A Numerical Investigation of Heat Transfer Cardiac Output Measurements

Author:

Fotheringham P.1,Gourlay A. R.1,Mckee S.2,Andrews S.3

Affiliation:

1. Centre for Mathematical and Computational Science in Medicine, University of Glasgow, Glasgow G12 8QQ, UK

2. Department of Mathematics, University of Strathclyde, 26 Richmond Street, Glasgow G1 1XH, UK

3. AorTech International plc., Strathclyde Business Park, Bellshill, Lanarkshire ML4 3NJ, UK

Abstract

Measurement of cardiac output is often investigated using a technique based on hot-film anemometry. Here, we discuss a modification to hot-film anemometry, which involves a cylindrical heating element mounted flush on the surface of a typical Swan-Ganz catheter. In contrast to traditional thermodilution, the method discussed here has the potential to allow continuous monitoring of cardiac output.This paper demonstrates that there is a simple approximate relationship between the power input to the device to maintain a temperature of one degree above blood heat and cardiac output. Since, the heat transfer and the fluid flow decouple, a numerical model of the heat transfer of a cylindrical catheter (with heating element) sitting concentrically within a rigid cylindrical artery is developed. Numerical results were obtained for a wide selection of flow profiles, including experimental data. The results indicate that the cardiac output/power input relationship is extremely robust with respect to flow profile and system parameter variation.

Funder

Scottish Funding Council

Publisher

Hindawi Limited

Subject

General Biochemistry, Genetics and Molecular Biology

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