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萤乌贼(Watasenia scintillans)眼睛中纵向色差的补偿

Compensation for longitudinal chromatic aberration in the eye of the firefly squid, Watasenia scintillans.

作者信息

Kröger Ronald H H, Gislén Anna

机构信息

Department of Cell and Organism Biology, Lund Vision Group, Zoology Building, Lund University, Helgonavägen 3, 22362 Lund, Sweden.

出版信息

Vision Res. 2004;44(18):2129-34. doi: 10.1016/j.visres.2004.04.004.

Abstract

The camera eyes of fishes and cephalopods have come forth by convergent evolution. In a variety of vertebrates capable of color vision, longitudinal chromatic aberration (LCA) of the optical system is corrected for by the exactly tuned longitudinal spherical aberration (LSA) of the crystalline lens. The LSA leads to multiple focal lengths, such that several wavelengths can be focused on the retina. We investigated whether that is also the case in the firefly squid (Watasenia scintillans), a cephalopod species that is likely to have color vision. It was found that the lens of W. scintillans is virtually free of LSA and uncorrected for LCA. However, the eye does not suffer from LCA because of a banked retina. Photoreceptors sensitive to short and long wavelengths are located at appropriate distances from the lens, such that they receive well-focused images. Such a design is an excellent solution for the firefly squid because a large area of the retina is monochromatically organized and it allows for double use of the surface area in the dichromatically organized part of the retina. However, it is not a universal solution since compensation for LCA by a banked retina requires that eye size and/or spectral separation between photopigments is small.

摘要

鱼类和头足类动物的摄像眼是通过趋同进化形成的。在各种具有彩色视觉能力的脊椎动物中,光学系统的纵向色差(LCA)通过晶状体精确调整的纵向球差(LSA)来校正。LSA导致多个焦距,从而使多个波长能够聚焦在视网膜上。我们研究了在萤火虫鱿鱼(Watasenia scintillans)这种可能具有彩色视觉的头足类动物中是否也是如此。研究发现,萤火虫鱿鱼的晶状体实际上没有LSA,也没有对LCA进行校正。然而,由于视网膜呈倾斜状排列,其眼睛并未受到LCA的影响。对短波长和长波长敏感的光感受器位于距晶状体适当的距离处,以便它们能接收到聚焦良好的图像。这种设计对萤火虫鱿鱼来说是一个极佳的解决方案,因为视网膜的大部分区域是单色组织的,并且它允许在视网膜双色组织的部分中对表面积进行双重利用。然而,这并不是一个通用的解决方案,因为通过倾斜的视网膜来补偿LCA需要眼睛大小和/或光色素之间的光谱分离较小。

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