In this letter, the in-body and off-body channel models at the frequency of 2.4 GHz are studied for development of multinode leadless capsule pacemaker technology based on experiments in homogeneous liquid phantom model of human heart and living animal experiments. For conducting the experiments, we design a battery-operated self-contained transmitter capsule consisting of a small antenna and transmitter printed-circuit board, subcutaneous implant and the off-body antennas. The in-body path-loss model obtained from the phantom experiment is a linear function of distance, whereas the off-body path-loss model between the implant and the off-body antenna is a logarithmic function of distance comparable to the free-space path-loss model. The ph...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
Introduction Recently, leadless pacemakers have been introduced to overcome the drawbacks associate...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...
In this letter, the in-body and off-body channel models at the frequency of 2.4 GHz are studied for ...
In this paper, the effects of ventricular blood volume change on the cardiac wireless channel modeli...
Propagation of radio-frequency (RF) signals inside human body is demanding to analyze as it is a hig...
Conventional cardiac pacemakers provide effective treatment of patients with certain heart rhythm ab...
Multi-node leadless pacemaker system overcomes the main limitations related to lead complications of...
Multi-node leadless pacemaker system overcomes the main limitations related to lead complications of...
Leadless Cardiac Pacemaker (LCP) devices are the cutting edge technology for cardiac rhythm manageme...
Objective: A new generation of leadless cardiac pacemakers effectively overcomes the main limitation...
In this letter, we address the telemetry and wireless powering problems associated with the recently...
In this paper, we address the telemetry and wireless powering problems associated with the recently ...
The wireless communication channel around/in the human body is a difficult propagation environment. ...
The frequency response of an implantable antenna is key to the performance of a wireless implantable...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
Introduction Recently, leadless pacemakers have been introduced to overcome the drawbacks associate...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...
In this letter, the in-body and off-body channel models at the frequency of 2.4 GHz are studied for ...
In this paper, the effects of ventricular blood volume change on the cardiac wireless channel modeli...
Propagation of radio-frequency (RF) signals inside human body is demanding to analyze as it is a hig...
Conventional cardiac pacemakers provide effective treatment of patients with certain heart rhythm ab...
Multi-node leadless pacemaker system overcomes the main limitations related to lead complications of...
Multi-node leadless pacemaker system overcomes the main limitations related to lead complications of...
Leadless Cardiac Pacemaker (LCP) devices are the cutting edge technology for cardiac rhythm manageme...
Objective: A new generation of leadless cardiac pacemakers effectively overcomes the main limitation...
In this letter, we address the telemetry and wireless powering problems associated with the recently...
In this paper, we address the telemetry and wireless powering problems associated with the recently ...
The wireless communication channel around/in the human body is a difficult propagation environment. ...
The frequency response of an implantable antenna is key to the performance of a wireless implantable...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
Introduction Recently, leadless pacemakers have been introduced to overcome the drawbacks associate...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...