Publication | Open Access
Globally optimal regions and boundaries as minimum ratio weight cycles
168
Citations
27
References
2001
Year
Mathematical ProgrammingLarge-scale Global OptimizationEngineeringOptimal RegionsOperations ResearchEnergy FunctionalImage AnalysisPattern RecognitionVisual ComputingCombinatorial OptimizationComputational GeometryEdge DetectionGeometric ModelingMachine VisionNew FormGeographyMedical Image ComputingVariable Neighborhood SearchComputer VisionNatural SciencesOptimization ProblemSeam CarvingIntensity GradientsResource AllocationImage SegmentationMultiscale Modeling
We describe a new form of energy functional for the modeling and identification of regions in images. The energy is defined on the space of boundaries in the image domain and can incorporate very general combinations of modeling information both from the boundary (intensity gradients, etc.) and from the interior of the region (texture, homogeneity, etc.). We describe two polynomial-time digraph algorithms for finding the global minima of this energy. One of the algorithms is completely general, minimizing the functional for any choice of modeling information. It runs in a few seconds on a 256/spl times/256 image. The other algorithm applies to a subclass of functionals, but has the advantage of being extremely parallelizable. Neither algorithm requires initialization.
| Year | Citations | |
|---|---|---|
Page 1
Page 1