TY - JOUR
T1 - Skin-Integrated Wireless Odor Message Delivery Electronics for the Deaf-blind
AU - Park, Wooyoung
AU - Liu, Yiming
AU - Jiao, Yanli
AU - Shi, Rui
AU - Nan, Jin
AU - Yiu, Chun Ki
AU - Huang, Xingcan
AU - Chen, Yao
AU - Li, Wenyang
AU - Gao, Yuyu
AU - Zhang, Qiang
AU - Li, Dengfeng
AU - Jia, Shengxin
AU - Gao, Zhan
AU - Song, Weike
AU - Lam, Marcus Man Ho
AU - Dai, Zhenxue
AU - Zhao, Zhao
AU - Li, Yuhang
AU - Yu, Xinge
N1 - Publisher Copyright:
© 2023 American Chemical Society.
PY - 2023/11/14
Y1 - 2023/11/14
N2 - Deaf-blindness limits daily human activities, especially interactive modes of audio and visual perception. Although the developed standards have been verified as alternative communication methods, they are uncommon to the nondisabled due to the complicated learning process and inefficiency in terms of communicating distance and throughput. Therefore, the development of communication techniques employing innate sensory abilities including olfaction related to the cerebral limbic system processing emotions, memories, and recognition has been suggested for reducing the training level and increasing communication efficiency. Here, a skin-integrated and wireless olfactory interface system exploiting arrays of miniaturized odor generators (OGs) based on melting/solidifying odorous wax to release smell is introduced for establishing an advanced communication system between deaf-blind and non-deaf-blind. By optimizing the structure design of the OGs, each OG device is as small as 0.24 cm3 (length × width × height of 11 mm × 10 mm × 2.2 mm), enabling integration of up to 8 OGs on the epidermis between nose and lip for direct and rapid olfactory drive with a weight of only 24.56 g. By generating single or mixed odors, different linked messages could be delivered to a user within a short period in a wireless and programmable way. By adopting the olfactory interface message delivery system, the recognition rates for the messages have been improved 1.5 times that of the touch-based method, while the response times were immensely decreased 4 times. Thus, the presented wearable olfactory interface system exhibits great potential as an alternative message delivery method for the deaf-blind.
AB - Deaf-blindness limits daily human activities, especially interactive modes of audio and visual perception. Although the developed standards have been verified as alternative communication methods, they are uncommon to the nondisabled due to the complicated learning process and inefficiency in terms of communicating distance and throughput. Therefore, the development of communication techniques employing innate sensory abilities including olfaction related to the cerebral limbic system processing emotions, memories, and recognition has been suggested for reducing the training level and increasing communication efficiency. Here, a skin-integrated and wireless olfactory interface system exploiting arrays of miniaturized odor generators (OGs) based on melting/solidifying odorous wax to release smell is introduced for establishing an advanced communication system between deaf-blind and non-deaf-blind. By optimizing the structure design of the OGs, each OG device is as small as 0.24 cm3 (length × width × height of 11 mm × 10 mm × 2.2 mm), enabling integration of up to 8 OGs on the epidermis between nose and lip for direct and rapid olfactory drive with a weight of only 24.56 g. By generating single or mixed odors, different linked messages could be delivered to a user within a short period in a wireless and programmable way. By adopting the olfactory interface message delivery system, the recognition rates for the messages have been improved 1.5 times that of the touch-based method, while the response times were immensely decreased 4 times. Thus, the presented wearable olfactory interface system exhibits great potential as an alternative message delivery method for the deaf-blind.
KW - flexible electronics
KW - human−machine interfaces
KW - smell generation
KW - wearable electronics
KW - wireless message delivery
UR - https://www.scopus.com/pages/publications/85176969668
U2 - 10.1021/acsnano.3c08287
DO - 10.1021/acsnano.3c08287
M3 - 文章
C2 - 37917185
AN - SCOPUS:85176969668
SN - 1936-0851
VL - 17
SP - 21947
EP - 21961
JO - ACS Nano
JF - ACS Nano
IS - 21
ER -