00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017 #ifndef __itkGeodesicActiveContourLevelSetFunction_h_
00018 #define __itkGeodesicActiveContourLevelSetFunction_h_
00019
00020 #include "itkSegmentationLevelSetFunction.h"
00021
00022 namespace itk {
00023
00074 template <class TImageType, class TFeatureImageType = TImageType>
00075 class ITK_EXPORT GeodesicActiveContourLevelSetFunction
00076 : public SegmentationLevelSetFunction<TImageType, TFeatureImageType>
00077 {
00078 public:
00080 typedef GeodesicActiveContourLevelSetFunction Self;
00081 typedef SegmentationLevelSetFunction<TImageType, TFeatureImageType> Superclass;
00082 typedef SmartPointer<Self> Pointer;
00083 typedef SmartPointer<const Self> ConstPointer;
00084 typedef TFeatureImageType FeatureImageType;
00085
00087 itkNewMacro(Self);
00088
00090 itkTypeMacro( GeodesicActiveContourLevelSetFunction, SegmentationLevelSetFunction );
00091
00093 typedef typename Superclass::ImageType ImageType;
00094 typedef typename Superclass::NeighborhoodType NeighborhoodType;
00095 typedef typename Superclass::ScalarValueType ScalarValueType;
00096 typedef typename Superclass::FeatureScalarType FeatureScalarType;
00097 typedef typename Superclass::RadiusType RadiusType;
00098 typedef typename Superclass::FloatOffsetType FloatOffsetType;
00099 typedef typename Superclass::VectorImageType VectorImageType;
00100 typedef typename Superclass::GlobalDataStruct GlobalDataStruct;
00101
00103 itkStaticConstMacro(ImageDimension, unsigned int,
00104 Superclass::ImageDimension);
00105
00107 virtual void CalculateSpeedImage();
00108
00110 virtual void CalculateAdvectionImage();
00111
00113 virtual ScalarValueType CurvatureSpeed(const NeighborhoodType & neighborhood,
00114 const FloatOffsetType & offset, GlobalDataStruct *gd ) const
00115 { return PropagationSpeed( neighborhood, offset, gd ); }
00116
00119 void SetDerivativeSigma( const double v )
00120 { m_DerivativeSigma = v; }
00121 double GetDerivativeSigma()
00122 { return m_DerivativeSigma; };
00123
00124 virtual void Initialize(const RadiusType &r)
00125 {
00126 Superclass::Initialize(r);
00127
00128 this->SetAdvectionWeight( NumericTraits<ScalarValueType>::One );
00129 this->SetPropagationWeight( NumericTraits<ScalarValueType>::One );
00130 this->SetCurvatureWeight( NumericTraits<ScalarValueType>::One );
00131 }
00132
00133 protected:
00134 GeodesicActiveContourLevelSetFunction()
00135 {
00136 this->SetAdvectionWeight( NumericTraits<ScalarValueType>::One );
00137 this->SetPropagationWeight( NumericTraits<ScalarValueType>::One );
00138 this->SetCurvatureWeight( NumericTraits<ScalarValueType>::One );
00139
00140 m_DerivativeSigma = 1.0;
00141 }
00142 virtual ~GeodesicActiveContourLevelSetFunction() {}
00143
00144 GeodesicActiveContourLevelSetFunction(const Self&);
00145 void operator=(const Self&);
00146
00147 void PrintSelf(std::ostream& os, Indent indent) const
00148 {
00149 Superclass::PrintSelf(os, indent );
00150 os << indent << "DerivativeSigma: " << m_DerivativeSigma << std::endl;
00151 }
00152
00153 private:
00154
00155 double m_DerivativeSigma;
00156
00157 };
00158
00159 }
00160
00161 #ifndef ITK_MANUAL_INSTANTIATION
00162 #include "itkGeodesicActiveContourLevelSetFunction.txx"
00163 #endif
00164
00165 #endif