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Color selection, color capture, and afterimage filling-in

机译:颜色选择,颜色捕获和残像填充

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R. van Lier, M. Vergeer, and S. Anstis (2009) reported an afterimage that produced different percepts from an inducing stimulus depending on the shape of a subsequent contour. G. Francis (2010) explained this phenomenon with a model where the contour forms a boundary that traps the afterimage color as it spreads across a surface. We conducted a series of additional model simulations and experiments to test the explanation. We first tested the hypothesis that the contour traps the afterimage color by adding additional contours. Model simulations suggest that additional contours could block color from spreading to the middle of the surface. In two experiments, additional contours blocked color spreading when they were at the inducer edges but not when they were drawn away from the inducer edges. In a second set of experiments, we investigated the model prediction that the drawn contour defines the perceived shape of the afterimage. New model simulations predict that variations in the size of the drawn contour force the perceived afterimage to vary accordingly. However, an experimental study revealed that the perceived afterimage size remains the same as the inducing stimulus. The simulation and experimental results both highlight and challenge important characteristics of the model.
机译:R. van Lier,M。Vergeer和S. Anstis(2009)报告了余像,根据后续轮廓的形状,余像会因诱导刺激而产生不同的感知。 G. Francis(2010)用模型解释了这种现象,其中轮廓形成了一个边界,该边界捕获了残影在整个表面上散布的颜色。我们进行了一系列附加的模型仿真和实验来测试解释。我们首先测试了这样的假设:轮廓通过添加其他轮廓来捕获残像颜色。模型仿真表明,其他轮廓可能会阻止颜色扩散到表面中间。在两个实验中,当其他轮廓位于诱导边缘时,其他轮廓阻止了颜色扩散,而当它们从诱导边缘拉开时,则没有阻止。在第二组实验中,我们调查了模型预测,即绘制的轮廓定义了残像的感知形状。新的模型模拟预测,绘制轮廓大小的变化会迫使感知的残像发生相应变化。但是,一项实验研究表明,感知的残像大小与诱导刺激相同。仿真和实验结果都突出并挑战了模型的重要特征。

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