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The Pupillary Orienting Response Predicts Adaptive Behavioral Adjustment after Errors

机译:瞳孔定向反应预测误差后的自适应行为调节

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摘要

Reaction time (RT) is commonly observed to slow down after an error. This post-error slowing (PES) has been thought to arise from the strategic adoption of a more cautious response mode following deployment of cognitive control. Recently, an alternative account has suggested that PES results from interference due to an error-evoked orienting response. We investigated whether error-related orienting may in fact be a pre-cursor to adaptive post-error behavioral adjustment when the orienting response resolves before subsequent trial onset. We measured pupil dilation, a prototypical measure of autonomic orienting, during performance of a choice RT task with long inter-stimulus intervals, and found that the trial-by-trial magnitude of the error-evoked pupil response positively predicted both PES magnitude and the likelihood that the following response would be correct. These combined findings suggest that the magnitude of the error-related orienting response predicts an adaptive change of response strategy following errors, and thereby promote a reconciliation of the orienting and adaptive control accounts of PES.
机译:通常会观察到错误后反应时间(RT)变慢。据认为,这种错误后减慢(PES)是由于在部署认知控制后战略上采取更为谨慎的响应模式而引起的。近来,另一种说法表明,PES是由错误引起的定向响应引起的干扰引起的。我们研究了当定向反应在随后的试验开始之前解决时,与错误相关的定向是否实际上可能是适应性的错误后行为调整的先兆。我们测量了瞳孔扩张,这是自主定向的原型测量,在执行具有较长的刺激间隔的选择RT任务期间,发现由误差引起的瞳孔反应的逐次试验量可以肯定地预测PES量和PES量。以下响应正确的可能性。这些综合的发现表明,与错误相关的定向响应的幅度预测了错误后响应策略的适应性变化,从而促进了PES定向和适应性控制账户的协调。

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