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首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >The number of discernible colors perceived by dichromats in natural scenes and the effects of colored lenses.
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The number of discernible colors perceived by dichromats in natural scenes and the effects of colored lenses.

机译:自然场景中双色差感知到的可辨别颜色的数量以及有色镜片的效果。

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摘要

The number of discernible colors perceived by normal trichromats when viewing natural scenes can be estimated by analyzing idealized color volumes or hyperspectral data obtained from actual scenes. The purpose of the present work was to estimate the relative impairment in chromatic diversity experienced by dichromats when viewing natural scenes and to investigate the effects of colored lenses. The estimates were obtained computationally from the analysis of hyperspectral images of natural scenes and using a quantitative model of dichromats' vision. The color volume corresponding to each scene was represented in CIELAB color space and segmented into cubes of unitary side. For normal trichromats, the number of discernible colors was estimated by counting the number of non-empty cubes. For dichromats, an algorithm simulating for normal observers the appearance of the scenes for dichromats was used, and the number of discernible colors was then counted as for normal trichromats. The effects of colored lenses were estimated by prior filtering the spectral radiance from the scenes with the spectral transmittance function of the lenses. It was found that in dichromatic vision the number of discernible colors was about 7% of normal trichromatic vision. With some colored lenses considerable improvements in chromatic diversity were obtained for trichromats; for dichromats, however, only modest improvements could be obtained with efficiency levels dependent on the combination of scene, lens and type of deficiency.
机译:通过查看理想色体积或从实际场景中获得的高光谱数据,可以估算观看自然场景时正常三色差所感知的可辨别颜色的数量。本工作的目的是估计在观看自然场景时双色差镜片在色度多样性方面的相对损害,并研究有色镜片的效果。这些估计是通过对自然场景的高光谱图像进行分析并使用双色差视力的定量模型来计算得出的。在CIELAB色彩空间中表示与每个场景相对应的色彩量,并将其细分为单一面的多维数据集。对于正常的三色镜,可通过计算非空立方体的数量来估计可辨别颜色的数量。对于双色差,使用一种模拟正常观察者出现双色差场景的算法,然后像正常三色差一样计算可辨别颜色的数量。通过事先用镜头的光谱透射率函数过滤场景的光谱辐射率,可以估计有色镜片的效果。已经发现,在双色视觉中,可辨别颜色的数量约为正常三色视觉的7%。对于某些有色镜片,三色镜的色度多样性得到了很大的改善。但是,对于双色差镜头,只能获得适度的改进,其效率水平取决于场景,镜头和缺陷类型的组合。

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