DocumentCode :
329700
Title :
A particle system formulation for tracking deformable structures
Author :
Yahia, Hussein ; Berroir, Jean-Paul ; Mazars, Gilles
Author_Institution :
Inria Rocquencourt Air Project, Le Chesnay, France
Volume :
3
fYear :
1998
fDate :
28 Sep-1 Oct 1998
Firstpage :
1319
Abstract :
This work presents image processing tools that can be helpful in the modeling of deformable structures encountered in oceanography. This paper tackles the problem of modeling and tracking deformable structures in remotely sensed image sequences. To take into account deformation (small and large), the authors focus on level-set methods, as they permit the accurate modelling of deformable structures. They can also easily take into account topological changes. The classical level-set formulation is modified by incorporating a particle system aimed at controlling the level-sets. Different kinds of internal energies can be superimposed on the particle system to accurately represent different physical behaviours of the level-set. According to image processing methodology, one tries to derive an external force field coming directly from the image data, mostly from local extrema of the gradient norm. This data is used to provide an external force field acting upon the particle system, and the level set is attracted toward the boundary of a structure. The external energy incorporates a specific “collar” energy used to minimize the number of undesirable features coming from the computation of the gradient´s local extrema. A suitable initialization is performed using the skeleton of the distance map. Experimentation shows that such an initialization is stable w.r.t. simple affine motion. One of the advantages of this particle system formulation is that no partial differential equation is solved, and the minimization just requires the use of a classical gradient descent
Keywords :
geophysical signal processing; image motion analysis; image processing; image sequences; oceanographic techniques; affine motion; classical gradient descent; deformable structure tracking; image processing; image processing tool; image sequence; level-set method; measurement technique; minimization; model; ocean; oceanography; particle system formulation; remote sensing; topological change; Control systems; Deformable models; Equations; Image processing; Image segmentation; Image sequences; Ocean temperature; Particle tracking; Skeleton; Spatial resolution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS '98 Conference Proceedings
Conference_Location :
Nice
Print_ISBN :
0-7803-5045-6
Type :
conf
DOI :
10.1109/OCEANS.1998.726282
Filename :
726282
Link To Document :
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