AbstractThe wireless transfer of energy through living tissues for the purpose of data communications is investigated. After considering the best frequency band for communications in biological tissues, both the uplink and downlink near-field coupled energy transfer options are analyzed. The possibility of wireless powering using the same frequency band is also studied
© 2015 IEEE. This work presents a study of ultra wideband (UWB) technology to compute the energy tra...
Power delivery for biomedical implants is a major consideration in their design for both measurement...
This article presents a feasibility study on the transmission of information through the biological ...
AbstractThe wireless transfer of energy through living tissues for the purpose of data communication...
In this research wireless power transfer using near-field inductive coupling is studied and investig...
© 2021 Wiley-VCH GmbHImplantable bioelectronic devices are becoming useful and prospective solutions...
Abstract -Biotelemetry which provides wireless communication links between internal devices and outs...
Rising demand for continuous monitoring of human body and health care devices in recent years has re...
© 2019 Ammar George AldaoudWireless biomedical electronic implants are rapidly being developed to tr...
Wireless power transmission in human tissue using microwave techniques has great potential for diffe...
Implantable medical devices comprise a large and growing market, providing both short- and long-term...
The design of effective transcutaneous systems demands the consideration of inevitable variations in...
We studied the possibility of wireless powering, the intra-abdominal implants using an anatomically ...
With the rapid growth of wireless technology and the miniaturization of modern antennas and electric...
In order to minimize exposure to human tissue, electromagnetic interaction with antennas has benefit...
© 2015 IEEE. This work presents a study of ultra wideband (UWB) technology to compute the energy tra...
Power delivery for biomedical implants is a major consideration in their design for both measurement...
This article presents a feasibility study on the transmission of information through the biological ...
AbstractThe wireless transfer of energy through living tissues for the purpose of data communication...
In this research wireless power transfer using near-field inductive coupling is studied and investig...
© 2021 Wiley-VCH GmbHImplantable bioelectronic devices are becoming useful and prospective solutions...
Abstract -Biotelemetry which provides wireless communication links between internal devices and outs...
Rising demand for continuous monitoring of human body and health care devices in recent years has re...
© 2019 Ammar George AldaoudWireless biomedical electronic implants are rapidly being developed to tr...
Wireless power transmission in human tissue using microwave techniques has great potential for diffe...
Implantable medical devices comprise a large and growing market, providing both short- and long-term...
The design of effective transcutaneous systems demands the consideration of inevitable variations in...
We studied the possibility of wireless powering, the intra-abdominal implants using an anatomically ...
With the rapid growth of wireless technology and the miniaturization of modern antennas and electric...
In order to minimize exposure to human tissue, electromagnetic interaction with antennas has benefit...
© 2015 IEEE. This work presents a study of ultra wideband (UWB) technology to compute the energy tra...
Power delivery for biomedical implants is a major consideration in their design for both measurement...
This article presents a feasibility study on the transmission of information through the biological ...