Numerical simulation of heat transfer in human tissue according to improved vascular structure model

M. Prishvin, L. Manukyan, V. Jeladze, I. Petoev, V. Tabatadze, D. Kakulia, R. Zaridze
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引用次数: 3

Abstract

A new algorithm for construction of artificial blood vessel networks and a new approach to simulate heat exchange in tissue are presented. The algorithm produces discrete three-dimensional geometric representations of both arterial and venous networks. The key feature of the algorithm is that growth begins from the root points and it can work with any enclosed geometry. The main difference of proposed method is that blood perfusion occurs mainly in capillary. Two different methods of constructing blood velocity vector field in tissue accounting capillary blood flow are presented. It is needed for precise thermal analysis using the modified bio-heat equation to provide better prediction of thermal response of tissues exposed to RF energy.
基于改进维管结构模型的人体组织传热数值模拟
提出了一种构建人工血管网络的新算法和一种模拟组织内热交换的新方法。该算法产生动脉和静脉网络的离散三维几何表示。该算法的关键特征是生长从根点开始,并且可以适用于任何封闭几何。所提方法的主要区别在于血液灌注主要发生在毛细血管。提出了两种不同的计算组织毛细血管血流的速度矢量场构造方法。需要使用修正的生物热方程进行精确的热分析,以便更好地预测暴露于射频能量下的组织的热响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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