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Six formal properties of two-dimensional anisotropie visual filters: Structural principles and frequency/orientation selectivity

机译:二维各向异性视觉滤镜的六个形式特性:结构原理和频率/方向选择性

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摘要

Six formal properties of anisotropie linear two-dimensional filters are noted which are relevant for modeling the mechanisms of spatial visual information extraction. These properties concern the relationship between the organizational principle of a two-dimensional anisotropie spatial filter or neural receptive field (such as elongation, or concatenation of subunits, or differential operators mediated by lateral inhibition in neural laminae) and the resulting general consequences for spatial frequency and orientation selectivity. These properties are demonstrated without assuming particular two-dimensional filter functional forms; rather, they are shown as general principles associated with certain broad categories of two-dimensional filters. Such an analysis enhances our theoretical understanding of the two-dimensional receptive field organization of neurons in the visual cortex and permits the rejection of some candidate organizational principles on two-dimensional spectral grounds.
机译:注意到各向异性线性二维滤波器的六个形式属性,它们与空间视觉信息提取机制的建模有关。这些特性关系到二维各向异性空间滤波器或神经感受野(例如,亚基的延伸或级联,或由神经层的侧向抑制介导的微分算子)的组织原理与空间频率的一般结果之间的关系。和方向选择性。在不假设特定的二维滤波器功能形式的情况下演示了这些属性;相反,它们被显示为与某些二维过滤器的广泛类别相关联的一般原理。这种分析增强了我们对视觉皮层中神经元的二维感受野组织的理论理解,并允许在二维频谱基础上拒绝某些候选组织原理。

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