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Use of a model of the human visual system to determine the attributes of aperture colors: hue brightness and saturation

机译:使用人类视觉系统模型确定光圈颜色的属性:色相亮度和饱和度

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Abstract: A previously developed model of the human fovea is modified for analysis of colored stimuli. Psychophysical data on perception of aperture colors are used as a guide for the development of color perception by the model. The channels carrying information about color are represented by the summed responses of midget C- and L-type cells. The spectral energy distribution of any colored stimulus produces within the cell types a unique pattern of activities from which the amounts of each of the hues, whiteness, brightness, and saturation can be determined. The present analysis is restricted to the blue-cone region of the parafovea, which surrounds the blue-cone-free central fovea. For aberration-free dispersion and for no or little self-adaptation, the psychophysical and model data are in good agreement as to the 3 attributes hue, brightness, and saturation. As a result of univariance, information as to the spectral distribution of the stimulus cannot be used, and this creates a problem as how to normalize colored stimuli to a common set of standards. A method based on normalization of the outputs of the retinal cells to a common white is presented. !16
机译:摘要:修改了先前开发的人类中央凹模型,用于分析彩色刺激。关于光圈颜色感知的心理物理数据被用作模型发展颜色感知的指南。带有颜色信息的通道由小型C型和L型单元格的总响应表示。任何有色刺激的光谱能量分布都会在细胞类型内产生一种独特的活动模式,从中可以确定每种色调的数量,白度,亮度和饱和度。本分析仅限于副中央凹的蓝锥区域,该区域围绕无蓝锥中央凹。对于没有像差的色散和没有或只有很少的自适应,心理物理数据和模型数据在色相,亮度和饱和度这3个属性方面都非常吻合。作为单变量的结果,不能使用关于刺激的光谱分布的信息,这产生了一个问题,如如何将有色刺激标准化为一组通用标准。提出了一种基于将视网膜细胞的输出归一化为普通白色的方法。 !16

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