Load CT (3D) volume from database
* If database contains a CT, that can be imported. * Full pipeline from DataView to itkImageProcessor. * No checks on CT selection in DataView. * No feedback of data loaded from RegistrationView to DataView.
This commit is contained in:
@ -284,12 +284,12 @@ void itkImageProcessor::SetCustom_ImportTransform(double dTx,
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}
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void itkImageProcessor::SetCustom_ProjectionCenterOffsetFixedAxes_IEC(
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double dX1,
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double dY1,
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double dZ1,
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double dX2,
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double dY2,
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double dZ2)
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double dX1,
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double dY1,
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double dZ1,
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double dX2,
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double dY2,
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double dZ2)
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{
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typedef itk::Point<double, 3> PointType;
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@ -369,6 +369,82 @@ void itkImageProcessor::SetCustom_2Dsize(int nX1, int nY1,int nX2,int nY2)
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//TODO UPDATE TO FOLLOW
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}
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int itkImageProcessor::load3DSerieFromFiles( std::vector<std::string> v_fnames){
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tPatOrientation m_PatOrientation
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= tPatOrientation::NotDefined;
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try
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{
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using ImageIOType = itk::GDCMImageIO;
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ImageIOType::Pointer dicomIO = ImageIOType::New();
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ImageSeriesReaderType3D::Pointer
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imageSeriesReader3D = ImageSeriesReaderType3D::New();
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imageSeriesReader3D->SetImageIO(dicomIO);
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imageSeriesReader3D->SetFileNames(v_fnames);
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imageSeriesReader3D->SetNumberOfWorkUnits(8);
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imageSeriesReader3D->ForceOrthogonalDirectionOff(); // properly read CTs with gantry tilt
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imageSeriesReader3D->Update();
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if(v_fnames.size()>0){
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gdcm::Reader R;
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R.SetFileName(v_fnames.at(0).c_str());
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if(!R.Read())
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{
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cerr<<"ERROR: cannot read file: "<<v_fnames.at(0).c_str()<<endl;
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return -1;
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}
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const gdcm::File &file = R.GetFile();
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const gdcm::DataSet &ds = file.GetDataSet();
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char* sTmpString = new char [255];
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strcpy( sTmpString,gGetStringValueFromTag( gdcm::Tag(0x0018,0x5100), ds));
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*std::remove(sTmpString, sTmpString + strlen(sTmpString), ' ') = 0;
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if(!strcmp(sTmpString,ImageOrientationStrings[eImageOrientationType::HFS])){
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m_PatOrientation = eImageOrientationType::HFS;
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} else if(!strcmp(sTmpString,ImageOrientationStrings[eImageOrientationType::FFS])){
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m_PatOrientation = eImageOrientationType::FFS;
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} else {
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m_PatOrientation = eImageOrientationType::NotDefined;
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}
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delete [] (sTmpString);
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} else {
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return -1;
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}
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CastFilterType3D::Pointer caster3D =
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CastFilterType3D::New();
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caster3D->SetInput(imageSeriesReader3D->GetOutput());
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caster3D->Update();
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m_VolumeSourceDupli->SetInputImage(caster3D->GetOutput());
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m_VolumeSourceDupli->Update();
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caster3D = NULL;
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}
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catch (itk::ExceptionObject & ex)
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{
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std::cout << ex << std::endl;
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return EXIT_FAILURE;
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}
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InternalImageType::Pointer m_InputImage =
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m_VolumeSourceDupli->GetOutput();
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return
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this->fill3DVolumeMeta(m_InputImage, m_PatOrientation);
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}
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int itkImageProcessor::load3DSerie(const char * pcDirName)
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{
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@ -493,9 +569,17 @@ int itkImageProcessor::load3DSerie(const char * pcDirName)
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return EXIT_FAILURE;
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}
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InternalImageType::Pointer m_InputImage =
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m_VolumeSourceDupli->GetOutput();
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return
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this->fill3DVolumeMeta(m_InputImage, m_PatOrientation);
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}
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/** Fill Meta after 3D volume load */
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int itkImageProcessor::fill3DVolumeMeta(
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InternalImageType::Pointer m_InputImage,
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tPatOrientation m_PatOrientation){
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if(m_CTMetaInfo != NULL){
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@ -597,9 +681,9 @@ int itkImageProcessor::load3DSerie(const char * pcDirName)
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image3DIn =
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m_3DInputChangeInformationToZero->GetOutput();
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return EXIT_SUCCESS;
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}
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const std::vector <double> itkImageProcessor::GetRTImportOffset()
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@ -1176,7 +1260,7 @@ void itkImageProcessor::InitializeProjector()
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//AAAAAA TODOOOOO CERCA
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ImageType3D::PointType pFakeIsoLPS =
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m_DRTImage1MetaInfo->GetProjectionOriginLPS();
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m_DRTImage1MetaInfo->GetProjectionOriginLPS();
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//ImageType3D::PointType pFakeIsoLPS =
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// m_CTMetaInfo->GetProjectionOriginLPS(
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@ -1249,7 +1333,7 @@ void itkImageProcessor::InitializeProjector()
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if(m_RTMetaInfo == NULL)
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{
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ImageType3D::PointType pFakeIsoLPS =
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m_DRTImage2MetaInfo->GetProjectionOriginLPS();
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m_DRTImage2MetaInfo->GetProjectionOriginLPS();
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//ImageType3D::PointType pFakeIsoLPS =
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// m_CTMetaInfo->GetProjectionOriginLPS(
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@ -1317,17 +1401,17 @@ void itkImageProcessor::InitializeProjector()
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// // 2D Image 2
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// interpolator2->SetProjectionAngle(
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// dtr *
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// m_DRTImage2MetaInfo->GetProjectionAngleLPS() );
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// interpolator2->SetFocalPointToIsocenterDistance(
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// m_DRTImage2MetaInfo->GetSCD());
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// interpolator2->SetThreshold(
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// m_DRTGeometryMetaInfo->GetIntensityThreshold()
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// );
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// interpolator2->SetTransform(transform);
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// interpolator2->Initialize();
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// // 2D Image 2
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// interpolator2->SetProjectionAngle(
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// dtr *
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// m_DRTImage2MetaInfo->GetProjectionAngleLPS() );
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// interpolator2->SetFocalPointToIsocenterDistance(
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// m_DRTImage2MetaInfo->GetSCD());
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// interpolator2->SetThreshold(
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// m_DRTGeometryMetaInfo->GetIntensityThreshold()
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// );
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// interpolator2->SetTransform(transform);
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// interpolator2->Initialize();
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@ -1518,10 +1602,10 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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ImageType3D::PointType NominalIsocenterZero_wZcorrectionLPS;
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NominalIsocenterZero_wZcorrectionLPS =
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m_CTMetaInfo->GetProjectionOriginLPSZero(
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m_DRTGeometryMetaInfo->GetProjectionCenter()
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);
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NominalIsocenterZero_wZcorrectionLPS =
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m_CTMetaInfo->GetProjectionOriginLPSZero(
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m_DRTGeometryMetaInfo->GetProjectionCenter()
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);
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std::cout<< "///////////////// PGEOM META BEG ///////////////" <<std::endl;
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@ -1571,13 +1655,13 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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NominalIsocenter_wZcorrectionLPS//m_DRTImage1MetaInfo->GetProjectionOriginLPS()
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);
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std::cout<<"Bounds1: "
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std::cout<<"Bounds1: "
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<<vBounds.data()[0]<<" "
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<<vBounds.data()[1]<<" "
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<<vBounds.data()[2]<<" "
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<<vBounds.data()[3]<<" "
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<<vBounds.data()[4]<<" "
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<<vBounds.data()[5]<<std::endl;
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<<vBounds.data()[1]<<" "
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<<vBounds.data()[2]<<" "
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<<vBounds.data()[3]<<" "
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<<vBounds.data()[4]<<" "
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<<vBounds.data()[5]<<std::endl;
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m_DRTImage1MetaInfo->SetSizeWithBounds(
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vBounds.data(),
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@ -1593,8 +1677,8 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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m_DRTImage1MetaInfo->GetCOV(),
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NominalIsocenter_wZcorrectionLPS,//m_DRTImage1MetaInfo->GetProjectionOriginLPS(),
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this->CalcProjectionAngleLPS(
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle1IEC() ),
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle1IEC() ),
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//m_DRTGeometryMetaInfo->GetProjectionAngle1IEC(),// m_DRTImage1MetaInfo->GetProjectionAngleLPS(),
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Std_DRT2LPS
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)
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@ -1605,9 +1689,9 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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m_DRTImage1MetaInfo->SetImageDirectionsLPS(
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CalcDRTImageDirections(
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this->CalcProjectionAngleLPS(
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle1IEC()),
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//m_DRTGeometryMetaInfo->GetProjectionAngle1IEC(),//m_DRTImage1MetaInfo->GetProjectionAngleLPS(),
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle1IEC()),
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//m_DRTGeometryMetaInfo->GetProjectionAngle1IEC(),//m_DRTImage1MetaInfo->GetProjectionAngleLPS(),
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Std_DRT2LPS)
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);
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@ -1648,15 +1732,15 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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m_DRTImage2MetaInfo->SetProjectionOriginLPS(
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CalibratedIsocenterLPS);
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// m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter2())
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// );
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// m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter2())
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// );
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m_DRTImage2MetaInfo->SetProjectionOriginLPSZero(
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CalibratedIsocenterZeroLPS);
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// m_CTMetaInfo->GetProjectionOriginLPSZero(
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// m_DRTGeometryMetaInfo->GetProjectionCenter2())
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// );
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// m_CTMetaInfo->GetProjectionOriginLPSZero(
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// m_DRTGeometryMetaInfo->GetProjectionCenter2())
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// );
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vBounds.clear();
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vBounds = m_CTMetaInfo->CalculateRegions(
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@ -1664,12 +1748,12 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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);
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std::cout<<"Bounds2: "
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<<vBounds.data()[0]<<" "
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<<vBounds.data()[1]<<" "
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<<vBounds.data()[2]<<" "
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<<vBounds.data()[3]<<" "
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<<vBounds.data()[4]<<" "
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<<vBounds.data()[5]<<std::endl;
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<<vBounds.data()[0]<<" "
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<<vBounds.data()[1]<<" "
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<<vBounds.data()[2]<<" "
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<<vBounds.data()[3]<<" "
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<<vBounds.data()[4]<<" "
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<<vBounds.data()[5]<<std::endl;
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m_DRTImage2MetaInfo->SetSizeWithBounds(
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vBounds.data(),
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@ -1683,9 +1767,9 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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m_DRTImage2MetaInfo->GetCOV(),
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NominalIsocenter_wZcorrectionLPS,//m_DRTImage2MetaInfo->GetProjectionOriginLPS(),
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this->CalcProjectionAngleLPS(
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle2IEC()) ,
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//m_DRTGeometryMetaInfo->GetProjectionAngle2IEC(),//m_DRTImage2MetaInfo->GetProjectionAngleLPS(),
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle2IEC()) ,
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//m_DRTGeometryMetaInfo->GetProjectionAngle2IEC(),//m_DRTImage2MetaInfo->GetProjectionAngleLPS(),
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Std_DRT2LPS
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)
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);
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@ -1693,8 +1777,8 @@ void itkImageProcessor::UpdateProjectionGeometryMeta(){
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m_DRTImage2MetaInfo->SetImageDirectionsLPS(
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CalcDRTImageDirections(
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this->CalcProjectionAngleLPS(
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle2IEC()) ,
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m_CTMetaInfo->GetPatientOrientation(),
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m_DRTGeometryMetaInfo->GetProjectionAngle2IEC()) ,
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//m_DRTGeometryMetaInfo->GetProjectionAngle2IEC(),//m_DRTImage2MetaInfo->GetProjectionAngleLPS(),
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Std_DRT2LPS)
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);
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@ -1773,8 +1857,8 @@ void itkImageProcessor::GetProjectionImages(){
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ImageType3D::PointType pFakeIsoLPS =
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m_DRTImage1MetaInfo->GetProjectionOriginLPS();
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//m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter());
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//m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter());
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std::cout<<"pFakeIsoLPS: "<<std::endl;
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@ -1818,9 +1902,9 @@ void itkImageProcessor::GetProjectionImages(){
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CurrTransform->GetAngleZ()
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);
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std::cout<< "itkImageProcessor::GetProjectionImages" <<std::endl;
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std::cout<< "itkImageProcessor::GetProjectionImages" <<std::endl;
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// AAAAAAA TODOOO CERCAA
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// AAAAAAA TODOOO CERCAA
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transform1 ->SetCenter(
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m_DRTImage1MetaInfo->GetProjectionOriginLPSZero());
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@ -1851,65 +1935,65 @@ void itkImageProcessor::GetProjectionImages(){
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//CurrTransform->SetComputeZYX(true);
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//CurrTransform->SetIdentity();
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if(m_RTMetaInfo == NULL)
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{
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if(m_RTMetaInfo == NULL)
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{
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ImageType3D::PointType pFakeIsoLPS =
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m_DRTImage2MetaInfo->GetProjectionOriginLPS();
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//m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter());
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ImageType3D::PointType pFakeIsoLPS =
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m_DRTImage2MetaInfo->GetProjectionOriginLPS();
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//m_CTMetaInfo->GetProjectionOriginLPS(
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// m_DRTGeometryMetaInfo->GetProjectionCenter());
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std::cout<<"pFakeIsoLPS: "<<std::endl;
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std::cout<<"pFakeIsoLPS: "<<std::endl;
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CurrTransform =
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CalculateInternalTransform(
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ZeroPoint,
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ZeroPoint,
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m_TransformMetaInfo->GetTranslations(),
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m_TransformMetaInfo->GetRotations(),
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m_DRTImage2MetaInfo->GetProjectionOriginLPS(),
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pFakeIsoLPS,
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ZeroPoint,
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IECtoLPS_Directions
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);
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std::cout<<"pFakeIsoLPS: "<<std::endl;
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} else {
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CurrTransform =
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CalculateInternalTransform(
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ZeroPoint ,
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m_DRTGeometryMetaInfo->GetIECS2IECScannerR(),
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m_TransformMetaInfo->GetTranslations(),
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m_TransformMetaInfo->GetRotations(),
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m_DRTImage2MetaInfo->GetProjectionOriginLPS(),
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m_RTMetaInfo->GetIsocenterLPS() - m_CTMetaInfo->GetImportOffset(),
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m_CTMetaInfo->GetImportOffset(),
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IECtoLPS_Directions
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);
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}
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transform2->SetComputeZYX(true);
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transform2->SetIdentity();
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transform2->SetTranslation(
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CurrTransform->GetTranslation());
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transform2->SetRotation(
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CurrTransform->GetAngleX(),
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CurrTransform->GetAngleY(),
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CurrTransform->GetAngleZ()
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CurrTransform =
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CalculateInternalTransform(
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ZeroPoint,
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ZeroPoint,
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m_TransformMetaInfo->GetTranslations(),
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m_TransformMetaInfo->GetRotations(),
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m_DRTImage2MetaInfo->GetProjectionOriginLPS(),
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pFakeIsoLPS,
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ZeroPoint,
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IECtoLPS_Directions
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);
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std::cout<<"pFakeIsoLPS: "<<std::endl;
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transform2 ->SetCenter(
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m_DRTImage2MetaInfo->GetProjectionOriginLPSZero());
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} else {
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CurrTransform =
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CalculateInternalTransform(
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ZeroPoint ,
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m_DRTGeometryMetaInfo->GetIECS2IECScannerR(),
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m_TransformMetaInfo->GetTranslations(),
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m_TransformMetaInfo->GetRotations(),
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m_DRTImage2MetaInfo->GetProjectionOriginLPS(),
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m_RTMetaInfo->GetIsocenterLPS() - m_CTMetaInfo->GetImportOffset(),
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m_CTMetaInfo->GetImportOffset(),
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IECtoLPS_Directions
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);
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}
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//transform2 ->Print(std::cout);
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transform2->SetComputeZYX(true);
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transform2->SetIdentity();
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transform2->SetTranslation(
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CurrTransform->GetTranslation());
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transform2->SetRotation(
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CurrTransform->GetAngleX(),
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CurrTransform->GetAngleY(),
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CurrTransform->GetAngleZ()
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);
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transform2 ->SetCenter(
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m_DRTImage2MetaInfo->GetProjectionOriginLPSZero());
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//transform2 ->Print(std::cout);
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@ -1928,10 +2012,10 @@ void itkImageProcessor::GetProjectionImages(){
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imageDRT2In = filter2->GetOutput();
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std::cout<< "itkImageProcessor::GetProjectionImages END" <<std::endl;
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// std::cout<<"MMMMM: "<<
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// interpolator1->GetInverseTransform()->GetMatrix()<<std::endl;
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// std::cout<<"MMMMM: "<<
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// interpolator1->GetInverseTransform()->GetTranslation()<<std::endl;
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// std::cout<<"MMMMM: "<<
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// interpolator1->GetInverseTransform()->GetMatrix()<<std::endl;
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// std::cout<<"MMMMM: "<<
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// interpolator1->GetInverseTransform()->GetTranslation()<<std::endl;
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}
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||||
|
@ -73,6 +73,8 @@ public:
|
||||
|
||||
/** Input data load methods*/
|
||||
int load3DSerie(const char* );
|
||||
int load3DSerieFromFiles( std::vector<std::string> );
|
||||
|
||||
int load2D(const char *);
|
||||
|
||||
void loadRTPlanInfo(double, double, double, double, double ,double);
|
||||
@ -151,13 +153,13 @@ public:
|
||||
|
||||
protected:
|
||||
/** Various pixel types */
|
||||
using InternalPixelType = float;
|
||||
using PixelType2D = short;
|
||||
using PixelType3D = short;
|
||||
using OutputPixelType = unsigned char;
|
||||
using InternalPixelType = float;
|
||||
using PixelType2D = short;
|
||||
using PixelType3D = short;
|
||||
using OutputPixelType = unsigned char;
|
||||
|
||||
using ImageType3D = itk::Image<PixelType3D, Dimension>;
|
||||
using InternalImageType = itk::Image<InternalPixelType, Dimension>;
|
||||
using ImageType3D = itk::Image<PixelType3D, Dimension>;
|
||||
using InternalImageType = itk::Image<InternalPixelType, Dimension>;
|
||||
|
||||
itkImageProcessor();
|
||||
virtual ~itkImageProcessor();
|
||||
@ -167,6 +169,9 @@ private:
|
||||
itkImageProcessor(const Self&); //purposely not implemented
|
||||
void operator=(const Self&); //purposely not implemented
|
||||
|
||||
/** Fill Meta after 3D volume load */
|
||||
int fill3DVolumeMeta(InternalImageType::Pointer,
|
||||
tPatOrientation);
|
||||
|
||||
/** Image types */
|
||||
using ImageType2D = itk::Image<PixelType3D, Dimension>;
|
||||
|
Reference in New Issue
Block a user