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ANALYTICAL TEMPERATURE DISTRIBUTION IN A MULTI-LAYER TISSUE STRUCTURE IN THE PRESENCE OF A TUMOR

机译:肿瘤存在下多层组织结构的解析温度分布

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Analytical study of bioheat transfer is of significant importance for a number of biomedical applications including cryopreservation of tissue and thermal therapy for cancer. A sound fundamental understanding of thermal behavior of tissue in response to an externally applied stimulus helps design effective therapies and protocols. This paper derives an analytical solution in a multi-layer two-dimensional structure with arbitrary, space-dependent heat generation occurring in each layer. This geometry effectively models multiple layers of skin, with heat generation due to cancerous cells in the basal layer. The Pennes bioheat transfer equation is solved for the multi-layer analytically, wherein the temperature in each layer is explicitly a function of space and the thermo-physical properties of the layer. The resulting analytical temperature profile agrees well with finite-element simulations and is also in good agreement with a previously published experimental study. Results derived in this work illustrate the effect of the presence of cancerous cells on the thermal profile of the skin. Further, the model helps to understand the effect of external cooling and heating stimuli.
机译:生物热传递的分析研究对于许多生物医学应用(包括组织的冷冻保存和癌症的热疗)具有重要意义。对组织响应外部施加刺激的热行为的基本了解有助于设计有效的疗法和方案。本文推导了多层二维结构中的一种解析解,其中在每一层中都发生了任意的,与空间有关的生热。这种几何形状有效地模拟了皮肤的多个层,并由于基底层中的癌细胞产生热量。 Pennes生物传热方程通过解析求解多层,其中每个层中的温度明确地是空间和该层的热物理性质的函数。所得的分析温度曲线与有限元模拟非常吻合,也与先前发表的实验研究非常吻合。这项工作得出的结果说明了癌细胞的存在对皮肤热分布的影响。此外,该模型有助于了解外部冷却和加热刺激的影响。

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