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Optical and thermal response of laser irradiated tissue

机译:激光照射组织的光学和热响应

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A Java simulation application was developed to simulate optical and thermal response of laser irradiated tissue by using Monte Carlo and finite difference methods. For light propagation Monte Carlo was preferred according to its high accuracy because a number of photon packets can be launched to increase efficiency. Also finite difference method was used for heat diffusion because of its simplicity. The results taken from Monte Carlo model are used as a source term in heat conduction equation. Thus, in small time steps by doing iterations of finite difference method thermal gradients are measured inside a tissue. At 1064 nm fluence and thermal contours of brain and liver tissues are obtained with same laser parameters. Also at different wavelengths, 1064 nm and 630 nm, fluence and thermal contours of liver tissue are calculated in the same conditions. The thermal gradients of laser irradiated tissue were plotted with 2D colored surface plotting.
机译:开发了一个Java仿真应用程序,以使用Monte Carlo和有限差分方法来模拟激光辐照组织的光学和热响应。对于光传播,蒙特卡洛(Monte Carlo)因其高精度而被首选,因为可以发射许多光子包以提高效率。由于其简单性,有限差分法也用于热扩散。从蒙特卡洛模型获得的结果用作热传导方程中的源项。因此,通过执行有限差分方法的迭代,可以在较小的时间步长内测量组织内部的热梯度。在1064 nm处,使用相同的激光参数可获得大脑和肝脏组织的通量和热轮廓。同样在1064 nm和630 nm的不同波长下,在相同条件下计算出肝组织的通量和热轮廓。用2D彩色表面绘图绘制激光照射组织的热梯度。

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