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Skeletonization of two-dimensional shapes via fast numerical calculation of vector fields

机译:矢量场快速数值计算二维形状的骨架化

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We propose an approach for efficient two-dimensional skeletonization of binary shapes through numerical calculation of vector fields and curvature estimation by using the Weingarten formulae. It can be shown that potential valleys generated by vector fields have a close relationship with the definition of intensity axis of symmetry. Given a binary image, the algorithm consists in generating a grayscale image corresponding to the magnitude of a vector field followed by a search of the points that belong to the bottom of the potential valleys or regions with minimum magnitude. It can be shown that these points provide a good approximation to the medial axis of the object in study. Also, the proposed method demonstrated good performance due to the fact that the vector field can be easily and rapidly calculated using the fast Fourier transform algorithm.
机译:我们提出了一种通过使用桃葡萄原公式的载体场的数值计算和曲率估计的数值计算,提出了一种有效的二元形状的二维骨架化。可以表明,由矢量字段产生的潜在谷与强度对称轴的定义具有密切的关系。给定二进制图像,该算法包括生成与矢量字段的大小相对应的灰度图像,然后是搜索属于潜在谷或具有最小幅度的区域的点。可以表明,这些点为研究中对象的内侧轴提供良好的近似。此外,所提出的方法由于使用快速傅里叶变换算法可以容易且快速地计算矢量字段而显着的性能。

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