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Derivation of Human Chromatic Discrimination Ability from an Information-Theoretical Notion of Distance in Color Space

机译:从色空间中距离的信息论概念推导人类色辨能力

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摘要

The accuracy with which humans detect chromatic differences varies throughout color space. For example, we are far more precise when discriminating two similar orange stimuli than two similar green stimuli. In order for two colors to be perceived as different, the neurons representing chromatic information must respond differently, and the difference must be larger than the trial-to-trial variability of the response to each separate color. Photoreceptors constitute the first stage in the processing of color information; many more stages are required before humans can consciously report whether two stimuli are perceived as chromatically distinguishable. Therefore, although photoreceptor absorption curves are expected to influence the accuracy of conscious discriminability, there is no reason to believe that they should suffice to explain it. Here we develop information-theoretical tools based on the Fisher metric that demonstrate that photoreceptor absorption properties explain about 87% of the variance of human color discrimination ability, as tested by previous behavioral experiments. In the context of this theory, the bottleneck in chromatic information processing is determined by photoreceptor absorption characteristics. Subsequent encoding stages modify only marginally the chromatic discriminability at the photoreceptor level.
机译:人们检测色差的准确性在整个色彩空间中都不同。例如,我们在区分两个相似的橙色刺激时比两个相似的绿色刺激精确得多。为了使两种颜色被感知为不同,代表色度信息的神经元必须做出不同的响应,并且该差异必须大于对每种单独颜色的响应的试验到试验的可变性。感光体构成了色彩信息处理的第一阶段。在人类可以有意识地报告两个刺激是否被感知为可区分的颜色之前,还需要更多的阶段。因此,尽管预期感光体吸收曲线会影响有意识的可分辨性的准确性,但没有理由相信它们足以解释这一点。在这里,我们开发了基于Fisher度量的信息理论工具,该工具证明了光感受器的吸收特性可以解释人类色彩辨别能力的大约87%的变化,这已通过先前的行为实验进行了测试。在这种理论的背景下,色度信息处理的瓶颈由感光体吸收特性决定。随后的编码阶段仅在感光体水平上略微修改了颜色可分辨性。

著录项

  • 来源
    《Neural computation》 |2016年第12期|2628-2655|共28页
  • 作者单位

    Instituto Balseiro and Centro Atómico Bariloche 8400 San Carlos de Bariloche Argentina mariadafon@gmail.com;

    Instituto Balseiro and Centro Atómico Bariloche 8400 San Carlos de Bariloche Argentina samengo@cab.cnea.gov.ar;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:07:06

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