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静息态 EEG 微状态时间动态的个体内和个体间相关性。

Within and between-person correlates of the temporal dynamics of resting EEG microstates.

机构信息

Department of Psychology, University of Miami, United States.

Department of Psychology, University of California, Davis, United States; Center for Mind and Brain, University of California, Davis, United States.

出版信息

Neuroimage. 2020 May 1;211:116631. doi: 10.1016/j.neuroimage.2020.116631. Epub 2020 Feb 14.

Abstract

Microstates reflect transient brain states resulting from the synchronous activity of brain networks that predominate in the broadband EEG. There has been increasing interest in how the functional organization of the brain varies across individuals, or the extent to which its spatiotemporal dynamics are state dependent. However, little research has examined within and between-person correlates of microstate temporal parameters in healthy populations. In the present study, neuroelectric activity recorded during eyes-closed rest and during simple visual fixation was segmented into a time series of transient microstate intervals. It was found that five data-driven microstate configurations explained the preponderance of topographic variance in the EEG time series of the 374 recordings (from 187 participants) included in the study. We observed that the temporal dynamics of microstates varied within individuals to a greater degree than they differed between persons, with within-person factors explaining a large portion of the variance in mean microstate duration and occurrence rate. Nevertheless, several individual differences were found to predict the temporal dynamics of microstates. Of these, age and gender were the most reliable. These findings not only suggest that the rich temporal dynamics of whole-brain neuronal networks vary considerably within individuals, but that microstates appear to differentiate persons based on trait individual differences. Rather than focusing exclusively on between-person differences in microstates as measures of brain function, researchers should turn their attention towards understanding the factors contributing to within-person variation.

摘要

微状态反映了源自于主导宽带 EEG 的脑网络同步活动的瞬态脑状态。人们越来越关注大脑的功能组织在个体之间如何变化,或者其时空动力学在多大程度上取决于状态。然而,很少有研究检查健康人群中微状态时间参数的个体内和个体间相关性。在本研究中,在闭眼休息和简单视觉注视期间记录的神经电活动被分割成瞬态微状态间隔的时间序列。结果发现,五个数据驱动的微状态构型解释了研究中包括的 374 个记录(来自 187 名参与者)的 EEG 时间序列中大部分的拓扑方差。我们观察到微状态的时间动态在个体内的变化程度大于它们在个体间的差异,个体内因素解释了微状态持续时间和出现率的大部分方差。然而,发现了一些个体差异可以预测微状态的时间动态。其中,年龄和性别是最可靠的。这些发现不仅表明整个大脑神经元网络的丰富时间动态在个体内有很大差异,而且微状态似乎根据个体特质差异来区分个体。研究人员不应该仅仅专注于作为大脑功能衡量标准的微状态的个体间差异,而应该将注意力转向理解导致个体内变异的因素。

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