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Quantitative evaluation of scattering in optical coherence tomography skin images using the extended Huygens-Fresnel theorem

机译:使用扩展的惠更斯-菲涅耳定理对光学相干断层扫描皮肤图像中的散射进行定量评估

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摘要

An optical properties extraction algorithm is developed based on enhanced Huygens-Fresnel light propagation theorem, to extract the scattering coefficient of a specific region in an optical coherence tomography (OCT) image. The aim is to quantitatively analyze the OCT images. The algorithm is evaluated using a set of phantoms with different concentrations of scatterers, designed based on Mie theory. The algorithm is then used to analyze basal cell carcinoma and healthy eyelid tissues, demonstrating distinguishable differences in the scattering coefficient between these tissues. In this study, we have taken advantage of the simplification introduced by the utilization of a dynamic focus OCT system. This eliminates the need to deconvolve the reflectivity profile with the confocal gate profile, as the sensitivity of the OCT system is constant throughout the axial range.
机译:基于增强的惠更斯-菲涅耳光传播定理,开发了一种光学特性提取算法,以提取光学相干断层扫描(OCT)图像中特定区域的散射系数。目的是定量分析OCT图像。使用基于Mie理论设计的一组具有不同浓度散射体的体模对算法进行评估。然后,该算法用于分析基底细胞癌和健康的眼睑组织,从而证明这些组织之间的散射系数存在明显差异。在这项研究中,我们利用了动态聚焦OCT系统所带来的简化。由于OCT系统的灵敏度在整个轴向范围内都是恒定的,因此无需将反射率轮廓与共焦门轮廓进行卷积。

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