A Study of Cryosurgery of Prostate Cancer Using Mathematical Model.

Mukesh Kumar, K N Rai
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Abstract

In this study, a two-dimensional three-phase lag (TPL) bio-heat transfer model during cryosurgery of prostate cancer is developed. The cryoprobe, with a temperature that decreases linearly with time, is placed at the prostate tumor tissue. The mathematical model of this bio-heat transfer problem is a moving boundary value problem. Using finite differences, the boundary value problem is converted into the initial value problem of vector-matrix form. Further applying the Legendre wavelet Galerkin method, the problem has been converted into a generalized system of the Sylvester equation, which is solved by the Bartels-Stewart algorithm, where the idea of generalized inverse has been used. We found the temperature distribution using the TPL model and, using these in interface conditions, we obtained the moving layer thicknesses. We compared the present numerical study with the exact solution and see that the results are in good agreement. We have also seen the effects of τq (phase lag due to heat flux), τT (phase lag due to temperature gradient) and τν (phase lag due to temperature displacement gradient) on temperature distribution.

应用数学模型研究前列腺癌冷冻手术。
本研究建立了前列腺癌冷冻手术过程中的二维三相滞后(TPL)生物传热模型。低温探针,其温度随时间线性降低,放置在前列腺肿瘤组织。该生物传热问题的数学模型是一个移动边值问题。利用有限差分,将边值问题转化为向量矩阵形式的初值问题。进一步应用Legendre小波伽辽金方法,将问题转化为Sylvester方程的广义方程组,利用bartel - stewart算法求解该方程组,其中采用了广义逆的思想。我们利用TPL模型找到了温度分布,并利用这些模型在界面条件下得到了运动层的厚度。我们将目前的数值计算与精确解进行了比较,结果很符合。我们还看到了τq(由于热流引起的相滞后)、τT(由于温度梯度引起的相滞后)和τν(由于温度位移梯度引起的相滞后)对温度分布的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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