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Full-Text Articles in Engineering
Soft, Curved Electrode Systems Capable Of Integration On The Auricle As A Persistent Brain–Computer Interface, James J. S. Norton, Dong Sup Lee, Jung Woo Lee, Woosik Lee, Ohjin Kwon, Philip Won, Sung-Young Jung, Huanyu Cheng, Jae-Woong Jeong, Abdullah Akce, Stephen Umunna, Ilyoun Na, Yong Ho Kwon, Xiao-Qi Wang, Zhuangjian Liu, Ungyu Paik, Yonggang Huang, Timothy Bretl, Woon-Hong Yeo, John A. Rogers
Soft, Curved Electrode Systems Capable Of Integration On The Auricle As A Persistent Brain–Computer Interface, James J. S. Norton, Dong Sup Lee, Jung Woo Lee, Woosik Lee, Ohjin Kwon, Philip Won, Sung-Young Jung, Huanyu Cheng, Jae-Woong Jeong, Abdullah Akce, Stephen Umunna, Ilyoun Na, Yong Ho Kwon, Xiao-Qi Wang, Zhuangjian Liu, Ungyu Paik, Yonggang Huang, Timothy Bretl, Woon-Hong Yeo, John A. Rogers
Mechanical and Nuclear Engineering Publications
Recent advances in electrodes for noninvasive recording of electroencephalograms expand opportunities collecting such data for diagnosis of neurological disorders and brain–computer interfaces. Existing technologies, however, cannot be used effectively in continuous, uninterrupted modes for more than a few days due to irritation and irreversible degradation in the electrical and mechanical properties of the skin interface. Here we introduce a soft, foldable collection of electrodes in open, fractal mesh geometries that can mount directly and chronically on the complex surface topology of the auricle and the mastoid, to provide high-fidelity and long-term capture of electroencephalograms in ways that avoid any significant …