首页> 外文期刊>Vision Research: An International Journal in Visual Science >The efficacy of local luminance amplitude in disambiguating the origin of luminance signals depends on carrier frequency: further evidence for the active role of second-order vision in layer decomposition.
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The efficacy of local luminance amplitude in disambiguating the origin of luminance signals depends on carrier frequency: further evidence for the active role of second-order vision in layer decomposition.

机译:局部亮度振幅在消除亮度信号起源方面的功效取决于载波频率:二阶视觉在层分解中的积极作用的进一步证据。

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摘要

When an undulating surface bearing a painted texture is illuminated the resulting shading pattern produces in-phase modulations of the mean luminance (LM) and luminance amplitude (AM) of the texture. Experimentally, in-phase combinations of LM and AM (LM+AM) are seen as undulating surfaces whereas anti-phase combinations (LM-AM) are more ambiguous; being seen as undulating when presented alone but as flat when presented in a plaid with LM+AM. AM is a second-order cue and its influence on shape-from-shading can be explained with a bottom-up layer decomposition model containing second-order mechanisms. However, the role of second-order vision in layer decomposition has not been established. If second-order vision is involved in layer decomposition then the perceptual differences between LM+AM and LM-AM should depend on the properties of the carrier texture in a way that is consistent with the known properties of second-order vision. Here we find a preference for carrier frequencies 3 octaves above the modulation frequency and take this as an indication that second-order (filter-rectify-filter) mechanisms are involved in processing our LM/AM mixes. We introduce a modified model which takes into account the selectivity of second-order vision for carrier frequency.
机译:当带有涂料纹理的起伏表面被照亮时,所得的阴影图案会产生纹理的平均亮度(LM)和亮度幅度(AM)的同相调制。实验上,LM和AM的同相组合(LM + AM)被视为起伏表面,而反相组合(LM-AM)则更加模糊。当单独使用LM + AM制成格子时,被看作是起伏的;而当使用LM + AM制成格子时,则被视为是平坦的。 AM是二阶提示,其对阴影形状的影响可以通过包含二阶机制的自下而上的层分解模型来解释。但是,尚未确定二阶视觉在层分解中的作用。如果二阶视觉参与了层分解,则LM + AM和LM-AM之间的感知差异应以与二阶视觉的已知属性一致的方式取决于载体纹理的属性。在这里,我们发现偏爱高于调制频率3个八度的载波频率,并以此作为表明处理LM / AM混音涉及二阶(滤波器-整流-滤波器)机制的指示。我们介绍了一种修正模型,该模型考虑了二阶视觉对载波频率的选择性。

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