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感觉运动相互作用之前的慢皮层电位变化。

Slow cortical potential shifts preceding sensorimotor interactions.

作者信息

Babiloni Claudio, Brancucci Alfredo, Capotosto Paolo, Romani Gian Luca, Arendt-Nielsen Lars, Chen Andrew C N, Rossini Paolo Maria

机构信息

Dipartimento di Fisiologia Umana e Farmacologia, Sezione di EEG ad Alta Risoluzione, Università degli Studi di Roma La Sapienza, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Brain Res Bull. 2005 Apr 30;65(4):309-16. doi: 10.1016/j.brainresbull.2004.11.023.

Abstract

It is well known that synchronization of cortical neurons is modulated ("gating") by the chronological interaction between somatosensory and sensorimotor events. This study tested the hypothesis that the anticipatory processes for this interaction increase the synchronization of cortical neurons as revealed by negative event-related potentials (contingent negative variation, CNV). High-resolution electroencephalographic data (128 electrodes) were recorded in 14 subjects. In the "sensorimotor interaction" condition, the subjects were waiting for a galvanic somatosensory stimulation at the left hand concomitant with a Go or NoGo stimulus (50% of Go trials triggering right hand movements). In the control condition, the Go/NoGo stimulus followed the somatosensory stimulation of 1.5s. The electroencephalographic data were spatially enhanced by surface Laplacian estimation. In the control condition, the CNV was observed only in the foreperiod between the somatosensory stimulation and Go/NoGo task (i.e. no CNV before the somatosensory stimuli). It was spatially localized in the primary sensorimotor area contralateral to the possible motor response. In the "sensorimotor interaction" condition, the CNV preceded the concomitant somatosensory stimulation and Go/NoGo task and was distributed to the frontocentral midline other than the contralateral sensorimotor area. These results suggest that the anticipatory processes for sensorimotor interactions increase the synchronization of cortical neurons in the frontocentral midline, possibly due to mechanisms sub-serving top-down attentional processes.

摘要

众所周知,皮质神经元的同步性是通过体感和感觉运动事件之间的时间相互作用来调节(“门控”)的。本研究检验了这样一种假设,即这种相互作用的预期过程会增加皮质神经元的同步性,这可通过负性事件相关电位(关联性负变,CNV)得以揭示。对14名受试者记录了高分辨率脑电图数据(128个电极)。在“感觉运动相互作用”条件下,受试者等待左手的电刺激体感刺激,同时伴有一个“执行”或“不执行”刺激(50%的“执行”试验触发右手运动)。在对照条件下,“执行”/“不执行”刺激在体感刺激1.5秒后出现。通过表面拉普拉斯估计对脑电图数据进行空间增强。在对照条件下,仅在体感刺激和“执行”/“不执行”任务之间的前周期观察到CNV(即体感刺激之前没有CNV)。它在空间上定位在与可能的运动反应对侧的初级感觉运动区。在“感觉运动相互作用”条件下,CNV先于伴随的体感刺激和“执行”/“不执行”任务出现,并分布在前中央中线,而非对侧感觉运动区。这些结果表明,感觉运动相互作用的预期过程增加了前中央中线皮质神经元的同步性,这可能是由于支持自上而下注意过程的机制所致。

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