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[约翰内斯·开普勒对眼科光学的贡献]

[Johannes Kepler's contributions to ophthalmologic optics].

作者信息

Jaeger W

出版信息

Klin Monbl Augenheilkd. 1986 Feb;188(2):163-6. doi: 10.1055/s-2008-1050605.

Abstract

Until the beginning of the 17th century it was held that an image is formed in the eye on the anterior surface of the crystalline lens. Ophthalmological optics as a scientific discipline only began with a discovery made by Johannes Kepler. Without performing new experiments, and solely by application of the laws of light refraction, he analyzed the path of light through the eye and demonstrated that an image is formed on the retina and that it is inverted. Acceptance of this discovery was impeded by contemporary prejudices which could imagine nothing but an upright image in the eye, even though this attitude could not explain certain phenomena. Kepler's discovery of the path of light in the eye made it possible to explain the following physical phenomena: central visual acuity, visual field, dark adaptation, and errors of refraction. Physiological diplopia and the mechanism of accommodation were discovered later. The law stating that the intensity of light decreases with the square of distance was also formulated by Johannes Kepler; this law, too, could only be demonstrated after the path of light through the eye had been discovered. In recent years the Keplerian telescope has assumed a practical significance in ophthalmological optics. As a reading aid for individuals with impaired vision it offers a significantly higher magnification than any other optical visual aid.

摘要

直到17世纪初,人们一直认为图像是在晶状体前表面的眼睛中形成的。眼科光学作为一门科学学科,是从约翰内斯·开普勒的一项发现开始的。他没有进行新的实验,仅仅通过应用光的折射定律,分析了光线通过眼睛的路径,并证明图像是在视网膜上形成的,而且是倒立的。这一发现的接受受到当时偏见的阻碍,当时的人们除了眼睛里有一个正立的图像之外,无法想象其他情况,尽管这种观点无法解释某些现象。开普勒对光线在眼睛中路径的发现,使得解释以下物理现象成为可能:中心视力、视野、暗适应和屈光不正。生理复视和调节机制是后来发现的。光强随距离平方而减弱的定律也是由约翰内斯·开普勒提出的;这条定律也只有在发现光线通过眼睛的路径之后才能得到证明。近年来,开普勒望远镜在眼科光学中具有了实际意义。作为视力受损者的阅读辅助工具,它提供的放大倍数比任何其他光学视觉辅助工具都要高得多。

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