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Is countershading camouflage robust to lighting change due to weather?

机译:遮荫伪装是否对因天气而导致的灯光变化具有鲁棒性?

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Countershading is a pattern of coloration thought to have evolved in order to implement camouflage. By adopting a pattern of coloration that makes the surface facing towards the sun darker and the surface facing away from the sun lighter, the overall amount of light reflected off an animal can be made more uniformly bright. Countershading could hence contribute to visual camouflage by increasing background matching or reducing cues to shape. However, the usefulness of countershading is constrained by a particular pattern delivering ‘optimal’ camouflage only for very specific lighting conditions. In this study, we test the robustness of countershading camouflage to lighting change due to weather, using human participants as a ‘generic’ predator. In a simulated three-dimensional environment, we constructed an array of simple leaf-shaped items and a single ellipsoidal target ‘prey’. We set these items in two light environments: strongly directional ‘sunny’ and more diffuse ‘cloudy’. The target object was given the optimal pattern of countershading for one of these two environment types or displayed a uniform pattern. By measuring detection time and accuracy, we explored whether and how target detection depended on the match between the pattern of coloration on the target object and scene lighting. Detection times were longest when the countershading was appropriate to the illumination; incorrectly camouflaged targets were detected with a similar pattern of speed and accuracy to uniformly coloured targets. We conclude that structural changes in light environment, such as caused by differences in weather, do change the effectiveness of countershading camouflage.
机译:遮光是一种为了实现伪装而演变的着色模式。通过采用使朝向太阳的表面更暗并且远离太阳的表面更亮的着色图案,可以使从动物反射的全部光更均匀地明亮。因此,遮蔽可能会通过增加背景匹配或减少形状提示来造成视觉迷彩。但是,遮光效果的实用性受到特定模式的限制,该模式仅在非常特定的光照条件下才提供“最佳”伪装。在这项研究中,我们使用人类参与者作为“一般”掠食者,测试了遮蔽伪装对由于天气而引起的光照变化的鲁棒性。在模拟的三维环境中,我们构造了一系列简单的叶状物品和一个椭圆形目标“猎物”。我们将这些项目设置在两种光照环境中:强烈的“晴天”和更加分散的“多云”。为目标对象提供了针对这两种环境类型之一的最佳遮光效果图案,或显示出均匀的图案。通过测量检测时间和准确性,我们探索了目标检测是否以及如何取决于目标对象上的着色模式与场景照明之间的匹配。当阴影适合照明时,检测时间最长。检测到错误伪装的目标的速度和准确性与均匀着色的目标相似。我们得出的结论是,例如由于天气差异而引起的光照环境的结构变化确实会改变遮荫伪装的有效性。

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