A multi-implant scenario is considered using insulated dipole antennas for specific locations such as the liver, heart, spleen and the kidneys where implants communicate with a pacemaker acting as a central hub. Wireless communication within human body experiences loss in the form of attenuation and absorption, and to identify these losses, the path loss is studied in this paper for an adult and child heterogeneous human model. Link performance is calculated to investigate the applicability of in-body communication. The specific absorption rate for all these locations is also studied to verify compliance with international safety guidelines
Proposed for the first time is an in-body path loss model for homogeneous human muscle and head tiss...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...
A wireless body area network (WBAN) consists of a wireless network with devices placed close to, att...
A wireless body area network (WBAN) consists of a wireless network with devices placed close to, att...
Physical-layer characterization is important for design of in-to-out body communication for wireless...
Proposed is the first in-body path loss model in homogeneous human muscle tissue at 2.4 GHz for impl...
In this paper, we study the wave propagation within various lossy homogeneous human tissues such as ...
This paper presents a numerical study of the wireless channel characteristics of liver implants in a...
In this paper, we investigate multilayered lossy and heterogeneous media for wireless body area netw...
\u3cp\u3eThe wireless communication channel around/in the human body is a difficult propagation envi...
Wireless implanted devices can be used to interface patients with disabilities with the aim of resto...
Wireless implanted devices can be used to interface patients with disabilities with the aim of resto...
Wireless implantable body area network (WiBAN) is useful in health monitoring systems especially for...
In this paper, we numerically investigated the in vivo wireless communication channel for human male...
Proposed for the first time is an in-body path loss model for homogeneous human muscle and head tiss...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...
A wireless body area network (WBAN) consists of a wireless network with devices placed close to, att...
A wireless body area network (WBAN) consists of a wireless network with devices placed close to, att...
Physical-layer characterization is important for design of in-to-out body communication for wireless...
Proposed is the first in-body path loss model in homogeneous human muscle tissue at 2.4 GHz for impl...
In this paper, we study the wave propagation within various lossy homogeneous human tissues such as ...
This paper presents a numerical study of the wireless channel characteristics of liver implants in a...
In this paper, we investigate multilayered lossy and heterogeneous media for wireless body area netw...
\u3cp\u3eThe wireless communication channel around/in the human body is a difficult propagation envi...
Wireless implanted devices can be used to interface patients with disabilities with the aim of resto...
Wireless implanted devices can be used to interface patients with disabilities with the aim of resto...
Wireless implantable body area network (WiBAN) is useful in health monitoring systems especially for...
In this paper, we numerically investigated the in vivo wireless communication channel for human male...
Proposed for the first time is an in-body path loss model for homogeneous human muscle and head tiss...
Reliable wireless communication inside the human body is crucial for the design of implantable body ...
"(c) 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained fo...