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Generalized Fokker-Planck models of light propagation in layered media

机译:分层介质中光传播的广义Fokker-Planck模型

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We present a numerical procedure using the P_N-niethod to model light distributions in layered structures such as the epithelium. In contrast to previous studies of layered media using Monte Carlo methods and discrete ordinates, the P_N-method provides the flexibility to not only vary tissue optical properties across layers but also allows one to vary the tissue light interaction without changes to the numerical method. This includes the collection of generalized Fokker-Planck equations used in forward scattering approximations. Example calculations are performed for a model of the head consisting of a skull layer, cerebrospinal fluid layer, and cortex layer and a model of a port wine stain consisting of epidermis, dermis, and vascular malformation layers. Results obtained with the P_N-method are shown to agree with Monte Carlo simulation but are obtained in a fraction of the time needed for accurate Monte Carlo results.
机译:我们提出了一种使用P_N-niethod的数值程序来模拟分层结构(例如上皮)中的光分布。与以前使用蒙特卡洛方法和离散纵坐标的分层介质研究相比,P_N方法不仅提供了灵活性,它不仅可以改变各层的组织光学特性,还可以改变组织光的相互作用而无需更改数值方法。这包括在前向散射近似中使用的广义Fokker-Planck方程的集合。对于由颅骨层,脑脊髓液层和皮质层组成的头部模型以及由表皮,真皮和血管畸形层组成的波特酒色斑模型进行示例计算。显示了使用P_N方法获得的结果与蒙特卡洛模拟吻合,但是获得精确蒙特卡洛结果所需时间的一小部分。

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