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Curve skeletonization of surface-like objects in 3D images guided by voxel classification

Academic Article
Publication Date:
2002
abstract:
Skeletonization is a way to reduce dimensionality of digital objects. Here, we present an algorithm that computes the curve skeleton of a surface-like object in a 3D image, i.e., an object that in one of the three dimensions is at most two-voxel thick. A surface-like object consists of surfaces and curves crossing each other. Its curve skeleton is a 1D set centred within the surface-like object and with preserved topological properties. It can be useful to achieve a qualitative shape representation of the object with reduced dimensionality. The basic idea behind our algorithm is to detect the curves and the junctions between different surfaces and prevent their removal as they retain the most significant shape representation.
Iris type:
01.01 Articolo in rivista
Keywords:
curve-skeleton; topology-preservatio; shape-representation; volume-images
List of contributors:
SANNITI DI BAJA, Gabriella
Handle:
https://iris.cnr.it/handle/20.500.14243/154327
Published in:
PATTERN RECOGNITION LETTERS
Journal
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