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Quantifying iridescent coloration in animals: a method for improving repeatability

机译:量化动物的彩虹色:提高重复性的方法

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Quantification of animal colors is important to a variety of fields of research, especially those dealing with visual communication and sexual selection. Most animal colors are easily measured using well-established spectrophotometric techniques. However, the unique characteristics of iridescent colors present particular challenges and opportunities to quantify novel color metrics. Due to the fine-scale angle dependence of iridescent coloration, color metrics, such as hue and brightness, must be measured using methods that allow for repeatable comparison across individuals (e.g., by carefully controlling and measuring viewing geometry). Here, we explain how the optical characteristics of iridescent colors should be considered when developing measurement techniques, describe the pitfalls of some commonly used techniques, and recommend improved methods and metrics (angular degree of color change and breadth of reflectance) for quantifying iridescent color. In particular, most studies of iridescent birds to date have used less than ideal procedures and have not provided repeatability estimates for their methods. For example, we demonstrate here that measuring coloration from overlapping patches of iridescent feathers may be problematic, and we argue against methods that do not carefully control viewing geometry. We recommend measuring iridescence at maximal reflectance angles using an apparatus that allows for sample rotation, and we compare this technique to some other commonly used methods using iridescent gorget and crown feathers from Anna's hummingbirds (Calypte anna). Our apparatus allows for the quantification of angular color change, and we found that maximal reflectance measurements using single feathers are highly repeatable both within feather samples and among samples within an individual.
机译:动物色彩的量化对于各种研究领域都很重要,尤其是那些涉及视觉交流和性选择的领域。使用公认的分光光度技术可以轻松测量大多数动物的颜色。但是,彩虹色的独特特征给量化新颖的颜色指标带来了特殊的挑战和机遇。由于彩虹色的精细度取决于角度,因此必须使用允许在各个个体之间进行可重复比较的方法(例如,通过仔细控制和测量观察几何形状)来测量颜色指标(例如色相和亮度)。在这里,我们解释了在开发测量技术时应如何考虑彩虹色的光学特性,描述了一些常用技术的陷阱,并推荐了用于量化彩虹色的改进方法和度量标准(颜色变化的角度程度和反射率的广度)。特别是,迄今为止,大多数虹彩鸟类研究使用的方法都不理想,并且未提供其方法的可重复性估计。例如,我们在这里证明从彩虹羽毛的重叠斑块测量颜色可能是有问题的,并且我们反对不能仔细控制视线几何形状的方法。我们建议使用允许样品旋转的设备在最大反射角下测量虹彩,并将此技术与使用安娜蜂鸟(Calypte anna)的虹彩眼和冠羽的其他一些常用方法进行比较。我们的设备可以对角度颜色变化进行量化,并且我们发现,使用单根羽毛进行的最大反射率测量在羽毛样本内部和个体样本之间都具有高度可重复性。

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