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通过视动反应估计塞内加尔侧孔鱼(Polypterus senegalus)的空中和水中视力。

Aerial and aquatic visual acuity of the grey bichir Polypterus senegalus, as estimated by optokinetic response.

机构信息

Department of Biology, University of Ottawa, Ottawa, Canada.

出版信息

J Fish Biol. 2019 Jul;95(1):263-273. doi: 10.1111/jfb.13724. Epub 2018 Nov 21.

DOI:10.1111/jfb.13724
PMID:29956322
Abstract

The present study assessed the aerial and aquatic visual abilities of juvenile grey bichir Polypterus senegalus, fish capable of terrestrial locomotion, by measuring the optokinetic response to stimuli of varying speed and spatial frequency. In water, fish tracked slow-moving (2° s ) stimuli moderately well and fast-moving stimuli very poorly. Spatial acuity was very low compared with many other species, with maximum response observed at 0.05-0.075 stimulus cycles per degree of visual arc; however, it should be noted that adult fish, with their larger eyes, are likely to have somewhat improved spatial acuity. Low spatial acuity and limited stimulus tracking ability might be expected in a nocturnal ambush predator such as P. senegalus, where gaze stabilization may be less crucial and other sensory inputs may have greater importance in perception of the environment. In air, spatial and temporal acuity were both poorer by every measure, but some visual ability persisted. As the eye shows no anatomical specialization for aerial vision, poor vision was expected; however, the large decrease in saccade velocity observed in air trials was unexpected. Stimulus parameters typically have little effect on the characteristics of the saccade, so this finding may suggest that the function of the reflex system itself could be compromised in the aerial vision of some fishes capable of terrestrial locomotion.

摘要

本研究通过测量对不同速度和空间频率刺激的光运动反应,评估了具有陆地运动能力的幼年灰鲟 Polypterus senegalus 的空中和水中视觉能力。在水中,鱼可以很好地追踪缓慢移动(2° s)的刺激,但对快速移动的刺激反应很差。与许多其他物种相比,空间分辨率非常低,在 0.05-0.075 个刺激周期/视觉弧度时观察到最大反应;然而,应该注意的是,具有更大眼睛的成年鱼可能具有稍微提高的空间分辨率。在像 P. senegalus 这样的夜间伏击捕食者中,可能预期低空间分辨率和有限的刺激跟踪能力,因为凝视稳定可能不太关键,其他感官输入在感知环境中可能具有更大的重要性。在空中,无论采用哪种测量方法,空间和时间分辨率都较差,但仍存在一些视觉能力。由于眼睛没有专门用于空中视觉的解剖结构,因此预计视力较差;然而,在空气试验中观察到的扫视速度大幅下降是出乎意料的。刺激参数通常对扫视的特征影响不大,因此这一发现可能表明,一些具有陆地运动能力的鱼类的反射系统本身的功能可能在其空中视觉中受到了损害。

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