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Development of an inductive, non-invasive RF applicator for studying hyperthermia in a rat brain tumour model
L Heinzl1, J W Hunt, M Bernstein
1Ontario Cancer Institute, Toronto, Canada.
Abstract:
A non-invasive inductive RF applicator has been designed specially for local heating of 6 mm diameter tumours growing in the brains of F344 rats (144-148 MHz). It is shown that an inductive applicator is the choice for this particular case. The power deposition pattern is analysed by modelling the applicator with a three-dimensional array of magnetic dipoles. The total hyperthermia system is briefly described and results of phantom and in vivo experimental measurements are presented. These confirm the theoretical analysis.
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