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基于正交扫描模式在光学相干断层扫描容积中逐A扫描进行运动校正。

Motion correction in optical coherence tomography volumes on a per A-scan basis using orthogonal scan patterns.

作者信息

Kraus Martin F, Potsaid Benjamin, Mayer Markus A, Bock Ruediger, Baumann Bernhard, Liu Jonathan J, Hornegger Joachim, Fujimoto James G

出版信息

Biomed Opt Express. 2012 Jun 1;3(6):1182-99. doi: 10.1364/BOE.3.001182. Epub 2012 May 3.

Abstract

High speed Optical Coherence Tomography (OCT) has made it possible to rapidly capture densely sampled 3D volume data. One key application is the acquisition of high quality in vivo volumetric data sets of the human retina. Since the volume is acquired in a few seconds, eye movement during the scan process leads to distortion, which limits the accuracy of quantitative measurements using 3D OCT data. In this paper, we present a novel software based method to correct motion artifacts in OCT raster scans. Motion compensation is performed retrospectively using image registration algorithms on the OCT data sets themselves. Multiple, successively acquired volume scans with orthogonal fast scan directions are registered retrospectively in order to estimate and correct eye motion. Registration is performed by optimizing a large scale numerical problem as given by a global objective function using one dense displacement field for each input volume and special regularization based on the time structure of the acquisition process. After optimization, each volume is undistorted and a single merged volume is constructed that has superior signal quality compared to the input volumes. Experiments were performed using 3D OCT data from the macula and optic nerve head acquired with a high-speed ultra-high resolution 850 nm spectral OCT as well as wide field data acquired with a 1050 nm swept source OCT instrument. Evaluation of registration performance and result stability as well as visual inspection shows that the algorithm can correct for motion in all three dimensions and on a per A-scan basis. Corrected volumes do not show visible motion artifacts. In addition, merging multiple motion corrected and registered volumes leads to improved signal quality. These results demonstrate that motion correction and merging improves image quality and should also improve morphometric measurement accuracy from volumetric OCT data.

摘要

高速光学相干断层扫描(OCT)使得快速获取密集采样的三维体积数据成为可能。一个关键应用是获取高质量的人眼视网膜体内体积数据集。由于体积数据在几秒钟内即可获取,扫描过程中的眼球运动会导致图像失真,这限制了使用三维OCT数据进行定量测量的准确性。在本文中,我们提出了一种基于软件的新颖方法,用于校正OCT光栅扫描中的运动伪影。使用图像配准算法对OCT数据集本身进行回顾性运动补偿。对具有正交快速扫描方向的多个连续采集的体积扫描进行回顾性配准,以估计和校正眼球运动。通过优化一个大规模数值问题来进行配准,该问题由一个全局目标函数给出,为每个输入体积使用一个密集位移场,并基于采集过程的时间结构进行特殊正则化。优化后,每个体积数据不再失真,并构建一个单一的合并体积数据,其信号质量优于输入体积数据。我们使用来自黄斑和视神经乳头的三维OCT数据进行了实验,这些数据是用高速超高分辨率850纳米光谱OCT以及用1050纳米扫频光源OCT仪器采集的宽视野数据获取的。对配准性能和结果稳定性的评估以及视觉检查表明,该算法可以在所有三个维度上以及在每个A扫描基础上校正运动。校正后的体积数据没有可见的运动伪影。此外,合并多个经过运动校正和配准的体积数据可提高信号质量。这些结果表明,运动校正和合并可提高图像质量,也应能提高基于体积OCT数据的形态测量精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/193f/3370961/375f4426ed92/boe-3-6-1182-g001.jpg

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