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球形鱼眼透镜的光学原理。

The optics of the spherical fish lens.

作者信息

Jagger W S

机构信息

Department of Ecology and Evolutionary Biology, Monash University, Clayton, Victoria, Australia.

出版信息

Vision Res. 1992 Jul;32(7):1271-84. doi: 10.1016/0042-6989(92)90222-5.

Abstract

The optical design of the fish eye is particularly simple because immersion renders the cornea optically ineffective and the lens is nearly spherical in shape. Measurements have shown that an approximately parabolic gradient of refractive index exists within the lens. If full internal and external spherical symmetry of the lens applies, the geometrical-optical behaviour of the lens is then a function only of the refractive index of the surrounding medium, that of the lens core and cortex, and of the form of the index gradient. The theoretical optical performance of models of the spherical fish lens is calculated by means of the ray-tracing program Drishti as a basis for understanding the optical design of real fish and aquatic eyes. Models based on the gradients proposed by earlier workers are shown to be unable to predict reported spherical aberration and image quality. A model of the fish lens with a polynomial gradient is proposed that yields spherical aberration, image quality and chromatic aberration similar to that reported for the fish.

摘要

鱼眼的光学设计特别简单,因为浸没使角膜在光学上不起作用,并且晶状体形状接近球形。测量表明,晶状体内存在近似抛物线型的折射率梯度。如果晶状体完全具有内部和外部球对称性,那么晶状体的几何光学行为仅取决于周围介质的折射率、晶状体核和皮质的折射率以及折射率梯度的形式。通过光线追踪程序Drishti计算球形鱼晶状体模型的理论光学性能,以此作为理解真实鱼类和水生动物眼睛光学设计的基础。结果表明,基于早期研究人员提出的梯度的模型无法预测所报道的球差和图像质量。本文提出了一种具有多项式梯度的鱼晶状体模型,该模型产生的球差、图像质量和色差与报道的鱼类情况相似。

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