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Numerical analysis on propagation of light in turbid media using path-length assigned Monte-Carlo simulation

机译:路径长度分配的蒙特卡洛模拟法在浑浊介质中光传播的数值分析

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Using a new algorithm of Monte-Carlo simulation, we simulate the propagation of scattered light under the restricted optical configurations which is corresponds to practical experimental setups of OCTs and DOTs. We demonstrate the path-length distributions of scattered light and the dependence of the distributions of scattering points on the path-length and the scattering order. From numerical results, we discuss the dependence of propagation of scattered light on the scattering order and path-length. This algorithm can speedy and accurately simulate the multiple scattering phenomena under the restricted optical configurations compared with the conventional Monte-Carlo simulation.
机译:使用蒙特卡洛模拟的新算法,我们在受限的光学配置下模拟了散射光的传播,这与OCT和DOT的实际实验设置相对应。我们证明了散射光的光程长度分布以及散射点分布对光程长度和散射顺序的依赖性。从数值结果,我们讨论了散射光的传播对散射顺序和路径长度的依赖性。与传统的蒙特卡洛模拟相比,该算法可以在受限的光学配置下快速准确地模拟多种散射现象。

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