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1
Optical quality of the human eye.人眼的光学质量。
J Physiol. 1966 Oct;186(3):558-78. doi: 10.1113/jphysiol.1966.sp008056.
2
Optical quality of the living cat eye.活体猫眼的光学质量。
J Physiol. 1974 Dec;243(3):777-95. doi: 10.1113/jphysiol.1974.sp010777.
3
Foveal optical modulation transfer function of the human eye at various pupil sizes.
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4
Monochromatic modulation transfer function of the human eye for different pupil diameters: an analytical expression.不同瞳孔直径下人眼的单色调制传递函数:一个解析表达式。
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5
Double-pass and interferometric measures of the optical quality of the eye.
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6
Incorporation of intraocular scattering in schematic eye models.在简化眼模型中纳入眼内散射。
J Opt Soc Am A. 1985 Nov;2(11):1891-4. doi: 10.1364/josaa.2.001891.
7
MTF of the defocused optical system of the human eye for incoherent monochromatic light.
J Opt Soc Am. 1980 Mar;70(3):321-8. doi: 10.1364/josa.70.000321.
8
Optical quality of the cat's eye and human eye.
J Physiol. 1973 Jul;232(1):34P-35P.
9
Postblink changes in the ocular modulation transfer function measured by a double-pass method.
Invest Ophthalmol Vis Sci. 2005 Dec;46(12):4468-73. doi: 10.1167/iovs.05-0609.
10
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J Cataract Refract Surg. 2001 Jul;27(7):1093-107. doi: 10.1016/s0886-3350(01)00856-2.

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本文引用的文献

1
The spectral sensitivity of the consensual light reflex.对光反射的光谱敏感性。
J Physiol. 1962 Dec;164(3):478-507. doi: 10.1113/jphysiol.1962.sp007033.
2
Light distribution in the image formed by the living human eye.活人眼形成的图像中的光分布。
J Opt Soc Am. 1962 Sep;52:1040-5. doi: 10.1364/josa.52.001040.
3
Optical and motor factors in the formation of the retinal image.
J Opt Soc Am. 1963 Jan;53:86-93. doi: 10.1364/josa.53.000086.
4
[The transmission of contrasts by the optical system of the eye and the retinal thresholds of contrast].[眼睛光学系统对对比度的传递及视网膜对比度阈值]
C R Hebd Seances Acad Sci. 1960 Apr 11;250:2757-9.
5
The responses of Limulus optic nerve fibers to patterns of illumination on the receptor mosaic.鲎视神经纤维对感受器镶嵌体上光照模式的反应。
J Gen Physiol. 1959 Jul 20;42(6):1241-55. doi: 10.1085/jgp.42.6.1241.
6
Polarized light and the human fundus oculi.偏振光与人类眼底
J Physiol. 1966 Sep;186(1):175-86. doi: 10.1113/jphysiol.1966.sp008027.
7
Optical and retinal factors affecting visual resolution.影响视觉分辨率的光学和视网膜因素。
J Physiol. 1965 Dec;181(3):576-93. doi: 10.1113/jphysiol.1965.sp007784.
8
[Processing of stationary optical information by the complex eye of Limulus. (Ommatidial visual fields and spatial distribution of inhibition)].[鲎复眼对静态光学信息的处理。(小眼视野与抑制的空间分布)]
Kybernetik. 1964 Jun;2(2):43-61. doi: 10.1007/BF00288558.

人眼的光学质量。

Optical quality of the human eye.

作者信息

Campbell F W, Gubisch R W

出版信息

J Physiol. 1966 Oct;186(3):558-78. doi: 10.1113/jphysiol.1966.sp008056.

DOI:10.1113/jphysiol.1966.sp008056
PMID:5972153
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1395916/
Abstract
  1. Optical quality of the eye was measured at eight pupil sizes between 1.5 and 6.6 mm diameter by recording the faint light emerging from the eye; this light was reflected from the bright image of a thin line on the fundus.2. The nature of the fundus reflexion was examined; it was found that the fundus acts very much like a perfect diffuser while retaining polarization.3. Using the result that the fundus acts like a diffuser, the recorded line images were Fourier analysed to provide modulation transfer functions. These functions indicate an optical quality considerably higher than that found in previous physical studies.4. Linespread profiles were then derived from the modulation transfer functions. These profiles are 40% narrower than those of previous physical studies for a 3.0 mm pupil. The narrowest profile occurred with a 2.4 mm pupil.5. Our results demonstrate that physical and psychophysical studies can yield similar estimates of optical quality. The influence of optical factors not common to both techniques is discussed. Evidence for the existence of neural ;image sharpening' mechanisms is reviewed.
摘要
  1. 通过记录从眼睛射出的微弱光线,在直径为1.5至6.6毫米的八个瞳孔大小下测量眼睛的光学质量;该光线是从眼底细线条的明亮图像反射而来的。

  2. 检查了眼底反射的性质;发现眼底的作用非常类似于一个完美的漫射器,同时保持偏振。

  3. 利用眼底像漫射器的结果,对记录的线条图像进行傅里叶分析以提供调制传递函数。这些函数表明光学质量比以前的物理研究中发现的要高得多。

  4. 然后从调制传递函数导出线扩散轮廓。对于3.0毫米的瞳孔,这些轮廓比以前的物理研究窄40%。最窄的轮廓出现在2.4毫米的瞳孔处。

  5. 我们的结果表明,物理和心理物理学研究可以得出类似的光学质量估计。讨论了两种技术不共有的光学因素的影响。回顾了神经“图像锐化”机制存在的证据。