Geodesic Active Contours

被引:6
作者
Vicent Caselles
Ron Kimmel
Guillermo Sapiro
机构
[1] University of Illes Balears,Department of Mathematics and Informatics
[2] Department of Electrical Engineering,undefined
[3] Technion,undefined
[4] I.I.T.,undefined
[5] Hewlett-Packard Labs,undefined
来源
International Journal of Computer Vision | 1997年 / 22卷
关键词
dynamic contours; variational problems; differential geometry; Riemannian geometry; geodesics; curve evolution; topology free boundary detection;
D O I
暂无
中图分类号
学科分类号
摘要
A novel scheme for the detection of object boundaries is presented. The technique is based on active contours evolving in time according to intrinsic geometric measures of the image. The evolving contours naturally split and merge, allowing the simultaneous detection of several objects and both interior and exterior boundaries. The proposed approach is based on the relation between active contours and the computation of geodesics or minimal distance curves. The minimal distance curve lays in a Riemannian space whose metric is defined by the image content. This geodesic approach for object segmentation allows to connect classical “snakes” based on energy minimization and geometric active contours based on the theory of curve evolution. Previous models of geometric active contours are improved, allowing stable boundary detection when their gradients suffer from large variations, including gaps. Formal results concerning existence, uniqueness, stability, and correctness of the evolution are presented as well. The scheme was implemented using an efficient algorithm for curve evolution. Experimental results of applying the scheme to real images including objects with holes and medical data imagery demonstrate its power. The results may be extended to 3D object segmentation as well.
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页码:61 / 79
页数:18
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