Kumar P, Kumar Dinesh, Rai K N
Dept. of Mathematical Sciences, IIT (BHU), Varanasi-221005, India.
DST-CIMS, Faculty of Science, BHU, Varanasi-221005, India.
J Therm Biol. 2016 Aug;60:204-12. doi: 10.1016/j.jtherbio.2016.07.017. Epub 2016 Jul 21.
In this article, a non-linear dual-phase-lag (DPL) bio-heat transfer model based on temperature dependent metabolic heat generation rate is derived to analyze the heat transfer phenomena in living tissues during thermal ablation treatment. The numerical solution of the present non-linear problem has been done by finite element Runge-Kutta (4,5) method which combines the essence of Runge-Kutta (4,5) method together with finite difference scheme. Our study demonstrates that at the thermal ablation position temperature predicted by non-linear and linear DPL models show significant differences. A comparison has been made among non-linear DPL, thermal wave and Pennes model and it has been found that non-linear DPL and thermal wave bio-heat model show almost same nature whereas non-linear Pennes model shows significantly different temperature profile at the initial stage of thermal ablation treatment. The effect of Fourier number and Vernotte number (relaxation Fourier number) on temperature profile in presence and absence of externally applied heat source has been studied in detail and it has been observed that the presence of externally applied heat source term highly affects the efficiency of thermal treatment method.
在本文中,基于与温度相关的代谢产热率推导了一个非线性双相滞后(DPL)生物传热模型,以分析热消融治疗过程中活组织内的传热现象。通过将龙格 - 库塔(4,5)方法的精髓与有限差分格式相结合的有限元龙格 - 库塔(4,5)方法,对当前非线性问题进行了数值求解。我们的研究表明,在热消融位置,非线性和线性DPL模型预测的温度存在显著差异。对非线性DPL、热波模型和彭尼斯模型进行了比较,发现非线性DPL和热波生物传热模型表现出几乎相同的特性,而非线性彭尼斯模型在热消融治疗初期显示出显著不同的温度分布。详细研究了傅里叶数和韦尔诺特数(松弛傅里叶数)在有无外部热源情况下对温度分布的影响,并且观察到外部热源项的存在对热处理方法的效率有很大影响。