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Computing retinal contour from optical biometry

机译:从光学生物统计学计算视网膜轮廓

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PURPOSE: To describe a new methodology that derives horizontal posterior retinal contours from partial coherence interferometry (PCI) and ray tracing using the corneal topography. Methods: Corneal topography and PCI for seven horizontal visual field eccentricities correspondent to the central 60 degrees of the posterior pole were obtained in 55 myopic eyes. A semicustomized eye model based on the subject's corneal topography and the Navarro eye model was generated using Zemax-EE software. The model was used to compute the optical path length in the seven directions where PCI measurements were obtained. Vitreous chamber depth was computed using the PCI values obtained at each of those directions. Matlab software was developed to fit the best conic curve to the set of points previously obtained. We tested the limit in the accuracy of the methodology when the actual cornea of the subject is not used and for two different lens geometries. RESULTS: A standard eye model can induce an error in the retina sagitta estimation of the order of hundreds of micrometers in comparison with the semicustomized eye model. However, the use of a different lens model leads to an error of the order of tens of micrometers. The apical radius and conic constant of the average fit were -11.91 mm and -0.15, respectively. In general, a nasal-temporal asymmetry in the retina contour was found, showing mean larger values of vitreous chamber depth in the nasal side of the eye. CONCLUSIONS: The use of a semicustomized eye model, together with optical path length measured by PCI for different angles, can be used to predict the retinal contour within tenths of micrometers. This methodology can be useful in studies trying to understand the effect of peripheral retinal location on myopia progression as well as modeling the optics of the human eye for a wide field.
机译:目的:描述一个新的方法获取水平后视网膜轮廓从部分相干干涉法(PCI)和射线跟踪使用角膜地形。方法:角膜地形和PCI 7水平视野怪癖记者的中央60度后杆获得55年近视眼睛。semicustomized眼睛模型基于主题的角膜地形和纳瓦罗眼睛模型使用Zemax-EE生成软件。用于计算的光学路径长度七个方向PCI测量的位置获得的。在每一个使用PCI值了的方向。最好的圆锥曲线的集合点之前获得的。当实际精度的方法角膜的主题是不习惯和两个不同镜头的几何图形。眼睛模型可以引发一个错误在视网膜上矢耳石估计数百名的顺序微米与semicustomized相比眼睛模型。模型会导致一个错误的顺序的微米。平均-11.91毫米和-0.15,分别。不对称在视网膜上轮廓被发现,意味着更大的玻璃室值在眼睛的鼻侧深度。semicustomized眼模型的使用,在一起光学路径长度来衡量一种总线标准不同的角度,可以用来预测视网膜轮廓在零点几微米。这种方法可用于研究尝试了解周边视网膜的影响近视进展以及位置模拟人眼的光学宽字段。

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