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class | itk::AutomaticTopologyMeshSource< TOutputMesh > |
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class | itk::BinaryMask3DMeshSource< TInputImage, TOutputMesh > |
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class | itk::Mesh< TPixelType, VDimension, TMeshTraits >::BoundaryAssignmentIdentifier |
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class | itk::ConnectedRegionsMeshFilter< TInputMesh, TOutputMesh > |
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class | itk::ImageToMeshFilter< TInputImage, TOutputMesh > |
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class | itk::ImageToParametricSpaceFilter< TInputImage, TOutputMesh > |
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class | itk::InteriorExteriorMeshFilter< TInputMesh, TOutputMesh, TSpatialFunction > |
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class | itk::Mesh< TPixelType, VDimension, TMeshTraits > |
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class | itk::MeshRegion |
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class | itk::MeshSource< TOutputMesh > |
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class | itk::MeshToMeshFilter< TInputMesh, TOutputMesh > |
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class | itk::ParametricSpaceToImageSpaceMeshFilter< TInputMesh, TOutputMesh > |
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class | itk::RegularSphereMeshSource< TOutputMesh > |
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class | itk::SimplexMeshVolumeCalculator< TInputMesh >::SimplexCellVisitor |
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class | itk::SimplexMeshToTriangleMeshFilter< TInputMesh, TOutputMesh >::SimplexCellVisitor |
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class | itk::SimplexMeshAdaptTopologyFilter< TInputMesh, TOutputMesh >::SimplexCellVisitor |
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class | itk::SimplexMesh< TPixelType, VDimension, TMeshTraits > |
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class | itk::SimplexMeshAdaptTopologyFilter< TInputMesh, TOutputMesh > |
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class | itk::SimplexMeshGeometry |
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class | itk::SimplexMeshToTriangleMeshFilter< TInputMesh, TOutputMesh > |
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class | itk::SimplexMeshVolumeCalculator< TInputMesh > |
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class | itk::TransformMeshFilter< TInputMesh, TOutputMesh, TTransform > |
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class | itk::TriangleMeshToBinaryImageFilter< TInputMesh, TOutputImage > |
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class | itk::TriangleMeshToSimplexMeshFilter< TInputMesh, TOutputMesh > |
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class | itk::VTKPolyDataReader< TOutputMesh > |
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class | itk::VTKPolyDataWriter< TInputMesh > |
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class | itk::WarpMeshFilter< TInputMesh, TOutputMesh, TDisplacementField > |
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The Mesh module contains the datastructures required for representing N-Dimensional meshes in ITK. The Mesh class is heavily templated and very generic. It can represent a K-Complex in an N-Dimensional space. Many of the Mesh properties are defined in Traits helper classes, and then propagate to the components of the Mesh. These classes are typically used for representing the outcome of image segmentation.
- Dependencies:
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