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眼睛屈光不正与单色像差之间的关系。

Relationship between refractive error and monochromatic aberrations of the eye.

作者信息

Cheng Xu, Bradley Arthur, Hong Xin, Thibos Larry N

机构信息

School of Optometry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Optom Vis Sci. 2003 Jan;80(1):43-9. doi: 10.1097/00006324-200301000-00007.

Abstract

PURPOSE

To examine the relationship between ametropia and optical aberrations in a population of 200 normal human eyes with refractive errors spanning the range from +5.00 to -10.00 D.

METHODS

Using a reduced-eye model of ametropia, we tested the hypothesis that the optical system of the eye is uncorrelated with the degree of ametropia. These predictions were evaluated experimentally with a Shack-Hartmann aberrometer that measured the monochromatic aberrations across the central 6 mm of the dilated pupil in well-corrected, cyclopleged eyes.

RESULTS

Optical theory predicted, and control experiments on a model eye verified, that Shack-Hartmann measurements of spherical aberration will vary with axial elongation of the eye even if the dioptric components of the eye are fixed. Contrary to these predictions, spherical aberration was not significantly different from emmetropic eyes. Root mean square of third-order aberrations, fourth-order aberrations, and total higher aberrations (third to 10th) in myopic and hyperopic eyes were also uncorrelated with refractive error. Astigmatic eyes tended to have larger total higher-order aberrations than nonastigmatic eyes.

CONCLUSIONS

We conclude that a reduced-eye model of myopia assuming fixed optical parameters and variable axial length is not tenable.

摘要

目的

在200只正常人类眼睛组成的群体中,研究屈光不正与光学像差之间的关系,这些眼睛的屈光不正范围从+5.00到-10.00 D。

方法

使用简化眼的屈光不正模型,我们检验了眼睛的光学系统与屈光不正程度不相关的假设。通过在充分矫正、睫状肌麻痹的眼睛中,使用Shack-Hartmann像差仪测量散瞳后中央6毫米区域的单色像差,对这些预测进行了实验评估。

结果

光学理论预测,并且对模型眼的对照实验证实,即使眼睛的屈光成分固定,Shack-Hartmann测量的球差也会随着眼轴延长而变化。与这些预测相反,近视眼中的球差与正视眼无显著差异。近视和远视眼中三阶像差、四阶像差以及总高阶像差(三阶到十阶)的均方根也与屈光不正无关。散光眼的总高阶像差往往比非散光眼更大。

结论

我们得出结论,假设光学参数固定且眼轴长度可变的近视眼简化眼模型是站不住脚的。

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