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感觉运动皮层在预期即将发生的可预测但不可预测的动作时的激活。

Sensorimotor cortex activation during anticipation of upcoming predictable but not unpredictable actions.

机构信息

Department of Psychology, University of Hull, Hull, UK.

Center for Autism Research Excellence, Boston University, Boston, MA, USA.

出版信息

Soc Neurosci. 2020 Apr;15(2):214-226. doi: 10.1080/17470919.2019.1674688. Epub 2019 Oct 9.

Abstract

The mirror neuron system (MNS) becomes active during action execution and action observation, which is presumably reflected by reductions in mu (8-13 Hz) activity in the electroencephalogram over the sensorimotor cortex. The function of the MNS is still fiercely debated. The current study aimed to investigate a role of the MNS in anticipating others' actions by examining whether the MNS was activated - indexed by mu power suppression - prior to the onset of observed actions when the onset and type of action could be predicted on the basis of environmental cues. Young adults performed and observed cued grasping and placing actions in a card game in a real-life setting, while the predictability of the observed actions was manipulated using rules. Significant mu suppression, relative to within-trial baseline activity, was found both prior to and during executed actions, but also during action observation, and, crucially, prior to observed actions provided they were predictable. No anticipatory mu reductions were found prior to unpredictable observed actions. These results suggest top-down modulation of MNS activity by conceptual knowledge. This is the first study to demonstrate mu suppression prior to action onset - possibly reflecting MNS anticipatory activity - by explicitly manipulating predictability.

摘要

镜像神经元系统(MNS)在执行动作和观察动作时会变得活跃,这可以通过脑电图中传感器运动皮层上的 mu(8-13Hz)活动减少来反映。MNS 的功能仍在激烈争论中。本研究旨在通过检查在可以根据环境线索预测观察到的动作的开始和类型时,MNS 是否在观察到的动作开始之前被激活——以 mu 功率抑制为指标,来研究 MNS 在预测他人动作中的作用。年轻人在现实生活环境中玩卡片游戏时执行和观察提示性抓握和放置动作,同时使用规则来操纵观察到的动作的可预测性。与试验内基线活动相比,在执行动作之前和期间以及在动作观察期间都发现了显著的 mu 抑制,但在提供可预测的情况下,在观察到的动作之前也发现了 mu 抑制。在不可预测的观察到的动作之前没有发现预期的 mu 减少。这些结果表明,概念知识对 MNS 活动进行自上而下的调制。这是第一项通过明确操纵可预测性来证明在动作开始之前出现 mu 抑制(可能反映 MNS 预期活动)的研究。

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