Electric-field intrabody communication (EF-IBC) is a promising new scheme for the data exchange among wearable biomedical sensors. It uses the body as the signal transmission media. Compared with existing body area network (BAN) schemes, EF-IBC can achieve higher data rate with less transmission power. Until now, the detailed EF-IBC channel mechanism is not well understood. In this work, finite-element method (FEM) is utilized for the first time to investigate the EF-IBC channel. A circuit-coupled FEM model is established for the EF-IBC channel. The FEM model is extensively verified by experimental measurements. The new physical model enables the revelation of characteristics and effects of different components in the EF-IBC channel. The FE...
Many current and future wireless devices are wearable and use the human body as a carrier. This has ...
Capacitive coupling intra-body communication (CC-IBC) has become one of the candidates for healthcar...
The emerging research area of intra-body communication (IBC) will foster personalized medicine by en...
Existing research on human channel modeling of galvanic coupling intra-body communication (IBC) is p...
Existing research on human channel modeling of galvanic coupling intra-body communication (IBC) is p...
The desire to have ultra compact, low power, wearable and implanted biosensors/actuators encourages ...
To fully realize the potentials of the sensors in a personal healthcare system, body area network (B...
AbstractIntra-body communication (IBC) is a technology using the human body as a transmission medium...
Intra-Body Communication (IBC), which modulates ionic currents over the human body as the communicat...
Abstract Background Intra-body communication (IBC) is one of the highlights in studies of body area ...
National audience<p>This work describes Human Body Communicationchannel modeling for intracardiac me...
AbstractIntra-body communication (IBC) is a technology using the human body as a transmission medium...
Leadless Cardiac Pacemaker (LCP) devices are the cutting edge technology for cardiac rhythm manageme...
Human body communication (HBC) is a wireless communication method that uses the human body as part o...
BACKGROUND:Intra-body communication is a new wireless scheme for transmitting signals through the hu...
Many current and future wireless devices are wearable and use the human body as a carrier. This has ...
Capacitive coupling intra-body communication (CC-IBC) has become one of the candidates for healthcar...
The emerging research area of intra-body communication (IBC) will foster personalized medicine by en...
Existing research on human channel modeling of galvanic coupling intra-body communication (IBC) is p...
Existing research on human channel modeling of galvanic coupling intra-body communication (IBC) is p...
The desire to have ultra compact, low power, wearable and implanted biosensors/actuators encourages ...
To fully realize the potentials of the sensors in a personal healthcare system, body area network (B...
AbstractIntra-body communication (IBC) is a technology using the human body as a transmission medium...
Intra-Body Communication (IBC), which modulates ionic currents over the human body as the communicat...
Abstract Background Intra-body communication (IBC) is one of the highlights in studies of body area ...
National audience<p>This work describes Human Body Communicationchannel modeling for intracardiac me...
AbstractIntra-body communication (IBC) is a technology using the human body as a transmission medium...
Leadless Cardiac Pacemaker (LCP) devices are the cutting edge technology for cardiac rhythm manageme...
Human body communication (HBC) is a wireless communication method that uses the human body as part o...
BACKGROUND:Intra-body communication is a new wireless scheme for transmitting signals through the hu...
Many current and future wireless devices are wearable and use the human body as a carrier. This has ...
Capacitive coupling intra-body communication (CC-IBC) has become one of the candidates for healthcar...
The emerging research area of intra-body communication (IBC) will foster personalized medicine by en...