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颜色分类的进化模型。II. 现实的观察者模型与群体异质性。

Evolutionary models of color categorization. II. Realistic observer models and population heterogeneity.

作者信息

Jameson Kimberly A, Komarova Natalia L

机构信息

Institute for Mathematical Behavioral Sciences, University of California, Irvine, Social Science Plaza, Irvine, California 92697-5100, USA.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2009 Jun;26(6):1424-36. doi: 10.1364/josaa.26.001424.

Abstract

The evolution of color categorization is investigated using computer simulations of agent population categorization games. Various realistic observer types are implemented based on Farnsworth-Munsell 100 Hue Test human performance data from normal and anomalous trichromats, dichromats, and humans with four retinal photopigments. Results show that (i) a small percentage of realistically modeled deficient agents greatly affects the shared categorization solutions of the entire population in terms of color category boundary locations; (ii) for realistically modeled populations, dichromats have the strongest influence on the color categorization; their characteristic forms of color confusion affect (i.e., attract or repel) color boundary locations and accord with our findings for homogeneous dichromat populations [J. Opt. Soc. Am. A26, 1414-1423 (2009)]; (iii) adding anomalous trichromats or trichromat "experts" does not destabilize the solutions or substantially alter solution structure. The results provide insights regarding the mechanisms that may constrain universal tendencies in human color categorization systems.

摘要

利用智能体群体分类游戏的计算机模拟来研究颜色分类的演变。基于来自正常和异常三色视者、二色视者以及具有四种视网膜光色素的人的 Farnsworth - Munsell 100 色调测试人类表现数据,实现了各种现实的观察者类型。结果表明:(i)在颜色类别边界位置方面,一小部分逼真建模的有缺陷智能体极大地影响了整个人口群体的共享分类解决方案;(ii)对于逼真建模的群体,二色视者对颜色分类的影响最强;他们特有的颜色混淆形式会影响(即吸引或排斥)颜色边界位置,并且与我们对同质二色视者群体的研究结果一致[《美国光学学会志》A26,1414 - 1423(2009)];(iii)添加异常三色视者或三色视者“专家”不会使解决方案不稳定或显著改变解决方案结构。这些结果为可能限制人类颜色分类系统普遍趋势的机制提供了见解。

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