Computer Simulation of Visual Processes in the Framework of Holographic Model of Physiological Optics

V. Titar, O. Shpachenko
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引用次数: 3

Abstract

A holographic model of physiological optics, declaring Fourier hologram of light intensity formation and registering in eyes of higher animal was developed. Computer simulation of light propagation in quasi crystal retina layers and graphs for intensity distribution of ordinary and extraordinary rays in retina, depending upon the light angle at retina, the angle between incidence plane and optical axis of retina layer nerve fibers, and the plane of light polarization was conducted. Computer simulation of Haidenger effect was carried out. A very good correspondence between theoretical calculation and Haidinger brushes, observed in experiment was obtained. This confirms the validity of holographic model of physiological optics
生理光学全息模型框架下视觉过程的计算机模拟
建立了一种生理光学全息模型,描述了高等动物眼内光强形成和登记的傅立叶全息图。计算机模拟了光在准晶体视网膜层中的传播过程,绘制了普通光线和特殊光线在视网膜中的强度分布图,绘制了光在视网膜上的角度、视网膜层神经纤维的入射面与光轴的夹角以及光的偏振面。对海登格效应进行了计算机模拟。理论计算结果与实验结果吻合良好。这证实了生理光学全息模型的有效性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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