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用于鉴别生物组织病变的光学相干断层扫描图像的新型处理算法。

Novel algorithm of processing optical coherence tomography images for differentiation of biological tissue pathologies.

作者信息

Turchin Ilya V, Sergeeva Ekaterina A, Dolin Lev S, Kamensky Vladislav A, Shakhova Natalia M, Richards-Kortum Rebecca

机构信息

Russian Academy of Sciences, Institute of Applied Physics, 603950 Ulyanov Street, 46, Nizhny Novgorod, Russia.

出版信息

J Biomed Opt. 2005 Nov-Dec;10(6):064024. doi: 10.1117/1.2137670.

Abstract

A numerical algorithm based on a small-angle approximation of the radiative transfer equation (RTE) is developed to reconstruct scattering characteristics of biological tissues from optical coherence tomography (OCT) images. According to the algorithm, biological tissue is considered to be a layered random medium with a set of scattering parameters in each layer: total scattering coefficient, variance of a small-angle scattering phase function, and probability of backscattering, which fully describe the OCT signal behavior versus probing depth. The reconstruction of the scattering parameters is performed by their variation to fit the experimental OCT signal by the theoretical one using a time-saving genetic algorithm. The proposed reconstruction procedure is tested on model media with known scattering parameters. The possibility to estimate scattering parameters from OCT images is studied for various regimes of OCT signal decay. The developed algorithm is applied to reconstruct optical characteristics of epithelium and stroma for normal cervical tissue and its pathologies, and the potential to distinguish between the types of pathological changes in epithelial tissue by its OCT images is demonstrated.

摘要

基于辐射传输方程(RTE)小角度近似的数值算法被开发出来,用于从光学相干断层扫描(OCT)图像重建生物组织的散射特性。根据该算法,生物组织被视为一种分层随机介质,每层具有一组散射参数:总散射系数、小角度散射相位函数的方差和后向散射概率,这些参数充分描述了OCT信号随探测深度的行为。通过使用节省时间的遗传算法,通过改变散射参数使其理论值拟合实验OCT信号来进行散射参数的重建。所提出的重建程序在具有已知散射参数的模型介质上进行了测试。针对OCT信号衰减的各种情况,研究了从OCT图像估计散射参数的可能性。所开发的算法被应用于重建正常宫颈组织及其病变的上皮和基质的光学特性,并展示了通过其OCT图像区分上皮组织病理变化类型的潜力。

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