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动物光学材料固有偏振特性的选择产生了增强的结构反射率和伪装效果。

Selection of the intrinsic polarization properties of animal optical materials creates enhanced structural reflectivity and camouflage.

作者信息

Feller Kathryn D, Jordan Thomas M, Wilby David, Roberts Nicholas W

机构信息

School of Biological Sciences, University of Bristol, Bristol BS8 1TQ, UK.

School of Geographical Sciences, University of Bristol, Bristol, BS8 1SS, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2017 Jul 5;372(1724). doi: 10.1098/rstb.2016.0336.

Abstract

Many animals use structural coloration to create bright and conspicuous visual signals. Selection of the size and shape of the optical structures animals use defines both the colour and intensity of the light reflected. The material used to create these reflectors is also important; however, animals are restricted to a limited number of materials: commonly chitin, guanine and the protein, reflectin. In this work we highlight that a particular set of material properties can also be under selection in order to increase the optical functionality of structural reflectors. Specifically, polarization properties, such as birefringence (the difference between the refractive indices of a material) and chirality (which relates to molecular asymmetry) are both under selection to create enhanced structural reflectivity. We demonstrate that the structural coloration of the gold beetle and silvery reflective sides of the Atlantic herring, are two examples of this phenomenon. Importantly, these polarization properties are not selected to control the polarization of the reflected light as a source of visual information Instead, by creating higher levels of reflectivity than are otherwise possible, such internal polarization properties improve intensity-matching camouflage.This article is part of the themed issue 'Animal coloration: production, perception, function and application'.

摘要

许多动物利用结构色来产生明亮且引人注目的视觉信号。动物所使用的光学结构的大小和形状的选择决定了反射光的颜色和强度。用于制造这些反射器的材料也很重要;然而,动物只能使用有限的几种材料:常见的有几丁质、鸟嘌呤和蛋白质反射蛋白。在这项研究中,我们强调,为了提高结构反射器的光学功能,特定的一组材料特性也可能受到选择。具体而言,诸如双折射(材料折射率之间的差异)和手性(与分子不对称性有关)等偏振特性都在被选择,以产生增强的结构反射率。我们证明,金龟子的结构色和大西洋鲱鱼银色的反光侧面就是这种现象的两个例子。重要的是,选择这些偏振特性并非为了将反射光的偏振作为一种视觉信息来源进行控制。相反,通过产生比其他情况下更高的反射率,这种内部偏振特性改善了强度匹配伪装。本文是主题为“动物的色彩:产生、感知、功能及应用”的特刊的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c5/5444057/c393c4c45eec/rstb20160336-g1.jpg

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