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通过一种新的光学方法重建的人眼广角点扩散函数。

The wide-angle point spread function of the human eye reconstructed by a new optical method.

作者信息

Ginis Harilaos, Pérez Guillermo M, Bueno Juan M, Artal Pablo

机构信息

Institute of Vision and Optics, University of Crete, Heraklion, Crete, Greece.

出版信息

J Vis. 2012 Mar 26;12(3):20. doi: 10.1167/12.3.20.

Abstract

The point spread function (PSF) of the human eye spans over a wide angular distribution where the central part is associated mostly to optical aberrations while the peripheral zones are associated to light scattering. There is a plethora of optical methods for the direct and indirect measurements of the central part of the PSF as a result of monochromatic and polychromatic aberrations. The impact of the spatial characteristics of this central part of the PSF on the retinal image quality and visual function has been extensively analyzed and documented both by optical and psychophysical methods. However, the more peripheral areas of the PSF in the living human eye, ranging from about 1 to 10 degrees of eccentricity, have been investigated only psychophysically. We report here a new optical method for the accurate reconstruction of the wide-angle PSF in the living human eye up to 8 degrees. The methodology consists of projecting disks of uniform radiance on the retina, recording the images after reflection and double pass through the eye's optics and performing a proper analysis of the images. Examples of application of the technique in real eyes with different amount of scatter artificially induced are presented. This procedure allows the direct, accurate, and in vivo measurement of the effect of intraocular scattering and may be a step toward the comprehensive optical evaluation of the optics of the living human eye.

摘要

人眼的点扩散函数(PSF)在很宽的角度分布范围内延伸,其中央部分主要与光学像差相关,而周边区域则与光散射相关。由于单色和多色差,有大量光学方法可用于直接和间接测量PSF的中央部分。PSF中央部分的空间特性对视网膜图像质量和视觉功能的影响已通过光学和心理物理学方法进行了广泛分析和记录。然而,人眼活体中PSF的更周边区域,即偏心度约为1至10度的区域,仅通过心理物理学方法进行了研究。我们在此报告一种新的光学方法,用于精确重建人眼活体中高达8度的广角PSF。该方法包括将均匀辐射的圆盘投射到视网膜上,记录反射并两次穿过眼睛光学系统后的图像,并对图像进行适当分析。展示了该技术在人为诱导不同散射量的真实眼睛中的应用示例。此过程允许直接、准确地在活体中测量眼内散射的影响,并且可能是朝着对人眼活体光学进行全面光学评估迈出的一步。

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