DocumentCode :
3102081
Title :
Accurate FDTD simulation of biological tissues for bioelectromagnetic applications
Author :
Eleiwa, Mohamed A. ; Elsherbeni, Atef Z.
Author_Institution :
Electron. Eng. Dept., Mil. Tech. Coll., Cairo, Egypt
fYear :
2001
fDate :
2001
Firstpage :
174
Lastpage :
178
Abstract :
For practical bio-electromagnetic applications, such as the interaction of electromagnetic fields with the human head and body, accurate simulation of biological tissues is a key factor for reliable results. The characteristics of biological tissues are frequency dependent and thus called dispersive materials. For accurate FDTD simulation of biological tissues, a numerical technique is proposed to derive the Debye coefficients from the measured frequency-dependent permittivity of different biological tissues, and then a scattered field FDTD formulation is developed for such dispersive media characterized by multi-term Debye expressions. The proposed scattered field FDTD formulation is valid for three dimensional analysis of practical EM problems involving combination of dispersive and non-dispersive materials. The developed procedure has been verified for different types of biological tissues over a very wide band of frequency (from 30 Hz to 20 GHz). The reflection coefficients of a semi-infinite dispersive medium using one, two, and three-term Debye expressions are computed and compared favorably with the corresponding analytical solution. Hence, the accuracy and stability of modeling multi-term Debye dispersive materials using the proposed scattered FDTD formulation is assessed
Keywords :
biological effects of microwaves; biological tissues; dispersive media; electromagnetic wave scattering; finite difference time-domain analysis; permittivity; radiowave propagation; 30 Hz to 20 GHz; Debye coefficients; FDTD simulation; bioelectromagnetic applications; biological tissues; electromagnetic fields; frequency dependent materials; frequency-dependent permittivity; human body; human head; multi-term Debye dispersive materials; multi-term Debye expressions; nondispersive material; practical EM problems; reflection coefficients; scattered FDTD formulation; scattered field FDTD formulation; three dimensional analysis; Biological materials; Biological system modeling; Biological tissues; Dispersion; Electromagnetic fields; Electromagnetic scattering; Finite difference methods; Frequency; Humans; Time domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SoutheastCon 2001. Proceedings. IEEE
Conference_Location :
Clemson, SC
Print_ISBN :
0-7803-6748-0
Type :
conf
DOI :
10.1109/SECON.2001.923110
Filename :
923110
Link To Document :
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