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Estimating the shape of the human eye using widefield optical coherence tomography (OCT)

机译:使用广域光学相干断层扫描(OCT)估计人眼的形状

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Widefield optical coherence tomography (OCT) can be used to image the posterior segment of the human eye. OCT images are typically distorted due to the inconsistent scanning and display geometry and the refractive properties of the human eye. The goal of this study was to create and validate an estimation model that maps the OCT images to the true geometry of the human eye. In addition, we wanted to assess how refractive parameters of the human eye and instrument-to-eye alignment errors affect the estimation model. We have developed a model that estimates the true curvature of the posterior human eye based on widefield OCT images. We have experimentally validated the estimation model using two different phantoms, a single refractive surface solid glass test eye with a spherical retina, and a water-filled test eye with anatomically correct cornea, lens, iris, and retina. In order to further evaluate the suitability of the model to estimate the shape of the human eye, we have performed a tolerance analysis of the critical alignment and refractive parameters in the model, including axial length, corneal power, refractive indices, and lateral and axial alignment of the eye relative to the OCT system. We have found the estimation model to be highly sensitive to variations in axial length and less sensitive to variations in working distance, corneal power, eye alignment, or refractive indices. In conclusion, we have demonstrated an estimation model that estimates the shape of the human eye based on widefield OCT imaging. We further conclude that we can appropriately estimate the shape of the human eye based on widefield OCT images by using nominal values for the refractive properties and actual measurements of the axial length of the eye.
机译:宽场光学相干断层扫描(OCT)可用于图像人眼的后部。由于不一致的扫描和显示几何形状和人眼的折射性,OCT图像通常由于扫描和显示几何形状而变形。本研究的目标是创建和验证将OCT图像映射到人眼的真实几何形状的估计模型。此外,我们希望评估人眼的折射参数和仪器对对准误差如何影响估计模型。我们开发了一种估计基于Widefield OCT图像的后人眼的真正曲率的模型。我们已经通过两种不同的幽灵进行了通过实验验证了估计模型,用球形视网膜的单个折射表面实心玻璃试验眼睛,以及具有解剖学上正确的角膜,透镜,虹膜和视网膜的充水测试眼。为了进一步评估模型的适用性来估计人眼的形状,我们已经对模型中的临界对准和折射参数进行了公差分析,包括轴向长度,角膜功率,折射率和横向和轴向眼睛对准与OCT系统的对准。我们已经发现估计模型对轴向长度的变化非常敏感,并且对工作距离,角膜功率,眼睛对准或折射率的变化不太敏感。总之,我们证明了一种估计基于Widefield OCT成像的人眼形状的估计模型。我们进一步得出得出结论,我们可以通过使用折射性的标称值和眼睛的轴向长度的实际测量来适当地估计人眼的形状。

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