Soft, wireless periocular wearable electronics for real-time detection of eye vergence in a virtual reality toward mobile eye therapies
Author(s) -
Saswat Mishra,
YunSoung Kim,
Jittrapol Intarasirisawat,
Young-Tae Kwon,
Yong-Kuk Lee,
Musa Mahmood,
HyoRyoung Lim,
Robert Herbert,
Ki Jun Yu,
Chee Siang Ang,
WoonHong Yeo
Publication year - 2020
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aay1729
Subject(s) - wearable computer , wireless , computer science , virtual reality , electronics , wearable technology , human–computer interaction , mobile device , vergence (optics) , computer vision , telecommunications , embedded system , engineering , electrical engineering , operating system
Recent advancements in electronic packaging and image processing techniques have opened the possibility for optics-based portable eye tracking approaches, but technical and safety hurdles limit safe implementation toward wearable applications. Here, we introduce a fully wearable, wireless soft electronic system that offers a portable, highly sensitive tracking of eye movements (vergence) via the combination of skin-conformal sensors and a virtual reality system. Advancement of material processing and printing technologies based on aerosol jet printing enables reliable manufacturing of skin-like sensors, while the flexible hybrid circuit based on elastomer and chip integration allows comfortable integration with a user's head. Analytical and computational study of a data classification algorithm provides a highly accurate tool for real-time detection and classification of ocular motions. In vivo demonstration with 14 human subjects captures the potential of the wearable electronics as a portable therapy system, whose minimized form factor facilitates seamless interplay with traditional wearable hardware.
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