Microwave thermometry with potential application in non-invasive monitoring of hyperthermia

Author:

Ghaderi Aram Morteza1ORCID,Beilina Larisa2ORCID,Dobsicek Trefna Hana1

Affiliation:

1. Department of Electrical Engineering , Chalmers University of Technology , 412 96 Gothenburg , Sweden

2. Department of Mathematical Sciences , Chalmers University of Technology ; and University of Gothenburg, 42 196 Gothenburg , Sweden

Abstract

Abstract Integration of an adaptive finite element method (AFEM) with a conventional least squares method has been presented. As a 3D full-wave forward solver, CST Microwave Studio has been used to model and extract both electric field distribution in the region of interest (ROI) and S-parameters of a circular array consisting of 16 monopole antennas. The data has then been fed into a differential inversion scheme to get a qualitative indicator of how the temperature distribution evolves over a course of the cooling process of a heated object. Different regularization techniques within the Tikhonov framework are also discussed, and a balancing principle for optimal choice of the regularization parameter was used to improve the image reconstruction quality of every 2D slice of the final image. Targets are successfully imaged via proposed numerical methods.

Funder

Vetenskapsrådet

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics

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