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现实世界动态行为中运动想象与执行的神经关联:异同证据

Neural correlates of motor imagery and execution in real-world dynamic behavior: evidence for similarities and differences.

作者信息

Mustile Magda, Kourtis Dimitrios, Edwards Martin G, Donaldson David I, Ietswaart Magdalena

机构信息

Department of Psychology, Faculty of Natural Sciences, University of Stirling, Stirling, United Kingdom.

The Psychological Sciences Research Institute, University of Louvain, Louvain-la-Neuve, Belgium.

出版信息

Front Hum Neurosci. 2024 Jun 21;18:1412307. doi: 10.3389/fnhum.2024.1412307. eCollection 2024.

Abstract

A large body of evidence shows that motor imagery and action execution behaviors result from overlapping neural substrates, even in the absence of overt movement during motor imagery. To date it is unclear how neural activations in motor imagery and execution compare for naturalistic whole-body movements, such as walking. Neuroimaging studies have not directly compared imagery and execution during dynamic walking movements. Here we recorded brain activation with mobile EEG during walking compared to during imagery of walking, with mental counting as a control condition. We asked 24 healthy participants to either walk six steps on a path, imagine taking six steps, or mentally count from one to six. We found beta and alpha power modulation during motor imagery resembling action execution patterns; a correspondence not found performing the control task of mental counting. Neural overlap occurred early in the execution and imagery walking actions, suggesting activation of shared action representations. Remarkably, a distinctive walking-related beta rebound occurred both during action execution and imagery at the end of the action suggesting that, like actual walking, motor imagery involves resetting or inhibition of motor processes. However, we also found that motor imagery elicits a distinct pattern of more distributed beta activity, especially at the beginning of the task. These results indicate that motor imagery and execution of naturalistic walking involve shared motor-cognitive activations, but that motor imagery requires additional cortical resources.

摘要

大量证据表明,即使在运动想象过程中没有明显动作,运动想象和动作执行行为也是由重叠的神经基质产生的。迄今为止,对于自然的全身运动(如行走),运动想象和执行过程中的神经激活情况尚不清楚。神经影像学研究尚未直接比较动态行走运动过程中的想象和执行情况。在这里,我们在行走过程中与行走想象过程中使用移动脑电图记录大脑激活情况,并将心理计数作为对照条件。我们让24名健康参与者要么在一条路径上走六步,要么想象走六步,要么从一到六进行心理计数。我们发现在运动想象过程中β波和α波功率调制类似于动作执行模式;在执行心理计数的对照任务中未发现这种对应关系。在执行和想象行走动作的早期出现了神经重叠,这表明共享动作表征被激活。值得注意的是,在动作执行和想象结束时都出现了与行走相关的独特β波反弹,这表明,与实际行走一样,运动想象涉及运动过程的重置或抑制。然而,我们还发现运动想象会引发一种更分散的β波活动的独特模式,尤其是在任务开始时。这些结果表明,自然行走的运动想象和执行涉及共享的运动认知激活,但运动想象需要额外的皮质资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0270/11224467/44dad7e1c922/fnhum-18-1412307-g001.jpg

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