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An analytical method for predicting the geometrical and optical properties of the human lens under accommodation

机译:一种预测人类晶状体在调节下的几何和光学特性的分析方法

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摘要

We present an analytical method to describe the accommodative changes in the human crystalline lens. The method is based on the geometry-invariant lens model, in which the gradient-index (GRIN) iso-indicial contours are coupled to the external shape. This feature ensures that any given number of iso-indicial contours does not change with accommodation, which preserves the optical integrity of the GRIN structure. The coupling also enables us to define the GRIN structure if the radii and asphericities of the external lens surfaces are known. As an example, the accommodative changes in lenticular radii and central thickness were taken from the literature, while the asphericities of the external surfaces were derived analytically by adhering to the basic physical conditions of constant lens volume and its axial position. The resulting changes in lens geometry are consistent with experimental data, and the optical properties are in line with expected values for optical power and spherical aberration. The aim of the paper is to provide an anatomically and optically accurate lens model that is valid for 3 mm pupils and can be used as a new tool for better understanding of accommodation.
机译:我们提出一种分析方法来描述人类晶状体中的适应性变化。该方法基于几何不变透镜模型,其中梯度指数(GRIN)等参轮廓与外部形状耦合。此功能可确保任何给定数量的等距轮廓不会随调节而变化,从而保留了GRIN结构的光学完整性。如果已知外部镜片表面的半径和非球面度,则该耦合还使我们能够定义GRIN结构。例如,从文献中获得了双凸透镜半径和中心厚度的适应性变化,而外表面的非球面性则通过坚持恒定的晶状体体积及其轴向位置的基本物理条件来解析得出。透镜几何形状的最终变化与实验数据一致,并且光学性能与光焦度和球差的预期值一致。本文的目的是提供一种解剖学和光学上精确的晶状体模型,该模型对3 mm瞳孔有效,并且可以用作更好地了解适应性的新工具。

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