Acousto-thermometric recovery of the deep temperature profile using heat conduction equations

In a model experiment using the acousto-thermographic method, deep temperature profiles varying in time are recovered. In the recovery algorithm, we used a priori information in the form of a requirement that the calculated temperature must satisfy the heat conduction equation. The problem is reduce...

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Veröffentlicht in:Acoustical physics 2012-09, Vol.58 (5), p.542-548
Hauptverfasser: Anosov, A. A., Belyaev, R. V., Vilkov, V. A., Dvornikova, M. V., Dvornikova, V. V., Kazanskii, A. S., Kuryatnikova, N. A., Mansfel’d, A. D.
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Sprache:eng
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Zusammenfassung:In a model experiment using the acousto-thermographic method, deep temperature profiles varying in time are recovered. In the recovery algorithm, we used a priori information in the form of a requirement that the calculated temperature must satisfy the heat conduction equation. The problem is reduced to determining two parameters: the initial temperature and the temperature conductivity coefficient of the object under consideration (the plasticine band). During the experiment, there was independent inspection using electronic thermometers mounted inside the plasticine. The error in the temperature conductivity coefficient was about 17% and the error in initial temperature determination was less than one degree. Such recovery results allow application of this approach to solving a number of medical problems. It is experimentally proved that acoustic irregularities influence the acousto-thermometric results as well. It is shown that in the chosen scheme of experiment (which corresponds to measurements of human muscle tissue), this influence can be neglected.
ISSN:1063-7710
1562-6865
DOI:10.1134/S1063771012030037