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Evaluation of the workload and drowsiness during car driving by using high resolution EEG activity and neurophysiologic indices

机译:利用高分辨率脑电活动和神经生理指标评估汽车驾驶中的工作量和嗜睡

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Sleep deprivation and/or a high workload situation can adversely affect driving performance, decreasing a driver's capacity to respond effectively in dangerous situations. In this context, to provide useful feedback and alert signals in real time to the drivers physiological and brain activities have been increasingly investigated in literature. In this study, we analyze the increase of cerebral workload and the insurgence of drowsiness during car driving in a simulated environment by using high resolution electroencephalographic techniques (EEG) as well as neurophysiologic variables such as heart rate (HR) and eye blinks rate (EBR). The simulated drive tasks were modulated with five levels of increasing difficulty. A workload index was then generated by using the EEG signals and the related HR and EBR signals. Results suggest that the derived workload index is sensitive to the mental efforts of the driver during the different drive tasks performed. Such workload index was based on the estimation the variation of EEG power spectra in the theta band over prefrontal cortical areas and the variation of the EEG power spectra over the parietal cortical areas in alpha band. In addition, results suggested as HR increases during the execution of the difficult driving tasks while instead it decreases at the insurgence of the drowsiness. Finally, the results obtained showed as the EBR variable increases of its values when the insurgence of drowsiness in the driver occurs. The proposed workload index could be then used in a near future to assess on-line the mental state of the driver during a drive task.
机译:睡眠不足和/或工作量大的状况可能会对驾驶性能产生不利影响,从而降低驾驶员在危险情况下做出有效反应的能力。在这种情况下,在文献中越来越多地研究了向驾驶员实时提供有用的反馈和警报信号的生理和大脑活动。在这项研究中,我们通过使用高分辨率脑电图技术(EEG)以及诸如心率(HR)和眨眼率(EBR)的神经生理变量来分析在模拟环境中汽车驾驶过程中大脑工作量的增加和嗜睡的发生)。模拟的驾驶任务以增加难度的五个级别进行了调制。然后,通过使用EEG信号以及相关的HR和EBR信号生成工作负荷指数。结果表明,在执行不同的驾驶任务期间,得出的工作负荷指数对驾驶员的精神努力很敏感。这样的工作量指数是基于对前额叶皮层区域theta带中的EEG功率谱的变化和α带中壁皮质层区域上的EEG功率谱的变化的估计。此外,结果表明,在执行艰苦的驾驶任务期间,HR会增加,而在困倦时,HR会降低。最后,获得的结果表明,当驾驶员产生嗜睡感时,EBR变量的值会增加。然后,可以在不久的将来使用提议的工作负荷指数来在线评估驾驶任务期间驾驶员的心理状态。

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