Title :
Adaptive parametrization of multivariate B-splines for image registration
Author :
Hansen, Michael Sass ; Larsen, Rasmus ; Glocker, Ben ; Navab, Nassir
Author_Institution :
Tech. Univ. of Denmark, Lyngby
Abstract :
We present an adaptive parametrization scheme for dynamic mesh refinement in the application of parametric image registration. The scheme is based on a refinement measure ensuring that the control points give an efficient representation of the warp fields, in terms of minimizing the registration cost function. In the current work we introduce multivariate B-splines as a novel alternative to the widely used tensor B-splines enabling us to make efficient use of the derived measure.The multivariate B-splines of order n are Cn- 1 smooth and are based on Delaunay configurations of arbitrary 2D or 3D control point sets. Efficient algorithms for finding the configurations are presented, and B-splines are through their flexibility shown to feature several advantages over the tensor B-splines. In spite of efforts to make the tensor product B-splines more flexible, the knots are still bound to reside on a regular grid. In contrast, by efficient non- constrained placement of the knots, the multivariate B- splines are shown to give a good representation of inho- mogeneous objects in natural settings. The wide applicability of the method is illustrated through its application on medical data and for optical flow estimation.
Keywords :
image registration; splines (mathematics); adaptive parametrization; dynamic mesh refinement; image registration; multivariate B-splines; Application software; Biomedical imaging; Biomedical optical imaging; Cost function; Current measurement; Image motion analysis; Image registration; Interpolation; Spline; Tensile stress;
Conference_Titel :
Computer Vision and Pattern Recognition, 2008. CVPR 2008. IEEE Conference on
Conference_Location :
Anchorage, AK
Print_ISBN :
978-1-4244-2242-5
Electronic_ISBN :
1063-6919
DOI :
10.1109/CVPR.2008.4587760