首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Contrast polarity and edge integration in achromatic color perception
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Contrast polarity and edge integration in achromatic color perception

机译:消色差色彩感知中的对比度极性和边缘整合

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Previous work has shown that the achromatic color of a target patch embedded in simple two-dimensionaldisplay depends not only on the luminance contrast between the target and its immediate surround but also on the contrasts of other nearby edges. Quantitative models have been proposed in which the target color is modeled as a spatially weighted sum of edge contrasts in which the target edge receives the largest weight. Rudd and Arrington [Vision Res. 41, 3649 (2001)] elaborated on this idea to include an additional mechanism whereby effects of individual color-inducing edges are "partially blocked" by edges lying along the path between the inducing edge and the target. We tested the blockage model in appearance matching experiments performed with disk-and-single-ring stimuli having all four possible combinations of inner and outer ring edge contrast polarities. Evidence was obtained for both "blockage" (attenuation) and "antiblockage" (amplification) of achromatic color induction signals, depending on the contrast polarities of the inner and outer ring edges. A neural model is proposed to account for our data on the basis of the contrast gain control occurring between cortical edge detector neurons.
机译:先前的工作表明,嵌入在简单二维显示中的目标斑片的消色差不仅取决于目标与其直接周围之间的亮度对比,还取决于其他附近边缘的对比。已经提出了定量模型,其中目标颜色被建模为边缘对比度的空间加权总和,其中目标边缘获得最大的权重。陆克文和阿灵顿[Vision Res。 41,3649(2001)]详细说明了这种想法,以包括一种附加的机制,通过该机制,各个颜色诱导边缘的作用被沿着诱导边缘和靶之间的路径的边缘“部分地阻止”。我们在具有圆盘和单环刺激的外观匹配实验中测试了堵塞模型,该盘和单环刺激具有内圈和外圈边缘对比度极性的所有四种可能组合。根据内圈和外圈边缘的对比极性,获得了消色差彩色感应信号的“阻挡”(衰减)和“抗阻挡”(放大)信号。在皮层边缘检测器神经元之间发生的对比增益控制的基础上,提出了一种神经模型来解释我们的数据。

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