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利用光线追踪和光学相干断层扫描数据的优化方法重建晶状体梯度折射率的准确性。

Accuracy of the reconstruction of the crystalline lens gradient index with optimization methods from ray tracing and Optical Coherence Tomography data.

作者信息

de Castro Alberto, Barbero Sergio, Ortiz Sergio, Marcos Susana

机构信息

Instituto de Óptica Daza de Valdés, Consejo Superior de Investigaciones Científicas, C/ Serrano 121, 28006 Madrid Spain.

出版信息

Opt Express. 2011 Sep 26;19(20):19265-79. doi: 10.1364/OE.19.019265.

Abstract

The accuracy of the reconstruction of the Gradient Refractive Index (GRIN) of the crystalline lens from optimization methods was evaluated. Different input data, including direction cosines of deflected rays, ray impacts obtained from ray tracing and optical path differences from Optical Coherence Tomography (OCT) were studied. Three different GRIN models were analyzed. The experimental errors of the different experimental input data were estimated from comparisons of measurements and simulations using artificial lenses of known geometries. The experimental errors in the surfaces shape measurement and the influence of the number of rays were also considered. OCT-based input data produced the most accurate GRIN reconstructions. We found that optimization methods (combining global and local search algorithms) allow GRIN reconstructions with acceptable accuracies for moderate noise level.

摘要

评估了通过优化方法重建晶状体梯度折射率(GRIN)的准确性。研究了不同的输入数据,包括偏转光线的方向余弦、光线追迹获得的光线交点以及光学相干断层扫描(OCT)的光程差。分析了三种不同的GRIN模型。通过使用已知几何形状的人工晶状体进行测量和模拟比较,估计了不同实验输入数据的实验误差。还考虑了表面形状测量中的实验误差以及光线数量的影响。基于OCT的输入数据产生了最准确的GRIN重建。我们发现,优化方法(结合全局和局部搜索算法)能够在中等噪声水平下以可接受的精度进行GRIN重建。

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