Publication | Open Access
A Fast Nonrigid Image Registration With Constraints on the Jacobian Using Large Scale Constrained Optimization
100
Citations
33
References
2008
Year
EngineeringSynthetic DeformationsImage AnalysisImage RegistrationCubic B-spline FieldComputational GeometryComputational AnatomyRadiologyGeometric ModelingMachine VisionMedical ImagingFloating ImageInverse ProblemsImage StitchingStructure From MotionMedical Image ComputingDeformation ReconstructionComputer VisionSpatial VerificationNatural SciencesBiomedical ImagingMulti-view GeometryMedical Image AnalysisImage Segmentation
This paper presents a new nonrigid monomodality image registration algorithm based on B-splines. The deformation is described by a cubic B-spline field and found by minimizing the energy between a reference image and a deformed version of a floating image. To penalize noninvertible transformation, we propose two different constraints on the Jacobian of the transformation and its derivatives. The problem is modeled by an inequality constrained optimization problem which is efficiently solved by a combination of the multipliers method and the L-BFGS algorithm to handle the large number of variables and constraints of the registration of 3-D images. Numerical experiments are presented on magnetic resonance images using synthetic deformations and atlas based segmentation.
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