/usr/include/IGSTK/igstkMR3DImageToUS3DImageRegistration.h is in libigstk4-dev 4.4.0-2build2.
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Program: Image Guided Surgery Software Toolkit
Module: $RCSfile: igstkMR3DImageToUS3DImageRegistration.h,v $
Language: C++
Date: $Date: 2008-02-11 01:41:50 $
Version: $Revision: 1.6 $
Copyright (c) ISC Insight Software Consortium. All rights reserved.
See IGSTKCopyright.txt or http://www.igstk.org/copyright.htm for details.
This software is distributed WITHOUT ANY WARRANTY; without even
the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
PURPOSE. See the above copyright notices for more information.
=========================================================================*/
#ifndef __igstkMR3DImageToUS3DImageRegistration_h
#define __igstkMR3DImageToUS3DImageRegistration_h
#ifdef _MSC_VER
#pragma warning ( disable : 4018 )
//Warning about: identifier was truncated to '255' characters in the debug
//information (MVC6.0 Debug)
#pragma warning( disable : 4284 )
#endif
#include "igstkObject.h"
#include "igstkStateMachine.h"
#include "igstkEvents.h"
#include "igstkMacros.h"
#include "igstkUSImageObject.h"
#include "igstkMRImageSpatialObject.h"
#include "itkImage.h"
#include "itkIndex.h"
#include "itkVectorContainer.h"
namespace igstk
{
/** \class MR3DImageToUS3DImageRegistration
*
* \brief This class registers a 3D MR image with a 3D Utrasound image.
*
* This class registers two 3D images, one from 3D Ultrasund and the other from
* MR modality. The interpolator used is linear to perform the registration
* with a minimum amount of time. The current metric evaluating the match
* between the two images is a mean square. The optimizer used in this class
* is a regular step gradient descent optimizer.
*
* \image html igstkMR3DImageToUS3DImageRegistration.png
* "MR to UltraSound Image Registration State Machine Diagram"
* \image latex igstkMR3DImageToUS3DImageRegistration.eps
* "MR to UltraSound Image Registration State Machine Diagram"
*
* \ingroup Registration
*/
class MR3DImageToUS3DImageRegistration : public Object
{
public:
/** Macro with standard traits declarations. */
igstkStandardClassTraitsMacro( MR3DImageToUS3DImageRegistration, Object );
public:
/** Typedefs for the internal computation */
typedef Transform TransformType;
public:
/** Method to check whether a valid calibration is calculated */
igstkGetMacro( ValidMR3DImageToUS3DImageRegistration, bool );
/** Method to get the number of samples used to calibrate */
unsigned int GetNumberOfSamples() const;
/** Method invoked by the user to reset the calibration process */
void RequestReset();
/** Set the moving MR 3D Image */
void RequestSetMovingMR3D(MRImageSpatialObject* MRImage);
/** Set the fixed US 3D Image */
void RequestSetFixedUS3D(USImageObject* MRImage);
/** Method invoked by the user to start the registration */
void RequestCalculateRegistration();
/** Request to get the final transformation */
void RequestGetRegistrationTransform();
/** Request to set the initial transformation */
igstkSetMacro( InitialTransform, TransformType );
igstkGetMacro( InitialTransform, TransformType );
/** Declare the ImageReaderToImageSpatialObject class to be a friend
* in order to give it access to the private method GetITKImage(). */
igstkFriendClassMacro( igstk::USImageObject );
protected:
typedef TransformType::VersorType VersorType;
typedef TransformType::VectorType VectorType;
typedef TransformType::PointType PointType;
typedef VersorType::MatrixType MatrixType;
typedef itk::Index< 3 > IndexType;
typedef itk::Matrix< double, 4, 4 > Matrix4x4Type;
typedef itk::Image<double,3> ImageType;
typedef ImageType::SpacingType SpacingType;
typedef double ErrorType;
typedef vnl_matrix<double> VnlMatrixType;
typedef vnl_vector<double> VnlVectorType;
typedef vnl_svd<double> VnlSVDType;
typedef itk::VectorContainer<int,IndexType> InputIndexContainerType;
typedef InputIndexContainerType::Pointer InputIndexContainerPointerType;
typedef itk::VectorContainer<int,PointType> InputPointContainerType;
typedef InputPointContainerType::Pointer InputPointContainerPointerType;
typedef itk::VectorContainer<int,VersorType> InputVersorContainerType;
typedef InputVersorContainerType::Pointer InputVersorContainerPointerType;
typedef itk::VectorContainer<int,VectorType> InputVectorContainerType;
typedef InputVectorContainerType::Pointer InputVectorContainerPointerType;
protected:
/** Constructor */
MR3DImageToUS3DImageRegistration();
/** Destructor */
virtual ~MR3DImageToUS3DImageRegistration();
/** Print the object information in a stream */
virtual void PrintSelf( std::ostream& os, itk::Indent indent ) const;
private:
/** Null operation for a transition in the State Machine */
void NoProcessing();
/** Reset the registration transform */
void ResetProcessing();
/** Set the 3D fixed US image */
void SetFixedUS3DProcessing();
/** Set the 3D moving MR image */
void SetMovingMR3DProcessing();
/** Compute the registration transform */
void CalculateRegistrationProcessing();
/** Return the final transformation as an event */
void ReportRegistrationTransformProcessing();
/** Observers for internal events */
typedef USImageObject::ImageType USImageType;
typedef USImageObject::ITKImageModifiedEvent USITKImageModifiedEvent;
igstkObserverConstObjectMacro(ITKUSImage,
USITKImageModifiedEvent,USImageType)
igstkObserverConstObjectMacro(ITKMRImage,
MRImageSpatialObject::ITKImageModifiedEvent,MRImageSpatialObject::ImageType)
igstkObserverMacro(USImageTransform,CoordinateSystemTransformToEvent,
CoordinateSystemTransformToResult )
igstkObserverMacro(MRImageTransform,CoordinateSystemTransformToEvent,
CoordinateSystemTransformToResult )
private:
/** List of States */
igstkDeclareStateMacro( Idle );
igstkDeclareStateMacro( MRImageSet );
igstkDeclareStateMacro( USImageSet );
igstkDeclareStateMacro( ImagesSet );
igstkDeclareStateMacro( RegistrationCalculated );
/** List of Inputs */
igstkDeclareInputMacro( ResetRegistration );
igstkDeclareInputMacro( ValidMovingMR3D );
igstkDeclareInputMacro( ValidFixedUS3D );
igstkDeclareInputMacro( MRImageTransform );
igstkDeclareInputMacro( USImageTransform );
igstkDeclareInputMacro( ValidRegistration );
igstkDeclareInputMacro( CalculateRegistration );
igstkDeclareInputMacro( RequestRegistrationTransform );
/** Methods for Converting Events into State Machine Inputs */
igstkLoadedEventTransductionMacro( CoordinateSystemTransformTo,
MRImageTransform );
igstkLoadedEventTransductionMacro( CoordinateSystemTransformTo ,
USImageTransform );
/** Variable to save the calibration transform */
TransformType m_RegistrationTransform;
/** Variable to indicate whether a valid calibration matrix is computed */
bool m_ValidMR3DImageToUS3DImageRegistration;
/** Variable to indicate the RMS error */
ErrorType m_RootMeanSquareError;
USImageObject* m_USFixedImageToBeSet;
USImageObject* m_USFixedImage;
MRImageSpatialObject* m_MRMovingImageToBeSet;
MRImageSpatialObject* m_MRMovingImage;
TransformType m_InitialTransform;
};
}
#endif // _igstkUltrasoundCalibration_h
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