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Nonlinearities in color coding: Compensating color appearance for the eye’s spectral sensitivity

机译:颜色编码中的非线性:为眼睛的光谱灵敏度补偿颜色外观

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摘要

Most wavelengths change hue when mixed with white light. These changes, known as the Abney effect, have been extensively studied to characterize nonlinearities in the neural coding of color, but their potential function remains obscure. We measured the Abney effect in a new way—by varying the bandwidth of the spectrum rather than mixing with white—and this leads to a new interpretation of the role of nonlinear responses in color appearance. Because of the eye’s limited spectral sensitivity, increasing the bandwidth of a spectrum changes the relative responses in the three classes of cone receptor and thus would change hue if the percept were tied to a fixed cone ratio. However, we found that hue is largely independent of bandwidth and thus constant for a constant peak wavelength for stimuli with Gaussian spectra. This suggests that color appearance is compensated for the eye’s spectral filtering, and that this compensation embodies specific perceptual inferences about how natural spectra vary. When a wavelength is instead diluted with white light—which does not bias the cone ratios—then the same compensation predicts changes in hue because the “right” response is made to the “wrong” stimulus. This model generates constant hue loci that are qualitatively consistent with measures of the Abney effect and provides a novel functional account of such effects in color appearance, in which postreceptoral responses are adjusted so that constant hue percepts are tied to consistent physical properties of the environment rather than consistent physiological properties such as the cone ratios.
机译:与白光混合时,大多数波长都会改变色调。这些变化被称为Abney效应,已被广泛研究以表征颜色神经编码中的非线性,但它们的潜在功能仍然不清楚。我们通过改变光谱的带宽而不是与白色混合,以新的方式测量了Abney效应,从而对非线性响应在颜色外观中的作用有了新的解释。由于眼睛的光谱灵敏度有限,因此增加光谱带宽会改变三种视锥细胞受体的相对响应,因此,如果将感知与固定的视锥细胞比例联系在一起,则会改变色调。但是,我们发现,色相很大程度上与带宽无关,因此对于高斯光谱的刺激,对于恒定的峰值波长而言,色相是恒定的。这表明颜色外观可以通过眼睛的光谱过滤得到补偿,并且这种补偿体现了有关自然光谱变化的特定感知推断。相反,当波长用白光稀释时(不会使锥度比产生偏差),则相同的补偿会预测色相的变化,因为对“错误”的刺激做出了“正确”的响应。该模型生成定性的色调位点,该定性的定性与Abney效应的测量值相符,并提供了这种颜色外观效果的新颖功能说明,其中调节了受体的后反应,以便将恒定的色相感知与环境的一致物理特性联系起来,而不是而不是一致的生理特性,例如锥度比。

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