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在经颅交流电刺激(tACS)期间映射夹带的脑振荡。

Mapping entrained brain oscillations during transcranial alternating current stimulation (tACS).

作者信息

Witkowski Matthias, Garcia-Cossio Eliana, Chander Bankim S, Braun Christoph, Birbaumer Niels, Robinson Stephen E, Soekadar Surjo R

机构信息

Applied Neurotechnology Lab, Department of Psychiatry and Psychotherapy, University Hospital of Tübingen, Germany.

Applied Neurotechnology Lab, Department of Psychiatry and Psychotherapy, University Hospital of Tübingen, Germany; Institute of Medical Psychology and Behavioral Neurobiology, University of Tübingen, Tübingen, Germany; Donders Centre for Brain, Cognition and Behavior, Department of Artificial Intelligence, Radboud University Nijmegen, Nijmegen, The Netherlands.

出版信息

Neuroimage. 2016 Oct 15;140:89-98. doi: 10.1016/j.neuroimage.2015.10.024. Epub 2015 Oct 17.

Abstract

Transcranial alternating current stimulation (tACS), a non-invasive and well-tolerated form of electric brain stimulation, can influence perception, memory, as well as motor and cognitive function. While the exact underlying neurophysiological mechanisms are unknown, the effects of tACS are mainly attributed to frequency-specific entrainment of endogenous brain oscillations in brain areas close to the stimulation electrodes, and modulation of spike timing dependent plasticity reflected in gamma band oscillatory responses. tACS-related electromagnetic stimulator artifacts, however, impede investigation of these neurophysiological mechanisms. Here we introduce a novel approach combining amplitude-modulated tACS during whole-head magnetoencephalography (MEG) allowing for artifact-free source reconstruction and precise mapping of entrained brain oscillations underneath the stimulator electrodes. Using this approach, we show that reliable reconstruction of neuromagnetic low- and high-frequency oscillations including high gamma band activity in stimulated cortical areas is feasible opening a new window to unveil the mechanisms underlying the effects of stimulation protocols that entrain brain oscillatory activity.

摘要

经颅交流电刺激(tACS)是一种非侵入性且耐受性良好的脑电刺激形式,能够影响感知、记忆以及运动和认知功能。虽然确切的潜在神经生理机制尚不清楚,但tACS的作用主要归因于刺激电极附近脑区中内源性脑振荡的频率特异性同步,以及伽马波段振荡反应中反映的依赖于动作电位时间的可塑性调制。然而,与tACS相关的电磁刺激伪迹阻碍了对这些神经生理机制的研究。在此,我们介绍一种新方法,即在全脑磁脑电图(MEG)期间结合幅度调制tACS,从而实现无伪迹源重建以及对刺激电极下方同步脑振荡的精确映射。使用这种方法,我们表明,可靠地重建包括受刺激皮质区域中的高伽马波段活动在内的神经磁低频和高频振荡是可行的,这为揭示同步脑振荡活动的刺激方案效果背后的机制打开了一扇新窗口。

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