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连续 theta 爆发刺激增加手臂抬高时的对侧 mu 和 beta 节律:对神经康复的影响。

Continuous theta burst stimulation increases contralateral mu and beta rhythms with arm elevation: implications for neurorehabilitation.

机构信息

Coimbra Institute for Biomedical Imaging and Translational Research (CIBIT), Institute of Nuclear Sciences Applied to Health (ICNAS), University of Coimbra, Azinhaga de Santa Comba, 3000-548, Coimbra, Portugal.

Department of Physics, Faculty of Sciences and Technology, University of Coimbra, Coimbra, Portugal.

出版信息

J Neural Transm (Vienna). 2020 Jan;127(1):17-25. doi: 10.1007/s00702-019-02117-6. Epub 2019 Dec 16.

Abstract

The study of the physiological effects underlying brain response to transcranial magnetic stimulation is important to understand its impact on neurorehabilitation. We aim to analyze the impact of a transcranial magnetic stimulation protocol, the continuous theta burst (cTBS), on human neurophysiology, particularly on contralateral motor rhythms. cTBS was applied in 20 subjects over the primary motor cortex. We recorded brain electrical activity pre- and post-cTBS with electroencephalography both at rest and while performing motor tasks, to evaluate changes in brain oscillatory patterns such as mu and beta rhythms. Moreover, we measured motor-evoked potentials before and after cTBS to assess its impact on brain's excitability. On the hemisphere contralateral to the protocol, we did observe a significant increase in mu (p = 0.027) and beta (p = 0.006) rhythms from pre- to post-cTBS, at the beginning of arm elevation. The topology of action planning and motor execution suggests that cTBS produced an inhibitory effect that propagated to the contralateral hemisphere, thereby precluding the expected/desired excitation for therapy purposes. This novel approach provides support for the notion that this protocol induces inhibitory changes in contralateral motor rhythms, by decreasing desynchronization, contradicting the ipsilateral inhibition vs. contralateral disinhibition hypothesis. Our results have implications for personalized cTBS usage as a rehabilitation intervention, suggesting that an unexpected propagation of inhibition can occur.

摘要

研究经颅磁刺激引起的大脑反应的生理效应对于理解其对神经康复的影响很重要。我们旨在分析经颅磁刺激方案(连续 theta 爆发刺激,cTBS)对人类神经生理学的影响,特别是对对侧运动节律的影响。cTBS 在 20 名受试者的初级运动皮层上施加。我们使用脑电图在 cTBS 前后进行静息和运动任务时记录大脑电活动,以评估大脑振荡模式(如 mu 和 beta 节律)的变化。此外,我们还测量了 cTBS 前后的运动诱发电位,以评估其对大脑兴奋性的影响。在与方案相对侧的半球上,我们确实观察到在手臂抬起开始时,mu(p=0.027)和 beta(p=0.006)节律从 cTBS 前到后显著增加。动作规划和运动执行的拓扑结构表明,cTBS 产生了一种抑制效应,该效应传播到对侧半球,从而排除了治疗目的所需的预期/所需兴奋。这种新方法支持这样一种观点,即该方案通过减少去同步化,在对侧运动节律中引起抑制性变化,这与同侧抑制与对侧去抑制假说相矛盾。我们的研究结果对个性化 cTBS 作为康复干预的应用具有重要意义,表明抑制作用的意外传播可能发生。

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