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[利用光谱和视觉建模研究动物的色彩]

[Using spectra and visual modeling to study animal coloration].

作者信息

Yang Can-Chao, Liang Wei

机构信息

Ministry of Education Key Laboratory for Tropical Plant and Animal Ecology, College of Life Sciences, Hainan Normal University, Haikou 571158, China.

出版信息

Dongwuxue Yanjiu. 2013 Dec;34(6):564-73.

Abstract

Animal coloration has many adaptive functions and plays an important role in signal communication both among intra- and interspecies. For example, it has been widely used in mate choice, intrasexual competition, and as aposematic or cryptic coloration in predator avoidance. Many colors and pigments also function in microbial resistance, structural support, photoprotection, and thermoregulation. Differing from human vision, based on RGB system, many other animals have tetrachromatic vision system, which includes the ultraviolet (UV) range that is undetectable by human eyes. Previous studies showed that ultraviolet is important in some species' social signaling and communication. Moreover, cone inner segments of most classes of vertebrate contain an oil droplet, which acts as a cut-off filter absorbing wavelengths below a critical value, and transmitting longer wavelengths. Animal and human vision is significantly different in that the classification of color by human standards may be a misleading for measuring animal coloration. Here, we illuminate how to use fiber spectrophotometer to quantify animal coloration, and analyze it by spectra analysis and visual modeling. As an example, we obtained plumage reflectance spectra from male and female scarlet minivets (Pericrocotus flammeus). This bird species is sexually dimorphic that the males have plumage color in black and red, while the females have grey and yellow accordingly. These plumage colors are typically generated from melanin and carotenoid pigments, which have an effect on antioxidant activity. Analysis of spectra segments provides hue, chroma, brightness and relative brightness of each wave range. Visual modeling maps color patches on tetrahedral color space and Robinson projection, meanwhile, calculates color span and color space volume which describe the color contrast and color diversity, respectively. In visual modeling, ambient light irradiance and spectral sensitivity of animal retinas are included, which provides an objective evaluation of coloration of animal vision.

摘要

动物的体色具有多种适应性功能,在种内和种间的信号交流中都起着重要作用。例如,它已广泛应用于配偶选择、种内竞争,以及作为躲避捕食者的警戒色或保护色。许多颜色和色素还具有抗微生物、结构支撑、光保护和体温调节等功能。与基于RGB系统的人类视觉不同,许多其他动物具有四色视觉系统,其中包括人类眼睛无法检测到的紫外线(UV)范围。先前的研究表明,紫外线在某些物种的社会信号和交流中很重要。此外,大多数脊椎动物类别的视锥细胞内段都含有一个油滴,它作为一个截止滤光片,吸收低于临界值的波长,并传输较长的波长。动物和人类的视觉有显著差异,因为用人类标准对颜色进行分类可能会在衡量动物体色时产生误导。在这里,我们阐述了如何使用光纤分光光度计对动物体色进行量化,并通过光谱分析和视觉建模对其进行分析。例如,我们获得了雄性和雌性朱红毛脚燕(Pericrocotus flammeus)的羽毛反射光谱。这种鸟类具有两性异形,雄性羽毛颜色为黑色和红色,而雌性羽毛颜色相应为灰色和黄色。这些羽毛颜色通常由黑色素和类胡萝卜素色素产生,它们对抗氧化活性有影响。对光谱段的分析提供了每个波段的色调、色度、亮度和相对亮度。视觉建模将颜色斑块映射到四面体颜色空间和罗宾逊投影上,同时计算颜色跨度和颜色空间体积,分别描述颜色对比度和颜色多样性。在视觉建模中,纳入了动物视网膜的环境光辐照度和光谱敏感性,这为动物视觉的体色提供了客观评估。

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