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The photons propagation into non trivial geometry

机译:光子传播到非平凡几何

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摘要

In this work we tried to create a mathematical model of thermal response of laser irradiated multilayer biological tissue. The tissue has 4 horizontal radial symmetric layers with its own optical-physical characteristics. We used the results of Monte Carlo modeling to describe the propagation of light (laser beams) in tissue and receive the function of heat source after we multiply the density of thermal emission by absorption coefficient. As we usually have radial symmetric laser beams we can use cylindrical coordinates. The solution of the 2D heat conduction equation is based on finite-element theory with using square finite elements. We simulated constant laser fluency and as result there are temperature fields. The analysis of the results represents, that heat does not localize on the surface, but collects inside of the tissue. By varying the boundary condition on the surface and type of laser irradiation we can reach high temperature inside the tissue without formation of necrosis at the same time.
机译:在这项工作中,我们试图创建一个激光辐照的多层生物组织的热响应数学模型。该组织具有4个水平的径向对称层,具有自己的光学物理特性。我们使用蒙特卡洛模型的结果来描述光(激光束)在组织中的传播,并通过将热发射密度乘以吸收系数来获得热源的功能。由于我们通常有径向对称的激光束,因此可以使用圆柱坐标。二维热传导方程的解是基于使用正方形有限元的有限元理论。我们模拟了恒定的激光流利度,因此存在温度场。结果分析表明,热量不局限于表面,而是聚集在组织内部。通过改变表面的边界条件和激光照射的类型,我们可以达到组织内部的高温而不会同时形成坏死。

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