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基于 OCT 数据的个体黄斑 3D 重建的参数模型。

Parametric model for the 3D reconstruction of individual fovea shape from OCT data.

机构信息

Translational Centre for Regenerative Medicine (TRM), University Leipzig, Leipzig, Germany; Interdisciplinary Centre for Bioinformatics, University Leipzig, Leipzig, Germany.

Department of Ophthalmology, Leipzig University Hospital, Leipzig, Germany.

出版信息

Exp Eye Res. 2014 Feb;119:19-26. doi: 10.1016/j.exer.2013.11.008. Epub 2013 Nov 28.

Abstract

As revealed by optical coherence tomography (OCT), the shape of the fovea may vary greatly among individuals. However, none of the hitherto available mathematical descriptions comprehensively reproduces all individual characteristics such as foveal depth, slope, naso-temporal asymmetry, and others. Here, a novel mathematical approach is presented to obtain a very accurate model of the complete 3D foveal surface of an individual, by utilizing recent developments in OCT. For this purpose, a new formula was developed serving as a simple but very flexible way to represent a given fovea. An extensive description of the used model parameters, as well as, of the complete method of reconstructing a foveal surface from OCT data, is presented. Noteworthy, the formula analytically provides characteristic foveal parameters and thus allows for extensive quantification. The present approach was verified on 432 OCT scans and has proved to be able to capture the whole range of asymmetric foveal shapes with high accuracy (i.e. a mean fit error of 1.40 μm).

摘要

光学相干断层扫描(OCT)显示,黄斑的形状在个体之间可能有很大差异。然而,迄今为止可用的数学描述都没有全面再现所有个体特征,如黄斑深度、斜率、鼻颞侧不对称等。在这里,我们提出了一种新的数学方法,利用 OCT 的最新进展,获得个体完整的 3D 黄斑表面的非常精确的模型。为此,开发了一个新的公式,作为表示给定黄斑的简单但非常灵活的方式。本文还详细描述了所使用的模型参数,以及从 OCT 数据重建黄斑表面的完整方法。值得注意的是,该公式可以分析提供黄斑特征参数,从而实现广泛的量化。本方法在 432 次 OCT 扫描中进行了验证,已被证明能够高精度地捕捉整个不对称黄斑形状范围(即平均拟合误差为 1.40μm)。

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