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用于光学建模的解剖学精确有限模型眼。

Anatomically accurate, finite model eye for optical modeling.

作者信息

Liou H L, Brennan N A

机构信息

Department of Optometry and Vision Sciences, University of Melbourne, Parkville VIC, Australia.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 1997 Aug;14(8):1684-95. doi: 10.1364/josaa.14.001684.

Abstract

There is a need for a schematic eye that models vision accurately under various conditions such as refractive surgical procedures, contact lens and spectacle wear, and near vision. Here we propose a new model eye close to anatomical, biometric, and optical realities. This is a finite model with four aspheric refracting surfaces and a gradient-index lens. It has an equivalent power of 60.35 D and an axial length of 23.95 mm. The new model eye provides spherical aberration values within the limits of empirical results and predicts chromatic aberration for wavelengths between 380 and 750 nm. It provides a model for calculating optical transfer functions and predicting optical performance of the eye.

摘要

需要一种在诸如屈光手术、佩戴隐形眼镜和眼镜以及近视力等各种条件下能准确模拟视觉的简化眼模型。在此,我们提出一种接近解剖学、生物测量学和光学实际情况的新型模型眼。这是一个具有四个非球面折射面和一个梯度折射率透镜的有限模型。它的等效屈光力为60.35 D,眼轴长度为23.95 mm。这种新型模型眼提供的球差值在实验结果范围内,并能预测380至750 nm波长之间的色差。它为计算光学传递函数和预测眼睛的光学性能提供了一个模型。

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