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Real-Time Vigilance Estimation Using Mobile Wireless Mindo EEG Device with Spring-Loaded Sensors

机译:使用带有弹簧加载传感器的移动无线Mindo EEG设备进行实时警戒估计

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Monitoring the neurophysiological activities of human brain dynamics in an operational environment poses a severe measurement challenge using current laboratory-oriented biosensor technology. The goal of this research is to design, develop and test the wearable and wireless dry-electrode EEG human-computer interface (HCI) that can allow assessment of brain activities of participants actively performing ordinary tasks in natural body positions and situations within a real operational environment. Its implications in HCI were demonstrated through a sample application: vigilance-state prediction of participants performing a realistic sustained-attention driving task. Besides, this study further developed an online signal processing for extracting EEG features and assessing cognitive performance. We demonstrated the feasibility of using dry EEG sensors and miniaturized supporting hardware/software to continuously collect EEG data recorded from hairy sites (i.e., occipital region) in a realistic VR-based dynamic driving simulator.
机译:使用当前的面向实验室的生物传感器技术,在操作环境中监视人脑动力学的神经生理活动提出了严峻的测量挑战。这项研究的目的是设计,开发和测试可穿戴和无线干电极EEG人机界面(HCI),该界面可以评估参与者在实际操作中在自然的身体位置和情况下主动执行普通任务的大脑活动环境。通过一个示例应用程序证明了其对人机交互的影响:对执行现实的持续注意力驾驶任务的参与者保持警惕状态的预测。此外,本研究进一步开发了一种在线信号处理方法,用于提取脑电图特征并评估认知表现。我们展示了使用干式EEG传感器和小型化的支持硬件/软件在基于VR的逼真的动态驾驶模拟器中连续收集从毛发部位(即枕骨部位)记录的EEG数据的可行性。

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