Title :
Algorithms for implicit deformable models
Author :
Whitaker, Ross T.
Author_Institution :
Eur. Comput. Ind. Res. Centre, Munich, Germany
Abstract :
This paper presents a framework for implicit deformable models and a pair of new algorithms for solving the nonlinear partial differential equations that result from this framework. Implicit models offer a useful alternative to parametric models, particularly when dealing with the deformation of higher-dimensional objects. The basic expressions for the evolution of implicit models are relatively straightforward; they follow as a direct consequence of the chain rule for differentiation. More challenging, however, is the development of algorithms that are stable and efficient. The first algorithm is a viscosity approximation which gives solutions over a dense set in the range, providing a means of calculating the solutions of embedded families of contours simultaneously. The second algorithm incorporates sparse solutions for a discrete set of contours. This sparse-field method requires a fraction of the computation compared to the first but offers solutions only for a finite number of contours. Results from 3d medical data as well as video images are shown
Keywords :
computer vision; partial differential equations; 3d medical data; chain rule; differentiation; higher-dimensional objects; implicit deformable models; nonlinear partial differential equations; parametric models; sparse-field method; video images; viscosity approximation; Approximation algorithms; Biomedical imaging; Computer vision; Deformable models; Iterative algorithms; Mesh generation; Parametric statistics; Partial differential equations; Shape; Viscosity;
Conference_Titel :
Computer Vision, 1995. Proceedings., Fifth International Conference on
Conference_Location :
Cambridge, MA
Print_ISBN :
0-8186-7042-8
DOI :
10.1109/ICCV.1995.466853