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Self-Adhesive Electronic Skin with Bio-Inspired 3D Architecture for Mechanical Stimuli Monitoring and Human-Machine Interactions Journal article
Dai, Wenxue, Lei, Ming, Dai, Ziyi, Ding, Sen, Wang, Fangcheng, Fang, Dan, Wang, Rongmei, Qi, Biao, Zhang, Guoping, Zhou, Bingpu. Self-Adhesive Electronic Skin with Bio-Inspired 3D Architecture for Mechanical Stimuli Monitoring and Human-Machine Interactions[J]. Small, 2024, 2406564.
Authors:  Dai, Wenxue;  Lei, Ming;  Dai, Ziyi;  Ding, Sen;  Wang, Fangcheng; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:13.0/13.5 | Submit date:2024/10/10
Adhesive  Bidirectional Bending  Flexible Sensor  Tactile Perception  Wearable Device  
Optimization of bidirectional bending sensor as flexible ternary terminal for high-capacity human-machine interaction Journal article
Dai, Ziyi, Feng, Kai, Wang, Mingrui, Lei, Ming, Ding, Sen, Luo, Jianyi, Xu, Qingsong, Zhou, Bingpu. Optimization of bidirectional bending sensor as flexible ternary terminal for high-capacity human-machine interaction[J]. Nano Energy, 2022, 97, 107173.
Authors:  Dai, Ziyi;  Feng, Kai;  Wang, Mingrui;  Lei, Ming;  Ding, Sen; et al.
Favorite | TC[WOS]:18 TC[Scopus]:19  IF:16.8/16.3 | Submit date:2022/05/13
Wearable Device  Human-machine Interaction  Ternary  Flexible Sensor  Bidirectional Bending  
Smart Diaper Based on Integrated Multiplex Carbon Nanotube-Coated Electrode Array Sensors for in Situ Urine Monitoring Journal article
Li, Xiangling, Zhan, Changyuan, Huang, Qiqi, He, Mengyi, Yang, Cheng, Yang, Chengduan, Huang, Xinshuo, Chen, Meiwan, Xie, Xi, Chen, Hui Jiuan. Smart Diaper Based on Integrated Multiplex Carbon Nanotube-Coated Electrode Array Sensors for in Situ Urine Monitoring[J]. ACS Applied Nano Materials, 2022, 5(4), 4767-4778.
Authors:  Li, Xiangling;  Zhan, Changyuan;  Huang, Qiqi;  He, Mengyi;  Yang, Cheng; et al.
Favorite | TC[WOS]:19 TC[Scopus]:24  IF:5.3/5.4 | Submit date:2022/05/13
Cnt-coated Electrode  Multisensor Array  Smart Diaper Sensing System  Urine Monitoring  Wearable Device  
Applications of titanium in the electronic industry Book chapter
出自: Titanium for Consumer Applications: Real-World Use of Titanium:Elsevier, 2019, 页码:269-278
Authors:  Ye, Shulong;  Zhang, Yongyun;  Yu, Peng
Favorite | TC[Scopus]:10 | Submit date:2022/04/15
Computer  Electronic Industry  Mobile Phone  Titanium  Wearable Device  
Entropy for the complexity of physiological signal dynamics Book chapter
出自: Advances in Experimental Medicine and Biology:Springer New York LLC, 2017, 页码:39-53
Authors:  Zhang X.D.
Favorite | TC[WOS]:20 TC[Scopus]:24 | Submit date:2018/12/21
Complexity  Continuous Monitoring  Entropy  High-throughput Phenotyping  Wearable Medical Device  
Portable Heart Rate Detector Based on Photoplethysmography with Android Programmable Devices for Ubiquitous Health Monitoring System Journal article
Lao, C.K., Che, U.K., Mak, P. U., Wan, F., Vai, M. I.. Portable Heart Rate Detector Based on Photoplethysmography with Android Programmable Devices for Ubiquitous Health Monitoring System[J]. Int’l Journal of Advances in Telecommunications, Electrotechnics, Signals and Systems, 2013, 18-26.
Authors:  Lao, C.K.;  Che, U.K.;  Mak, P. U.;  Wan, F.;  Vai, M. I.
Favorite |  | Submit date:2022/09/01
Heart Rate Detector  Android Application  Healthcare Monitoring  Ppg  Peak Detection Algorithm  Wearable Portable Device  
A 0.83-µW QRS Detection Processor Using Quadratic Spline Wavelet Transform for Wireless ECG Acquisition in 0.35-µm CMOS Journal article
Ieong, C.I., Mak, P. I., Lam, C.P., Dong, C., Vai, M. I., Mak, P. U., Pun, S. H., Wan, F., Martins, R. P.. A 0.83-µW QRS Detection Processor Using Quadratic Spline Wavelet Transform for Wireless ECG Acquisition in 0.35-µm CMOS[J]. IEEE Transactions on Biomedical Circuits and Systems, 2012, 586-595.
Authors:  Ieong, C.I.;  Mak, P. I.;  Lam, C.P.;  Dong, C.;  Vai, M. I.; et al.
Favorite |   IF:3.8/4.8 | Submit date:2022/01/24
QRS detection  quadratic spline wavelet transform  wavelet transform  wearable electrocardiograph (ECG) device  wireless ECG monitoring  
A 0.83-μW QRS detection processor using quadratic spline wavelet transform for wireless ECG acquisition in 0.35-μm CMOS Journal article
Chio-In Ieong, Pui-In Mak, Chi-Pang Lam, Cheng Dong, Mang-I Vai, Peng-Un Mak, Sio-Hang Pun, Feng Wan, Rui P. Martins. A 0.83-μW QRS detection processor using quadratic spline wavelet transform for wireless ECG acquisition in 0.35-μm CMOS[J]. IEEE Transactions on Biomedical Circuits and Systems, 2012, 6(6), 586 - 595.
Authors:  Chio-In Ieong;  Pui-In Mak;  Chi-Pang Lam;  Cheng Dong;  Mang-I Vai; et al.
Favorite | TC[WOS]:95 TC[Scopus]:118  IF:3.8/4.8 | Submit date:2018/10/30
Qrs Detection  Quadratic Spline Wavelet Transform  Wavelet Transform  Wearable Electrocardiograph (Ecg) Device  Wireless Ecg Monitoring