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Concurrent electroencephalography recording during transcranial alternating current stimulation (tACS)

机译:经颅交流电刺激(tACS)期间的并发脑电图记录

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摘要

Oscillatory brain activities are considered to reflect the basis of rhythmic changes in transmission efficacy across brain networks and are assumed to integrate cognitive neural processes. Transcranial alternating current stimulation (tACS) holds the promise to elucidate the causal link between specific frequencies of oscillatory brain activity and cognitive processes. Simultaneous electroencephalography (EEG) recording during tACS would offer an opportunity to directly explore immediate neurophysiological effects of tACS. However, it is not trivial to measure EEG signals during tACS, as tACS creates a huge artifact in EEG data. Here we explain how to set up concurrent tACS-EEG experiments. Two necessary considerations for successful EEG recording while applying tACS are highlighted. First, bridging of the tACS and EEG electrodes via leaking EEG gel immediately saturates the EEG amplifier. To avoid bridging via gel, the viscosity of the EEG gel is the most important parameter. The EEG gel must be viscous to avoid bridging, but at the same time sufficiently fluid to create contact between the tACS electrode and the scalp. Second, due to the large amplitude of the tACS artifact, it is important to consider using an EEG system with a high resolution analog-to-digital (A/D) converter. In particular, the magnitude of the tACS artifact can exceed 100 mV at the vicinity of a stimulation electrode when 1 mA tACS is applied. The resolution of the A/D converter is of importance to measure good quality EEG data from the vicinity of the stimulation site. By following these guidelines for the procedures and technical considerations, successful concurrent EEG recording during tACS will be realized.
机译:振荡性脑活动被认为反映了跨脑网络传输效率的节律性变化的基础,并被认为整合了认知神经过程。经颅交流电刺激(tACS)有望阐明振荡性大脑活动的特定频率与认知过程之间的因果关系。在tACS期间同时进行脑电图(EEG)记录将提供直接探索tACS即时神经生理作用的机会。然而,在tACS期间测量EEG信号并非易事,因为tACS在EEG数据中会产生巨大的伪像。在这里,我们解释了如何设置并发tACS-EEG实验。突出了在应用tACS时成功记录脑电图的两个必要注意事项。首先,通过泄漏的EEG凝胶桥接tACS和EEG电极会立即使EEG放大器饱和。为了避免通过凝胶桥接,EEG凝胶的粘度是最重要的参数。 EEG凝胶必须粘性以避免桥接,但同时要有足够的流动性,以在tACS电极和头皮之间产生接触。其次,由于tACS伪像的振幅很大,因此考虑使用带有高分辨率模数(A / D)转换器的EEG系统非常重要。特别地,当施加1 mA tACS时,在刺激电极附近,tACS伪影的大小可能会超过100 mV。 A / D转换器的分辨率对于测量来自刺激部位附近的高质量EEG数据非常重要。通过遵循有关程序和技术考虑的这些准则,将可以在tACS期间成功地同时进行EEG记录。

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