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A parallel and memory efficient algorithm for constructing the contour tree
36
Citations
38
References
2015
Year
Unknown Venue
EngineeringComputer ArchitectureSubdivision SurfaceComputer-aided DesignHigh Performance ComputingScalar FunctionImage AnalysisData ScienceComputing SystemsParallel ComputingComputational GeometryGeometry ProcessingGeometric ModelingMassively-parallel ComputingMachine VisionMemory Efficient AlgorithmComputer EngineeringComputer ScienceMedical Image ComputingData-intensive ComputingParallel VisualizationExternal-memory AlgorithmComputational ScienceGeometric AlgorithmGraph TheoryNatural SciencesMesh ReductionParallel ProgrammingContour TreeTopological StructureShape Modeling
The contour tree is a topological structure associated with a scalar function that tracks the connectivity of the evolving level sets of the function. It supports intuitive and interactive visual exploration and analysis of the scalar function. This paper describes a fast, parallel, and memory efficient algorithm for constructing the contour tree of a scalar function on shared memory systems. Comparisons with existing implementations show significant improvement in both the running time and the memory expended. The proposed algorithm is particularly suited for large datasets that do not fit in memory. For example, the contour tree for a scalar function defined on a 8.6 billion vertex domain (2048×2048×2048 volume data) can be efficiently constructed using less than 10GB of memory.
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