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招潮蟹的视觉生态学

The visual ecology of fiddler crabs.

作者信息

Zeil Jochen, Hemmi Jan M

机构信息

Centre for Visual Sciences, Research School of Biological Sciences, The Australian National University, PO Box 475, Canberra, ACT 2601, Australia.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2006 Jan;192(1):1-25. doi: 10.1007/s00359-005-0048-7. Epub 2005 Dec 10.

Abstract

With their eyes on long vertical stalks, their panoramic visual field and their pronounced equatorial acute zone for vertical resolving power, the visual system of fiddler crabs is exquisitely tuned to the geometry of vision in the flat world of inter-tidal mudflats. The crabs live as burrow-centred grazers in dense, mixed-sex, mixed-age and mixed-species colonies, with the active space of an individual rarely exceeding 1 m(2). The full behavioural repertoire of fiddler crabs can thus be monitored over extended periods of time on a moment to moment basis together with the visual information they have available to guide their actions. These attributes make the crabs superb subjects for analysing visual tasks and the design of visual processing mechanisms under natural conditions, a prerequisite for understanding the evolution of visual systems. In this review we show, on the one hand, how deeply embedded fiddler crab vision is in the behavioural and the physical ecology of these animals and, on the other hand, how their behavioural options are constrained by their perceptual limitations. Studying vision in fiddler crabs reminds us that vision has a topography, that it is context-dependent and pragmatic and that there are perceptual limits to what animals can know and therefore care about.

摘要

招潮蟹的眼睛长在长长的垂直眼柄上,拥有全景视野以及显著的用于垂直分辨力的赤道敏锐区,其视觉系统精准地适应了潮间带泥滩这个扁平世界中的视觉几何结构。这些螃蟹以洞穴为中心,在密集的、性别混合、年龄混合和物种混合的群体中觅食,个体的活动空间很少超过1平方米。因此,可以在较长时间内时刻监测招潮蟹的全部行为表现,以及它们用于指导行动的视觉信息。这些特性使螃蟹成为分析自然条件下视觉任务和视觉处理机制设计的绝佳研究对象,而这是理解视觉系统进化的先决条件。在这篇综述中,我们一方面展示了招潮蟹的视觉是如何深深融入这些动物的行为和物理生态之中的,另一方面展示了它们的行为选择是如何受到感知限制的。研究招潮蟹的视觉让我们认识到,视觉具有地形特征,它依赖于环境且注重实际,而且动物在认知以及因此而关注的事物方面存在感知限制。

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