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Tissue thickness calculation in ocular optical coherence tomography

机译:眼光学相干断层扫描中的组织厚度计算

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摘要

Thickness measurements derived from optical coherenceudtomography (OCT) images of the eye are a fundamental clinical and research metric, since they provide valuable information regarding the eye’s anatomical and physiological characteristics, and can assist in theuddiagnosis and monitoring of numerous ocular conditions. Despite the importance of these measurements, limited attention has been given to the methods used to estimate thickness in OCT images of the eye. Most current studies employing OCT use an axial thickness metric, but thereudis evidence that axial thickness measures may be biased by tilt and curvature of the image. In this paper, standard axial thickness calculations are compared with a variety of alternative metrics for estimating tissue thickness. These methods were tested on a data set of wide-field chorio-retinal OCT scans (field of view (FOV) 60° x 25°) to examine their performance across a wide region of interest and to demonstrate the potential effect of curvature of the posterior segment of the eye on the thickness estimates. Similarly, the effect of image tilt was systematically examined with the same range of proposed metrics. The results demonstrate that image tilt and curvature of the posterior segment can affect axial tissue thickness calculations, while alternative metrics, which are not biased by these effects, should be considered. This study demonstrates the need to consider alternative methods toudcalculate tissue thickness in order to avoid measurement error due to image tilt and curvature.
机译:从眼睛的光学相干/超声图(OCT)图像得出的厚度测量值是一项基本的临床和研究指标,因为它们可以提供有关眼睛的解剖和生理特征的有价值的信息,并且可以帮助进行多种眼部疾病的诊断/监测。尽管这些测量很重要,但是对用于估计眼睛的OCT图像中的厚度的方法的关注却很少。当前大多数使用OCT的研究都使用轴向厚度度量,但是有证据表明轴向厚度测量值可能会因图像的倾斜度和曲率而产生偏差。在本文中,将标准的轴向厚度计算与用于估计组织厚度的各种替代指标进行了比较。在宽视野脉络膜视网膜OCT扫描的数据集(视场(FOV)60°x 25°)的数据集上测试了这些方法,以检查它们在广泛关注的区域中的性能,并证明其曲率的潜在影响。眼后段的厚度估计。类似地,使用相同范围的建议度量系统地检查了图像倾斜的影响。结果表明,后段的图像倾斜度和曲率会影响轴向组织厚度的计算,同时应考虑不受这些影响影响的替代指标。这项研究表明需要考虑替代方法计算组织厚度,以避免由于图像倾斜和曲率而导致的测量误差。

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