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人类静息觉醒状态下α脑电活动与瞳孔直径的耦合关系。

Alpha EEG Activity and Pupil Diameter Coupling during Inactive Wakefulness in Humans.

机构信息

Instituto de Aparato Locomotor y Rehabilitación, Human Cognitive Neurophysiology and Behaviour Laboratory, Facultad de Medicina, Universidad Austral de Chile, Valdivia, 5111815, Chile

Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139.

出版信息

eNeuro. 2022 Apr 13;9(2). doi: 10.1523/ENEURO.0060-21.2022. Print 2022 Mar-Apr.

Abstract

Variations in human behavior correspond to the adaptation of the nervous system to different internal and environmental demands. Attention, a cognitive process for weighing environmental demands, changes over time. Pupillary activity, which is affected by fluctuating levels of cognitive processing, appears to identify neural dynamics that relate to different states of attention. In mice, for example, pupil dynamics directly correlate with brain state fluctuations. Although, in humans, alpha-band activity is associated with inhibitory processes in cortical networks during visual processing, and its amplitude is modulated by attention, conclusive evidence linking this narrowband activity to pupil changes in time remains sparse. We hypothesize that, as alpha activity and pupil diameter indicate attentional variations over time, these two measures should be comodulated. In this work, we recorded the electroencephalographic (EEG) and pupillary activity of 16 human subjects who had their eyes fixed on a gray screen for 1 min. Our study revealed that the alpha-band amplitude and the high-frequency component of the pupil diameter covariate spontaneously. Specifically, the maximum alpha-band amplitude was observed to occur ∼300 ms before the peak of the pupil diameter. In contrast, the minimum alpha-band amplitude was noted to occur ∼350 ms before the trough of the pupil diameter. The consistent temporal coincidence of these two measurements strongly suggests that the subject's state of attention, as indicated by the EEG alpha amplitude, is changing moment to moment and can be monitored by measuring EEG together with the diameter pupil.

摘要

人类行为的变化对应于神经系统对不同内部和环境需求的适应。注意力是一种权衡环境需求的认知过程,它随着时间的推移而变化。瞳孔活动受到认知处理波动水平的影响,似乎可以识别与不同注意状态相关的神经动力学。例如,在老鼠中,瞳孔动力学直接与大脑状态波动相关。尽管在人类中,alpha 波段活动与视觉处理过程中皮质网络的抑制过程相关,并且其幅度受到注意力的调节,但将这种窄带活动与瞳孔变化在时间上联系起来的确凿证据仍然很少。我们假设,由于 alpha 活动和瞳孔直径表示注意力随时间的变化,这两个测量值应该是共调制的。在这项工作中,我们记录了 16 名人类受试者的脑电图 (EEG) 和瞳孔活动,他们的眼睛固定在灰色屏幕上 1 分钟。我们的研究表明,alpha 波段幅度和瞳孔直径的高频分量自发地共变。具体来说,最大的 alpha 波段幅度出现在瞳孔直径峰值前约 300ms 处。相比之下,最小的 alpha 波段幅度出现在瞳孔直径波谷前约 350ms 处。这两个测量值的一致时间巧合强烈表明,受试者的注意力状态,如 EEG alpha 幅度所指示的,随着时间的推移而不断变化,可以通过同时测量 EEG 和瞳孔直径来监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0daf/9014982/9d520860e216/ENEURO.0060-21.2022_f001.jpg

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