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用于描述热疗过程中皮肤组织热传递的非线性双相滞后模型研究。

A Study on Non-Linear DPL Model for Describing Heat Transfer in Skin Tissue during Hyperthermia Treatment.

作者信息

Sharma Sunil Kumar, Kumar Dinesh

机构信息

College of Computer and Information Sciences, Majmaah University, Majmaah 11952, Saudi Arabia.

Govt. Polytechnic Nawada, Bihar 805122, India.

出版信息

Entropy (Basel). 2020 Apr 22;22(4):481. doi: 10.3390/e22040481.

Abstract

The article studies the simulation-based mathematical modeling of bioheat transfer under the Dirichlet boundary condition. We used complex non-linear dual-phase-lag bioheat transfer (DPLBHT) for analyzing the temperature distribution in skin tissues during hyperthermia treatment of infected cells. The perfusion term, metabolic heat source, and external heat source were the three parts of the volumetric heat source that were used in the model. The non-linear DPLBHT model predicted a more accurate temperature within skin tissues. The finite element Runge-Kutta (4,5) (FERK (4,5)) method, which was based on two techniques, finite difference and Runge-Kutta (4,5), was applied for calculating the result in the case of our typical non-linear problem. The paper studies and presents the non-dimensional unit. Thermal damage of normal tissue was observed near zero during hyperthermia treatment. The effects of the non-dimensional time, non-dimensional space coordinate, location parameter, regional parameter, relaxation and thermalization time, metabolic heat source, associated metabolic heat source parameter, perfusion rate, associated perfusion heat source parameter, and external heat source coefficient on the dimensionless temperature profile were studied in detail during the hyperthermia treatment process.

摘要

本文研究了狄利克雷边界条件下基于模拟的生物热传递数学建模。我们使用复杂的非线性双相滞后生物热传递(DPLBHT)来分析感染细胞热疗过程中皮肤组织内的温度分布。灌注项、代谢热源和外部热源是模型中使用的体积热源的三个部分。非线性DPLBHT模型预测了皮肤组织内更准确的温度。基于有限差分和龙格 - 库塔(4,5)两种技术的有限元龙格 - 库塔(4,5)(FERK(4,5))方法被用于计算我们典型非线性问题的结果。本文研究并给出了无量纲单位。热疗过程中观察到正常组织的热损伤接近零。在热疗过程中,详细研究了无量纲时间、无量纲空间坐标、位置参数、区域参数、弛豫和热化时间、代谢热源、相关代谢热源参数、灌注率、相关灌注热源参数以及外部热源系数对无量纲温度分布的影响。

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