Real-time finger motion recognition using skin-conformable electronics

  • Cho, Haein; 
  • Lee, Inho; 
  • Jang, Jingon; 
  • Kim, Jae-Hyun; 
  • Lee, Hanbee; 
  • ... Wang, Gunuk; 
  • 외 1명
Citations

WEB OF SCIENCE

82
Citations

SCOPUS

81

초록

An integrated artificial synapse array and light-responsive motion sensor can be conformably attached to a finger and used to track finger motion in three-dimensional space. Interpreting and tracking finger motion in free space is of use in the development of control interfaces for augmented and virtual reality systems. One approach to create human-machine interfaces capable of accurate finger motion recognition is to use wearable sensors with integrated neuromorphic computing. Here we show that an integrated titanium-oxide-based artificial synapse array and organic motion sensor can be conformably attached to a finger and provide real-time motion recognition. The synaptic device and sensor exhibit well-defined synaptic and light-responsive electrical properties, respectively, as well as flexibility and mechanical robustness. The integrated synapses-sensor enables optical-electrical signal conversion and summation of post-synaptic current. Finger motions for time-resolved digit patterns (0-9) can be learned and recognized with an accuracy of up to 95% at varying strains and up to 100 strain cycles.

키워드

MEMORY; RECOMBINATION; DROPOUT; DEVICES
제목
Real-time finger motion recognition using skin-conformable electronics
저자
Cho, Haein; Lee, Inho; Jang, Jingon; Kim, Jae-Hyun; Lee, Hanbee; Park, Sungjun; Wang, Gunuk
DOI
10.1038/s41928-023-01012-z
발행일
2023-08-10
유형
Article; Early Access
저널명
Nature Electronics
권
6
호
8
페이지
619 ~ 629