Department of Zoology, University of Oxford, Oxford, England, United Kingdom.
Department of Animal Physiology, University of Bayreuth, 95440 Bayreuth, Germany.
Semin Cell Dev Biol. 2020 Oct;106:53-60. doi: 10.1016/j.semcdb.2020.05.017. Epub 2020 Jun 7.
Archerfish are well-known for their ballistic hunting behaviour, in which they shoot down aerial prey with a well-aimed jet of water. This unique hunting strategy poses several challenges for visual systems. Archerfish face significant distortion to the appearance of targets due to refraction at the air/water interface, they search for prey against a complex background of foliage, they change prey targeting behaviour as conditions change, and they must make high speed decisions to avoid competition. By studying how archerfish have overcome these challenges, we have been able to understand more about fundamental problems faced by visual systems and the mechanisms used to solve them. In some cases, such as when searching for targets, the visual capabilities of archerfish are functionally similar to those of humans, despite significant differences in neuroanatomy. In other cases, the particular challenge faced by archerfish magnifies fundamental problems generally faced by visual systems, such as recognizing objects given strong viewpoint dependent changes to appearance. The efficiency of archerfish retrieving fallen prey to avoid kleptoparasitism, demonstrates that their visual processing excels in both speed and accuracy. In this review, we attempt to provide an overview of the many facets of visually driven behaviour of archerfish, and how they have been studied. In addition to their hunting technique, archerfish are ideal for visual processing experiments as they can be quickly trained to perform a range of non-ecologically relevant tasks. Their behavioural flexibility moreover, introduces the opportunity to study how experience-dependence and choice affects visual processing.
射水鱼以其弹道式捕猎行为而闻名,它们会用精准的射流将空中的猎物击落。这种独特的捕猎策略对视觉系统提出了几个挑战。由于空气/水界面的折射,射水鱼面对的目标外观会有很大的失真,它们在复杂的树叶背景下寻找猎物,随着条件的变化改变猎物的目标行为,并且必须快速做出决策以避免竞争。通过研究射水鱼如何克服这些挑战,我们能够更多地了解视觉系统所面临的基本问题以及解决这些问题的机制。在某些情况下,例如在寻找目标时,射水鱼的视觉能力在功能上与人类相似,尽管它们的神经解剖结构存在显著差异。在其他情况下,射水鱼所面临的特殊挑战放大了视觉系统通常面临的基本问题,例如在外观发生强烈的视角依赖变化时识别物体。射水鱼高效地取回掉落的猎物以避免食腐寄生,这表明它们的视觉处理在速度和准确性方面都很出色。在这篇综述中,我们试图提供一个关于射水鱼视觉驱动行为的多个方面的概述,以及对这些行为的研究。除了它们的捕猎技巧,射水鱼是进行视觉处理实验的理想选择,因为它们可以很快地接受训练来执行一系列与生态无关的任务。此外,它们的行为灵活性为研究经验依赖性和选择如何影响视觉处理提供了机会。