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Estimation of Human Workload from the Auditory Steady-State Response Recorded via a Wearable Electroencephalography System during Walking

机译:从步行过程中通过可穿戴式脑电图系统记录的听觉稳态响应估算人体工作量

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摘要

Workload in the human brain can be a useful marker of internal brain state. However, due to technical limitations, previous workload studies have been unable to record brain activity via conventional electroencephalography (EEG) and magnetoencephalography (MEG) devices in mobile participants. In this study, we used a wearable EEG system to estimate workload while participants walked in a naturalistic environment. Specifically, we used the auditory steady-state response (ASSR) which is an oscillatory brain activity evoked by repetitive auditory stimuli, as an estimation index of workload. Participants performed three types of N-back tasks, which were expected to command different workloads, while walking at a constant speed. We used a binaural 500 Hz pure tone with amplitude modulation at 40 Hz to evoke the ASSR. We found that the phase-locking index (PLI) of ASSR activity was significantly correlated with the degree of task difficulty, even for EEG data from few electrodes. Thus, ASSR appears to be an effective indicator of workload during walking in an ecologically valid environment.
机译:人脑的工作量可能是大脑内部状态的有用标志。但是,由于技术限制,以前的工作量研究无法通过移动参与者的常规脑电图(EEG)和磁脑电图(MEG)设备记录大脑活动。在这项研究中,我们使用可穿戴式EEG系统估算参与者在自然环境中行走时的工作量。具体来说,我们使用听觉稳态反应(ASSR)作为工作量的估计指标,该反应是重复性听觉刺激引起的振荡性脑活动。参与者执行了三种类型的N后背任务,这些任务将以恒定的速度行走,从而承担不同的工作量。我们使用双耳500 Hz纯音并在40 Hz处进行幅度调制来唤起ASSR。我们发现,即使对于极少数电极的EEG数据,ASSR活动的锁相指数(PLI)与任务难度也显着相关。因此,ASSR似乎是在生态有效环境中行走时工作量的有效指标。

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