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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)  
Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication Journal article
Zhang, Shuang, Pun, Sio Hang, Mak, Peng Un, Qin, Yu-Ping, Liu, Yi-He, Vai, Mang I.. Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication[J]. Technology and Health Care, 2016, 24(6), 821-826.
Authors:  Zhang, Shuang;  Pun, Sio Hang;  Mak, Peng Un;  Qin, Yu-Ping;  Liu, Yi-He; et al.
Favorite | TC[WOS]:1 TC[Scopus]:2  IF:1.4/1.3 | Submit date:2019/02/14
Implantable  Galvanic Coupling Human-body Communication  Attenuation  Measurement  
Development and Prospect of Implantable Intra-body Communication Technology Journal article
Zhang, S., Mak, P. U., Pun, S. H., Vai, M. I.. Development and Prospect of Implantable Intra-body Communication Technology[J]. Journal of Computers, 2014, 463-474.
Authors:  Zhang, S.;  Mak, P. U.;  Pun, S. H.;  Vai, M. I.
Favorite |  | Submit date:2022/09/01
Intra-Body Communication  Capacitive Coupling  Galvanic Coupling  Implantable  Sensor  
Modeling and analysis of the intra-body communication of implantable medical sensors Journal article
Gao Y., Pun S., Mak P., Vai M., Du M.. Modeling and analysis of the intra-body communication of implantable medical sensors[J]. Yi Qi Yi Biao Xue Bao/Chinese Journal of Scientific Instrument, 2012, 33(12), 2661-2666.
Authors:  Gao Y.;  Pun S.;  Mak P.;  Vai M.;  Du M.
Favorite |  | Submit date:2019/02/14
Anisotropic  Gain  Implantable  Intra-body Communication  Modeling  Sensor  
植入式醫學感測器體內通信的建模與分析 Journal article
Gao, Y. M., Pun, S. H., Mak, P. U., Vai, M. I., Du, M.. 植入式醫學感測器體內通信的建模與分析[J]. 儀器儀錶學報, 2012, 2661-2666.
Authors:  Gao, Y. M.;  Pun, S. H.;  Mak, P. U.;  Vai, M. I.;  Du, M.
Favorite |  | Submit date:2022/09/01
implantable  sensor  intra-body communication  modeling  gain  anisotropic  
Quasi-Static Field Modeling of Human Limb for Intra-Body Communication Conference paper
S. H. Pun, Y. M. Gao, P. U. Mak, M. Du, M. I. Vai. Quasi-Static Field Modeling of Human Limb for Intra-Body Communication[C]:Springer, Berlin, Heidelberg, 2009, 122-125.
Authors:  S. H. Pun;  Y. M. Gao;  P. U. Mak;  M. Du;  M. I. Vai
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/02/14
Galvanic Coupling  Intra-body Communication  Maxwell Equations  Telemedicine System  Wearable Sensors Implantable Devices  
Quasi-static field modeling of human limb for intra-body communication Conference paper
Pun,Sio Hang, Gao,Y. M., Mak,P. U., Du,M., Vai,M. I.. Quasi-static field modeling of human limb for intra-body communication[C], 2009, 122-125.
Authors:  Pun,Sio Hang;  Gao,Y. M.;  Mak,P. U.;  Du,M.;  Vai,M. I.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/03/11
Galvanic Coupling  Intra-body Communication  Maxwell Equations  Telemedicine System  Wearable Sensors Implantable Devices