DocumentCode :
1532367
Title :
Miniature Implantable Antennas for Biomedical Telemetry: From Simulation to Realization
Author :
Kiourti, A. ; Costa, J.R. ; Fernandes, C.A. ; Santiago, A.G. ; Nikita, K.S.
Author_Institution :
Inst. of Commun. & Comput. Syst., Nat. Tech. Univ. of Athens, Athens, Greece
Volume :
59
Issue :
11
fYear :
2012
Firstpage :
3140
Lastpage :
3147
Abstract :
We address numerical versus experimental design and testing of miniature implantable antennas for biomedical telemetry in the medical implant communications service band (402-405 MHz). A model of a novel miniature antenna is initially proposed for skin implantation, which includes varying parameters to deal with fabrication-specific details. An iterative design-and-testing methodology is further suggested to determine the parameter values that minimize deviations between numerical and experimental results. To assist in vitro testing, a low-cost technique is proposed for reliably measuring the electric properties of liquids without requiring commercial equipment. Validation is performed within a specific prototype fabrication/testing approach for miniature antennas. To speed up design while providing an antenna for generic skin implantation, investigations are performed inside a canonical skin-tissue model. Resonance, radiation, and safety performance of the proposed antenna is finally evaluated inside an anatomical head model. This study provides valuable insight into the design of implantable antennas, assessing the significance of fabrication-specific details in numerical simulations and uncertainties in experimental testing for miniature structures. The proposed methodology can be applied to optimize antennas for several fabrication/testing approaches and biotelemetry applications.
Keywords :
antennas; bioelectric potentials; biomedical telemetry; dielectric measurement; iterative methods; prosthetics; skin; anatomical head model; biomedical telemetry; canonical skin-tissue model; electric properties; experimental design; experimental testing; frequency 402 MHz to 405 MHz; iterative design-and-testing methodology; medical implant communication service band; miniature implantable antennas; numerical simulations; skin implantation; Antenna measurements; Antennas; Containers; Fabrication; Numerical models; Permittivity measurement; Testing; Biomedical telemetry; dielectric measurements; implantable antenna; in vitro; medical implant communications service (MICS) band; Computer Simulation; Electronics, Medical; Head; Humans; Implants, Experimental; Phantoms, Imaging; Prosthesis Design; Skin Physiological Phenomena; Telemedicine; Telemetry;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2012.2202659
Filename :
6212336
Link To Document :
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