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Estimation of an individual's Human Cone Fundamentals from their Color Matching Functions

机译:从其颜色匹配功能估算个人的人类锥形基本面

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Estimating individual cone sensitivities on the basis of their corresponding individual color matching functions is a classic problem of color vision. To solve the problem one has, in effect, to postulate constraints on the shape of the cone sensitivities. For example, Logvinenko applied a linear matching method (originally proposed by Bongard and Smirnov [4]) which excludes all but one primary to which each of the sensitivities of the visual system is supposedly sensitive and, mathematically, if this constraint is met reasonable estimates should result. However, when applied to color matching functions in general, it turns out that the method estimates middle and especially long wave sensitivity quite poorly. We propose a new method based on linear optimization, in which it is assumed only that the photo-pigment spectral absorptance functions are known a priori. In an iterative scheme, the method works by simultaneously estimating the coefficients of the linear relation between the known individual color matching functions and estimated cone sensitivities and estimating the ocular and macular filtering that multiplied by the absorptances yield the estimated cone sensitivities. The ocular and macular pre-filtration is treated as a single spectral function (i.e. a combined ocular and macular filtration). We are also able to predict the cone sensitivities proposed by Stockman and Sharpe in recent research. The method is tested on a selection of individual 1959 10 degree Color Matching Functions, with the assumption that they have the Stockman and Sharpe 10 degree photo-pigment spectral absorbtance in common. The results for the estimated cone sensitivities look very plausible. Finally we have applied the method to the CIE1964 10 degree observer and get very reasonable result as well.
机译:其相应的个人色彩匹配功能的基础上估计个别锥敏感度是颜色视觉的经典问题。为了解决这个问题一个人,在效果,假定在圆锥灵敏度的形状的约束。例如,Logvinenko施加的线性匹配方法(最初由邦加德和斯米尔诺夫提出[4]),其不包括所有,但一个主要以其中每个视觉系统的敏感度的是假想敏感,在数学上,如果该约束满足合理的估计应该导致。然而,当应用于一般颜色匹配函数,事实证明,所述方法估计中间,特别是长波灵敏度相当差。我们提出了基于线性优化的新方法,在其中假设仅使得光颜料光谱吸收功能是先验已知的。在迭代方案中,方法通过同时估计所述已知个体颜色匹配函数和估计的锥体灵敏度之间的线性关系的系数和估计眼和黄斑过滤该乘以吸收率得到所估计的锥体敏感性。目镜和黄斑预过滤被视为一个单一的频谱函数(即组合的眼和黄斑过滤)。我们也可以预测在最近的研究由斯托克曼和夏普提出的锥敏感性。该方法是关于选择个别1959 10度色匹配函数的测试,并假设它们具有斯托克曼和夏普10度光颜料光谱absorbtance共同之处。为估计锥敏感性结果看起来很合理的。最后,我们采用的方法到CIE1964 10度观察,并得到非常合理的结果也是如此。

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