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从滤波器到特征:人类视觉中边缘与模糊编码的尺度空间分析

From filters to features: scale-space analysis of edge and blur coding in human vision.

作者信息

Georgeson Mark A, May Keith A, Freeman Tom C A, Hesse Gillian S

机构信息

School of Life & Health Sciences, Aston University, Birmingham, UK.

出版信息

J Vis. 2007 Oct 19;7(13):7.1-21. doi: 10.1167/7.13.7.

Abstract

To make vision possible, the visual nervous system must represent the most informative features in the light pattern captured by the eye. Here we use Gaussian scale-space theory to derive a multiscale model for edge analysis and we test it in perceptual experiments. At all scales there are two stages of spatial filtering. An odd-symmetric, Gaussian first derivative filter provides the input to a Gaussian second derivative filter. Crucially, the output at each stage is half-wave rectified before feeding forward to the next. This creates nonlinear channels selectively responsive to one edge polarity while suppressing spurious or "phantom" edges. The two stages have properties analogous to simple and complex cells in the visual cortex. Edges are found as peaks in a scale-space response map that is the output of the second stage. The position and scale of the peak response identify the location and blur of the edge. The model predicts remarkably accurately our results on human perception of edge location and blur for a wide range of luminance profiles, including the surprising finding that blurred edges look sharper when their length is made shorter. The model enhances our understanding of early vision by integrating computational, physiological, and psychophysical approaches.

摘要

为了实现视觉,视觉神经系统必须表征眼睛捕捉到的光模式中最具信息性的特征。在此,我们运用高斯尺度空间理论推导了一个用于边缘分析的多尺度模型,并在感知实验中对其进行了测试。在所有尺度上都有两个空间滤波阶段。一个奇对称的高斯一阶导数滤波器为高斯二阶导数滤波器提供输入。至关重要的是,每个阶段的输出在向前馈送到下一阶段之前都进行了半波整流。这创建了对一种边缘极性有选择性响应的非线性通道,同时抑制虚假或“幻影”边缘。这两个阶段具有类似于视觉皮层中简单细胞和复杂细胞的特性。边缘在作为第二阶段输出的尺度空间响应图中被发现为峰值。峰值响应的位置和尺度确定了边缘的位置和模糊程度。该模型非常准确地预测了我们在广泛的亮度分布下关于人类对边缘位置和模糊程度感知的结果,包括一个惊人的发现,即当模糊边缘的长度变短时,它们看起来更清晰。该模型通过整合计算、生理和心理物理学方法,增强了我们对早期视觉的理解。

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