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Theoretical model of optical coherence tomography for system optimization and characterization

机译:用于系统优化和表征的光学相干层析成像理论模型

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We present a detailed analytical model to describe optical coherence tomography (OCT) systems, which considers the propagation of the optical field within a scattering medium in the framework of the extended Huygens-Fresnel principle. The model includes use of the discrete-particle model and the fractal approach in treating biological tissue as being packed with scattering particles with a power-law distribution. In contrast to previous models, an imaginary lens proximal to the tissue surface is introduced that approximates the real focusing lens in the sample arm of the OCT system. This treatment avoids the consideration of backscattering light as traveling in the free space between the focusing lens and the tissue surface before mixing with the reference beam. Experiments on tissue phantoms were carried out to verify the validity of this model.
机译:我们提供了一个详细的分析模型来描述光学相干断层扫描(OCT)系统,该系统在扩展的惠更斯-菲涅耳原理的框架内考虑了散射介质中光场的传播。该模型包括使用离散粒子模型和分形方法来处理生物组织,使其充满具有幂律分布的散射粒子。与以前的模型相比,在组织表面附近引入了一个假想透镜,该透镜近似于OCT系统样品臂中的真实聚焦透镜。这种处理避免了在与参考光束混合之前在聚焦透镜与组织表面之间的自由空间中传播时考虑向后散射光的问题。对组织体模进行实验以验证该模型的有效性。

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