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拮抗色机制:与光色素及色调命名的关系

Opponent chromatic mechanisms: relation to photopigments and hue naming.

作者信息

Werner J S, Wooten B R

出版信息

J Opt Soc Am. 1979 Mar;69(3):422-34. doi: 10.1364/josa.69.000422.

Abstract

Opponent chromatic response functions were determined from monochromatic, equal-luminance stimuli from 400 to 700 nm for three observers using a hue cancellation procedure. The same observers scaled the hue of the stimuli using the terms red, green, yellow, and blue. The results showed that the hue scaling was accurately predicted from the cancellation functions using the model of Hurvich and Jameson. Theoretical curves were generated to fit the chromatic response functions with a linear combination of three cone photopigments. The theoretical photopigments were based on an idopsin nomogram with lambdamax at a = 435, beta = 530, and lambda = 562 nm. An estimate of the density of each observer's preretinal optic media was obtained in order to relate the photopigment absorption spectra to the psychophysical data. Good linear fits were obtained for each observer's red-green curve, but not for the yellow-blue curves. A nonlinear model with an expansive exponent was used to fit the yellow-blue response functions with the three theoretical photopigments.

摘要

通过色调消除程序,针对三名观察者,从400至700纳米的单色、等亮度刺激中确定了对立色响应函数。同样的观察者使用红色、绿色、黄色和蓝色这些术语对刺激的色调进行了标定。结果表明,使用赫尔维奇和詹姆森的模型,从消除函数中可以准确预测色调标定。生成了理论曲线,以用三种视锥光色素的线性组合来拟合色响应函数。理论光色素基于一个视紫质列线图,其最大吸收波长分别为α = 435、β = 530和λ = 562纳米。为了将光色素吸收光谱与心理物理学数据相关联,获得了每位观察者视网膜前光学介质密度的估计值。每位观察者的红-绿曲线都获得了良好的线性拟合,但黄-蓝曲线则不然。使用具有扩展指数的非线性模型,用三种理论光色素来拟合黄-蓝响应函数。

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