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Color and luminance information in natural scenes

机译:自然场景中的颜色和亮度信息

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摘要

The spatial filtering applied by the human visual system appears to be low pass for chromatic stimuli and band pass for luminance stimuli. Here we explore whether this observed difference in contrast sensitivity reflects a real difference in the components of chrominance and luminance in natural scenes. For this purpose a digital set of 29 hyperspectral images of natural scenes was acquired and its spatial frequency content analyzed in terms of chrominance and luminance defined according to existing models of the human cone responses and visual signal processing. The statistical 1/f amplitude spatial-frequency distribution is confirmed for a variety of chromatic conditions across the visible spectrum. Our analysis suggests that natural scenes are relatively rich in high-spatial-frequency chrominance information that does not appear to be transmitted by the human visual system. This result is unlikely to have arisen from errors in the original measurements. Several reasons may combine to explain a failure to transmit high-spatial-frequency chrominance: (a) its minor importance for primate visual tasks, (b) its removal by filtering applied to compensate for chromatic aberration of the eye's optics, and (c) a biological bottleneck blocking its transmission. In addition, we graphically compare the ratios of luminance to chrominance measured by our hyperspectral camera and those measured psychophysically over an equivalent spatial-frequency range. (C) 1998 Optical Society of America. [References: 26]
机译:人类视觉系统应用的空间滤波对于色刺激似乎是低通,而对于亮度刺激是带通。在这里,我们探索这种观察到的对比度灵敏度差异是否反映了自然场景中色度和亮度分量的真实差异。为此,获取了一组由29张自然场景的高光谱图像组成的数字集,并根据色度和亮度对空间频率内容进行了分析,这些色度和亮度根据人体锥体响应和视觉信号处理的现有模型进行了定义。对于可见光谱中的各种色度条件,可以确定统计的1 / f振幅空间频率分布。我们的分析表明,自然场景中的高空间色度信息相对丰富,这些信息似乎不会被人类视觉系统传输。原始测量中的错误不太可能产生此结果。可能有多种原因可以解释无法传输高空间频率色度的原因:(a)对灵长类视觉任务的次要重要性;(b)通过滤除以补偿眼睛光学色差的滤除方法;以及(c)阻碍其传播的生物学瓶颈。此外,我们以图形方式比较了我们的高光谱相机所测得的亮度与色度的比率以及在等效空间频率范围内从心理上所测得的比率。 (C)1998年美国眼镜学会。 [参考:26]

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