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Two-dimensional simulation of optical coherence tomography images

机译:光学相干断层扫描图像的二维模拟

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摘要

An algorithm for the simulation of two-dimensional spectral domain optical coherence tomography images based on Maxwell’s equations is presented. A recently developed and modified time-harmonic numerical solution of Maxwell’s equations is used to obtain scattered far fields for many wave numbers contained in the calculated spectrum. The interferometer setup with its lenses is included rigorously with Fresnel integrals and the Debye-Wolf integral. The implemented model is validated with an existing FDTD algorithm by comparing simulated tomograms of single and multiple cylindrical scatterers for perpendicular and parallel polarisation of the incident light. Tomograms are presented for different realisations of multiple cylindrical scatterers. Furthermore, simulated tomograms of a ziggurat-shaped scatterer and of dentin slabs, with varying scatterer concentrations, are investigated. It is shown that the tomograms do not represent the physical structures present within the sample.
机译:提出了一种基于麦克斯韦方程组的二维光谱域光学相干断层扫描图像仿真算法。最近开发和修改的麦克斯韦方程组的时谐数值解用于获得计算光谱中包含的许多波数的散射远场。菲涅尔积分和德拜-沃尔夫积分严格包含其透镜的干涉仪设置。通过比较单个和多个圆柱状散射体的模拟层析X射线照片对入射光的垂直和平行偏振,可以用现有的FDTD算法验证实现的模型。给出了针对多个圆柱散射体的不同实现的断层图。此外,还研究了锯齿形散射体和牙本质平板的模拟断层图,这些散射体的浓度各不相同。结果表明,断层图不代表样品中存在的物理结构。

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