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[人眼光学成像中的物理学基本原理]

[Basic principles of physics in optical imaging of the human eye].

作者信息

Vodicka I

机构信息

Ustav lékarské biofyziky, Univerzita Karlova v Praze, Lékarská fakulta v Hradci Králové.

出版信息

Acta Medica (Hradec Kralove) Suppl. 2000;43(2):73-117.

Abstract

Creation of a real picture of the observed object on the retina by optical system of the eye is the primary physical condition of the visual perception. Absorption of the light energy initiates the sequence of further physicochemical, biochemical and psychophysiological events partially taking place already in the retina but mostly in the higher cerebral and spinal centres. So the visual perception and its final evaluation is the result of a complicated complex of processes where the optical imaging itself plays the role of the starting factor. In the publication particularly the physical substance of the optical imaging on refraction surfaces between media with different refraction index has been accentuated. The laws of reflection and refraction and their origin are derived in the terms of the physical (Maxwell equations) and geometrical (Fermat principle, principle of the mutual independence of light beams) optics. In the adequate extent the development and structure of the eye and the whole visual complex, the bases of the quantification of the visual perception and contemporary opinions on mechanisms of the colour vision (trichromatic theory) have been described. The publication is completed by a mathematical appendix explaining some relations usually absent in the biomedical literature.

摘要

眼睛的光学系统在视网膜上形成被观察物体的真实图像是视觉感知的首要物理条件。光能的吸收引发了一系列进一步的物理化学、生物化学和心理生理事件,这些事件部分已在视网膜中发生,但主要发生在大脑和脊髓的高级中枢。因此,视觉感知及其最终评估是一个复杂过程的结果,其中光学成像本身起着起始因素的作用。在该出版物中,特别强调了在具有不同折射率的介质之间的折射面上光学成像的物理实质。反射和折射定律及其起源是根据物理(麦克斯韦方程)和几何(费马原理、光束相互独立性原理)光学推导出来的。在适当的程度上,描述了眼睛和整个视觉复合体的发育和结构、视觉感知量化的基础以及当代关于色觉机制的观点(三色理论)。该出版物最后附有一个数学附录,解释了一些生物医学文献中通常没有的关系。

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