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错误调节多任务情境下亚秒级时长的分类。

Error modulates categorization of subsecond durations in multitasking contexts.

机构信息

Department of Clinical Psychology, Faculty of Humanities & Literature, Shahid Bahonar University of Kerman, Kerman, Iran.

Neuroscience Research Center, Institute of Neuropharmacology, Kerman University of Medical Sciences, Kerman, Iran.

出版信息

Psychol Res. 2024 Jun;88(4):1253-1271. doi: 10.1007/s00426-024-01945-w. Epub 2024 Mar 16.

Abstract

Monitoring errors consumes limited cognitive resources and can disrupt subsequent task performance in multitasking scenarios. However, there is a dearth of empirical evidence concerning this interference with prospective estimation of time. In this study, we sought to investigate this issue through a serial multitasking experiment, employing a temporal bisection task as the primary task. We introduced two task contexts by implementing two different concurrent tasks. In one context, participants were tasked with discriminating the size difference between two visual items, while in the other context, they were required to judge the temporal order of similar visual items. The primary task remained the same for the entire experiment. Psychophysical metrics, including subjective bias (determined by the bisection point) and temporal sensitivity (measured by the Weber ratio), in addition to reaction time, remained unaltered in the primary task regardless of the perceptual context exerted by the concurrent tasks. However, commission of error in the concurrent tasks (i.e., non-specific errors) led to a right-ward shift in the bisection point, indicating underestimation of time after errors. Applying a drift-diffusion framework for temporal decision making, we observed alterations in the starting point and drift rate parameters, supporting the error-induced underestimation of time. The error-induced effects were all diminished with increasing a delay between the primary and concurrent task, indicating an adaptive response to errors at a trial level. Furthermore, the error-induced shift in the bisection point was diminished in the second half of the experiment, probably because of a decline in error significance and subsequent monitoring response. These findings indicate that non-specific errors impact the prospective estimation of time in multitasking scenarios, yet their effects can be alleviated through both local and global reallocation of cognitive resources from error processing to time processing.

摘要

在多任务场景中,监控错误会消耗有限的认知资源,并会干扰后续任务的表现。然而,关于这种对时间前瞻性估计的干扰,实证证据还很少。在这项研究中,我们通过一项序列多任务实验来研究这个问题,采用时间二分任务作为主要任务。我们通过实施两个不同的并发任务来引入两个任务情境。在一个情境中,参与者被要求区分两个视觉项目之间的大小差异,而在另一个情境中,他们被要求判断相似视觉项目的时间顺序。整个实验中主要任务保持不变。无论并发任务施加的感知情境如何,主要任务的心理物理度量(包括由二分点确定的主观偏差和由韦伯比测量的时间敏感性)以及反应时间都保持不变。然而,在并发任务中犯错误(即非特定错误)会导致二分点向右移动,表明错误后对时间的低估。应用时间决策的漂移-扩散框架,我们观察到起点和漂移率参数的变化,支持错误引起的时间低估。随着主任务和并发任务之间延迟的增加,错误引起的影响都减小,表明在试验水平上对错误的自适应反应。此外,在实验的后半部分,二分点的错误引起的偏移减小,可能是因为错误的重要性下降和随后的监控反应。这些发现表明,非特定错误会影响多任务场景中的时间前瞻性估计,但可以通过从错误处理到时间处理的局部和全局重新分配认知资源来减轻其影响。

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