Title :
Tracking deformable surfaces with optical flow in the presence of self occlusion in monocular image sequences
Author :
Hilsmann, Anna ; Eisert, Peter
Author_Institution :
Fraunhofer Inst. for Telecommun., Berlin
Abstract :
In this paper, we present a direct method for deformable surface tracking in monocular image sequences. We use the optical flow constraint instead of working with distinct features. The optical flow field is regularized with a 2-dimensional mesh-based deformation model. The formulation of the deformation model contains weighted smoothing constraints defined locally on topological vertex neighborhoods. 2-dimensional deformation estimation in the presence of self-occlusion is a very challenging problem. Naturally, a 2-dimensional mesh folds in the presence of self-occlusion. We address this problem by weighting the smoothness constraints locally according to the occlusion of a region. Thereby, the mesh is forced to shrink instead of fold in occluded regions. Occlusion estimates are established from shrinking regions in the deformation mesh. Finding the best transformation then amounts to minimizing an error function that can be solved efficiently in a linear least squares sense.
Keywords :
computer graphics; image sequences; 2 dimensional deformation estimation; deformable surface tracking; monocular image sequences; occlusion estimation; optical flow; Biomedical optical imaging; Deformable models; Image motion analysis; Image registration; Image sequences; Least squares methods; Lighting; Optical sensors; Smoothing methods; Surface reconstruction;
Conference_Titel :
Computer Vision and Pattern Recognition Workshops, 2008. CVPRW '08. IEEE Computer Society Conference on
Conference_Location :
Anchorage, AK
Print_ISBN :
978-1-4244-2339-2
Electronic_ISBN :
2160-7508
DOI :
10.1109/CVPRW.2008.4563081