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Hyperspectral imaging of cuttlefish camouflage indicates good color match in the eyes of fish predators

机译:乌贼伪装的高光谱成像表明鱼肉掠食者的眼睛具有良好的颜色匹配

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摘要

Camouflage is a widespread phenomenon throughout nature and an important antipredator tactic in natural selection. Many visual predators have keen color perception, and thus camouflage patterns should provide some degree of color matching in addition to other visual factors such as pattern, contrast, and texture. Quantifying camouflage effectiveness in the eyes of the predator is a challenge from the perspectives of both biology and optical imaging technology. Here we take advantage of hyperspectral imaging (HSI), which records full-spectrum light data, to simultaneously visualize color match and pattern match in the spectral and the spatial domains, respectively. Cuttlefish can dynamically camouflage themselves on any natural substrate and, despite their colorblindness, produce body patterns that appear to have high-fidelity color matches to the substrate when viewed directly by humans or with RGB images. Live camouflaged cuttlefish on natural backgrounds were imaged using HSI, and subsequent spectral analysis revealed that most reflectance spectra of individual cuttlefish and substrates were similar, rendering the color match possible. Modeling color vision of potential di- and trichromatic fish predators of cuttlefish corroborated the spectral match analysis and demonstrated that camouflaged cuttlefish show good color match as well as pattern match in the eyes of fish predators. These findings (i) indicate the strong potential of HSI technology to enhance studies of biological coloration and (ii) provide supporting evidence that cuttlefish can produce color-coordinated camouflage on natural substrates despite lacking color vision.
机译:伪装是整个自然界普遍存在的现象,也是自然选择中的重要反掠夺者战术。许多视觉掠食者对颜色的感知敏锐,因此,伪装图案除提供其他视觉因素(例如图案,对比度和纹理)外,还应提供一定程度的颜色匹配。从生物学和光学成像技术的角度来看,量化捕食者眼中的伪装效果都是一个挑战。在这里,我们利用记录全光谱光数据的高光谱成像(HSI)优势,分别在光谱和空间域中同时可视化颜色匹配和图案匹配。墨鱼可以在任何天然基材上动态伪装,尽管它们有色盲,但它们产生的人体图案在被人类直接观察或使用RGB图像观察时似乎具有与基材高逼真的色彩匹配。使用HSI对自然背景下的活的迷彩墨鱼进行成像,随后的光谱分析表明,各个墨鱼和底物的大多数反射光谱相似,从而使颜色匹配成为可能。对乌贼潜在的二色和三色鱼食肉动物的色觉建模,证实了光谱匹配分析,并证明了伪装的墨鱼在鱼肉食肉动物的眼睛中显示出良好的颜色匹配和图案匹配。这些发现(i)表明了HSI技术在增强生物着色研究方面的强大潜力,并且(ii)提供了有力的证据表明,尽管缺乏色觉,墨鱼仍可以在天然基质上产生颜色协调的伪装。

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