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任务无关和动态思维的独特电生理特征。

Distinct electrophysiological signatures of task-unrelated and dynamic thoughts.

机构信息

Department of Psychology, University of Calgary, Calgary, AB T2N 1N4, Canada;

Hotchkiss Brain Institute, University of Calgary, Calgary, AB T2N 4N1, Canada.

出版信息

Proc Natl Acad Sci U S A. 2021 Jan 26;118(4). doi: 10.1073/pnas.2011796118.

Abstract

Humans spend much of their lives engaging with their internal train of thoughts. Traditionally, research focused on whether or not these thoughts are related to ongoing tasks, and has identified reliable and distinct behavioral and neural correlates of task-unrelated and task-related thought. A recent theoretical framework highlighted a different aspect of thinking-how it dynamically moves between topics. However, the neural correlates of such thought dynamics are unknown. The current study aimed to determine the electrophysiological signatures of these dynamics by recording electroencephalogram (EEG) while participants performed an attention task and periodically answered thought-sampling questions about whether their thoughts were 1) task-unrelated, 2) freely moving, 3) deliberately constrained, and 4) automatically constrained. We examined three EEG measures across different time windows as a function of each thought type: stimulus-evoked P3 event-related potentials and non-stimulus-evoked alpha power and variability. Parietal P3 was larger for task-related relative to task-unrelated thoughts, whereas frontal P3 was increased for deliberately constrained compared with unconstrained thoughts. Frontal electrodes showed enhanced alpha power for freely moving thoughts relative to non-freely moving thoughts. Alpha-power variability was increased for task-unrelated, freely moving, and unconstrained thoughts. Our findings indicate distinct electrophysiological patterns associated with task-unrelated and dynamic thoughts, suggesting these neural measures capture the heterogeneity of our ongoing thoughts.

摘要

人类一生中的大部分时间都在与自己的内部思维流打交道。传统上,研究集中在这些思维是否与正在进行的任务有关,并确定了与任务无关和与任务相关的思维的可靠且明显的行为和神经相关性。最近的理论框架强调了思维的另一个方面——它如何在主题之间动态移动。然而,这种思维动态的神经相关性尚不清楚。本研究旨在通过记录脑电图 (EEG) 来确定这些动态的电生理特征,参与者在执行注意任务的同时定期回答关于他们的思维是 1) 与任务无关,2) 自由移动,3) 故意受限,还是 4) 自动受限的思维抽样问题。我们检查了三个 EEG 指标在不同的时间窗口内作为每种思维类型的函数:刺激诱发的 P3 事件相关电位和非刺激诱发的 alpha 功率和变异性。与任务无关的思维相比,与任务相关的思维在顶叶 P3 更大,而与不受限制的思维相比,故意受限的思维在额叶 P3 更大。与非自由移动的思维相比,自由移动的思维在额叶电极上显示出增强的 alpha 功率。与任务无关、自由移动和不受限制的思维相比,alpha 功率变异性增加。我们的发现表明与任务无关和动态思维相关的独特电生理模式,表明这些神经测量方法捕捉到了我们正在进行的思维的异质性。

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