Relationship between chromatic induction and spatial variables: an integrated explanation in terms of element-contribution function.

Y Ejima, S Takahashi
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引用次数: 4

Abstract

Chromatic induction as a function of separation and as a function of area was determined by a hue-cancellation procedure. Both functions obtained were expressed by exponential functions with similar exponential coefficients. This led to the derivation of an element-contribution function, based on a linear summation model, that could explain both the relationship between chromatic induction and separation and that between chromatic induction and area. The effects of separation and area on chromatic induction could readily be determined in terms of an element-contribution function. In addition, the induction area that is due to a blue inducing stimulus was larger than those that are due to the other inducing stimuli, suggesting that the summation area of the blue response was larger than those of the other chromatic responses.

色归纳法与空间变量的关系:基于元素贡献函数的综合解释。
色度感应作为分离的函数和作为面积的函数是通过色调消除程序确定的。得到的两个函数都用指数系数相近的指数函数表示。这导致了基于线性求和模型的元素贡献函数的推导,该函数可以解释色感应与分离之间的关系以及色感应与面积之间的关系。根据元素贡献函数可以很容易地确定分离和面积对色诱导的影响。此外,蓝色诱导刺激的诱导面积大于其他诱导刺激的诱导面积,说明蓝色反应的总和面积大于其他颜色反应的总和面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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期刊介绍: OSA was published by The Optical Society from January 1917 to December 1983 before dividing into JOSA A: Optics and Image Science and JOSA B: Optical Physics in 1984.
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