脑电图
电极
睡眠(系统调用)
生物医学工程
材料科学
睡眠质量
头皮
医学
计算机科学
化学
外科
药理学
失眠症
操作系统
精神科
物理化学
作者
Ju-Chun Hsieh,Weilong He,Dhivya Venkatraghavan,Victoria B. Koptelova,Ahmad Zeeshan,Ilya Pyatnitskiy,Wenliang Wang,Jinmo Jeong,Kai Wing Kevin Tang,Cody Harmeier,C. Li,Manini Rana,Subramanian Iyer,Eesha Nayak,Hong Ding,Pradeep N. Modur,Vincent Mysliwiec,David M. Schnyer,Benjamin Baird,Huiliang Wang
标识
DOI:10.1016/j.device.2023.100182
摘要
High-quality and continuous electroencephalogram (EEG) monitoring is desirable for sleep research, sleep monitoring, and the evaluation and treatment of sleep disorders. Existing continuous EEG monitoring technologies suffer from fragile connections, long-term stability, and complex preparation for electrodes under real-life conditions. Here, we report an injectable and spontaneously cross-linked hydrogel electrode for long-term EEG applications. Specifically, our electrodes have a long-term low impedance on hairy scalp regions of 17.53 kΩ for more than 8 h of recording, high adhesiveness on the skin of 0.92 N cm−1 with repeated attachment capability, and long-term wearability during daily activities and overnight sleep. In addition, our electrodes demonstrate a superior signal-to-noise-ratio of 23.97 decibels (dB) in comparison with commercial wet electrodes of 17.98 dB and share a high agreement of sleep stage classification with commercial wet electrodes during multichannel recording. These results exhibit the potential of our on-site-formed electrodes for high-quality, prolonged EEG monitoring in various scenarios.
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