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Journal ArticleDOI

A New Simplified Bioheat Equation for the Effect of Blood Flow on Local Average Tissue Temperature

TLDR
A new simplified three-dimensional bioheat equation is derived to describe the effect of blood flow on blood-tissue heat transfer and shows that the vascularization of tissue causes it to behave as an anisotropic heat transfer medium.
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-micron diameter. The new bioheat equation also describes this mechanism.

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Citations
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Journal ArticleDOI

Strategies for optimized application of annular-phased-array systems in clinical hyperthermia.

TL;DR: A theoretical framework is presented for optimized heating of deep-seated tumours by phase and amplitude steering, which results in a functional dependency between power-level and maximum obtainable therapeutic efficiency.
Journal ArticleDOI

A generic bioheat transfer thermal model for a perfused tissue.

TL;DR: A generic bioheat transfer model (BHTM) was derived here by conserving thermal energy in a heated vascularized finite tissue and by making a few simplifying assumptions.
Journal ArticleDOI

Numerical analysis of an equivalent heat transfer coefficient in a porous model for simulating a biological tissue in a hyperthermia therapy

TL;DR: In this article, an equivalent heat transfer coefficient between tissue and blood in a porous model is investigated, which is applied to the thermal analysis of a biological tissue in a hyperthermia therapy.
Journal ArticleDOI

A fast and simple algorithm for the calculation of convective heat transfer by large vessels in three-dimensional inhomogeneous tissues

TL;DR: Using the new algorithm as a mathematical tool the thermal equilibration lengths of vessel segments have been established under a broad range of geometrical and flow conditions.
Journal ArticleDOI

A review of the evidence for threshold of burn injury.

TL;DR: A critical review of the evidence that relates temperature and time to cell death and the depth of burn injury is presented, finding time-temperature relationships established for pain and superficial dermal burns in adult human skin have an extensive experimental modeling basis and reasonable clinical validation.
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