A topology-preserving parallel 3D thinning algorithm for extracting the curve skeleton
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摘要
We introduce a new topology-preserving 3D thinning procedure for deriving the curve voxel skeleton from 3D binary digital images. Based on a rigorously defined classification procedure, the algorithm consists of sequential thinning iterations each characterized by six parallel directional sub-iterations followed by a set of sequential sub-iterations. The algorithm is shown to produce concise and geometrically accurate 3D curve skeletons. The thinning algorithm is also insensitive to object rotation and only moderately sensitive to noise. Although this thinning procedure is valid for curve skeleton extraction of general elongated objects, in this paper, we specifically discuss its application to the orientation modeling of trabecular biological tissues.
论文关键词:3D parallel thinning,Curve skeleton,Simple voxel,Ambiguous set,Directional sub-iteration,Trabecular tissues
论文评审过程:Received 8 June 2001, Accepted 19 September 2002, Available online 15 March 2003.
论文官网地址:https://doi.org/10.1016/S0031-3203(02)00348-5