Sleep deprivation affects interference control: A diffusion model analysis.

IF 2.1 3区 心理学 Q2 PSYCHOLOGY
Jiaorong Luo, Chao Hao, Ning Ma, Ling Wang
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引用次数: 0

Abstract

Previous studies suggest that interference control may be unaffected by sleep deprivation based on the unchanged interference effects (reaction time [RT] differences between incongruent and congruent conditions), while ignoring the overall slower RTs after sleep deprivation. In the present study, we interpreted these results from a new angle using a variant of diffusion model, diffusion model for conflict tasks (DMC), and investigated whether and how interference control is affected by sleep deprivation. Mathematical derivations and model simulations showed that unchanged task-irrelevant information processing (i.e., unaffected interference control) may not lead to the observed unchanged interference effects when considering the overall slower RTs after sleep deprivation (due to either decreased drift rate of task-relevant information or increased decision boundary). Therefore, the unchanged interference effects do not necessarily indicate unchanged interference control. We then conducted a Simon task following one night of sleep deprivation or normal sleep, and fitted the DMC to the data. Experimental results showed that the Simon effect was reversed when most of the trials were incongruent, indicating that participants used learned spatially incompatible stimulus-response associations to predict responses. However, the Simon effects in both mean RTs and RT distributions were not significantly modulated by sleep deprivation. Model fits showed that the drift rate of task-relevant information decreased and the time-to-peak of task-irrelevant activation increased after sleep deprivation. These results suggest that central information processing was degraded after sleep loss, and most importantly, task-irrelevant activation increased after sleep deprivation as interference control was impaired. (PsycInfo Database Record (c) 2024 APA, all rights reserved).

睡眠不足影响干扰控制:扩散模型分析
以往的研究表明,干扰控制可能不受睡眠剥夺的影响,其依据是干扰效应(不一致与一致条件下的反应时间[RT]差异)不变,而忽略了睡眠剥夺后整体反应时间变慢的情况。在本研究中,我们从一个新的角度利用扩散模型的变体--冲突任务扩散模型(DMC)来解释这些结果,并研究睡眠不足是否以及如何影响干扰控制。数学推导和模型模拟表明,如果考虑到睡眠剥夺后总体较慢的RT(由于任务相关信息漂移率降低或决策边界增加),任务相关信息处理不变(即干扰控制不受影响)可能不会导致观察到的干扰效应不变。因此,干扰效应不变并不一定表明干扰控制不变。随后,我们在剥夺睡眠或正常睡眠一晚后进行了一项西蒙任务,并将 DMC 与数据进行了拟合。实验结果表明,当大多数试验都是不协调的时候,西蒙效应会发生逆转,这表明被试利用学习到的空间上不协调的刺激-反应联想来预测反应。然而,平均RT和RT分布的西蒙效应并没有受到睡眠剥夺的显著影响。模型拟合结果表明,剥夺睡眠后,任务相关信息的漂移率降低,任务无关激活的峰值时间增加。这些结果表明,睡眠不足后中枢信息处理能力下降,最重要的是,睡眠不足后与任务无关的激活增加,因为干扰控制能力受损。(PsycInfo Database Record (c) 2024 APA, 版权所有)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.50
自引率
9.50%
发文量
145
审稿时长
4-8 weeks
期刊介绍: The Journal of Experimental Psychology: Human Perception and Performance publishes studies on perception, control of action, perceptual aspects of language processing, and related cognitive processes.
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