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Mueller microscopy of anisotropic scattering media: theory and experiments

机译:各向异性散射介质的Mueller显微镜:理论与实验

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The combined approach including experiments (Mueller polarimetry) and theory (differential Mueller matrix formalism) for the studies of anisotropic scattering media was tested on the model system of human skin. Custom-build Mueller polarimetric microscope was used for the studies of histological cuts of full-thickness skin equivalents generated from epidermal keratinocytes forming a multilayered epidermis on top of collagen I hydrogel with dermal fibroblasts. The sets of fixed unstained tissue cuts of different thicknesses (5μm - 30μm) were measured in transmission configuration. The values of polarimetric (dichroism and retardance) and depolarization parameters were calculated by applying pixel-wise the logarithmic decomposition of Mueller matrices. The parabolic dependence of depolarization parameters and linear dependence of polarimetric parameters on thickness, as predicted by theory, was confirmed by measurements. It proves that phenomenological modeling of complex anisotropic scattering medium (e.g., biological tissue) may effectively disentangle the polarimetric and depolarizing properties of the system understudies and may be used for analysis and diagnostics of tissue.
机译:在人类皮肤的模型系统上测试了包括各向异性各向异性散射介质研究的实验方法(穆勒偏振法)和理论方法(微分穆勒矩阵形式)。定制的Mueller偏振显微镜用于研究由表皮角质形成细胞在胶原蛋白I水凝胶上与真皮成纤维细胞形成多层表皮所产生的全层皮肤当量的组织学切片。在透射配置中测量了不同厚度(5μm-30μm)的固定的,未染色的组织切口的集合。通过应用Mueller矩阵的对数分解,可计算出极化(二向色性和延迟)和去极化参数的值。如理论所预测的,去极化参数的抛物线依赖性和极化参数对厚度的线性依赖性已通过测量得到证实。证明了复杂的各向异性散射介质(例如生物组织)的现象学建模可以有效地消除系统研究对象的极化和去极化特性,并且可以用于组织的分析和诊断。

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