DocumentCode
2720452
Title
FDTD modelling for microwave dosimetry and thermography
Author
Taylor, H.C. ; Hand, J.W. ; Lau, R.W.
Author_Institution
Radiol. Sci. Unit, Hammersmith Hospital, London, UK
fYear
1995
fDate
34758
Firstpage
42675
Lastpage
42680
Abstract
The work on the canonical problems to date has demonstrated how the FDTD code can be developed to investigate both the interaction of radiofrequency waves with biological-like structures and the characteristics of the sources themselves. Although the canonical problems are but the first step in the evaluation of dosimetry in the head resulting from mobile telecommunications, the SAR distributions produced by various modelling techniques show promising similarities and it is planned to validate them experimentally in the future using an inhomogeneous head shaped phantom. The ability to evaluate characteristics of EM sources will be of considerable value in the authors´ other work involving the simulation of RF fields produced by the coils used in magnetic resonance Imaging. It has also been shown that the FDTD method can be used to develop an understanding of the relationship between the power received at a radiometer and the microwave (thermal) radiation sources within the body under investigation. The advantages of using the FDTD approach to study radiometry include the ability to model accurately the characteristics of the radiometer, particularly in the near field region, and to incorporate complex biological bodies into the model
Keywords
dosimetry; finite difference time-domain analysis; microwave imaging; physiological models; EM source characteristics; FDTD modelling; biological-like structures; canonical problems; complex biological bodies; inhomogeneous head shaped phantom; microwave dosimetry; microwave radiation sources; mobile telecommunications; power received; radiofrequency waves interaction;
fLanguage
English
Publisher
iet
Conference_Titel
Application of Microwaves in Medicine, IEE Colloquium on
Conference_Location
London
Type
conf
DOI
10.1049/ic:19950262
Filename
478217
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