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挑战极限:反应时间反馈会增强认知控制过程中的哪些过程?

Pushing to the Limits: What Processes during Cognitive Control are Enhanced by Reaction-Time Feedback?

作者信息

Prochnow Astrid, Mückschel Moritz, Beste Christian

机构信息

Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, Technische Universität Dresden, D-01309 Dresden, Germany.

出版信息

Cereb Cortex Commun. 2021 Apr 7;2(2):tgab027. doi: 10.1093/texcom/tgab027. eCollection 2021.

Abstract

To respond as quickly as possible in a given task is a widely used instruction in cognitive neuroscience; however, the neural processes modulated by this common experimental procedure remain largely elusive. We investigated the underlying neurophysiological processes combining electroencephalography (EEG) signal decomposition (residue iteration decomposition, RIDE) and source localization. We show that trial-based response speed instructions enhance behavioral performance in conflicting trials, but slightly impair performance in nonconflicting trials. The modulation seen in conflicting trials was found at several coding levels in EEG data using RIDE. In the S-cluster N2 time window, this modulation was associated with modulated activation in the posterior cingulate cortex and the superior frontal gyrus. Furthermore, in the C-cluster P3 time window, this modulation was associated with modulated activation in the middle frontal gyrus. Interestingly, in the R-cluster P3 time window, this modulation was strongest according to statistical effect sizes, associated with modulated activity in the primary motor cortex. Reaction-time feedback mainly modulates response motor execution processes, whereas attentional and response selection processes are less affected. The study underlines the importance of being aware of how experimental instructions influence the behavior and neurophysiological processes.

摘要

在给定任务中尽可能快速做出反应是认知神经科学中广泛使用的一项指令;然而,这一常见实验程序所调制的神经过程在很大程度上仍然难以捉摸。我们结合脑电图(EEG)信号分解(残差迭代分解,RIDE)和源定位研究了潜在的神经生理过程。我们发现,基于试次的反应速度指令在冲突试次中提高了行为表现,但在非冲突试次中略微损害了表现。使用RIDE在EEG数据的几个编码水平上发现了冲突试次中的调制。在S簇N2时间窗口中,这种调制与后扣带回皮层和额上回的激活调制有关。此外,在C簇P3时间窗口中,这种调制与额中回的激活调制有关。有趣的是,在R簇P3时间窗口中,根据统计效应大小,这种调制最强,与初级运动皮层的活动调制有关。反应时反馈主要调制反应运动执行过程,而注意力和反应选择过程受影响较小。该研究强调了意识到实验指令如何影响行为和神经生理过程的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27bb/8153012/a5ee249dcc0d/tgab027f1.jpg

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