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用于眼像差测量的采样几何结构:一种性能评估模型。

Sampling geometries for ocular aberrometry: A model for evaluation of performance.

作者信息

Diaz-Santana Luis, Walker Grace, Bará Salvador

出版信息

Opt Express. 2005 Oct 31;13(22):8801-18. doi: 10.1364/opex.13.008801.

Abstract

The purpose of this work is to outline a simple model to assess the relative merits of different sampling grids for ocular aberrometry and illustrate it with an example. While in traditional Hartmann-Shack setups the sampling grid geometries have been somewhat restricted by the geometries of the available microlens arrays, other techniques such as laser ray tracing or spatially resolved refractometry allow for a greater freedom of choice. For all available setups, including HS, it is worth studying which of these choices perform better in terms of accuracy (closeness of the obtained results to the actual ones) and precision (uncertainty of the obtained results). Whilst the mathematical model presented in this paper is quite general and it can be applied to optimise existing or new aberrometers, the numerical results presented in the example are only valid for the particular aberration sample used and centroiding algorithms studied, and should not be generalised outside of these boundaries.

摘要

这项工作的目的是概述一个简单模型,以评估用于眼像差测量的不同采样网格的相对优点,并通过一个例子进行说明。在传统的哈特曼-夏克装置中,采样网格的几何形状在一定程度上受到可用微透镜阵列几何形状的限制,而其他技术,如激光光线追踪或空间分辨折射测量,则允许更大的选择自由度。对于所有可用的装置,包括哈特曼-夏克装置,研究这些选择中哪些在准确性(所得结果与实际结果的接近程度)和精密度(所得结果的不确定性)方面表现更好是值得的。虽然本文提出的数学模型相当通用,可用于优化现有的或新的像差仪,但示例中给出的数值结果仅对所使用的特定像差样本和所研究的质心算法有效,不应超出这些范围进行推广。

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