Suppr超能文献

与错误相关负波的θ脑电图动力学

Theta EEG dynamics of the error-related negativity.

作者信息

Trujillo Logan T, Allen John J B

机构信息

Department of Psychology, University of Arizona, Tucson, AZ 85721-0068, USA.

出版信息

Clin Neurophysiol. 2007 Mar;118(3):645-68. doi: 10.1016/j.clinph.2006.11.009. Epub 2007 Jan 16.

Abstract

OBJECTIVE

The error-related negativity (ERN) is a response-locked brain potential (ERP) occurring 80-100ms following response errors. This report contrasts three views of the genesis of the ERN, testing the classic view that time-locked phasic bursts give rise to the ERN against the view that the ERN arises from a pure phase-resetting of ongoing theta (4-7Hz) EEG activity and the view that the ERN is generated - at least in part - by a phase-resetting and amplitude enhancement of ongoing theta EEG activity.

METHODS

Time-domain ERP analyses were augmented with time-frequency investigations of phase-locked and non-phase-locked spectral power, and inter-trial phase coherence (ITPC) computed from individual EEG trials, examining time courses and scalp topographies. Simulations based on the assumptions of the classic, pure phase-resetting, and phase-resetting plus enhancement views, using parameters from each subject's empirical data, were used to contrast the time-frequency findings that could be expected if one or more of these hypotheses adequately modeled the data.

RESULTS

Error responses produced larger amplitude activity than correct responses in time-domain ERPs immediately following responses, as expected. Time-frequency analyses revealed that significant error-related post-response increases in total spectral power (phase- and non-phase-locked), phase-locked power, and ITPC were primarily restricted to the theta range, with this effect located over midfrontocentral sites, with a temporal distribution from approximately 150-200ms prior to the button press and persisting up to 400ms post-button press. The increase in non-phase-locked power (total power minus phase-locked power) was larger than phase-locked power, indicating that the bulk of the theta event-related dynamics were not phase-locked to response. Results of the simulations revealed a good fit for data simulated according to the phase-locking with amplitude enhancement perspective, and a poor fit for data simulated according to the classic view and the pure phase-resetting view.

CONCLUSIONS

Error responses produce not only phase-locked increases in theta EEG activity, but also increases in non-phase-locked theta, both of which share a similar topography.

SIGNIFICANCE

The findings are thus consistent with the notion advanced by Luu et al. [Luu P, Tucker DM, Makeig S. Frontal midline theta and the error-related negativity; neurophysiological mechanisms of action regulation. Clin Neurophysiol 2004;115:1821-35] that the ERN emerges, at least in part, from a phase-resetting and phase-locking of ongoing theta-band activity, in the context of a general increase in theta power following errors.

摘要

目的

错误相关负波(ERN)是一种与反应相关的脑电信号(ERP),在反应错误后80 - 100毫秒出现。本报告对比了关于ERN起源的三种观点,检验经典观点(即时间锁定的相位突发产生ERN)与以下两种观点:一种认为ERN源于正在进行的θ波(4 - 7Hz)脑电活动的纯粹相位重置,另一种认为ERN至少部分是由正在进行的θ波脑电活动的相位重置和幅度增强所产生。

方法

通过对锁相和非锁相频谱功率的时频研究以及从个体脑电试验计算得出的试次间相位相干性(ITPC)来增强时域ERP分析,同时检查时间进程和头皮地形图。基于经典观点、纯粹相位重置观点以及相位重置加增强观点的假设,使用每个受试者的经验数据参数进行模拟,以对比如果这些假设中的一个或多个能够充分模拟数据时预期的时频结果。

结果

正如预期的那样,在反应后的时域ERP中,错误反应产生的活动幅度大于正确反应。时频分析表明,与错误相关的反应后总频谱功率(锁相和非锁相)、锁相功率和ITPC的显著增加主要局限于θ波范围,这种效应位于额中中央部位,时间分布从按键前约150 - 200毫秒开始,持续到按键后400毫秒。非锁相功率(总功率减去锁相功率)的增加大于锁相功率,这表明大部分与θ波事件相关的动态并非与反应锁相。模拟结果显示,根据相位锁定与幅度增强观点模拟的数据与实际数据拟合良好,而根据经典观点和纯粹相位重置观点模拟的数据与实际数据拟合较差。

结论

错误反应不仅会使θ波脑电活动产生锁相增加,还会使非锁相θ波增加,二者具有相似的地形图。

意义

因此,这些发现与Luu等人[Luu P, Tucker DM, Makeig S. Frontal midline theta and the error-related negativity; neurophysiological mechanisms of action regulation. Clin Neurophysiol 2004;115:1821 - 35]提出的观点一致,即ERN至少部分源于正在进行的θ波频段活动的相位重置和锁相,且在错误后θ波功率普遍增加的背景下。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验