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Towards a realistic numerical modeling of polarimetric response of healthy and pathological colon tissue

机译:建立健康和病理性结肠组织极化反应的逼真的数值模型

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We present Monte Carlo simulations of the backscattering of polarized light by colon tissue in terms of Mueller matrix. We validated the Monte Carlo code with measurements on aqueous suspensions of polystyrene spheres of different sizes. In a first instance we have modeled a tissue as a monodisperse scattering medium representing the nuclei in cytoplasm; then we included a second layer with monodisperse scatterers to represent the most superficial layers (mucosa and submucosa) while the deeper layers (muscularis and pericolic tissue) were "lumped" into a totally depolarizing lambertian. These simulations failed to reproduce the Rayleigh type scattering (larger depolarization for circular vs. linear incident polarization) systematically observed on all experimentally studied tissue samples. This issue has been solved by modelling tissues as a single layer of bimodal mixtures including large and small scatterers over a lambertian.
机译:我们根据Mueller矩阵介绍了结肠组织对偏振光的反向散射的蒙特卡罗模拟。我们通过对不同尺寸的聚苯乙烯球的水悬浮液进行测量来验证蒙特卡洛代码。首先,我们将组织建模为代表细胞质中细胞核的单分散散射介质。然后,我们包括第二个具有单分散散射体的层,以代表最浅的层(粘膜和粘膜下层),而更深的层(肌层和周组织)则被“聚集成”为完全去极化的朗伯型。这些模拟无法重现在所有实验研究的组织样本上系统观察到的瑞利型散射(圆形与线性入射极化的较大去极化)。通过将组织建模为单峰双峰混合物(包括朗伯上方的大大小小的散射体),可以解决此问题。

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