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A VHF Wide-Input Range CMOS Passive Rectifier with Active Bias Tuning Journal article
Li,Xiaofei, Mao,Fangyu, Lu,Yan, Martins,Rui P.. A VHF Wide-Input Range CMOS Passive Rectifier with Active Bias Tuning[J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2020, 55(10), 2629-2638.
Authors:  Li,Xiaofei;  Mao,Fangyu;  Lu,Yan;  Martins,Rui P.
Favorite | TC[WOS]:17 TC[Scopus]:19  IF:4.6/5.6 | Submit date:2021/03/04
Charge Pump  Cross Connected (Cc)  Implantable Medical Device (Imd)  Peak Efficiency Searching  Rectifier  Switched Capacitor  Wireless Power Transfer (Wpt)  
Building an innovation system of medical devices in China: Drivers, barriers, and strategies for sustainability Journal article
Cheong, Sok Teng, Li, Jian, Ung, Oi Lam Carolina, Tang, Daisheng, Hu, Hao. Building an innovation system of medical devices in China: Drivers, barriers, and strategies for sustainability[J]. SAGE OPEN MEDICINE, 2020, 8, 2050312120938218.
Authors:  Cheong, Sok Teng;  Li, Jian;  Ung, Oi Lam Carolina;  Tang, Daisheng;  Hu, Hao
Favorite | TC[WOS]:6 TC[Scopus]:8  IF:2.3/2.7 | Submit date:2022/08/28
Medical Device  Innovation System  Functional Analysis  Health Policy  China  
Experimental Verifications of Low Frequency Path Gain ( PG ) Channel Modeling for Implantable Medical Device (IMD) Journal article
Zhang, S., Pun, S. H., Mak, P. U., Qin, Y. P., Liu, Y. H., Gao, Y. M., Vai, M. I.. Experimental Verifications of Low Frequency Path Gain ( PG ) Channel Modeling for Implantable Medical Device (IMD)[J]. IEEE Access, 2019, 11934-11945.
Authors:  Zhang, S.;  Pun, S. H.;  Mak, P. U.;  Qin, Y. P.;  Liu, Y. H.; et al.
Favorite | TC[WOS]:7 TC[Scopus]:18  IF:3.4/3.7 | Submit date:2022/09/01
Implantable Communication  Galvanic Coupling Intra-body Communication  Poisson’s Equation  Volume Conductor Theory  Implantable Medical Device (Imd)  
Experimental Verifications of Low Frequency Path Gain (PG) Channel Modeling for Implantable Medical Device (IMD) Journal article
Zhang, Shuang, Pun, Sio Hang, Mak, Peng Un, Qin, Yu Ping, Liu, Yi He, Gao, Yue Ming, Vai, Mang, I. Experimental Verifications of Low Frequency Path Gain (PG) Channel Modeling for Implantable Medical Device (IMD)[J]. IEEE Access, 2019, 7, 11934-11945.
Authors:  Zhang, Shuang;  Pun, Sio Hang;  Mak, Peng Un;  Qin, Yu Ping;  Liu, Yi He; et al.
Favorite | TC[WOS]:7 TC[Scopus]:18  IF:3.4/3.7 | Submit date:2019/03/01
Implantable Communication  Galvanic Coupling Intra-body Communication  Poisson's Equation  Volume Conductor Theory  Implantable Medical Device (Imd)  
Medical cyber-physical systems: A survey Journal article
Nilanjan Dey, Amira S. Ashour, Fuqian Shi, Simon James Fong, João Manuel R. S. Tavares. Medical cyber-physical systems: A survey[J]. JOURNAL OF MEDICAL SYSTEMS, 2018, 42(4).
Authors:  Nilanjan Dey;  Amira S. Ashour;  Fuqian Shi;  Simon James Fong;  João Manuel R. S. Tavares
Favorite | TC[WOS]:110 TC[Scopus]:186  IF:3.5/4.7 | Submit date:2018/10/30
Networked Medical Device Systems  Wireless Sensor Networks  Medical Internet Of Things  Body Area Networks  Security Assurance  Patient Monitoring  
Optic nerve stimulation system with adaptive wireless powering and data telemetry Journal article
Li X., Lu Y., Meng X., Tsui C.-Y., Ki W.-H.. Optic nerve stimulation system with adaptive wireless powering and data telemetry[J]. Micromachines, 2017, 8(12).
Authors:  Li X.;  Lu Y.;  Meng X.;  Tsui C.-Y.;  Ki W.-H.
Favorite | TC[WOS]:9 TC[Scopus]:10 | Submit date:2019/02/14
Data Telemetry  Implantable Medical Device (Imd)  Neural Stimulation  Wireless Power Transfer (Wpt)  
Optic Nerve Stimulation System with Adaptive Wireless Powering and Data Telemetry Journal article
Li, Xing, Lu, Yan, Meng, Xiaodong, Tsui, Chi-Ying, Ki, Wing-Hung. Optic Nerve Stimulation System with Adaptive Wireless Powering and Data Telemetry[J]. MICROMACHINES, 2017, 8(12).
Authors:  Li, Xing;  Lu, Yan;  Meng, Xiaodong;  Tsui, Chi-Ying;  Ki, Wing-Hung
Favorite | TC[WOS]:9 TC[Scopus]:10  IF:3.0/3.0 | Submit date:2018/10/30
Wireless Power Transfer (Wpt)  Data Telemetry  Implantable Medical Device (Imd)  Neural Stimulation  
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