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静息状态下的低频神经活动与实际运动和想象运动诱发的运动相关皮层电位相关。

Low-frequency neural activity at rest is correlated with the movement-related cortical potentials elicited during both real and imagined movements.

机构信息

School of Health and Exercise Sciences, University of British Columbia, Kelowna, BC, Canada.

School of Health and Exercise Sciences, University of British Columbia, Kelowna, BC, Canada.

出版信息

Neurosci Lett. 2021 Jan 18;742:135530. doi: 10.1016/j.neulet.2020.135530. Epub 2020 Nov 25.

DOI:10.1016/j.neulet.2020.135530
PMID:33248162
Abstract

Ongoing low-frequency activity in the brain has been shown to indicate an inhibitory neural state; however, the effects of this low-frequency activity on event-related neural processes associated with movement preparation, including movement-related cortical potentials (MRCPs) or more specifically, the motor potential (MP), and event-related desynchronization (ERD) have not been assessed. Using data from 48 participants, the current study examined how ongoing mu and beta frequency activity at rest relates to the MP and mu and beta ERD during real or imagined movement of the fingers. Resting state EEG activity was collected for 1 min, prior to the real and imagined finger movement trials. 20 real and 20 imagined movement trials were collected for each hand. Resting beta activity correlated with MP amplitude during movement trials for both the right (r(47) = -0.304, p = 0.035) and left (r(47) = -0.468, p < 0.001) hands, whereas resting mu correlated with MP amplitude during motor imagery trials of both the right (r(47) = -0.289, p = 0.046) and left (r(47) = -0.330, p = 0.020) hands. Ongoing mu and beta activity was not significantly correlated with mu or beta ERD for both the movement and imagery trials. A connection between low-frequency activity and MP could inform biofeedback procedures that promote a reduction of this activity, ultimately allowing for easier identification of the intent to move.

摘要

大脑中的持续低频活动已被证明表明抑制性神经状态;然而,这种低频活动对与运动准备相关的事件相关神经过程的影响,包括运动相关皮质电位 (MRCPs)或更具体地说,运动电位 (MP)和事件相关去同步化 (ERD)尚未评估。使用来自 48 名参与者的数据,本研究检查了静息状态下的持续 mu 和 beta 频率活动如何与手指的真实或想象运动期间的 MP 和 mu 和 beta ERD 相关。在进行真实和想象手指运动试验之前,采集 1 分钟的静息状态 EEG 活动。对于每只手,采集 20 次真实运动和 20 次想象运动试验。在右手 (r(47) = -0.304, p = 0.035) 和左手 (r(47) = -0.468, p < 0.001) 的运动试验中,静息 beta 活动与 MP 振幅相关,而在右手 (r(47) = -0.289, p = 0.046) 和左手 (r(47) = -0.330, p = 0.020) 的运动想象试验中,静息 mu 与 MP 振幅相关。对于运动和想象试验,静息 mu 和 beta 活动与 mu 或 beta ERD 均无显著相关性。低频活动与 MP 之间的联系可以为促进减少这种活动的生物反馈程序提供信息,最终可以更容易地识别运动意图。

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