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Thermal consequences of colour and near-infrared reflectance

机译:颜色和近红外反射率的热影响

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摘要

The importance of colour for temperature regulation in animals remains controversial. Colour can affect an animal's temperature because all else being equal, dark surfaces absorb more solar energy than do light surfaces, and that energy is converted into heat. However, in reality, the relationship between colour and thermoregulation is complex and varied because it depends on environmental conditions and the physical properties, behaviour and physiology of the animal. Furthermore, the thermal effects of colour depend as much on absorptance of near-infrared ((NIR), 700–2500 nm) as visible (300–700 nm) wavelengths of direct sunlight; yet the NIR is very rarely considered or measured. The few available data on NIR reflectance in animals indicate that the visible reflectance is often a poor predictor of NIR reflectance. Adaptive variation in animal coloration (visible reflectance) reflects a compromise between multiple competing functions such as camouflage, signalling and thermoregulation. By contrast, adaptive variation in NIR reflectance should primarily reflect thermoregulatory requirements because animal visual systems are generally insensitive to NIR wavelengths. Here, we assess evidence and identify key research questions regarding the thermoregulatory function of animal coloration, and specifically consider evidence for adaptive variation in NIR reflectance.This article is part of the themed issue ‘Animal coloration: production, perception, function and application’.
机译:颜色对动物体内温度调节的重要性仍存在争议。颜色会影响动物的温度,因为在所有其他条件相同的情况下,深色表面比浅色表面吸收更多的太阳能,并且该能量转化为热量。然而,实际上,颜色与温度调节之间的关系是复杂且变化的,因为它取决于环境条件以及动物的物理特性,行为和生理。此外,颜色的热效应与直接日光的可见光(300-700 nm)波长一样,很大程度上取决于近红外((NIR),700-2500 nm)的吸收率。但是,很少考虑或测量NIR。关于动物近红外反射率的一些可用数据表明,可见反射率通常不能很好地预测近红外反射率。动物色素的适应性变化(可见反射率)反映了多种竞争功能(如伪装,信号传导和温度调节)之间的折衷。相比之下,由于动物视觉系统通常对NIR波长不敏感,因此NIR反射率的自适应变化应主要反映温度调节要求。在这里,我们评估证据并确定有关动物着色温度调节功能的关键研究问题,并特别考虑有关NIR反射率适应性变化的证据。本文是主题为“动物着色:生产,感知,功能和应用”的一部分。

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