Title :
A multiscale deformable model for extracting complex surfaces from volume images
Author :
Park, Joo-Young ; McInerney, Tim ; Terzopoulos, Demetri ; Kim, Myoung-Hee
Author_Institution :
Dept. of Comput. Sci. & Eng., Ewha Womans Univ., Seoul, South Korea
Abstract :
Deformable surface models are an attractive method for segmenting the three-dimensional shapes of complex anatomic structures in volumetric medical images. Despite the success of this approach, several problems remain. In this paper, we propose a multiscale deformable surface model with non-intersection constraint forces that successfully addresses three significant problems-sensitivity to model initialization, difficulties in dealing with severe object concavities, and model self-intersection. The first two problems are addressed by the multiscale scheme, which progressively resamples the triangulated, deformable surface model both globally and locally, matching its resolution to the levels of a volume image pyramid. We address the third problem by including a non-intersection constraint force among the customary internal and external forces in the physics-based formulation. We apply our new deformable surface model to the challenging task of extracting brain cortical surfaces
Keywords :
brain; medical image processing; solid modelling; brain cortical surfaces; complex anatomic structures; complex surfaces extraction; deformable surface model; model initialization; model self-intersection; multiscale deformable model; multiscale deformable surface model; severe object concavities; volume image pyramid; volume images; volumetric medical images; Biomedical imaging; Brain modeling; Computer science; Deformable models; Electronic switching systems; Image resolution; Image segmentation; Integrated circuit modeling; Physics; Solid modeling;
Conference_Titel :
Computer Graphics and Applications, 1999. Proceedings. Seventh Pacific Conference on
Conference_Location :
Seoul
Print_ISBN :
0-7695-0293-8
DOI :
10.1109/PCCGA.1999.803364