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运用逐步时间锁定和单次试验反应动力学解构错误相关负波(ERN)和中线额叶θ振荡的功能意义。

Deconstructing the functional significance of the error-related negativity (ERN) and midline frontal theta oscillations using stepwise time-locking and single-trial response dynamics.

作者信息

Kieffaber Paul D, Osborne Juston, Norton Emily, Hilimire Matthew

机构信息

Department of Psychological Sciences, College of William & Mary, Williamsburg, VA, USA.

Department of Psychological Sciences, College of William & Mary, Williamsburg, VA, USA; Department of Psychology, Northwestern University, IL, USA.

出版信息

Neuroimage. 2023 Jul 1;274:120113. doi: 10.1016/j.neuroimage.2023.120113. Epub 2023 Apr 14.

Abstract

Error-related electroencephalographic potentials have been used for decades to develop theoretical models of response monitoring processes, study altered cognitive functioning in clinical populations, and more recently, to improve the performance of brain-computer interfaces. However, the vast majority of this research relies on discrete behavioral responses that confound error detection, response cancelation, error correction, and post-error cognitive and affective processes. By contrast, the present study demonstrates a novel, complementary method for isolating the functional correlates of error-related electroencephalographic responses using single-trial kinematic analyses of cursor trajectories and a stepwise time-locking analysis. The results reveal that the latency of the ERN, Pe, and medial-frontal theta oscillations are all strongly positively correlated with the latency at which an initiated error response is canceled, as indicated by the peak deceleration of the initiated movement prior to a corrective response. Results are discussed with respect to current theoretical models of error-related brain potentials and potential relevance to clinical applications.

摘要

与错误相关的脑电图电位已被用于数十年,以开发反应监测过程的理论模型、研究临床人群中认知功能的改变,以及最近用于改善脑机接口的性能。然而,这项研究的绝大多数依赖于离散的行为反应,这些反应混淆了错误检测、反应取消、错误纠正以及错误后认知和情感过程。相比之下,本研究展示了一种新颖的补充方法,通过对光标轨迹的单次试验运动学分析和逐步时间锁定分析来分离与错误相关的脑电图反应的功能相关性。结果表明,ERN、Pe和内侧额叶θ振荡的潜伏期都与启动的错误反应被取消的潜伏期呈强烈正相关,这由纠正反应之前启动运动的峰值减速所表明。针对当前与错误相关的脑电位理论模型以及与临床应用的潜在相关性对结果进行了讨论。

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