A Computational Model of the Electromagnetic Heating of Biological Tissue with Application to Hyperthermic Cancer Therapy
- 1 December 1983
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Biomedical Engineering
- Vol. BME-30 (12) , 797-805
- https://doi.org/10.1109/tbme.1983.325081
Abstract
To investigate the potentialities of hyperthermia as a cancer therapy, computer simulations have been performed. This simulation consists of two tuccessive steps. First, the heat generated in a distribution of biological tissue when irradiated by a source of electromagnetic radiation is computed. The mathematical tool for determining the disbution of generated heat is the domain-integral-equation technique. This technique enables us to determine in a body with arbitrary distribution of permittivity and conductivity the electromagnetic field due to prescribed sources. The integral equation is solved numerically by an iterative minimization of the integrated square error. From the computed distribution of generated heat, the temperature distribution follows by solving numerically the pertaining heat transfer problem. The relevant differential equation together with initial and boundary conditions is solved numerically using a finite-element technique in space and a finite-difference technique in time. Numerical results pertaining to the temperature distribution in a model of the human pelvis are presented.Keywords
This publication has 14 references indexed in Scilit:
- Two-Dimensional Technique to Calculate the EM Power Deposition Pattern in the Human BodyJournal of Microwave Power, 1982
- Medical Diagnosis and Imaging Using Electromagnetic TechniquesPublished by Springer Nature ,1981
- TOMOGRAPHICAL THERMOGRAPHYAnnals of the New York Academy of Sciences, 1980
- Therapeutic applications of electromagnetic powerProceedings of the IEEE, 1974
- Scattering by a dielectric cylinder of arbitrary cross section shapeIEEE Transactions on Antennas and Propagation, 1965
- The Mechanism of Absorption of Ultrahigh Frequency Electromagnetic Energy in Tissues, as Related to the Problem of Tolerance DosageIRE Transactions on Medical Electronics, 1956
- A comparison of the dielectric behaviour of pure water and human blood at microwave frequenciesBritish Journal of Applied Physics, 1952
- The dielectric behaviour of some types of human tissues at microwave frequenciesBritish Journal of Applied Physics, 1951
- Dielectric Behaviour of Human Blood at Microwave FrequenciesNature, 1951
- Dispersion and Absorption in Dielectrics I. Alternating Current CharacteristicsThe Journal of Chemical Physics, 1941