Engineering Science and Applied Mathematics, Northwestern University, Chicago, IL, USA.
Computer Science, Computational Photography Lab, Northwestern University, Chicago, IL, USA.
Sci Rep. 2021 Jan 26;11(1):2263. doi: 10.1038/s41598-021-81713-7.
Optical coherence tomography (OCT) is an optical technique which allows for volumetric visualization of the internal structures of translucent materials. Additional information can be gained by measuring the rate of signal attenuation in depth. Techniques have been developed to estimate the rate of attenuation on a voxel by voxel basis. This depth resolved attenuation analysis gives insight into tissue structure and organization in a spatially resolved way. However, the presence of speckle in the OCT measurement causes the attenuation coefficient image to contain unrealistic fluctuations and makes the reliability of these images at the voxel level poor. While the distribution of speckle in OCT images has appeared in literature, the resulting voxelwise corruption of the attenuation analysis has not. In this work, the estimated depth resolved attenuation coefficient from OCT data with speckle is shown to be approximately exponentially distributed. After this, a prior distribution for the depth resolved attenuation coefficient is derived for a simple system using statistical mechanics. Finally, given a set of depth resolved estimates which were made from OCT data in the presence of speckle, a posterior probability distribution for the true voxelwise attenuation coefficient is derived and a Bayesian voxelwise estimator for the coefficient is given. These results are demonstrated in simulation and validated experimentally.
光学相干断层扫描(OCT)是一种光学技术,可对半透明材料的内部结构进行体积可视化。通过测量信号在深度上的衰减率,可以获得额外的信息。已经开发出了技术来估计体素基础上的衰减率。这种深度分辨衰减分析可以深入了解组织的结构和组织,以空间分辨的方式。然而,OCT 测量中的散斑会导致衰减系数图像包含不真实的波动,并使这些图像在体素水平上的可靠性较差。虽然 OCT 图像中的散斑分布已经在文献中出现,但衰减分析的体素级别的损坏尚未出现。在这项工作中,从具有散斑的 OCT 数据中估计的深度分辨衰减系数被证明近似呈指数分布。之后,使用统计力学为简单系统推导出了深度分辨衰减系数的先验分布。最后,对于一组在散斑存在的情况下从 OCT 数据中得出的深度分辨估计值,推导出了真实体素衰减系数的后验概率分布,并给出了系数的贝叶斯体素估计值。这些结果在模拟中得到了验证,并通过实验得到了验证。