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Mueller-matrix-based polarization imaging and quantitative assessment of optically anisotropic polycrystalline networks

机译:基于Mueller矩阵的偏振成像和光学各向异性多晶网络的定量评估

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摘要

We introduce a Mueller-matrix imaging polarization-based approach for the quantitative digital screening of the polycrystalline structure of fibrillary-based biological tissues in vitro. The morphometric evaluation of histological sections of myocardium was performed utilizing the high-order statistical moments calculated based on the spatial distribution of linear and circular birefringence and dichroism obtained experimentally. We demonstrate that spatial distributions of phase of light and optical anisotropy of scattering inherent to fibrillar networks of myocardium at different necrotic stages can be effectively used as a quantitative marker of stages of myosin fibril degradation. Processing the images of phase of light scattered in biological tissues with high order statistical analysis provides a functional tool for the quantitative characterization of necrotic conditions of the myocardium.
机译:我们介绍了一种基于Mueller-matrix成像极化的方法,用于对体外基于原纤维的生物组织的多晶结构进行定量数字筛选。利用根据实验获得的线性和圆形双折射和二色性的空间分布计算的高阶统计矩,进行心肌组织切片的形态计量学评估。我们证明,在不同坏死阶段,心肌的纤维状网络固有的光的相位分布和散射的光学各向异性可以有效地用作肌球蛋白原纤维降解阶段的定量标记。用高阶统计分析处理生物组织中散射的光的相位图像,为定量表征心肌坏死状况提供了一种功能性工具。

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