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A comparison of animal color measurements using a commercially available digital color sensor and photograph analysis

机译:使用市售数字颜色传感器和照片分析进行动物颜色测量的比较

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An animal’s pelage, feather, or skin color can serve a variety of functions, so it is important to have multiple standardized methods for measuring color. One of the most common and reliable methods for measuring animal coloration is the use of standardized digital photographs of animals. New technology in the form of a commercially available handheld digital color sensor could provide an alternative to photography-based animal color measurements. To determine whether a digital color sensor could be used to measure animal coloration, we tested the ability of a digital color sensor to measure coloration of mammalian, avian, and lepidopteran museums specimens. We compared results from the sensor to measurements taken using traditional photography methods. Our study yielded significant differences between photography-based and digital color sensor measurements of brightness (light to dark) and colors along the green to red spectrum. There was no difference between photographs and the digital color sensor measurements for colors along the blue to yellow spectrum. The average difference in recorded color (ΔE) by the 2 methods was above the threshold at which humans can perceive a difference. There were significant correlations between the sensor and photographs for all measurements indicating that the sensor is an effective animal coloration measuring tool. However, the sensor’s small aperture and narrow light spectrum range designed for human-vision limit its value for ecological research. We discuss the conditions in which a digital color sensor can be an effective tool for measuring animal coloration in both laboratory settings and in the field.
机译:动物的PELAGE,羽毛或肤色可以提供各种功能,因此有多种标准化的测量方法是重要的。测量动物着色的最常见和可靠的方法之一是使用标准化的动物数字照片。以市售的手持式数字颜色传感器的形式的新技术可以提供基于摄影的动物颜色测量的替代品。为了确定数字颜色传感器是否可用于测量动物着色,我们测试了数字颜色传感器测量哺乳动物,禽类和鳞翅目博物馆标本着色的能力。我们将传感器与传统摄影方法进行测量的结果。我们的研究在亮度(光至暗)和沿着绿色的亮度(光到暗)和颜色的颜色之间产生显着差异。照片和数字颜色传感器测量沿蓝色到黄色光谱的颜色没有区别。通过2种方法的记录颜色(ΔE)的平均差高于人类可以感知差异的阈值。传感器和照片之间的所有测量之间存在显着的相关性,表明传感器是有效的动物着色测量工具。然而,传感器的小光圈和窄光谱范围设计用于人类视觉限制其对生态研究的价值。我们讨论了数字颜色传感器可以是测量实验室环境和现场动物着色的有效工具的条件。

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