A New Simplified Bioheat Equation for the Effect of Blood Flow on Local Average Tissue Temperature
- 1 May 1985
- journal article
- research article
- Published by ASME International in Journal of Biomechanical Engineering
- Vol. 107 (2), 131-139
- https://doi.org/10.1115/1.3138533
Abstract
A new simplified three-dimensional bioheat equation is derived to describe the effect of blood flow on blood-tissue heat transfer. In two recent theoretical and experimental studies [1, 2] the authors have demonstrated that the so-called isotropic blood perfusion term in the existing bioheat equation is negligible because of the microvascular organization, and that the primary mechanism for blood-tissue energy exchange is incomplete countercurrent exchange in the thermally significant microvessels. The new theory to describe this basic mechanism shows that the vascularization of tissue causes it to behave as an anisotropic heat transfer medium. A remarkably simple expression is derived for the tensor conductivity of the tissue as a function of the local vascular geometry and flow velocity in the thermally significant countercurrent vessels. It is also shown that directed as opposed to isotropic blood perfusion between the countercurrent vessels can have a significant influence on heat transfer in regions where the countercurrent vessels are under 70-μm diameter. The new bioheat equation also describes this mechanism.Keywords
This publication has 1 reference indexed in Scilit:
- Local blood flow in kidney tissue by heat clearance measurementJournal of Theoretical Biology, 1966