School of Computer Science, University of Nottingham, Nottingham, NG8 1BB, UK.
Int J Numer Method Biomed Eng. 2019 Apr;35(4):e3177. doi: 10.1002/cnm.3177. Epub 2019 Mar 7.
Optical coherence tomography (OCT) relies on optical interferometry to provide noninvasive imaging of living tissues. In addition to its 3D imaging capacity for medical diagnosis, its potential use for recovering optical parameters of biological tissues for biological and pathological analyses has also been explored by researchers, as pathological changes in tissue alter the microstructure of the tissue and therefore its optical properties. We aim to develop a new approach to OCT data analysis by estimating optical properties of tissues from OCT scans, which are invisible in the scans. This is an inverse problem. Solving an inverse problem involves a forward modeling step to simulate OCT scans of the tissues with hypothesized optical parameter values and an inverse step to estimate the real optical par1meters values by matching the simulated scans to real scans. In this paper, we present a Monte Carlo (MC)-based approach for simulating the frequency-domain OCT. We incorporated a focusing Gaussian light beam rather than an infinitesimally thin light beam for accurate simulations. A new and more accurate photon detection scheme is also implemented. We compare our MC model to an analytical OCT model based on the extended Huygens-Fresnel principle (EHF) to demonstrate the consistency between the two models. We show that the two models are in good agreement for tissues with high scattering and high anisotropy factors.
光学相干断层扫描(OCT)利用光学干涉技术对活体组织进行非侵入式成像。除了用于医学诊断的 3D 成像能力外,研究人员还探索了其在恢复生物组织光学参数方面的潜在应用,以用于生物学和病理学分析,因为组织的病理变化会改变组织的微观结构,从而改变其光学特性。我们旨在通过从 OCT 扫描中估计组织的光学特性来开发一种新的 OCT 数据分析方法,这些特性在扫描中是不可见的。这是一个反问题。解决反问题涉及正向建模步骤,该步骤模拟具有假设光学参数值的组织的 OCT 扫描,以及通过将模拟扫描与实际扫描匹配来估计真实光学参数值的逆步骤。在本文中,我们提出了一种基于蒙特卡罗(MC)的方法来模拟频域 OCT。我们结合了聚焦高斯光束,而不是用于精确模拟的无穷薄光束。还实现了一种新的、更准确的光子检测方案。我们将我们的 MC 模型与基于扩展惠更斯-菲涅耳原理(EHF)的分析 OCT 模型进行比较,以证明这两种模型之间的一致性。我们表明,对于高散射和高各向异性因子的组织,这两种模型具有很好的一致性。