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Seeing the light: Illumination as a contextual cue to color choice behavior in bumblebees

机译:见光:照明是大黄蜂颜色选择行为的上下文提示

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摘要

The principal challenge faced by any color vision system is to contend with the inherent ambiguity of stimulus information, which represents the interaction between multiple attributes of the world (e.g., object reflectance and illumination). How natural systems deal with this problem is not known, although traditional hypotheses are predicated on the idea that vision represents object reflectance accurately by discounting early in processing the conflating effects of illumination. Here, we test the merits of this general supposition by confronting bumblebees (Bombus terres-tris) with a color discrimination task that can be solved only if information about the illuminant is not discounted but maintained in processing and thus available to higher-order learned behavior. We show that bees correctly use the intensity and chromaticity of illumination as a contextual cue to guide them to different target colors. In fact, we trained bees to choose opposite, rather than most similar, target colors after an illumination change. This performance cannot be explained with a simple color-constancy mechanism that discounts illumination. Further tests show that bees do not use a simple assessment of the overhead illumination, but that they assess the spectral relationships between a floral target and its background. These results demonstrate that bees can be color-constant without discounting the illuminant; that, in fact, they can use information about the illuminant itself as a salient source of information.
机译:任何彩色视觉系统都面临的主要挑战是应对刺激信息的内在含糊性,后者代表了世界多个属性(例如物体反射率和照明)之间的相互作用。尽管传统的假设基于这样的思想,即通过在处理照明的混合效应时尽早折价来准确地表示物体的反射率,但是自然系统如何处理该问题尚不清楚。在这里,我们通过对大黄蜂(Bombus terres-tris)进行颜色辨别任务来测试这种一般假设的优点,该任务只有在关于光源的信息不打折但在处理过程中得以保留并因此可用于高阶学习行为的情况下才能解决。我们证明蜜蜂正确地使用照明的强度和色度作为上下文提示,以将其引导至不同的目标颜色。实际上,我们训练蜜蜂在光照变化后选择相反的而不是最相似的目标颜色。无法通过简化照明的简单颜色恒定机制来解释这种性能。进一步的测试表明,蜜蜂没有使用对头顶照明的简单评估,而是评估了花卉目标与其背景之间的光谱关系。这些结果表明,蜜蜂可以保持颜色不变,而不会降低光源。实际上,他们可以将有关光源本身的信息用作重要的信息来源。

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