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图像统计数据无法解释光泽度和亮度的感知。

Image statistics do not explain the perception of gloss and lightness.

作者信息

Anderson Barton L, Kim Juno

机构信息

School of Psychology, The University of Sydney, NSW, Australia.

出版信息

J Vis. 2009 Oct 9;9(11):10.1-17. doi: 10.1167/9.11.10.

Abstract

A fundamental problem in image analysis is to understand the nature of the computations and mechanisms that provide information about the material properties of surfaces. Information about a surface's 3D shape, optics, illumination field, and atmospheric conditions are conflated in the image, which must somehow be disentangled to derive the properties of surfaces. It was recently suggested that the visual system exploits some simple image statistics-histogram or sub-band skew-to infer the lightness and gloss of surfaces (I. Motoyoshi, S. Nishida, L. Sharan, & E. H. Adelson, 2007). Here, we show that the correlations Motoyoshi et al. (2007) observed between skew, lightness, and gloss only arose because of the limited space of surface geometries, reflectance properties, and illumination fields they evaluated. We argue that the lightness effects they reported were a statistical artifact of equating the means of images with skewed histograms, and that the perception of gloss requires an analysis of the consistency between the estimate of a surface's 3D shape and the positions and orientations of highlights on a surface. We argue that the derivation of surface and material properties requires a photo-geometric analysis, and that purely photometric statistics such as skew fail to capture any diagnostic information about surfaces because they are devoid of the structural information needed to distinguish different types of surface attributes.

摘要

图像分析中的一个基本问题是理解那些能够提供有关表面物质属性信息的计算和机制的本质。关于表面的三维形状、光学特性、照明场和大气条件等信息在图像中相互交织,必须以某种方式解开这些信息才能推导出表面的属性。最近有人提出,视觉系统利用一些简单的图像统计量——直方图或子带偏斜度——来推断表面的亮度和光泽度(I. 本吉义、西田史郎、L. 沙兰和E. H. 阿德尔森,2007年)。在此,我们表明,本吉义等人(2007年)观察到的偏斜度、亮度和光泽度之间的相关性仅仅是由于他们所评估的表面几何形状、反射特性和照明场的空间有限而产生的。我们认为,他们报告的亮度效应是将具有偏斜直方图的图像均值等同起来的统计假象,并且光泽度的感知需要分析表面三维形状估计与表面上高光的位置和方向之间的一致性。我们认为,表面和物质属性的推导需要进行光几何分析,而诸如偏斜度这样的纯光度统计量无法捕捉到任何有关表面的诊断信息,因为它们缺乏区分不同类型表面属性所需的结构信息。

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