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认知负荷与瞳孔不安的关系。

The relation of cognitive load and pupillary unrest.

机构信息

Institute and Outpatient Clinic for Occupational, Social and Environmental Medicine, Ludwig-Maximilians-University Munich, Ziemssenstr. 1, 80336 Munich, Germany.

出版信息

Int Arch Occup Environ Health. 2011 Jun;84(5):561-7. doi: 10.1007/s00420-010-0590-7. Epub 2010 Oct 21.

Abstract

OBJECTIVE

This study examines the relationship between pupillary unrest (PU) and cognitive load.

BACKGROUND

PU represents a measure of reduced central nervous tonic arousal (sleepiness). A loss of tonic arousal can be associated with difficulties in maintaining the required level of performance. Thus, the measurement of tonic arousal in occupational contexts can help to prevent overload or errors.

METHOD

We compared a group with high cognitive load (30 apron controllers of an international airport) with a control group with low cognitive load (63 healthy people during their free time) in a non-randomized experimental design with pre- and post-test assessment of PU. PU was scanned by an infrared sensor with a frequency of 25 Hz and a resolution of .05 mm. To control for circadian effects, measurements for both groups were taken at the same time of the day.

RESULTS

High PU at the start of the shift correlated with high perceived load during the shift. There were no indications of reverse effects. Analyses of group x time effects with generalized linear models (repeated measures) revealed that cognitive load did in no way affected PU.

CONCLUSION

Initially low tonic arousal (indicated by high PU) may predict subsequent workload, but being exposed to high cognitive load does not influence tonic arousal after the end of the shift. With that, the study contributes to valid interpretations of pupillary unrest measurements in occupational contexts.

摘要

目的

本研究考察瞳孔活动(PU)与认知负荷之间的关系。

背景

PU 代表中枢神经紧张性觉醒降低(困倦)的一种测量方法。紧张性觉醒的丧失可能与维持所需表现水平的困难有关。因此,在职业环境中测量紧张性觉醒有助于预防过载或错误。

方法

我们在一项非随机实验设计中比较了高认知负荷组(30 名国际机场围裙控制器)和低认知负荷组(63 名在闲暇时间的健康人),对瞳孔活动进行了预测试和后测试评估。瞳孔活动通过频率为 25 Hz、分辨率为.05 mm 的红外传感器进行扫描。为了控制昼夜节律的影响,两组的测量均在一天中的同一时间进行。

结果

轮班开始时高 PU 与轮班期间高感知负荷相关。没有相反的影响迹象。使用广义线性模型(重复测量)进行的组 x 时间效应分析表明,认知负荷并没有影响瞳孔活动。

结论

最初的低紧张性觉醒(表现为高 PU)可能预示着随后的工作量,但在轮班结束后,暴露于高认知负荷并不会影响紧张性觉醒。因此,该研究有助于对职业环境中瞳孔活动测量结果进行有效的解释。

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