尺度在分区形状中的作用

R. Dhandapani, B. Kimia
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引用次数: 7

摘要

我们对基于颈部和肢体的视觉形式划分方法提出了三种不同的改进,其中具有各自切线良好延续性的负曲率最小对构成肢体,而通过形状的局部最短线构成颈部。许多相互矛盾的肢体和颈部假设通过显著性的概念得到解决,从而导致光滑形状的直观部分。我们从三个方面改进了这种方法。首先,一个重要的困难是处理尺度,例如,在分割有噪声的形状时,一些感知上有效的分支没有显著的负曲率最小值,并且由于噪声产生了许多假设。提出了一种可靠地构造和检测粗尺度负曲率极值的方法。其次,我们设计了一种多尺度分割方案,从而最大限度地减少了不同尺度特征产生的部分线的粗尺度相互作用。第三,我们采用欧拉螺旋作为部分曲线而不是直线作为分割形状,从而改善了分割效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of scale in partitioning shape
We present three distinct improvements to the neck and limb-based approach to partitioning of visual form, where pairs of negative curvature minima with good continuation of their respective tangents constitute limbs, and locally shortest lines through the shape constitute necks. The numerous conflicting limb and neck hypotheses are resolved through a notion of salience, leading to intuitive parts for smooth shapes. We improve on this approach in three ways. First a significant difficulty is dealing with scale, e.g., in partitioning noisy shapes where some perceptually valid limbs are not marked by salient negative curvature minima, and where numerous hypotheses arise due to noise. We present an approach which can reliably construct and detect coarse-scale negative curvature extremas. Second, we devise a multiscale partitioning scheme, thus minimizing the coarse-scale interaction of part-lines arising from features at different scales. Third, we employ an Euler spiral as the part-curve instead of a straight part-line for partitioning shape thus improving the partitioning results.
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