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Rejection positivity predicts trial-to-trial reaction times in an auditory selective attention task: a computational analysis of inhibitory control

机译:排斥反应阳性可预测听觉选择性注意任务中的试验至试验反应时间:抑制控制的计算分析

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摘要

A series of computer simulations using variants of a formal model of attention (Melara and Algom, ) probed the role of rejection positivity (RP), a slow-wave electroencephalographic (EEG) component, in the inhibitory control of distraction. Behavioral and EEG data were recorded as participants performed auditory selective attention tasks. Simulations that modulated processes of distractor inhibition accounted well for reaction-time (RT) performance, whereas those that modulated target excitation did not. A model that incorporated RP from actual EEG recordings in estimating distractor inhibition was superior in predicting changes in RT as a function of distractor salience across conditions. A model that additionally incorporated momentary fluctuations in EEG as the source of trial-to-trial variation in performance precisely predicted individual RTs within each condition. The results lend support to the linking proposition that RP controls the speed of responding to targets through the inhibitory control of distractors.
机译:使用形式化的注意力模型的变体(Melara和Algom,)进行的一系列计算机模拟探讨了抑制阳性反应(RPG)(一种慢波脑电图(EEG)成分)在抑制分心中的作用。在参与者执行听觉选择性注意任务时记录行为和EEG数据。调节干扰物抑制过程的模拟很好地说明了反应时间(RT)的性能,而那些调节目标激发的模拟则没有。结合实际脑电图记录中的RP来估计干扰物抑制作用的模型在预测RT变化随条件变化时的优势方面更为出色。该模型还附加了EEG的瞬时波动作为性能试验间变化的根源,可精确预测每种情况下的各个RT。这些结果为RP可以通过抑制干扰物控制靶标反应的速度提供了支持。

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