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动作观察期间脑电图μ节律的抑制与随后的行为变化相对应。

Suppression of EEG mu rhythm during action observation corresponds with subsequent changes in behavior.

作者信息

Aridan Nadav, Ossmy Ori, Buaron Batel, Reznik Daniel, Mukamel Roy

机构信息

Department of Neurobiology, Tel-Aviv University, Tel-Aviv, Israel.

Department of Psychology and Center of Neural Science, New York University, New York, NY, USA.

出版信息

Brain Res. 2018 Jul 15;1691:55-63. doi: 10.1016/j.brainres.2018.04.013. Epub 2018 Apr 19.

Abstract

Movement is intrinsically linked to perception such that observing an action induces in the observer behavioral changes during execution of similar actions. Electroencephalogram (EEG) studies have revealed that at the group level, action observation suppresses oscillatory power in mu (8-12 Hz) and beta (15-25 Hz) bands over the sensorimotor cortex - a phenomenon associated with increased excitability of cortical neurons. However, it is unclear whether differences in suppression level across individuals is linked with individual differences in subsequent behavioral changes. Here 32 subjects performed self-paced finger tapping with their right hand before and after observation of a video displaying finger-tapping at either 2 or 4 Hz. Behaviorally, subjects' rate of self-pace tapping increased following observation, with higher increases following 4 Hz observation. The level of EEG power suppression in the low frequency range (low mu; 8-10 Hz) during observation corresponded to subsequent behavioral changes in tapping rate across individuals. Our results demonstrate that observing actions implicitly shifts subsequent execution rates, and that individual differences in the level of this implicit shift can be explained by activity in the sensorimotor cortex during observation.

摘要

运动与感知有着内在联系,以至于观察一个动作会在观察者执行类似动作时引发行为变化。脑电图(EEG)研究表明,在群体层面,动作观察会抑制感觉运动皮层上μ(8 - 12赫兹)和β(15 - 25赫兹)频段的振荡功率——这一现象与皮层神经元兴奋性增加有关。然而,个体间抑制水平的差异是否与后续行为变化的个体差异相关尚不清楚。在此,32名受试者在观察以2赫兹或4赫兹显示手指敲击的视频前后,用右手进行了自定节奏的手指敲击。在行为上,观察后受试者的自定节奏敲击速率增加,在观察4赫兹后增加幅度更大。观察期间低频范围(低μ;8 - 10赫兹)的脑电图功率抑制水平与个体间敲击速率的后续行为变化相对应。我们的结果表明,观察动作会隐性地改变后续的执行速率,并且这种隐性变化水平的个体差异可以通过观察期间感觉运动皮层的活动来解释。

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