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2D Modeling and Correction of Fan-beam Scan Geometry in OCT

机译:OCT中扇形束扫描几何的二维建模和校正

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摘要

A-scan acquisitions in OCT images are acquired in a fan-beam pattern, but saved and displayed in a rectangular space. This results in an inaccurate representation of the scan geometry of OCT images, which introduces systematic distortions that can greatly impact shape and morphology based analysis of the retina. Correction of OCT scan geometry has proven to be a challenging task due to a lack of information regarding the true angle of entry of each A-scan through the pupil and the location of the A-scan nodal points. In this work, we present a preliminary model that solves for the OCT scan geometry in a restricted 2D setting. Our approach uses two repeat scans with corresponding landmarks to estimate the necessary parameters to correctly restore the fan-beam geometry of the input B-scans. Our results show accurate estimation of the ground truth geometry from simulated B-scans, and we found qualitatively promising result when the correction was applied to longitudinal B-scans of the same subject. We establish a robust 2D framework that can potentially be expanded for full 3D estimation and correction of OCT scan geometries.
机译:OCT图像中的A扫描采集以扇形光束模式采集,但保存并显示在矩形空间中。这导致OCT图像的扫描几何图形表示不准确,从而导致系统失真,从而严重影响基于视网膜的形状和形态分析。由于缺乏有关每个A扫描穿过瞳孔的真实入射角以及A扫描结点位置的信息,OCT扫描几何形状的校正已被证明是一项艰巨的任务。在这项工作中,我们提出了一个初步模型,该模型可以在受限的2D设置中求解OCT扫描几何形状。我们的方法使用两次重复扫描和相应的界标来估计必要的参数,以正确恢复输入B扫描的扇形光束几何形状。我们的结果表明可以从模拟的B扫描中准确估算出地面真实几何形状,并且当将校正应用于同一对象的纵向B扫描时,我们发现了定性良好的结果。我们建立了一个强大的2D框架,可以将其扩展为进行OCT扫描几何图形的完整3D估计和校正。

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