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脑电图α纺锤波和听觉干扰下的制动反应时间延长在道路驾驶研究中。

EEG alpha spindles and prolonged brake reaction times during auditory distraction in an on-road driving study.

机构信息

Fraunhofer IAO, Germany; Heinrich Heine University Düsseldorf, Germany.

出版信息

Accid Anal Prev. 2014 Jan;62:110-8. doi: 10.1016/j.aap.2013.08.026. Epub 2013 Sep 29.

Abstract

Driver distraction is responsible for a substantial number of traffic accidents. This paper describes the impact of an auditory secondary task on drivers' mental states during a primary driving task. N=20 participants performed the test procedure in a car following task with repeated forced braking on a non-public test track. Performance measures (provoked reaction time to brake lights) and brain activity (EEG alpha spindles) were analyzed to describe distracted drivers. Further, a classification approach was used to investigate whether alpha spindles can predict drivers' mental states. Results show that reaction times and alpha spindle rate increased with time-on-task. Moreover, brake reaction times and alpha spindle rate were significantly higher while driving with auditory secondary task opposed to driving only. In single-trial classification, a combination of spindle parameters yielded a median classification error of about 8% in discriminating the distracted from the alert driving. Reduced driving performance (i.e., prolonged brake reaction times) during increased cognitive load is assumed to be indicated by EEG alpha spindles, enabling the quantification of driver distraction in experiments on public roads without verbally assessing the drivers' mental states.

摘要

驾驶员分神是导致大量交通事故的原因之一。本文描述了在主要驾驶任务期间,听觉次要任务对驾驶员心理状态的影响。20 名参与者在非公开测试轨道上的跟车任务中进行了测试程序,该任务重复进行强制制动。分析了性能指标(对制动灯的反应时间)和脑电阿尔法(alpha)活动(alpha 纺锤波),以描述分心的驾驶员。此外,还使用分类方法来研究 alpha 纺锤波是否可以预测驾驶员的心理状态。结果表明,随着任务时间的增加,反应时间和 alpha 纺锤波频率增加。此外,与仅驾驶相比,在进行听觉次要任务时,制动反应时间和 alpha 纺锤波频率显著更高。在单试分类中,使用纺锤波参数的组合可以在将分心驾驶与警觉驾驶区分开来的情况下,将分类错误率降低到约 8%。假设在认知负荷增加时,驾驶性能(即延长制动反应时间)降低可以通过 EEG alpha 纺锤波来指示,从而可以在没有口头评估驾驶员心理状态的情况下,在公共道路上的实验中量化驾驶员分神。

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