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Modeling the optical coherence tomography geometry using the extended Huygens-Fresnel principle and Monte Carlo simulations

机译:使用扩展的惠更斯-菲涅耳原理和蒙特卡洛模拟为光学相干断层扫描几何建模

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Abstract: We have developed a new theoretical description of the optical coherence tomography (OCT) geometry for imaging in highly scattering tissue. The new model is based on the extended Huygens-Fresnel principle, and it is valid in the single and multiple scattering regimes. The so-called shower curtain effect, which manifests itself in standard OCT systems, is an inherent property of the extended Huygens- Fresnel model. We compare the theoretical analysis with experiments carried out on samples consisting of aqueous suspensions of microspheres and solid phantoms. We calculate the signal-to-noise ratio, and provide an estimation of the maximum attainable probing depth for shot-noise limited detection. Furthermore, we investigate the focusing of the Gaussian probe beam in the tissue using Monte Carlo simulations, and compare it to the extended Huygens-Fresnel model. Finally, we simulate the operation of the OCT system using a specially adapted Monte Carlo simulation code.!35
机译:摘要:我们已经开发出一种新的理论描述,用于在高度散射的组织中成像的光学相干断层扫描(OCT)几何形状。新模型基于扩展的惠更斯-菲涅耳原理,并且在单次和多次散射方案中均有效。所谓的浴帘效应在标准的OCT系统中表现出来,是扩展的惠更斯-菲涅耳模型的固有属性。我们将理论分析与对由微球和固体体模的水悬浮液组成的样品进行的实验进行比较。我们计算信噪比,并为散粒噪声有限检测提供最大可达到探测深度的估计。此外,我们使用蒙特卡洛模拟研究高斯探针束在组织中的聚焦,并将其与扩展的惠更斯-菲涅耳模型进行比较。最后,我们使用经过特殊修改的蒙特卡洛模拟代码来模拟OCT系统的运行。!35

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