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首页> 外文期刊>Laser physics letters >3D Mueller-matrix-based azimuthal invariant tomography of polycrystalline structure within benign and malignant soft-tissue tumours
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3D Mueller-matrix-based azimuthal invariant tomography of polycrystalline structure within benign and malignant soft-tissue tumours

机译:基于Mueller-Matrix的基于麦克风的方位异性断层扫描,良性和恶性软组织肿瘤内的多晶结构

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摘要

We introduce a method of azimuthally invariant 3D Mueller-matrix (MM) layer-by-layer mapping of the phase and amplitude parameters of anisotropy of the partially depolarizing layers of benign (adenoma) and malignant (carcinoma) prostate tumours. The technique is based on the analysis of spatial variations of Mueller matrix invariant (MMI) of histological sections of benign (adenoma) and malignant (carcinoma) tissue samples. The phase dependence of magnitudes of the first-to-fourth order statistical moments is applied to characterize 3D spatial distributions of MMI of linear and circular birefringence and dichroism of prostate tumours. The high order statistical moments and phase sections of the optimal differentiation of the polycrystalline structure of tissue samples are revealed. The obtained results are compared with the results obtained by conventional methods utilizing polarized light, including 2D and 3D Mueller matrix imaging.
机译:我们介绍了一种方目不变的3D穆勒矩阵(mm)层逐两层映射的良性(腺瘤)和恶性(癌)前列腺肿瘤的各向异性的各向异性的相位和幅度参数。 该技术基于良性(腺瘤)和恶性(癌)组织样品的组织学部分的穆勒基质不变(MMI)的空间变化分析。 第四四阶统计矩的幅度的阶段依赖性被应用于表征MMI的线性和圆形双折射和前列腺肿瘤二十中等的3D空间分布。 揭示了组织样本的多晶结构的最佳分化的高阶统计矩和相段。 将得到的结果与利用偏振光的常规方法获得的结果进行比较,包括2D和3D橡胶矩阵成像。

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