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人眼中的杂散光:测试心理物理学测量的客观性和光学特性。

Straylight in the human eye: testing objectivity and optical character of the psychophysical measurement.

机构信息

Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences, Meibergdreef 47, 1105 BA Amsterdam, The Netherlands.

出版信息

Ophthalmic Physiol Opt. 2009 May;29(3):345-50. doi: 10.1111/j.1475-1313.2009.00638.x.

Abstract

The point spread function or PSF of the human eye encompasses hugely different domains: a small-angle, high-intensity domain, called the 'PSF core', and a large-angle, low-intensity domain, usually referred to as 'straylight'. The first domain can be assessed by available double-pass or other optical techniques. For the second domain psychophysical techniques have been developed, in particular the Compensation Comparison or CC technique, recently made available for clinical application in the C-Quant instrument. We address the question of whether the psychophysical technique gives measures of straylight that are compatible with those made by optical methods. With a small adaptation the CC method can be used to assess straylight from physical light scattering samples, instead of straylight in the eye, using the same psychophysics, but without interference from the ocular straylight. The light scattered by each of seven light-scattering samples, encompassing the range of straylight values observed in human eyes, was measured by two optical methods and by the psychophysical technique. The results showed that the optical and psychophysical measurements for the seven samples were almost identical.

摘要

人眼的点扩散函数(PSF)涵盖了非常不同的领域:一个小角度、高强度的领域,称为“PSF 核心”,和一个大角度、低强度的领域,通常称为“杂散光”。第一个领域可以通过现有的双通或其他光学技术进行评估。对于第二个领域,已经开发出了心理物理学技术,特别是补偿比较(CC)技术,最近可用于 C-Quant 仪器的临床应用。我们探讨了心理物理学技术是否能提供与光学方法一致的杂散光测量结果。通过一个小的适应性改变,CC 方法可以用于评估物理光散射样本中的杂散光,而不是眼睛中的杂散光,使用相同的心理物理学,但不受眼球杂散光的干扰。七种光散射样本中的每一种的散射光都通过两种光学方法和心理物理学技术进行了测量,这七种光散射样本涵盖了人眼观察到的杂散光值范围。结果表明,七种样本的光学和心理物理学测量结果几乎完全相同。

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