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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Superior discrimination for hue than for saturation and an explanation in terms of correlated neural noise
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Superior discrimination for hue than for saturation and an explanation in terms of correlated neural noise

机译:色相优于饱和度的辨别力,以及相关神经噪声的解释

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摘要

The precision of human colour discrimination depends on the region of colour space in which measurements are made and on the direction in which the compared colours-the discriminanda-differ. Working in a MacLeod-Boynton chromaticity diagram scaled so that thresholds at the white point were equal for the two axes, we made measurements at reference points lying on lines that passed at 458 or 2458 through the white point. At a given reference chromaticity, we measured thresholds either for saturation (i.e. for discriminanda lying radially along the line passing through the white point) or for hue (i.e. for discriminanda lying on a tangent of a circle passing through the reference point and centred on the white point). The discriminanda always straddled the reference point in chromaticity. The attraction of this arrangement is that the two thresholds can be expressed in common units. All that differs between saturation and hue measurements is the phase with which the short-wave signal is combined with the long-/middle-wave signal. Except for chromaticities very close to the white point, saturation thresholdswere systematically higher than hue thresholds. We offer a possible explanation in terms of correlated neural noise.
机译:人类色彩辨别的精确度取决于进行测量的色彩空间区域以及所比较色彩的判别方向(区分)。在按比例缩放的MacLeod-Boynton色度图中工作,以使两个轴的白点阈值相等,我们在参考点上进行了测量,这些参考点位于通过白点458或2458的线上。在给定的参考色度下,我们测量了饱和度(即,沿通过白点的线径向分布的判别法)或色相(即,通过参考点的圆的切线处并以圆心为中心的判别法)的阈值白点)。判别总是跨越色度的参考点。这种安排的吸引力在于,两个阈值可以用共同的单位表示。饱和度和色相测量之间的所有不同之处在于,短波信号与长波/中波信号合并的相位。除了非常接近白点的色度,饱和度阈值系统地高于色相阈值。我们根据相关的神经噪声提供了一种可能的解释。

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