning of the left motor cortex led to inhibition at 1800 ms post-S1 and 150 ms post-S2, and slower reaction times for move-right conditions, and inhibition at 300 and 1800 ms post-S1 for move-left conditions. Relative motor evoked potential amplitudes following premotor conditioning at 150 ms post-S2 were significantly smaller in 'NoGo' than in 'Go' trials for move-left instructions. We conclude that the excitability in left premotor/motor right motor pathways is context-dependent and affects motor behaviour. Thus, the left premotor cortex is engaged not only in action selection but also in withholding and releasing a preselected movement generated by the right motor cortex.

摘要

在 19 名健康志愿者中,我们使用经颅磁刺激(TMS)来探测在进行视觉线索引导的延迟反应[符号 1(S1)-符号 2(S2)]Go-NoGo 反应时任务时,连接左侧背侧运动前皮质和右侧初级运动皮质的通路以及连接左侧和右侧运动皮质的通路的兴奋性。在 S1 后 300 毫秒或 150 毫秒或 S2 后 1800 毫秒给予测试脉冲之前,将条件性 TMS 脉冲施加于左侧运动前皮质或左侧运动皮质。S1 编码右手或左手运动,S2 编码释放或停止准备运动。左侧运动前皮质的条件刺激在 S1 后 300 毫秒导致了双侧半球抑制,在 S2 后 150 毫秒导致了双侧半球易化,并且在左手运动条件下反应时间更短。左侧运动皮质的条件刺激在 S1 后 1800 毫秒和 S2 后 150 毫秒导致了抑制,右手运动条件下的反应时间更慢,而在 S1 后 300 毫秒和 1800 毫秒时左手运动条件下也存在抑制。在 S2 后 150 毫秒时,在运动前皮质条件刺激后,相对于运动诱发电位振幅,左运动前皮质条件刺激后“无 Go”试验的运动诱发电位振幅明显小于“Go”试验。我们得出结论,左侧运动前皮质/运动皮质右侧运动皮质通路的兴奋性是上下文相关的,并影响运动行为。因此,左侧运动前皮质不仅参与动作选择,而且还参与抑制和释放由右侧运动皮质产生的预选运动。

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