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首页> 外文期刊>Journal of Thermal Biology >Finite element model to study temperature distribution in skin and deep tissues of human limbs
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Finite element model to study temperature distribution in skin and deep tissues of human limbs

机译:研究人体四肢皮肤和深层组织温度分布的有限元模型

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The temperature of body tissues is viewed as an indicator of tissue response in clinical applications since ancient times. The tissue temperature depends on various physical and physiological parameters like blood flow, metabolic heat generation, thermal conductivity of tissues, shape and size of organs etc. In this paper a finite element model has been proposed to study temperature distribution in skin and deep tissues of human limbs. The geometry of human limb is taken as elliptical tapered shape. It is assumed that outer surface of the limb is exposed to the environment. The appropriate boundary conditions have been framed based on physical conditions of the problem. The model has been developed for a three dimensional steady state case. Hexahedral circular sectoral elements are used to discretize the region. The results have been computed to obtain temperature profiles and study the relation of tissue temperature with the parameters like atmospheric temperature, rate of evaporation, thickness of tissues layers and shape of the limb. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自古以来,人体组织的温度就被视为临床应用中组织反应的指标。组织温度取决于各种生理和生理参数,例如血流量,代谢热产生,组织的热导率,器官的形状和大小等。本文提出了一个有限元模型来研究皮肤和深层组织中的温度分布。人的四肢。人肢的几何形状为椭圆形。假定肢体的外表面暴露于环境中。已根据问题的物理条件来确定适当的边界条件。该模型是针对三维稳态情况开发的。六面体圆形扇形元素用于离散该区域。计算结果以获取温度曲线并研究组织温度与诸如大气温度,蒸发速率,组织层厚度和肢体形状等参数的关系。 (C)2016 Elsevier Ltd.保留所有权利。

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