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单侧力产生过程中对侧和同侧β(去)同步的差异调制。

Differential modulations of ipsilateral and contralateral beta (de)synchronization during unimanual force production.

机构信息

Research Institute MOVE, VU University Amsterdam, Amsterdam, The Netherlands.

出版信息

Eur J Neurosci. 2012 Jul;36(1):2088-97. doi: 10.1111/j.1460-9568.2012.08122.x. Epub 2012 May 15.

Abstract

Unilateral movement is usually accompanied by ipsilateral activity in the primary motor cortex (M1). It is still largely unclear whether this activity reflects interhemispheric 'cross-talk' of contralateral M1 that facilitates movement, or results from processes that inhibit motor output. We investigated the role of beta power in ipsilateral M1 during unimanual force production. Significant ipsilateral beta desynchronization occurred during continuous dynamic but not during static force production. Moreover, event-related time-frequency analysis revealed bilateral desynchronization patterns, whereas post-movement synchronization was confined to the contralateral hemisphere. Our findings indicate that ipsilateral activation is not merely the result of interhemispheric cross-talk but involves additional processes. Given observations of differential blood oxygen level-dependent responses in ipsilateral and contralateral M1, and the correlation between beta desynchronization and the firing rate of pyramidal tract neurons in contralateral M1 during movement, we speculate that beta desynchronization in contra- and ipsilateral M1 arises from distinct neural activation patterns.

摘要

单侧运动通常伴随着初级运动皮层(M1)的同侧活动。M1 对侧的“交叉对话”是否促进运动,或者是抑制运动输出的过程的结果,目前仍在很大程度上不清楚。我们研究了β功率在单手力产生过程中同侧 M1 的作用。在连续动态而非静态力产生过程中,同侧β去同步化显著发生。此外,事件相关时频分析显示出双侧去同步化模式,而运动后同步化仅限于对侧半球。我们的发现表明,同侧激活不仅仅是大脑半球间交叉对话的结果,而是涉及到其他过程。鉴于同侧和对侧 M1 中观察到的不同血氧水平依赖反应,以及运动过程中β去同步化与对侧 M1 中锥体束神经元放电率之间的相关性,我们推测对侧和同侧 M1 中的β去同步化来自于不同的神经激活模式。

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