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A generalized equation for the calculation of receptor noise limited colour distances in n-chromatic visual systems

机译:n色视觉系统中受受体噪声限制的色距计算的通用方程式

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摘要

Researchers must assess similarities and differences in colour from an animal's eye view when investigating hypotheses in ecology, evolution and behaviour. Nervous systems generate colour perceptions by comparing the responses of different spectral classes of photoreceptor through colour opponent mechanisms, and the performance of these mechanisms is limited by photoreceptor noise. Accordingly, the receptor noise limited (RNL) colour distance model of Vorobyev and Osorio (Vorobyev & Osorio 1998 Proc. R. Soc. Lond. B 265, 351?358 (doi:10.1098/rspb.1998.0302)) generates predictions about the discriminability of colours that agree with behavioural data, and consequently it has found wide application in studies of animal colour vision. Vorobyev and Osorio (1998) provide equations to calculate RNL colour distances for animals with di-, tri- and tetrachromatic vision, which is adequate for many species. However, researchers may sometimes wish to compute RNL colour distances for potentially more complex colour visual systems. Thus, we derive a simple, single formula for the computation of RNL distance between two measurements of colour, equivalent to the published di-, tri- and tetrachromatic equations of Vorobyev and Osorio (1998), and valid for colour visual systems with any number of types of noisy photoreceptors. This formula will allow the easy application of this important colour visual model across the fields of ecology, evolution and behaviour.
机译:研究人员在研究有关生态,进化和行为的假设时,必须从动物的角度评估颜色的相似性和差异。神经系统通过比较颜色对抗剂机制对感光体不同光谱类别的响应来产生色彩感知,并且这些机制的性能受到感光体噪声的限制。因此,Vorobyev和Osorio的受体噪声限制(RNL)色距模型(Vorobyev&Osorio 1998 Proc。R. Soc。Lond。B 265,351?358(doi:10.1098 / rspb.1998.0302))产生了关于可辨别性的预测与行为数据相符的颜色,因此已在动物色觉研究中得到广泛应用。 Vorobyev和Osorio(1998)提供了方程来计算具有双色,三色和四色视觉的动物的RNL色距,这对于许多物种来说都是足够的。但是,研究人员有时可能希望为可能更复杂的彩色视觉系统计算RNL色距。因此,我们得出了一个简单的单一公式,用于计算两次颜色测量之间的RNL距离,等效于已发表的Vorobyev和Osorio(1998)的二色,三色和四色方程,并且适用于任意数量的彩色视觉系统嘈杂的感光体的类型。这个公式将使这个重要的彩色视觉模型可以轻松地应用于生态,进化和行为领域。

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