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睡眠剥夺与持续注意力表现:数学与认知建模的整合。

Sleep deprivation and sustained attention performance: integrating mathematical and cognitive modeling.

机构信息

Air Force Research Laboratory, Mesa The Pennsylvania State University, University Park University of Pennsylvania School of Medicine, Philadelphia.

出版信息

Cogn Sci. 2009 Jul;33(5):880-910. doi: 10.1111/j.1551-6709.2009.01032.x. Epub 2009 Apr 8.

Abstract

A long history of research has revealed many neurophysiological changes and concomitant behavioral impacts of sleep deprivation, sleep restriction, and circadian rhythms. Little research, however, has been conducted in the area of computational cognitive modeling to understand the information processing mechanisms through which neurobehavioral factors operate to produce degradations in human performance. Our approach to understanding this relationship is to link predictions of overall cognitive functioning, or alertness, from existing biomathematical models to information processing parameters in a cognitive architecture, leveraging the strengths from each to develop a more comprehensive explanation. The integration of these methodologies is used to account for changes in human performance on a sustained attention task across 88 h of total sleep deprivation. The integrated model captures changes due to time awake and circadian rhythms, and it also provides an account for underlying changes in the cognitive processes that give rise to those effects. The results show the potential for developing mechanistic accounts of how fatigue impacts cognition, and they illustrate the increased explanatory power that is possible by combining theoretical insights from multiple methodologies.

摘要

长期以来的研究揭示了睡眠剥夺、睡眠限制和昼夜节律对神经生理学的许多变化及其伴随的行为影响。然而,在计算认知建模领域,几乎没有研究用于理解神经行为因素通过哪些信息处理机制来产生人类表现的退化。我们理解这种关系的方法是将现有生物数学模型对整体认知功能(或警觉性)的预测与认知架构中的信息处理参数联系起来,利用彼此的优势来建立更全面的解释。这些方法的整合用于解释在 88 小时的完全睡眠剥夺期间,人类在持续注意力任务上的表现变化。该综合模型可以捕捉到由于清醒时间和昼夜节律而导致的变化,并且还可以解释导致这些影响的认知过程的潜在变化。结果表明,有可能开发出关于疲劳如何影响认知的机械解释,并且它们说明了通过结合来自多种方法的理论见解,可能获得更大的解释能力。

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