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Wireless Soft Scalp Electronics and Virtual Reality System for Motor Imagery-based Brain-Machine Interfaces

Authors :
Mahmood, Musa
Kwon, Shinjae
Kim, Yun-Soung
Siriaraya, Panote
Choi, Jeongmoon
Boris, Otkhmezuri
Kang, Kyowon
Jun Yu, Ki
Jang, Young C
Ang, Chee Siang
Yeo, Woon-Hong
Mahmood, Musa
Kwon, Shinjae
Kim, Yun-Soung
Siriaraya, Panote
Choi, Jeongmoon
Boris, Otkhmezuri
Kang, Kyowon
Jun Yu, Ki
Jang, Young C
Ang, Chee Siang
Yeo, Woon-Hong
Publication Year :
2021

Abstract

Motor imagery offers an excellent opportunity as a stimulus-free paradigm for brain-machine interfaces. Conventional electroencephalography (EEG) for motor imagery requires a hair cap with multiple wired electrodes and messy gels, causing motion artifacts. Here, we introduce a wireless scalp electronic system with virtual reality for real-time, continuous classification of motor imagery brain signals. This low-profile, portable system integrates imperceptible microneedle electrodes and soft wireless circuits. Virtual reality addresses subject variance in detectable EEG response to motor imagery by providing clear, consistent visuals and instant biofeedback. The wearable soft system offers advantageous contact surface area and reduced electrode impedance density, resulting in significantly enhanced EEG signals and classification accuracy. The combination with convolutional neural network-machine learning provides a real-time, continuous motor imagery-based brain-machine interface. With four human subjects, the scalp electronic system offers a high classification accuracy (93.22±1.33% for four classes), allowing wireless, real-time control of a virtual reality game.

Details

Database :
OAIster
Notes :
application/pdf, application/pdf, application/pdf, Wireless Soft Scalp Electronics and Virtual Reality System for Motor Imagery-based Brain-Machine Interfaces, English, English, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1258096533
Document Type :
Electronic Resource