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CuBe: parametric modeling of 3D foveal shape using cubic Bézier

机译:CuBe:使用三次贝塞尔曲线的3D中心凹形状的参数化建模

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摘要

Optical coherence tomography (OCT) allows three-dimensional (3D) imaging of the retina, and is commonly used for assessing pathological changes of fovea and macula in many diseases. Many neuroinflammatory conditions are known to cause modifications to the fovea shape. In this paper, we propose a method for parametric modeling of the foveal shape. Our method exploits invariant features of the macula from OCT data and applies a cubic Bézier polynomial along with a least square optimization to produce a best fit parametric model of the fovea. Additionally, we provide several parameters of the foveal shape based on the proposed 3D parametric modeling. Our quantitative and visual results show that the proposed model is not only able to reconstruct important features from the foveal shape, but also produces less error compared to the state-of-the-art methods. Finally, we apply the model in a comparison of healthy control eyes and eyes from patients with neuroinflammatory central nervous system disorders and optic neuritis, and show that several derived model parameters show significant differences between the two groups.
机译:光学相干断层扫描(OCT)可以对视网膜进行三维(3D)成像,通常用于评估许多疾病中的中央凹和黄斑的病理变化。已知许多神经炎性疾病会引起中央凹形状的改变。在本文中,我们提出了一种中心凹形状的参数化建模方法。我们的方法利用来自OCT数据的黄斑的不变特征,并应用三次Bézier多项式以及最小二乘优化来产生最合适的中央凹参数模型。此外,我们基于提出的3D参数化建模提供了多个中央凹形状的参数。我们的定量和视觉结果表明,与最新方法相比,所提出的模型不仅能够从中央凹形状重建重要特征,而且产生的误差也较小。最后,我们将该模型用于健康对照眼和患有神经炎性中枢神经系统疾病和视神经炎患者的眼睛的比较,并显示了几个衍生的模型参数显示两组之间存在显着差异。

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