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热疗过程中皮肤组织内热传递的时间分数阶双相滞后模型的数值模拟

Numerical simulation of time fractional dual-phase-lag model of heat transfer within skin tissue during thermal therapy.

作者信息

Kumar Dinesh, Rai K N

机构信息

DST - CIMS, BHU, Varanasi 221005, India.

Dept. of Mathematical Sciences, IIT (BHU), Varanasi 221005, India.

出版信息

J Therm Biol. 2017 Jul;67:49-58. doi: 10.1016/j.jtherbio.2017.05.001. Epub 2017 May 3.

Abstract

In this paper, we investigated the thermal behavior in living biological tissues using time fractional dual-phase-lag bioheat transfer (DPLBHT) model subjected to Dirichelt boundary condition in presence of metabolic and electromagnetic heat sources during thermal therapy. We solved this bioheat transfer model using finite element Legendre wavelet Galerkin method (FELWGM) with help of block pulse function in sense of Caputo fractional order derivative. We compared the obtained results from FELWGM and exact method in a specific case, and found a high accuracy. Results are interpreted in the form of standard and anomalous cases for taking different order of time fractional DPLBHT model. The time to achieve hyperthermia position is discussed in both cases as standard and time fractional order derivative. The success of thermal therapy in the treatment of metastatic cancerous cell depends on time fractional order derivative to precise prediction and control of temperature. The effect of variability of parameters such as time fractional derivative, lagging times, blood perfusion coefficient, metabolic heat source and transmitted power on dimensionless temperature distribution in skin tissue is discussed in detail. The physiological parameters has been estimated, corresponding to the value of fractional order derivative for hyperthermia treatment therapy.

摘要

在本文中,我们使用时间分数阶双相滞后生物热传递(DPLBHT)模型研究了活体生物组织中的热行为,该模型在热疗过程中存在代谢和电磁热源的情况下服从狄利克雷边界条件。我们借助块脉冲函数,在卡普托分数阶导数意义下,使用有限元勒让德小波伽辽金方法(FELWGM)求解了该生物热传递模型。我们在一个特定案例中比较了FELWGM得到的结果和精确方法,发现具有很高的精度。结果以标准情况和异常情况的形式呈现,对应于不同时间分数阶DPLBHT模型的阶数。在标准情况和时间分数阶导数这两种情况下,都讨论了达到热疗位置的时间。热疗在治疗转移性癌细胞方面的成功取决于时间分数阶导数对温度的精确预测和控制。详细讨论了诸如时间分数导数、滞后时间、血液灌注系数、代谢热源和传输功率等参数的变化对皮肤组织中无量纲温度分布的影响。已经估计了与热疗治疗分数阶导数值相对应的生理参数。

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