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在观察和执行动作时,运动想象中大脑活动的频率特异性等价性。

Frequency-specific equivalence of brain activity on motor imagery during action observation and action execution.

机构信息

Institute of Neuropsychiatry, The Affiliated Brain Hospital of Nanjing Medical University, Fourth Clinical College of Nanjing Medical University, Nanjing, Jiangsu, China.

Institute of Brain Functional Imaging, Nanjing Medical University, Nanjing, Jiangsu, China.

出版信息

Int J Neurosci. 2021 Jun;131(6):599-608. doi: 10.1080/00207454.2020.1750394. Epub 2020 Apr 13.

Abstract

BACKGROUND

Human motor imagery (MI), action execution, and action observation (AO) are functionally considered as equivalent. MI during AO can extensively induce activation of motor-related brain network in the absence of overt movement. The magnetoencephalography (MEG) provides an important technology to reveal and reflect human brain information processing in multi-frequency bands. Utilizing a MEG system, we aimed to quantitatively investigate the frequency-specific equivalent characteristics in brain processing patterns between MI during AO and action execution in multi-frequency bands, including delta, theta, alpha, beta, gamma, and high-frequency oscillations.

METHODS

A total of 12 healthy subjects were studied with a whole-head MEG system during finger movement and MI during finger movement observation. We analyzed the brain activities in multi-frequency ranges of 1 Hz to 200 Hz.

RESULTS

Both MI during AO and action execution evoked the distinctive brain activities in low frequency ranges (i.e. delta, theta, and alpha). Significant differences were found in global spectral power between finger movement and MI during AO in delta and alpha oscillations. Compared with finger movement, delta (1-4 Hz) oscillation power in MI during AO were obviously decreased in left and right frontals and occipitals, and theta (4-8 Hz) and alpha (8-13 Hz) oscillation power were obviously increased in frontal, parietal and occipital.

CONCLUSION

MEG power evoked by finger movement and MI during AO is mainly concentrated in the energy distribution below 13 Hz. Furthermore, finger movement and MI during AO might share frequency-specific equivalence of brain neural activation dependent on different MEG frequency ranges.

摘要

背景

人类运动想象(MI)、动作执行和动作观察(AO)在功能上被认为是等同的。在没有明显运动的情况下,AO 期间的 MI 可以广泛诱导运动相关脑网络的激活。脑磁图(MEG)提供了一种重要的技术,可以揭示和反映多频带人类大脑信息处理。利用 MEG 系统,我们旨在定量研究 AO 期间的 MI 和动作执行在多频带(包括 delta、theta、alpha、beta、gamma 和高频振荡)中脑处理模式的频率特异性等效特征。

方法

共有 12 名健康受试者在整个头部 MEG 系统中进行手指运动和手指运动观察期间的 MI 研究。我们分析了 1 Hz 至 200 Hz 的多频带脑活动。

结果

AO 期间的 MI 和动作执行均引起低频范围(即 delta、theta 和 alpha)的独特脑活动。在 delta 和 alpha 振荡中,手指运动和 AO 期间的 MI 之间的全局谱功率存在显著差异。与手指运动相比,AO 期间 MI 中的 delta(1-4 Hz)振荡功率在左右额顶叶明显降低,theta(4-8 Hz)和 alpha(8-13 Hz)振荡功率在额顶枕叶明显增加。

结论

手指运动和 AO 期间 MI 诱发的 MEG 功率主要集中在 13 Hz 以下的能量分布。此外,手指运动和 AO 期间的 MI 可能共享基于不同 MEG 频率范围的大脑神经激活的频率特异性等效性。

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