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微扫视会使 EEGα 活动暂时偏向一侧。

Microsaccades transiently lateralise EEG alpha activity.

机构信息

Institute for Brain and Behavior Amsterdam, Department of Experimental and Applied Psychology, Vrije Universiteit Amsterdam, the Netherlands.

Department of Experimental Psychology, University of Oxford, United Kingdom; Oxford Centre for Human Brain Activity, Wellcome Centre for Integrative Neuroimaging, Department of Psychiatry, University of Oxford, United Kingdom.

出版信息

Prog Neurobiol. 2023 May;224:102433. doi: 10.1016/j.pneurobio.2023.102433. Epub 2023 Mar 11.

Abstract

The lateralisation of 8-12 Hz alpha activity is a canonical signature of human spatial cognition that is typically studied under strict fixation requirements. Yet, even during attempted fixation, the brain produces small involuntary eye movements known as microsaccades. Here we report how spontaneous microsaccades - made in the absence of incentives to look elsewhere - can themselves drive transient lateralisation of EEG alpha power according to microsaccade direction. This transient lateralisation of posterior alpha power occurs similarly following start and return microsaccades and is, at least for start microsaccades, driven by increased alpha power ipsilateral to microsaccade direction. This reveals new links between spontaneous microsaccades and human electrophysiological brain activity. It highlights how microsaccades are an important factor to consider in studies relating alpha activity - including spontaneous fluctuations in alpha activity - to spatial cognition, such as studies on visual attention, anticipation, and working memory.

摘要

8-12Hz 阿尔法活动的侧化是人类空间认知的典型特征,通常在严格的固定要求下进行研究。然而,即使在试图固定的过程中,大脑也会产生微小的无意识眼球运动,称为微扫视。在这里,我们报告了自发微扫视(在没有看别处的激励的情况下发生)如何根据微扫视方向驱动 EEG 阿尔法功率的短暂侧化。这种后部阿尔法功率的短暂侧化在起始微扫视和返回微扫视后都会发生,并且至少对于起始微扫视而言,是由微扫视方向同侧的阿尔法功率增加驱动的。这揭示了自发微扫视与人类电生理脑活动之间的新联系。它强调了微扫视在将与空间认知相关的阿尔法活动(包括阿尔法活动的自发波动)相关的研究中是一个重要因素,例如对视觉注意、预期和工作记忆的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36a0/10074474/ee20ade51de2/gr1.jpg

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