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Experimental Verifications of Low Frequency Path Gain (PG) Channel Modeling for Implantable Medical Device (IMD) Journal article
IEEE Access, 2019,Volume: 7,Page: 11934-11945
Authors:  Zhang S.;  Pun S.-H.;  Mak P.U.;  Qin Y.P.;  Liu Y.H.;  Gao Y.M.;  Vai M.I.
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galvanic coupling intra-body communication  Implantable communication  implantable medical device (IMD)  Poisson's equation  volume conductor theory  
The effects of muscle stress on signal transmission in the intra-body communication Conference paper
2016 IEEE International Conference on Consumer Electronics-China, ICCE-China 2016
Authors:  Lin S.;  Zhang H.-F.;  Gao Y.-M.;  Du M.;  Vai M.-I.
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channel characteristics  galvanic coupling intra-body communication  muscle stress  
Effects of human limb gestures on galvanic coupling intra-body communication for advanced healthcare system Journal article
BioMedical Engineering Online, 2016,Volume: 15,Issue: 1
Authors:  Chen X.M.;  Pun S.H.;  Zhao J.F.;  Mak P.U.;  Liang B.D.;  Vai M.I.
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Bit Error Rate  Galvanic Coupling Intra-body Communication  Human Limb Gestures  Joint Angle  Muscle Fatigue  
A novel field-circuit FEM modeling and channel gain estimation for galvanic coupling real IBC measurements Journal article
Sensors (Switzerland), 2016,Volume: 16,Issue: 4
Authors:  Gao Y.-M.;  Wu Z.-M.;  Pun S.-H.;  Mak P.-U.;  Vai M.-I.;  Du M.
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Channel Estimation  Channel Modeling  Field-circuit Coupling  Galvanic Coupling Intra-body Communication  
Galvanic coupling intra-body energy communication channel model of human tissue's characteristics Journal article
Energy Education Science and Technology Part A: Energy Science and Research, 2013,Volume: 31,Issue: 1,Page: 253-256
Authors:  Zhang S.;  Qin Y.P.;  Mak P.U.;  Pun S.H.;  Vai M.I.
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Channel model  Galvanic coupling type  Intra-body energy communication  Tissue'S characteristics  
Galvanic coupling intra-body communication channel model based on anisotropic muscular tissue Sprze{ogonek}żenie galwaniczne w modelu kanałowym mie{ogonek}śni człowieka Journal article
Przeglad Elektrotechniczny, 2013,Volume: 89,Issue: 7,Page: 74-76
Authors:  Zhang S.;  Qin Y.P.;  Mak P.U.;  Pun S.H.;  Vai M.I.
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Channel model  Galvanic coupling type  Intra-body communication  Tissue's characteristics  
A transceiver designed for intra-body communication of body area networks Conference paper
BODYNETS 2011 - 6th International ICST Conference on Body Area Networks, Beijing; China, 7 November 2011 through 8 November 2011
Authors:  He J.-W.;  Gao Y.-M.;  Pun S.H.;  Mak P.U.;  Vai M.I.
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Dds  Galvanic Coupling  Intra-body Communication  Transceiver Design  
Quasi-Static Field Modeling and Validation for Intra-Body Communication Conference paper
3rd International Conference on Bioinformatics and Biomedical Engineering, iCBBE 2009, Beijing, PEOPLES R CHINA, 11-13 June 2009
Authors:  Yue Ming Gao;  Sio Hang Pun;  Min Du;  Mang I Vai;  Peng Un Mak
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Galvanic Coupling  Home Health Care  Intra-body Communication  Maxwell Equations  Model  
Preliminary Modeling for Intra-Body Communication Conference paper
IFMBE Proceedings, Singapore, SINGAPORE, DEC 03-06, 2008
Authors:  Y.M. Gao;  S.H. Pun;  P.U. Mak;  M. Du;  M.I. Vai
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Body Area Network  Galvanic Coupling Type/waveguide Type Technique  Intra-body Communication  
Quasi-Static Field Modeling of Human Limb for Intra-Body Communication Conference paper
IFMBE Proceedings, Munich, GERMANY, SEP 07-12, 2009
Authors:  S. H. Pun;  Y. M. Gao;  P. U. Mak;  M. Du;  M. I. Vai
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Galvanic Coupling  Intra-body Communication  Maxwell Equations  Telemedicine System  Wearable Sensors Implantable Devices