Evaluation of Perfusion and Thermal Parameters of Skin Tissue Using Cold Provocation and Thermographic Measurements

Author:

Strąkowska Maria,Strąkowski Robert,Strzelecki Michał,Mey Gilbert de,Więcek Bogusław

Abstract

AbstractMeasurement of the perfusion coefficient and thermal parameters of skin tissue using dynamic thermography is presented in this paper. A novel approach based on cold provocation and thermal modelling of skin tissue is presented. The measurement was performed on a person’s forearm using a special cooling device equipped with the Peltier module. The proposed method first cools the skin, and then measures the changes of its temperature matching the measurement results with a heat transfer model to estimate the skin perfusion and other thermal parameters. In order to assess correctness of the proposed approach, the uncertainty analysis was performed.

Publisher

Walter de Gruyter GmbH

Reference20 articles.

1. Inverse determination of blood perfusion coefficient by using different deterministic and heuristic techniques of the Brazilian Society of Mechanical Sciences and;Souza;Journal Engineering,2014

2. Microvascular Contributions in Tissue Heat Transfer Annals of the New York Academy of;Chen;Sciences,1980

3. A three layer model for the thermal impedance of the human skin : modelling and experimental measurements of Mechanics in Medicine and Biolog;Strakowska;Journal,2015

4. Analytical analysis of the Pennes bioheat transfer equation with sinusoidal heat flux condition on skin surface Medical Engineering &;Shih;Physics,2007

5. Boundary element method with bioheat equation for skin burn injury;Ng;Burns,2009

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