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Volumn 112, Issue 13, 2015, Pages 3920-3925

Soft, curved electrode systems capable of integration on the auricle as a persistent brain-computer interface

(21)  Norton, James J S a   Lee, Dong Sup b   Lee, Jung Woo c,d   Lee, Woosik b   Kwon, Ohjin b   Won, Phillip c   Jung, Sung Young c,e   Cheng, Huanyu f   Jeong, Jae Woong g   Akce, Abdullah h   Umunna, Stephen i   Na, Ilyoun c,e   Kwon, Yong Ho c   Wang, Xiao Qi j   Liu, Zhuang Jian k   Paik, Ungyu d   Huang, Yonggang f   Bretl, Timothy c   Yeo, Woon Hong b   Rogers, John A c   more..


Author keywords

Auricle integration; Brain computer interface; Soft electronics; Text speller

Indexed keywords

ALPHA RHYTHM; ARTICLE; BIOCOMPATIBILITY; BRAIN COMPUTER INTERFACE; CONTROLLED STUDY; CORRELATION ANALYSIS; DISSOLUTION; EAR; ELECTRIC RESISTANCE; ELECTROENCEPHALOGRAPH ELECTRODE; EVENT RELATED POTENTIAL; EVOKED VISUAL RESPONSE; EXERCISE; FRACTAL ANALYSIS; HUMAN; HUMAN EXPERIMENT; IMPEDANCE; INFRARED PHOTOGRAPHY; KERATINOCYTE; MASTOID; MECHANICS; NORMAL HUMAN; PRIORITY JOURNAL; SIGNAL NOISE RATIO; SLEEP; STEADY STATE; SURFACE PROPERTY; WIRELESS COMMUNICATION; COGNITION; COMPUTER; DEVICES; ELECTRODE; ELECTROENCEPHALOGRAPHY; ELECTRONICS; EQUIPMENT DESIGN; EXTERNAL EAR; PROCEDURES; SIGNAL PROCESSING;

EID: 84926303082     PISSN: 00278424     EISSN: 10916490     Source Type: Journal    
DOI: 10.1073/pnas.1424875112     Document Type: Article
Times cited : (307)

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