Exploring the effect of transient cognitive load on bodily arousal and secondary task performance

Jan Ehlers
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引用次数: 4

Abstract

Human failure constitutes a major cause for accidents of all kinds. Especially drowsiness or situations of cognitive overload impair the ability to react quickly and appropriately to critical events. The present study applies brief periods of monotonous and repetitive trains of thoughts to induce states of hypovigilance and, on the other hand, arithmetical exercises to increase cognitive load. Aim is to determine whether transient cognitive events exert an influence on bodily arousal (here: pupil diameter) as well as on secondary task reaction times. Findings confirm that pupil diameter constitutes a valid indicator of cognitive load. Reaction times emerge particularly slow during high cognitive load, whereas the risk of overlooking brief cue stimuli is not increased. However, it remains unclear whether a valid state of cognitive underload can be induced on basis of short periods of repetitive thoughts. While the associated pupil size changes do not differ from baseline dynamics, motor reactions occur considerably slower compared to a control condition.
探讨短暂认知负荷对身体觉醒和二次任务表现的影响
人为失误是造成各种事故的主要原因。尤其是困倦或认知超载的情况会损害对关键事件做出快速和适当反应的能力。目前的研究采用短时间的单调和重复的思想训练来诱导低警觉性状态,另一方面,算术练习来增加认知负荷。目的是确定短暂的认知事件是否对身体觉醒(这里是瞳孔直径)以及次要任务的反应时间产生影响。研究结果证实瞳孔直径是认知负荷的有效指标。在高认知负荷时,反应时间特别慢,而忽略简短提示刺激的风险并没有增加。然而,目前尚不清楚是否一种有效的认知负荷不足状态可以在短时间重复思考的基础上产生。虽然相关的瞳孔大小变化与基线动力学没有区别,但与控制条件相比,运动反应发生得要慢得多。
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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