Along this document, an innovative dual band microstrip patch antenna is proposed for implantable medical devices. Particularly, the covered bands are MICS (402-405 MHz) and ISM (2.4-2.48 GHz). The antenna has a multilayer configuration where the feeding line and the radiating elements are located at different levels. The radiating elements of the antenna are a split ring resonator (SRR) coupled to a Spiral. Both elements are short-circuited to the ground plane to achieve size reduction. In addition, the effects of human body geometry and dielectric properties on the characteristics of the proposed design are studied. Three models of the human body are investigated: one-layer, three-layer and a realistic human body based on the Voxel Man da...
Body-centric communication systems are said to be one of the most emerging areas in wireless communi...
A Microstrip Patch antenna resonating at 2.47 GHz is proposed which is made of a silicon substrate. ...
In this study, design and the numerical analysis of a dual band (MICS (Medical Implant Communication...
Along this document, an innovative dual band microstrip patch antenna is proposed for implantable me...
In this paper, we discussed the implantable circular patch antenna for medical devices, after revie...
International audienceIn this paper, a novel miniaturized implantable circular antenna is presented....
A flexible antenna of compact size with a dual band elliptical-shape implantable is designed for bio...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
This research work assumes the role of designing a Micro-strip patch antennathat exists within the b...
This paper presents a miniaturized planar spiral implanted antenna inside the heart tissue for futur...
In this paper, A miniaturized dual-band implantable antenna using meandered line resonator is propos...
International audienceIn this paper, a novel miniaturized implantable circular PIFA antenna is prese...
A miniaturized embedded spiral-shaped microstrip antenna simulated within a block of 2/3 human muscl...
A dual-band on-body repeater antenna for medical self-monitoring applications is proposed. The propo...
this study, we designed an implantable rectangular spiral antenna for medical biotelemetry in the Me...
Body-centric communication systems are said to be one of the most emerging areas in wireless communi...
A Microstrip Patch antenna resonating at 2.47 GHz is proposed which is made of a silicon substrate. ...
In this study, design and the numerical analysis of a dual band (MICS (Medical Implant Communication...
Along this document, an innovative dual band microstrip patch antenna is proposed for implantable me...
In this paper, we discussed the implantable circular patch antenna for medical devices, after revie...
International audienceIn this paper, a novel miniaturized implantable circular antenna is presented....
A flexible antenna of compact size with a dual band elliptical-shape implantable is designed for bio...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
This research work assumes the role of designing a Micro-strip patch antennathat exists within the b...
This paper presents a miniaturized planar spiral implanted antenna inside the heart tissue for futur...
In this paper, A miniaturized dual-band implantable antenna using meandered line resonator is propos...
International audienceIn this paper, a novel miniaturized implantable circular PIFA antenna is prese...
A miniaturized embedded spiral-shaped microstrip antenna simulated within a block of 2/3 human muscl...
A dual-band on-body repeater antenna for medical self-monitoring applications is proposed. The propo...
this study, we designed an implantable rectangular spiral antenna for medical biotelemetry in the Me...
Body-centric communication systems are said to be one of the most emerging areas in wireless communi...
A Microstrip Patch antenna resonating at 2.47 GHz is proposed which is made of a silicon substrate. ...
In this study, design and the numerical analysis of a dual band (MICS (Medical Implant Communication...