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三叶虫眼睛及其功能概述。

An overview on trilobite eyes and their functioning.

机构信息

University of Cologne, Zoology Department (Neurobiology/Animal Physiology and Biology Education), Herbert-Lewin-Straße 10, D-50931, Cologne, Germany.

出版信息

Arthropod Struct Dev. 2021 Mar;61:101032. doi: 10.1016/j.asd.2021.101032. Epub 2021 Mar 9.

Abstract

Great progress has been made during the last decades in understanding visual systems of arthropods living today. Thus it seems worthwhile to review what is known about structure and function of the eyes of trilobites, the most important group of marine arthropods during the Paleozoic. There are three types of compound eyes in trilobites. The oldest and most abundant is the so-called holochroal eye. The sensory system represents a typical apposition eye, and all units are covered by one cornea in common. The so-called abathochroal eye (only in eodiscid trilobites) consists of small lenses, each individually covered by a thin cuticular cornea. The schizochroal eye is represented just in the suborder Phacopina, and probably is a highly specialized visual system. We discuss the calcitic character of trilobite lenses, the phylogenetic relevance of the existence of crystalline cones in trilobites, and consider adaptations of trilobite's compound eyes to different ecological constraints. The aim of this article is to give a resumé of what is known so far about trilobite vision, and to open perspectives to what still might be done.

摘要

在过去的几十年中,人们对现今生活的节肢动物的视觉系统有了很大的了解。因此,回顾三叶虫眼睛的结构和功能是值得的,三叶虫是古生代最重要的海洋节肢动物之一。三叶虫有三种复眼类型。最古老和最丰富的是所谓的 holochroal 眼。感觉系统代表了一种典型的并列眼,所有的单元都被一个共同的角膜所覆盖。所谓的 abathochroal 眼(仅在 eodiscid 三叶虫中)由小的透镜组成,每个透镜都单独被一层薄的角质角膜覆盖。Schizochroal 眼仅存在于 Phacopina 亚目中,可能是一种高度专业化的视觉系统。我们讨论了三叶虫透镜的碳酸钙性质、三叶虫中晶锥存在的系统发育相关性,并考虑了三叶虫复眼对不同生态限制的适应。本文的目的是总结目前为止人们对三叶虫视觉的了解,并为未来可能的研究提供展望。

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