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与疲劳对认知灵活性的影响相关的事件相关同步/去同步和功能神经解剖区域。

Event-related synchronization/desynchronization and functional neuroanatomical regions associated with fatigue effects on cognitive flexibility.

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, TU Dresden, Dresden, Germany.

University Neuropsychology Centre, Faculty of Medicine, TU Dresden, Dresden, Germany.

出版信息

J Neurophysiol. 2021 Aug 1;126(2):383-397. doi: 10.1152/jn.00228.2021. Epub 2021 Jun 30.

Abstract

Cognitive flexibility is an essential prerequisite for goal-directed behavior, and daily observations already show that it deteriorates when one is engaged in a task for a (too) long time. Yet, the neural mechanisms underlying such fatigability effect in cognitive flexibility are poorly understood. We examined how theta, alpha, and beta frequency event-related synchronization and desynchronization processes during cued memory-based task switching are modulated by time-on-task effects. We put special emphasis on the examination of functional neuroanatomical regions being associated with these modulations, using EEG beamforming. We show clear declines in task switching performance (increased switch costs) with time on task. For processes occurring before rule switching or repetition processes, we show that anticipatory attentional sampling and selection mechanisms associated with fronto-parietal structures are modulated by time-on-task effects but sensory areas (occipital cortex) also show fatigability-dependent modulations. After target stimulus presentation, the allocation of processing resources for response selection as reflected by theta-related activity in parietal cortices is compromised with time on task and similarly a concomitant increase in alpha and beta band-related attentional processing or gating mechanisms in frontal and occipital regions. Yet, considering the behavioral data showing an apparent decline in performance, this probably compensatory increase is still insufficient to allow reasonable performance. The same is likely the case for processes occurring before rule switching or repetition processes. Comparative analyses show that modulations of alpha band activity are as strongly modulated by fatigability as theta band activity. Implications of these findings for theoretical concepts on fatigability are discussed. We examine the neurophysiological and functional neuroanatomical basis of fatigability in cognitive flexibility. We show that alpha and theta modulations in fronto-parietal and primary sensory areas are central for the understanding of fatigability effects in cognitive flexibility.

摘要

认知灵活性是目标导向行为的基本前提,日常观察已经表明,当人们长时间从事一项任务时,它会恶化。然而,认知灵活性中这种疲劳效应的神经机制还知之甚少。我们研究了在提示记忆任务转换过程中,theta、alpha 和 beta 频带事件相关同步和去同步过程如何受到时间作业效应的调节。我们特别强调使用 EEG 波束形成来检查与这些调制相关的功能神经解剖区域的检查。我们清楚地表明,随着时间的推移,任务转换性能(增加切换成本)下降。对于在规则切换或重复过程之前发生的过程,我们表明与额顶结构相关的预期注意采样和选择机制受到时间作业效应的调节,但感觉区域(枕叶皮层)也显示出疲劳依赖性调节。在目标刺激呈现后,反映顶叶皮质中 theta 相关活动的处理资源分配用于响应选择受到时间作业的影响,同样,在额部和枕部区域,alpha 和 beta 波段相关的注意力处理或门控机制也会增加。然而,考虑到行为数据显示出明显的性能下降,这种明显的补偿性增加可能仍然不足以实现合理的性能。在规则切换或重复过程之前发生的过程也是如此。比较分析表明,alpha 频带活动的调制与 theta 频带活动一样受到疲劳的强烈调节。讨论了这些发现对疲劳理论概念的意义。我们检查了认知灵活性中疲劳的神经生理学和功能神经解剖学基础。我们表明,额顶和初级感觉区域的 alpha 和 theta 调制对于理解认知灵活性中疲劳效应是至关重要的。

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