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Comparison of sensitivity to color changes in natural and phase-scrambled scenes

机译:自然和相位混乱场景对颜色变化的敏感性比较

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Traditionally, thresholds for detecting photometric changes have been measured by using stimuli such as disks or gratings and accounted for in terms of relatively low-level mechanisms in the visual pathway. Therefore one might not expect the higher-order structures that characterize natural scenes to influence thresholds for detecting uniform photometric changes. We compared thresholds for detecting uniform photometric changes for natural and phase-scrambled versions of images of natural scenes. The chromaticity and luminance of every pixel was represented as a vector in a modified version of the MacLeod-Boynton color space and was translated, rotated, or compressed within that color space. Thresholds for all types of transformation were significantly lower in the raw compared with phase-scrambled scenes, and we attribute this to the influence of higher-order structure. (c) 2008 Optical Society of America.
机译:传统上,用于检测光度变化的阈值是通过使用诸如磁盘或光栅之类的刺激来测量的,并且是根据视觉通路中相对较低级别的机制来考虑的。因此,人们可能不会期望表征自然场景的高阶结构会影响检测均匀光度变化的阈值。我们比较了用于检测自然场景图像的自然和相位加扰版本的统一光度变化的阈值。每个像素的色度和亮度在MacLeod-Boynton色彩空间的修改版本中表示为矢量,并在该色彩空间内进行平移,旋转或压缩。与相位加扰的场景相比,原始图像中所有类型的变换的阈值均显着较低,我们将此归因于高阶结构的影响。 (c)2008年美国眼镜学会。

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