Yihao Zhou
University of California, Los Angeles
59 Papers
40 Citations
Yihao Zhou is an academic researcher from University of California, Los Angeles. The author has contributed to research in topics: Medicine & Computer science. The author has an hindex of 13, co-authored 29 publications.
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Papers
Sign-to-speech translation using machine-learning-assisted stretchable sensor arrays
Zhihao Zhou,Zhihao Zhou,Kyle Chen,Xiaoshi Li,Songlin Zhang,Yufen Wu,Yihao Zhou,Keyu Meng,Chenchen Sun,Qiang He,Wenjing Fan,Endong Fan,Zhiwei Lin,Xulong Tan,Weili Deng,Jin Yang,Jun Chen +16 more
- 29 Jun 2020
TL;DR: It is shown that a wearable sign-to-speech translation system, assisted by machine learning, can accurately translate the hand gestures of American Sign Language into speech.
697
A Wireless Textile-Based Sensor System for Self-Powered Personalized Health Care
Keyu Meng,Shenlong Zhao,Yihao Zhou,Yufen Wu,Songlin Zhang,Qiang He,Xue Wang,Zhihao Zhou,Wenjing Fan,Xulong Tan,Jin Yang,Jun Chen +11 more
- 01 Apr 2020
TL;DR: The textile-based wireless biomonitoring system represents a solid step toward constructing a body area network for personalized health care in the era of the Internet of Things.
386
Alveolus-Inspired Active Membrane Sensors for Self-Powered Wearable Chemical Sensing and Breath Analysis.
Yuanjie Su,Yuanjie Su,Jianjun Wang,Bo Wang,Tiannan Yang,Yang Boxi,Guangzhong Xie,Yihao Zhou,Songlin Zhang,Huiling Tai,Zhixiang Cai,Guorui Chen,Yadong Jiang,Long Qing Chen,Jun Chen +14 more
TL;DR: An alveolus-inspired membrane sensor (AIMS) is developed for self-powered wearable nitrogen dioxide detection and personal physiological assessment and renders the community a deep understanding of the gas sensing mechanisms.
309
Muscle Fibers Inspired High-Performance Piezoelectric Textiles for Wearable Physiological Monitoring
Yuanjie Su,Chunxu Chen,Hong Pan,Yang Ye,Guorui Chen,Xun Zhao,Weixiong Li,Gong Qichen,Guangzhong Xie,Yihao Zhou,Songlin Zhang,Huiling Tai,Yadong Jiang,Jun Chen +13 more
TL;DR: In this paper, a muscle-fiber-inspired nonwoven piezoelectric textile with tunable mechanical properties for wearable physiological monitoring is developed, where polydopamine (PDA) is dispersed into the electrospun barium titanate/polyvinylidene fluoride (BTO/PVDF) nanofibers to enhance the interfacial-adhesion, mechanical strength, and picolectric properties.
289
Ambulatory Cardiovascular Monitoring Via a Machine-Learning-Assisted Textile Triboelectric Sensor
Yunsheng Fang,Yongjiu Zou,Jing Xu,Guorui Chen,Yihao Zhou,Weili Deng,Xun Zhao,Mehrdad Roustaei,Tzung K. Hsiai,Jun Chen +9 more
TL;DR: In this article, a low-cost, lightweight, and mechanically durable textile triboelectric sensor that can convert subtle skin deformation caused by arterial pulsatility into electricity for high-fidelity and continuous pulse waveform monitoring in an ambulatory and sweaty setting is developed.
263