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极化和去极化指标作为光学标记物辅助结肠组织的组织病理学研究

Polarization and depolarization metrics as optical markers in support to histopathology of colon tissue.

作者信息

Ivanov Deyan, Dremin Viktor, Borisova Ekaterina, Bykov Alexander, Novikova Tatiana, Meglinski Igor, Ossikovski Razvigor

机构信息

LPICM, CNRS, Ecole Polytechnique, Institut Polytechnique de Paris, Palaiseau, France.

Institute of Electronics, Bulgarian Academy of Sciences, Sofia, Bulgaria.

出版信息

Biomed Opt Express. 2021 Jun 30;12(7):4560-4572. doi: 10.1364/BOE.426713. eCollection 2021 Jul 1.

Abstract

Tissue polarimetry holds great promise to improve the effectiveness of conventional cancer diagnostics and staging, being a fast, minimally invasive, and low-cost optical technique. We introduce an enhanced diagnostic method for colon specimens assessment by utilizing Stokes and Mueller matrix polarimetry. The proposed method makes use of experimental Mueller matrices, measured from healthy and tumor zones of a colon specimen, as input data for post-processing algorithms that include physical realisability filtering, symmetric decomposition and estimation of various polarization and depolarization metrics for colon specimen diagnostics. We validated our results with the gold standard histological diagnostics provided by pathologists. It was found that the Stokes-Mueller matrix polarimetry, combined with the appropriate filtering, decomposition algorithms and polarization/depolarization metrics calculations provides relevant optical markers of the colon tissue pathological conditions (healthy versus cancer), as confirmed by histopathology analysis. This approach potentially provides physicians with valuable and complementary information that holds promises in helping with the diagnostics of colon tissue specimens.

摘要

组织偏振测量法作为一种快速、微创且低成本的光学技术,在提高传统癌症诊断和分期的有效性方面具有巨大潜力。我们介绍一种通过利用斯托克斯和穆勒矩阵偏振测量法来评估结肠标本的增强诊断方法。该方法利用从结肠标本的健康区域和肿瘤区域测量得到的实验穆勒矩阵,作为后处理算法的输入数据,这些算法包括物理可实现性滤波、对称分解以及用于结肠标本诊断的各种偏振和去偏振指标的估计。我们通过病理学家提供的金标准组织学诊断来验证我们的结果。结果发现,斯托克斯 - 穆勒矩阵偏振测量法与适当的滤波、分解算法以及偏振/去偏振指标计算相结合,能够提供结肠组织病理状况(健康与癌症)的相关光学标记,这一点已得到组织病理学分析的证实。这种方法有可能为医生提供有价值的补充信息,有望帮助诊断结肠组织标本。

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