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Semi-analytical Monte Carlo simulation for time-resolved light propagating in multilayered turbid media

机译:多层浊度介质中传播时间分辨光的半分析蒙特卡罗模拟

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In this study, a Monte Carlo (MC) method for time-resolved light scattering from multilayered turbid media (SMCML) has been developed. This method is particularly suitable for simulating light backscattering from layered media and receiving the time-resolved signal in a finite sensor area, such as ocean detection, photomedicine and photobiology. The classical semi-analytical MC method requires the scattering events to be located in a single-layer medium. To address the multilayer problem, the energy loss mechanism of photons propagating in tissue was analyzed in this study. According to the energy contribution to the detector, only photons that contribute significantly were considered. Simulations were conducted for stochastic turbid media with different optical parameters. Temporal profiles of the echo signal were obtained with a satisfactory convergence. Compared to the classical MC method, the SMCML method can dramatically reduce the computation time by more than two orders of magnitude.
机译:在该研究中,已经开发了一种来自多层浑浊介质(SMCML)的时间分辨光散射的蒙特卡罗(MC)方法。该方法特别适用于从分层介质模拟光反向散射并在有限的传感器区域中接收时间分辨信号,例如海洋检测,光学暗集和光生物学。经典的半分析MC方法要求位于单层介质中的散射事件。为了解决多层问题,在本研究中分析了组织中传播的光子的能量损失机制。根据对探测器的能量贡献,仅考虑了显着贡献的光子。对具有不同光学参数的随机浑浊介质进行仿真。通过令人满意的收敛获得回波信号的时间谱。与古典MC方法相比,SMCML方法可以大大降低计算时间超过两个数量级。

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