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Monte Carlo model and single-scattering approximation of the propagation of polarized light in turbid media containing glucose

机译:蒙特卡罗模型和偏振光在含葡萄糖的混浊介质中传播的单散射近似

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摘要

We present a single-scattering model as well as a Monte Carlo model of the effect of glucose on polarized light in turbid media. Glucose alters the Mueller-matrix patterns of diffusely backscattered and forward-scattered light because glucose molecules rotate the polarization plane of linearly polarized light. For example, the angles of rotation in Mueller-matrix elements S_(21) and S_(12) are linearly related to the concentration of glucose and increase with the source–detector distance. In the nondiffusion regime, the two models agree well with each other. In the diffusion regime, the single-scattering model is invalid, but there still exists a linear relationship between the angles of rotation in the Mueller-matrix elements and the concentration of glucose, which is predicted by the Monte Carlo model.
机译:我们提出了一个单散射模型以及蒙特卡洛模型,该模型对葡萄糖在混浊介质中对偏振光的影响。葡萄糖会改变散射后向散射和前向散射光的Mueller矩阵模式,因为葡萄糖分子会旋转线性偏振光的偏振面。例如,穆勒矩阵元素S_(21)和S_(12)中的旋转角度与葡萄糖浓度线性相关,并随源-探测器距离的增加而增加。在非扩散体制下,这两种模型相互吻合。在扩散状态下,单散射模型无效,但在蒙特勒模型中预测的Mueller-矩阵元素的旋转角与葡萄糖浓度之间仍然存在线性关系。

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