EEG-based brain dynamics of driving distraction

Chin-Teng Lin, Shi-An Chen, L. Ko, Yu-kai Wang
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引用次数: 37

Abstract

Distraction during driving has been recognized as a significant cause of traffic accidents. The aim of this study is to investigate Electroencephalography (EEG) -based brain dynamics in response to driving distraction. To study human cognition under specific driving tasks in a simulated driving experiment, this study utilized two simulated events including unexpected car deviations and mathematics questions. The raw data were first separated into independent brain sources by Independent Component Analysis. Then, the EEG power spectra were used to evaluate the time-frequency brain dynamics. Results showed that increases of theta band and beta band power were observed in the frontal cortex. Further analysis demonstrated that reaction time and multiple cortical EEG power had high correlation. Thus, this study suggested that the features extracted by EEG signal processing, which were the theta power increases in frontal area, could be used as the distracted indexes for early detection of driver inattention in real driving.
基于脑电图的驾驶分心的大脑动力学
开车时分心已被认为是交通事故的一个重要原因。本研究的目的是研究基于脑电图(EEG)的大脑动力学对驾驶分心的反应。在模拟驾驶实验中,为了研究人类在特定驾驶任务下的认知,本研究采用了车辆意外偏离和数学问题两个模拟事件。原始数据首先通过独立成分分析分离成独立的脑源。然后利用脑电功率谱评价脑时频动态。结果表明,脑额叶皮层的θ波段和β波段功率增加。进一步分析表明,反应时间与多次皮层脑电功率具有较高的相关性。因此,本研究提出,脑电信号处理提取的额叶区θ波功率增加特征可以作为驾驶员在真实驾驶中注意力不集中的早期检测指标。
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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