ITK/Examples/Images/NormalizedCorrelationImageFilter: Difference between revisions

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Line 45: Line 45:
   start.Fill(50);
   start.Fill(50);


   FloatImageType::SizeType size;
   FloatImageType::SizeType patchSize;
   size.Fill(51);
   patchSize.Fill(51);


   FloatImageType::RegionType desiredRegion(start,size);
   FloatImageType::RegionType desiredRegion(start,patchSize);


   extractFilter->SetRegionOfInterest(desiredRegion);
   extractFilter->SetRegionOfInterest(desiredRegion);
Line 65: Line 65:
   radius[0] = (radius[0]-1) / 2;
   radius[0] = (radius[0]-1) / 2;
   radius[1] = (radius[1]-1) / 2;
   radius[1] = (radius[1]-1) / 2;
 
 
   kernelOperator.CreateToRadius(radius);
   kernelOperator.CreateToRadius(radius);


Line 81: Line 81:
   minimumMaximumImageCalculatorFilter->Compute();
   minimumMaximumImageCalculatorFilter->Compute();


   std::cout << "Maximum: " << minimumMaximumImageCalculatorFilter->GetIndexOfMaximum() << std::endl;
  itk::Index<2> maximumCorrelationPatchCenter = minimumMaximumImageCalculatorFilter->GetIndexOfMaximum();
   std::cout << "Maximum: " << maximumCorrelationPatchCenter << std::endl;


   // Note that the best correlation is at the center of the patch we extracted (ie. (75, 75) rather than the corner (50,50)
   // Note that the best correlation is at the center of the patch we extracted (ie. (75, 75) rather than the corner (50,50)
Line 112: Line 113:
   writer->Update();
   writer->Update();
   }
   }
  // Extract the best matching patch
  FloatImageType::IndexType bestPatchStart;
  bestPatchStart[0] = maximumCorrelationPatchCenter[0] - radius[0];
  bestPatchStart[1] = maximumCorrelationPatchCenter[1] - radius[1];
  FloatImageType::RegionType bestPatchRegion(bestPatchStart,patchSize);
  ExtractFilterType::Pointer bestPatchExtractFilter = ExtractFilterType::New();
  bestPatchExtractFilter->SetRegionOfInterest(bestPatchRegion);
  bestPatchExtractFilter->SetInput(reader->GetOutput());
  bestPatchExtractFilter->Update();


   QuickView viewer;
   QuickView viewer;
Line 117: Line 130:
   viewer.AddImage(extractFilter->GetOutput());
   viewer.AddImage(extractFilter->GetOutput());
   viewer.AddImage(correlationFilter->GetOutput());
   viewer.AddImage(correlationFilter->GetOutput());
  viewer.AddImage(bestPatchExtractFilter->GetOutput());
   viewer.Visualize();
   viewer.Visualize();



Revision as of 01:25, 4 February 2011

This example extracts a patch from an image and searches for it using normalized correlation. The output of the correlation filter is a correlation map. The maximum of this map is the "best" position of the query patch. We know the correct location because we extracted the patch from the image, so it will match exactly.

NormalizedCorrelationImageFilter.cxx

<source lang="cpp">

  1. include "itkImage.h"
  2. include "itkImageFileReader.h"
  3. include "itkNormalizedCorrelationImageFilter.h"
  4. include "itkRegionOfInterestImageFilter.h"
  5. include "itkImageKernelOperator.h"
  6. include "itkRescaleIntensityImageFilter.h"
  7. include "itkImageFileWriter.h"
  8. include "itkMinimumMaximumImageCalculator.h"
  9. include "QuickView.h"
  1. include <iostream>
  2. include <string>

typedef itk::Image<float, 2> FloatImageType; typedef itk::Image<unsigned char, 2> UnsignedCharImageType;

int main(int argc, char *argv[]) {

 if(argc < 2)
   {
   std::cerr << "Required: filename" << std::endl;
   return EXIT_FAILURE;
   }
 std::string filename = argv[1];
 typedef itk::ImageFileReader<FloatImageType> ReaderType;
 // Read the image
 ReaderType::Pointer reader = ReaderType::New();
 reader->SetFileName(filename.c_str());
 reader->Update();
 // Extract a small region
 typedef itk::RegionOfInterestImageFilter< FloatImageType,
                                           FloatImageType > ExtractFilterType;
 ExtractFilterType::Pointer extractFilter = ExtractFilterType::New();
 FloatImageType::IndexType start;
 start.Fill(50);
 FloatImageType::SizeType patchSize;
 patchSize.Fill(51);
 FloatImageType::RegionType desiredRegion(start,patchSize);
 extractFilter->SetRegionOfInterest(desiredRegion);
 extractFilter->SetInput(reader->GetOutput());
 extractFilter->Update();
 // Perform normalized correlation
 // <input type, mask type (not used), output type>
 typedef itk::NormalizedCorrelationImageFilter<FloatImageType, FloatImageType, FloatImageType> CorrelationFilterType;
 itk::ImageKernelOperator<float> kernelOperator;
 kernelOperator.SetImageKernel(extractFilter->GetOutput());
 // The radius of the kernel must be the radius of the patch, NOT the size of the patch
 itk::Size<2> radius = extractFilter->GetOutput()->GetLargestPossibleRegion().GetSize();
 radius[0] = (radius[0]-1) / 2;
 radius[1] = (radius[1]-1) / 2;
 kernelOperator.CreateToRadius(radius);
 CorrelationFilterType::Pointer correlationFilter = CorrelationFilterType::New();
 correlationFilter->SetInput(reader->GetOutput());
 correlationFilter->SetTemplate(kernelOperator);
 correlationFilter->Update();
 typedef itk::MinimumMaximumImageCalculator <FloatImageType>
         MinimumMaximumImageCalculatorType;
 MinimumMaximumImageCalculatorType::Pointer minimumMaximumImageCalculatorFilter
         = MinimumMaximumImageCalculatorType::New ();
 minimumMaximumImageCalculatorFilter->SetImage(correlationFilter->GetOutput());
 minimumMaximumImageCalculatorFilter->Compute();
 itk::Index<2> maximumCorrelationPatchCenter = minimumMaximumImageCalculatorFilter->GetIndexOfMaximum();
 std::cout << "Maximum: " << maximumCorrelationPatchCenter << std::endl;
 // Note that the best correlation is at the center of the patch we extracted (ie. (75, 75) rather than the corner (50,50)
 typedef itk::RescaleIntensityImageFilter< FloatImageType, UnsignedCharImageType > RescaleFilterType;
 typedef itk::ImageFileWriter<UnsignedCharImageType> WriterType;
 {
 RescaleFilterType::Pointer rescaleFilter = RescaleFilterType::New();
 rescaleFilter->SetInput(correlationFilter->GetOutput());
 rescaleFilter->SetOutputMinimum(0);
 rescaleFilter->SetOutputMaximum(255);
 rescaleFilter->Update();
 WriterType::Pointer writer = WriterType::New();
 writer->SetInput(rescaleFilter->GetOutput());
 writer->SetFileName("correlation.png");
 writer->Update();
 }
 {
 RescaleFilterType::Pointer rescaleFilter = RescaleFilterType::New();
 rescaleFilter->SetInput(extractFilter->GetOutput());
 rescaleFilter->SetOutputMinimum(0);
 rescaleFilter->SetOutputMaximum(255);
 rescaleFilter->Update();
 WriterType::Pointer writer = WriterType::New();
 writer->SetInput(rescaleFilter->GetOutput());
 writer->SetFileName("patch.png");
 writer->Update();
 }
 // Extract the best matching patch
 FloatImageType::IndexType bestPatchStart;
 bestPatchStart[0] = maximumCorrelationPatchCenter[0] - radius[0];
 bestPatchStart[1] = maximumCorrelationPatchCenter[1] - radius[1];
 FloatImageType::RegionType bestPatchRegion(bestPatchStart,patchSize);
 ExtractFilterType::Pointer bestPatchExtractFilter = ExtractFilterType::New();
 bestPatchExtractFilter->SetRegionOfInterest(bestPatchRegion);
 bestPatchExtractFilter->SetInput(reader->GetOutput());
 bestPatchExtractFilter->Update();
 QuickView viewer;
 viewer.AddImage(reader->GetOutput());
 viewer.AddImage(extractFilter->GetOutput());
 viewer.AddImage(correlationFilter->GetOutput());
 viewer.AddImage(bestPatchExtractFilter->GetOutput());
 viewer.Visualize();
 return EXIT_SUCCESS;

}

</source>

CMakeLists.txt

<source lang="cmake"> cmake_minimum_required(VERSION 2.6)

PROJECT(NormalizedCorrelationImageFilter)

include_directories(/home/doriad/ITKWikiExamples/ItkVtkGlue)

FIND_PACKAGE(VTK REQUIRED) INCLUDE(${VTK_USE_FILE})

FIND_PACKAGE(ITK REQUIRED) INCLUDE(${ITK_USE_FILE})

ADD_EXECUTABLE(NormalizedCorrelationImageFilter NormalizedCorrelationImageFilter.cpp /home/doriad/ITKWikiExamples/ItkVtkGlue/QuickView.cxx) TARGET_LINK_LIBRARIES(NormalizedCorrelationImageFilter vtkHybrid ITKBasicFilters ITKCommon ITKIO)

</source>