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准备停止动作会增加对侧感觉运动皮层的β频段功率。

Preparing to Stop Action Increases Beta Band Power in Contralateral Sensorimotor Cortex.

机构信息

University of California, San Diego.

Radboud University.

出版信息

J Cogn Neurosci. 2019 May;31(5):657-668. doi: 10.1162/jocn_a_01373. Epub 2019 Jan 11.

Abstract

How do we prepare to stop ourselves in the future? Here, we used scalp EEG to test the hypothesis that people prepare to stop by putting parts of their motor system (specifically, here, sensorimotor cortex) into a suppressed state ahead of time. On each trial, participants were cued to prepare to stop one hand and then initiated a bimanual movement. On a minority of trials, participants were instructed to stop the cued hand while continuing quickly with the other. We used a guided multivariate source separation method to examine oscillatory power changes in presumed sensorimotor cortical areas. We observed that, when people prepare to stop a hand, there were above-baseline beta band power increases (12-24 Hz) in contralateral cortex up to a second earlier. This increase in beta band power in the proactive period was functionally relevant because it predicted, trial by trial, the degree of selectivity with which participants subsequently stopped a response but did not relate to movement per se. Thus, preparing to stop particular response channels corresponds to increased beta power from contralateral (sensorimotor) cortex, and this relates specifically to subsequent stopping. These results provide a high temporal resolution and frequency-specific electrophysiological signature of the preparing-to-stop state that is pertinent to future studies of mitigating provocation, including in clinical disorders. The results also highlight the utility of guided multivariate source separation for revealing the cortical dynamics underlying both movement and response suppression.

摘要

我们如何为未来的停止做好准备?在这里,我们使用头皮 EEG 来检验假设,即人们通过提前将运动系统的部分(具体来说,这里是感觉运动皮层)置于抑制状态来准备停止。在每次试验中,参与者都被提示准备停止一只手,然后开始双手运动。在少数试验中,参与者被指示在继续快速用另一只手的同时停止提示的手。我们使用引导的多变量源分离方法来检查假定的感觉运动皮层区域的振荡功率变化。我们观察到,当人们准备停止一只手时,对侧皮层中的β波段功率(12-24 Hz)在提前一秒增加。这种主动期β波段功率的增加在功能上是相关的,因为它逐次预测了参与者随后停止反应的选择性程度,但与运动本身无关。因此,准备停止特定的反应通道对应于来自对侧(感觉运动)皮层的β功率增加,并且这与随后的停止具体相关。这些结果提供了停止准备状态的高时间分辨率和频率特异性电生理特征,与减轻挑衅的未来研究(包括临床障碍)有关。结果还突出了引导的多变量源分离在揭示运动和反应抑制下的皮层动力学方面的效用。

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