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A Prospective Study of the Impact of Transcranial Alternating Current Stimulation on EEG Correlates of Somatosensory Perception

机译:经颅交流刺激对躯体感应感染的影响的预期研究

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摘要

The (8–12 Hz) neocortical alpha rhythm is associated with shifts in attention across sensory systems, and is thought to represent a sensory gating mechanism for the inhibitory control of cortical processing. The present preliminary study sought to explore whether alpha frequency transcranial alternating current stimulation (tACS) could modulate endogenous alpha power in the somatosensory system, and whether the hypothesized modulation would causally impact perception of tactile stimuli at perceptual threshold. We combined electroencephalography (EEG) with simultaneous brief and intermittent tACS applied over primary somatosensory cortex at individuals’ endogenous alpha frequency during a tactile detection task (n = 12 for EEG, n = 20 for behavior). EEG-measured pre-stimulus alpha power was higher on non-perceived than perceived trials, and analogous perceptual correlates emerged in early components of the tactile evoked response. Further, baseline normalized tactile detection performance was significantly lower during alpha than sham tACS, but the effect did not last into the post-tACS time period. Pre- to post-tACS changes in alpha power were linearly dependent upon baseline state, such that alpha power tended to increase when pre-tACS alpha power was low, and decrease when it was high. However, these observations were comparable in both groups, and not associated with evidence of tACS-induced alpha power modulation. Nevertheless, the tactile stimulus evoked response potential (ERP) revealed a potentially lasting impact of alpha tACS on circuit dynamics. The post-tACS ERP was marked by the emergence of a prominent peak ∼70 ms post-stimulus, which was not discernible post-sham, or in either pre-stimulation condition. Computational neural modeling designed to simulate macroscale EEG signals supported the hypothesis that the emergence of this peak could reflect synaptic plasticity mechanisms induced by tACS. The primary lesson learned in this study, which commanded a small sample size, was that while our experimental paradigm provided some evidence of an influence of tACS on behavior and circuit dynamics, it was not sufficient to induce observable causal effects of tACS on EEG-measured alpha oscillations. We discuss limitations and suggest improvements that may help further delineate a causal influence of tACS on cortical dynamics and perception in future studies.
机译:(8-12Hz)Neocorticalα节律与感觉系统的注意力相关,并且被认为表示皮质加工的抑制控制的感觉门控机制。目前初步研究寻求探索α频率经颅交流刺激(TAC)可以调节躯体感化系统中的内源性α功率,并且假设调节是否会因感知阈值而因触觉刺激而导致的感知。我们将脑电图(EEG)组合在触觉检测任务期间在个体的内源性α频率上同时施用在初级躯体感觉皮层上的同时简短和间歇性TAC(n = 12用于行为的N = 20)。 eEG测量的刺激前α能量较高,而不是感知试验,并且在触觉诱发反应的早期组分中出现了类似的感知相关性。此外,α的基线归一化触觉检测性能比假TAC在α在α时显着降低,但效果并未持续到TAC后的时间段。在TAC的前后变化在基线状态下线性取决于基线状态,使得当TAC alpha功率低时α功率趋于增加,并且当它高时降低。然而,这些观察结果在这两组中都是相当的,而不与TAC诱导的α功率调制的证据相关。然而,诱发触觉潜力(ERP)的触觉刺激揭示了Alpha TAC对电路动力学的潜在持久影响。后TACS ERP标志着刺激突出峰〜70毫秒的出现,这是不可辨的假目或预刺激条件。设计用于模拟Macroscale EEG信号的计算神经建模支持该峰的出现可以反映TACs诱导的突触塑性机制。该研究中学到的初级教训,其中命令小样本大小,虽然我们的实验范式提供了一些证据对TAC对行为和电路动力学的影响,但诱导脑电图测量的可观察因果效应是不够的alpha振荡。我们讨论局限性并提出改进,可能有助于进一步描绘TAC对未来研究中TAC对皮质动力学和感知的因果影响。

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