Experimental Psychology Lab, Department of Psychology, Cluster for Excellence "Hearing for All", European Medical School, Carl von Ossietzky University, Oldenburg, Germany.
Neuroimaging Unit, European Medical School, Carl von Ossietzky University, Oldenburg, Germany.
Brain Topogr. 2019 Nov;32(6):1013-1019. doi: 10.1007/s10548-019-00727-7. Epub 2019 Sep 13.
Transcranial alternating current stimulation (tACS) is increasingly used as a tool to non-invasively modulate brain oscillations in a frequency specific manner. A growing body of neuroscience research utilizes tACS to probe causal relationships between neuronal oscillations and cognitive processes or explore its capability of restoring dysfunctional brain oscillations implicated in various neurological and psychiatric disease. However, the underlying mechanisms of action are yet poorly understood. Due to a massive electromagnetic artifact, overlapping with the frequency of interest, direct insights to effects during stimulation from electrophysiological signals (i.e. EEG/MEG) are methodologically challenging. In the current review, we provide an overview of analysis approaches to recover brain signals in M/EEG during tACS, detailing their underlying concepts as well as limitations and methodological and interpretational pitfalls. While different analysis strategies can achieve strong attenuation of the tACS artifact in M/EEG signals, a compete removal of it is not feasible so far. However, we argue that with a combination of careful experimental designs, robust outcome measures and appropriate control analyses, valid and important insights to online effects of tACS can be revealed, enriching our understanding of its basic underlying mechanisms.
经颅交流电刺激(tACS)越来越多地被用作一种非侵入性的工具,以特定的频率方式调节大脑的振荡。越来越多的神经科学研究利用 tACS 来探究神经元振荡与认知过程之间的因果关系,或探索其恢复各种神经和精神疾病中涉及的功能失调的大脑振荡的能力。然而,其作用的潜在机制仍知之甚少。由于存在与感兴趣频率重叠的巨大电磁伪影,因此从电生理信号(即 EEG/MEG)中直接观察刺激期间的效果在方法上具有挑战性。在当前的综述中,我们提供了一种在 tACS 期间从 M/EEG 中恢复大脑信号的分析方法概述,详细说明了它们的基本概念以及局限性和方法学及解释性陷阱。虽然不同的分析策略可以在 M/EEG 信号中强烈衰减 tACS 伪影,但迄今为止,完全去除它是不可行的。然而,我们认为,通过精心设计实验、使用稳健的结果测量和适当的对照分析,可以揭示 tACS 的在线效应的有效且重要的见解,从而丰富我们对其基本作用机制的理解。