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在分化-整合形式体系中将深度与亮度相联系并进行锚定。

Linking depth to lightness and anchoring within the differentiation-integration formalism.

作者信息

Kogo Naoki, Gool Luc Van, Wagemans Johan

机构信息

Katholieke Universiteit Leuven, Laboratory of Experimental Psychology, B-3000 Leuven, Belgium.

出版信息

Vision Res. 2010 Jul 9;50(15):1486-500. doi: 10.1016/j.visres.2010.05.007. Epub 2010 May 10.

Abstract

Recently we developed a model that reproduces the Kanizsa square illusion based on two principles: (1) a spatial 2-D integration of luminance ratio and differentiated depth signals creates a "primary" lightness map and a depth map, respectively, which is then followed by (2) a modification of the primary lightness values under influence of the perceived depth (Kogo, Strecha, Van Gool, & Wagemans, 2010). Within this model, the process of the spatial integration inevitably introduced an arbitrary offset. In order to obtain absolute values of depth and lightness, the offset values needed to be determined by other constraints. This is the anchoring problem of the depth and lightness measurements. Here we report the anchoring rules that were established by investigating the model's responses to the Kanizsa square and its wide range of variations. For the primary lightness map, the highest value rule was applied, while the area rule appeared most plausible for the depth map. By applying the same principles to simple figures consisting of black and white areas of different size ratios, the model succeeded in reproducing published empirical results on lightness anchoring (Li & Gilchrist, 1999).

摘要

最近,我们开发了一个基于两个原则再现卡尼兹方块错觉的模型:(1)亮度比率和差异深度信号的二维空间整合分别创建一个“初级”明度图和一个深度图,随后是(2)在感知深度的影响下对初级明度值进行修正(Kogo、Strecha、Van Gool和Wagemans,2010)。在这个模型中,空间整合过程不可避免地引入了一个任意偏移量。为了获得深度和明度的绝对值,需要通过其他约束来确定偏移值。这就是深度和明度测量的锚定问题。在这里,我们报告通过研究模型对卡尼兹方块及其广泛变体的响应而建立的锚定规则。对于初级明度图,应用了最高值规则,而对于深度图,面积规则似乎最合理。通过将相同的原则应用于由不同尺寸比率的黑白区域组成的简单图形,该模型成功再现了已发表的关于明度锚定的实证结果(Li和Gilchrist,1999)。

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