雌花蛱蝶复眼的光轴排列及空间分辨率。

R Petrowitz, H Dahmen, M Egelhaaf, H G Krapp
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引用次数: 65

摘要

本文通过对野生型雌性丽蝇复眼大部分部位的深层假瞳的观察,确定了其小眼的光轴。由此产生的光轴图使我们能够根据眼间角度和光轴密度来评估眼睛不同部位的空间分辨率,并估计沿六边形眼晶格的眼间行方向。光轴在眼睛上分布不均匀。前部视野的空间分辨率比侧视区域高两倍,比眼背极区域高三倍。在眼睛的不同区域,眼晶格上的眼胞列的方向并不相同,而是以一种特有的方式变化。据估计,母列方向的个体间变异小于8度。本文讨论了本晶格的特征排列,以适应对动物自运动过程中引起的光流的有效评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arrangement of optical axes and spatial resolution in the compound eye of the female blowfly Calliphora.

We determined the optical axes of ommatidia in the wild-type female blowfly Calliphora by inspecting the deep pseudopupil in large parts of the compound eye. The resulting map of optical axes allowed us to evaluate the spatial resolution in different parts of the eye in terms of interommatidial angles as well as the density of optical axes, and to estimate the orientation of ommatidial rows along the hexagonal eye lattice. The optical axes are not homogeneously distributed over the eye. In the frontal visual field the spatial resolution is about two times higher than in its lateral part and about three times higher as compared to the eye's dorsal pole region. The orientation of the ommatidial rows along the eye lattice is not the same for different regions of the eye but changes in a characteristic way. The inter-individual variability in the orientation of the ommatidial rows is estimated to be smaller than 8 degrees . The characteristic arrangement of the ommatidial lattice is discussed as an adaptation for efficient evaluation of optic flow as induced during self-motions of the animal.

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