Visualize a Static Dense 2D Level Set as Elevation Map#
Synopsis#
Convert a binary mask into a dense level-set function and write the function values as an image. Rendered as a height field, these values form an elevation map whose zero level is the contour. The mask comes from an Otsu threshold of the input image.
Results#
Input image#
Code#
C++#
#include "itkBinaryImageToLevelSetImageAdaptor.h"
#include "itkImageFileReader.h"
#include "itkImageFileWriter.h"
#include "itkLevelSetDenseImage.h"
#include "itkOtsuMultipleThresholdsImageFilter.h"
#include "itkRescaleIntensityImageFilter.h"
int
main(int argc, char * argv[])
{
if (argc != 3)
{
std::cerr << "Missing Arguments" << std::endl;
std::cerr << argv[0] << std::endl;
std::cerr << "<Input Image> <Output Image>" << std::endl;
return EXIT_FAILURE;
}
constexpr unsigned int Dimension = 2;
using InputPixelType = unsigned char;
using InputImageType = itk::Image<InputPixelType, Dimension>;
InputImageType::Pointer input = itk::ReadImage<InputImageType>(argv[1]);
using LevelSetPixelType = float;
using LevelSetImageType = itk::Image<LevelSetPixelType, Dimension>;
using LevelSetType = itk::LevelSetDenseImage<LevelSetImageType>;
// Generate a binary mask that will be used as initialization for the level
// set.
using OtsuFilterType = itk::OtsuMultipleThresholdsImageFilter<InputImageType, LevelSetImageType>;
auto otsu = OtsuFilterType::New();
otsu->SetInput(input);
otsu->SetNumberOfHistogramBins(256);
otsu->SetNumberOfThresholds(1);
using RescaleType = itk::RescaleIntensityImageFilter<LevelSetImageType, LevelSetImageType>;
auto rescaler = RescaleType::New();
rescaler->SetInput(otsu->GetOutput());
rescaler->SetOutputMinimum(0);
rescaler->SetOutputMaximum(1);
rescaler->Update();
// Convert the binary mask to a level-set function
using BinaryImageToLevelSetType = itk::BinaryImageToLevelSetImageAdaptor<LevelSetImageType, LevelSetType>;
auto adaptor = BinaryImageToLevelSetType::New();
adaptor->SetInputImage(rescaler->GetOutput());
adaptor->Initialize();
LevelSetType::Pointer levelSet = adaptor->GetModifiableLevelSet();
try
{
itk::WriteImage(levelSet->GetImage(), argv[2]);
}
catch (const itk::ExceptionObject & error)
{
std::cerr << "Error: " << error << std::endl;
return EXIT_FAILURE;
}
return EXIT_SUCCESS;
}
Classes demonstrated#
-
template<typename TImage>
class LevelSetDenseImage : public itk::DiscreteLevelSetImage<TImage::PixelType, TImage::ImageDimension> Base class for the “dense” representation of a level-set function on one image.
This representation is a “dense” level-set function, i.e. it defines a level-set function on a grid (more precisely the underlying structure is an Image).
- Todo:
Think about using image iterators instead of GetPixel()
- Template Parameters:
TImage – Input image type of the level set function
