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人类对节律性视觉刺激的诱发反应因内在 alpha 活动的来源而异。

Evoked responses to rhythmic visual stimulation vary across sources of intrinsic alpha activity in humans.

机构信息

School of Medicine, TUM-Neuroimaging Center, Technical University of Munich, Munich, Germany.

Department of Neuroradiology, School of Medicine, Technical University of Munich, Munich, Germany.

出版信息

Sci Rep. 2022 Apr 8;12(1):5986. doi: 10.1038/s41598-022-09922-2.

Abstract

Rhythmic flickering visual stimulation produces steady-state visually evoked potentials (SSVEPs) in electroencephalogram (EEG) recordings. Based on electrode-level analyses, two dichotomous models of the underpinning mechanisms leading to SSVEP generation have been proposed: entrainment or superposition, i.e., phase-alignment or independence of endogenous brain oscillations from flicker-induced oscillations, respectively. Electrode-level analyses, however, represent an averaged view of underlying 'source-level' activity, at which variability in SSVEPs may lie, possibly suggesting the co-existence of multiple mechanisms. To probe this idea, we investigated the variability of SSVEPs derived from the sources underpinning scalp EEG responses during presentation of a flickering radial checkerboard. Flicker was presented between 6 and 12 Hz in 1 Hz steps, and at individual alpha frequency (IAF i.e., the dominant frequency of endogenous alpha oscillatory activity). We tested whether sources of endogenous alpha activity could be dissociated according to evoked responses to different flicker frequencies relative to IAF. Occipitoparietal sources were identified by temporal independent component analysis, maximal resting-state alpha power at IAF and source localisation. The pattern of SSVEPs to rhythmic flicker relative to IAF was estimated by correlation coefficients, describing the correlation between the peak-to-peak amplitude of the SSVEP and the absolute distance of the flicker frequency from IAF across flicker conditions. We observed extreme variability in correlation coefficients across sources, ranging from -0.84 to 0.93, with sources showing largely different coefficients co-existing within subjects. This result demonstrates variation in evoked responses to flicker across sources of endogenous alpha oscillatory activity. Data support the idea of multiple SSVEP mechanisms.

摘要

节律性闪烁视觉刺激会在脑电图 (EEG) 记录中产生稳态视觉诱发电位 (SSVEP)。基于电极水平的分析,已经提出了两种导致 SSVEP 产生的潜在机制的二分模型:即同步或叠加,分别是内源性脑振荡与闪烁诱导振荡的相位对齐或独立。然而,电极水平的分析代表了潜在“源水平”活动的平均视图,SSVEP 的可变性可能在于此,这可能表明存在多种机制的共存。为了探究这一想法,我们研究了在呈现闪烁的放射状棋盘时,支持头皮 EEG 反应的源的 SSVEP 变异性。闪烁以 1Hz 的步长在 6 到 12Hz 之间呈现,并且在个体 alpha 频率 (IAF,即内源性 alpha 振荡活动的主导频率)。我们测试了是否可以根据相对于 IAF 的不同闪烁频率的诱发电响应来分离内源性 alpha 活动的源。通过时间独立成分分析、IAF 处最大静息态 alpha 功率和源定位来识别枕顶源。通过相关系数估计 SSVEP 相对于 IAF 的节律性闪烁模式,该系数描述了 SSVEP 的峰峰值幅度与闪烁频率与 IAF 的绝对距离之间的相关性,该相关性在闪烁条件下跨越。我们观察到跨源的相关系数变化极大,范围从 -0.84 到 0.93,并且源之间存在很大差异的系数共存于个体中。这一结果表明,内源性 alpha 振荡活动的源之间的诱发电响应存在变化。数据支持了多种 SSVEP 机制的想法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94ec/8993822/ccc8c7d8ff32/41598_2022_9922_Fig1_HTML.jpg

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