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在模拟自然光场中,软骨鱼星鲨(Leucoraja erinacea)瞳孔的扩张和收缩。

Pupil dilation and constriction in the skate Leucoraja erinacea in a simulated natural light field.

机构信息

Marine Biological Laboratory, Bell Center, Woods Hole, MA 02543, USA.

Lund Vision Group, Department of Biology, University of Lund, 223 62 Lund, Sweden.

出版信息

J Exp Biol. 2022 Feb 15;225(4). doi: 10.1242/jeb.243221. Epub 2022 Feb 14.

Abstract

The skate Leucoraja erinacea has an elaborately shaped pupil, whose characteristics and functions have received little attention. The goal of our study was to investigate the pupil response in relation to natural ambient light intensities. First, we took a recently developed sensory-ecological approach, which gave us a tool for creating a controlled light environment for behavioural work: during a field survey, we collected a series of calibrated natural habitat images from the perspective of the skates' eyes. From these images, we derived a vertical illumination profile using custom-written software for quantification of the environmental light field (ELF). After collecting and analysing these natural light field data, we created an illumination set-up in the laboratory, which closely simulated the natural vertical light gradient that skates experience in the wild and tested the light responsiveness - in particular the extent of dilation - of the skate pupil to controlled changes in this simulated light field. Additionally, we measured pupillary dilation and constriction speeds. Our results confirm that the skate pupil changes from nearly circular under low light to a series of small triangular apertures under bright light. A linear regression analysis showed a trend towards smaller skates having a smaller dynamic range of pupil area (dilation versus constriction ratio around 4-fold), and larger skates showing larger ranges (around 10- to 20-fold). Dilation took longer than constriction (between 30 and 45 min for dilation; less than 20 min for constriction), and there was considerable individual variation in dilation/constriction time. We discuss our findings in terms of the visual ecology of L. erinacea and consider the importance of accurately simulating natural light fields in the laboratory.

摘要

黑鳍鲨具有形状复杂的瞳孔,但其特征和功能鲜少受到关注。我们的研究目的是调查瞳孔对自然环境光强的反应。首先,我们采用了一种新的感官生态学方法,为行为学工作创建了一个受控光环境的工具:在野外调查期间,我们从鲨鱼的眼睛视角收集了一系列校准的自然栖息地图像。通过编写的自定义软件,我们从这些图像中得出了一个垂直光照分布曲线,用于量化环境光场(ELF)。在收集和分析这些自然光场数据后,我们在实验室中创建了一个光照设置,该设置紧密模拟了鲨鱼在野外经历的自然垂直光梯度,并测试了鲨鱼瞳孔对该模拟光场的受控变化的光响应——特别是扩张程度。此外,我们还测量了瞳孔扩张和收缩速度。我们的研究结果证实,在低光照条件下,鲨鱼的瞳孔几乎呈圆形,在强光照条件下,瞳孔呈现一系列小的三角形孔。线性回归分析显示,体型较小的鲨鱼瞳孔面积动态范围较小(扩张与收缩比值约为 4 倍),而体型较大的鲨鱼瞳孔面积动态范围较大(约为 10 到 20 倍)。瞳孔扩张比收缩需要更长的时间(扩张约 30 到 45 分钟;收缩不到 20 分钟),并且瞳孔扩张/收缩时间存在相当大的个体差异。我们根据黑鳍鲨的视觉生态学讨论了我们的发现,并考虑了在实验室中准确模拟自然光场的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0ce/10215813/23d7417476e2/jexbio-225-243221-g1.jpg

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