Artal P, Iglesias I, López-Gil N, Green D G
Departamento de Física, Universidad de Murcia, Spain.
J Opt Soc Am A Opt Image Sci Vis. 1995 Oct;12(10):2358-66. doi: 10.1364/josaa.12.002358.
We have used a modified double-pass apparatus with unequal entrance and exit pupil sizes to measure the optical transfer function in the human eye and have applied the technique to three different problems. First, we confirm that in the eye the double-pass spread function is the cross correlation of the input spread function with the output spread function [J. Opt. Soc. Am. A 12, 195 (1995)]. Consequently, when entrance and exit pupil sizes are equal, phase information is lost from the double-pass images. Second, we show that in double-pass measurements the eye behaves like a reversible optical system. That is, when entrance and exit pupils are equal, the double-pass image results from two passes through an optical system having a transfer function that is the same in both directions. To test for reversibility in the living eye we have used a double-pass apparatus with different exit and entrance pupil sizes (one of them small enough to consider the eye diffraction limited), so that the ingoing and the outgoing transfer functions are different. The measured image quality was unchanged when the pupils were interchanged, i.e., when the first-pass entrance pupil size becomes the second-pass exit pupil size, and vice versa. Third, the technique provides a means for inferring the complete optical transfer function of the eye, including the phase transfer function, and the shape of the point-spread function.
我们使用了一种入瞳和出瞳大小不等的改进型双程装置来测量人眼的光学传递函数,并将该技术应用于三个不同的问题。首先,我们证实,在眼睛中,双程扩展函数是输入扩展函数与输出扩展函数的互相关[《美国光学学会志A》12, 195 (1995)]。因此,当入瞳和出瞳大小相等时,双程图像会丢失相位信息。其次,我们表明,在双程测量中,眼睛的行为类似于一个可逆光学系统。也就是说,当入瞳和出瞳相等时,双程图像是通过一个在两个方向上传递函数相同的光学系统进行两次传输的结果。为了测试活体眼睛的可逆性,我们使用了一种入瞳和出瞳大小不同的双程装置(其中一个足够小,可以认为眼睛受衍射限制),这样入射和出射传递函数就不同。当瞳孔互换时,即当第一程入瞳大小变为第二程出瞳大小,反之亦然时,测量的图像质量不变。第三,该技术提供了一种推断眼睛完整光学传递函数的方法,包括相位传递函数和点扩展函数的形状。