© 2016 IEEE. A novel differentially fed dual-band planar antenna operating at the medical implant communication service (MICS) band (402-405 MHz) and the industrial, scientific and medical (ISM) bands (2400-2480 MHz) is presented. The measured 10-dB differential reflection coefficient bandwidth is 389-419 MHz (7.4%) at the lower band and 2395-2563 MHz (6.6%) at the upper band, respectively. The volume of the implantable antenna is only 642.62 mm3 (22mm×23mm×1.27mm)
In this letter, two skin-implantable biotelemetry devices are presented along with an antenna system...
841-848This paper presents a highly compact volume 12 mm3 Zig Zag-shaped implantable antenna for bio...
Single Molecule Spectroscopy and Superresolution Imaging XI 2018 -- 27 January 2018 through 28 Janua...
© 2016 IEEE. A novel differentially fed dual-band planar antenna operating at the Medical Implant Co...
A miniaturised implantable antenna with dual-band operation the Medical Implant Communications Servi...
A compact broadband implantable patch antenna is designed for the field of biotelemetry and experime...
10.1109/TAP.2012.2209197IEEE Transactions on Antennas and Propagation60125587-5595IETP
AbstractThe health care industry is continuously revolutionizing and advancing towards developing mo...
10.1109/TAP.2014.2309130IEEE Transactions on Antennas and Propagation6252430-2439IETP
Medical telemetry applications rely heavily on biomedical implanted antennas. These biomedical impla...
In this paper, A miniaturized dual-band implantable antenna using meandered line resonator is propos...
This work presents a miniaturized dual band implantable antenna operating at the Medical Device Radi...
International audienceIn this work, a novel multi-tracks wideband and multi-band miniaturized antenn...
This paper presents the development of a dual-band antenna working in the Industrial, Scientific, an...
In this study, numerical and experimental analysis of a dual band (Medical Implant Communications Se...
In this letter, two skin-implantable biotelemetry devices are presented along with an antenna system...
841-848This paper presents a highly compact volume 12 mm3 Zig Zag-shaped implantable antenna for bio...
Single Molecule Spectroscopy and Superresolution Imaging XI 2018 -- 27 January 2018 through 28 Janua...
© 2016 IEEE. A novel differentially fed dual-band planar antenna operating at the Medical Implant Co...
A miniaturised implantable antenna with dual-band operation the Medical Implant Communications Servi...
A compact broadband implantable patch antenna is designed for the field of biotelemetry and experime...
10.1109/TAP.2012.2209197IEEE Transactions on Antennas and Propagation60125587-5595IETP
AbstractThe health care industry is continuously revolutionizing and advancing towards developing mo...
10.1109/TAP.2014.2309130IEEE Transactions on Antennas and Propagation6252430-2439IETP
Medical telemetry applications rely heavily on biomedical implanted antennas. These biomedical impla...
In this paper, A miniaturized dual-band implantable antenna using meandered line resonator is propos...
This work presents a miniaturized dual band implantable antenna operating at the Medical Device Radi...
International audienceIn this work, a novel multi-tracks wideband and multi-band miniaturized antenn...
This paper presents the development of a dual-band antenna working in the Industrial, Scientific, an...
In this study, numerical and experimental analysis of a dual band (Medical Implant Communications Se...
In this letter, two skin-implantable biotelemetry devices are presented along with an antenna system...
841-848This paper presents a highly compact volume 12 mm3 Zig Zag-shaped implantable antenna for bio...
Single Molecule Spectroscopy and Superresolution Imaging XI 2018 -- 27 January 2018 through 28 Janua...