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itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions > Class Template Reference
[Transforms]

Transforms from an azimuth, elevation, radius coordinate system to a Cartesian coordinate system, or vice versa. More...

#include <itkAzimuthElevationToCartesianTransform.h>

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List of all members.

Public Types

typedef Superclass::CenterType CenterType
typedef SmartPointer< const SelfConstPointer
typedef
Superclass::InputCovariantVectorType 
InputCovariantVectorType
typedef Superclass::InputPointType InputPointType
typedef Superclass::InputVectorType InputVectorType
typedef
Superclass::InputVnlVectorType 
InputVnlVectorType
typedef
Superclass::InverseMatrixType 
InverseMatrixType
typedef
InverseTransformBaseType::Pointer 
InverseTransformBasePointer
typedef
Superclass::InverseTransformBaseType 
InverseTransformBaseType
typedef Superclass::JacobianType JacobianType
typedef Matrix< TScalarType,
itkGetStaticConstMacro(SpaceDimension),
itkGetStaticConstMacro(SpaceDimension)> 
MatrixType
typedef Superclass::OffsetType OffsetType
typedef OffsetType::ValueType OffsetValueType
typedef
Superclass::OutputCovariantVectorType 
OutputCovariantVectorType
typedef Superclass::OutputPointType OutputPointType
typedef
Superclass::OutputVectorType 
OutputVectorType
typedef
Superclass::OutputVnlVectorType 
OutputVnlVectorType
typedef Superclass::ParametersType ParametersType
typedef
Superclass::ParametersValueType 
ParametersValueType
typedef SmartPointer< SelfPointer
typedef Superclass::ScalarType ScalarType
typedef
AzimuthElevationToCartesianTransform 
Self
typedef AffineTransform
< TScalarType, NDimensions > 
Superclass
typedef Superclass::TranslationType TranslationType
typedef TranslationType::ValueType TranslationValueType

Public Member Functions

InputPointType BackTransformPoint (const OutputPointType &point) const
void Compose (const Self *other, bool pre=0)
virtual LightObject::Pointer CreateAnother () const
virtual void DebugOff () const
virtual void DebugOn () const
virtual void Delete ()
const InputPointTypeGetCenter () const
CommandGetCommand (unsigned long tag)
bool GetDebug () const
virtual const ParametersTypeGetFixedParameters (void) const
unsigned int GetInputSpaceDimension (void) const
bool GetInverse (Self *inverse) const
const InverseMatrixTypeGetInverseMatrix (void) const
virtual InverseTransformBasePointer GetInverseTransform () const
const JacobianTypeGetJacobian (const InputPointType &point) const
const MatrixTypeGetMatrix () const
const MetaDataDictionaryGetMetaDataDictionary (void) const
MetaDataDictionaryGetMetaDataDictionary (void)
virtual unsigned long GetMTime () const
virtual const char * GetNameOfClass () const
virtual unsigned int GetNumberOfParameters (void) const
const OutputVectorTypeGetOffset (void) const
unsigned int GetOutputSpaceDimension (void) const
const ParametersTypeGetParameters (void) const
virtual int GetReferenceCount () const
virtual std::string GetTransformTypeAsString () const
const OutputVectorTypeGetTranslation (void) const
bool HasObserver (const EventObject &event) const
void InvokeEvent (const EventObject &) const
void InvokeEvent (const EventObject &)
virtual bool IsLinear () const
ScalarType Metric (void) const
ScalarType Metric (const Self *other) const
virtual void Modified () const
void Print (std::ostream &os, Indent indent=0) const
virtual void Register () const
void RemoveAllObservers ()
void RemoveObserver (unsigned long tag)
void Rotate2D (TScalarType angle, bool pre=0)
void Rotate3D (const OutputVectorType &axis, TScalarType angle, bool pre=0)
virtual void SetAzimuthAngularSeparation (double _arg)
void SetAzimuthElevationToCartesianParameters (const double sampleSize, const double blanking, const long maxAzimuth, const long maxElevation)
void SetAzimuthElevationToCartesianParameters (const double sampleSize, const double blanking, const long maxAzimuth, const long maxElevation, const double azimuthAngleSeparation, const double elevationAngleSeparation)
void SetDebug (bool debugFlag) const
virtual void SetElevationAngularSeparation (double _arg)
virtual void SetFirstSampleDistance (double _arg)
virtual void SetFixedParameters (const ParametersType &)=0
virtual void SetFixedParameters (const ParametersType &)
void SetForwardAzimuthElevationToCartesian ()
void SetForwardCartesianToAzimuthElevation ()
virtual void SetIdentity (void)
virtual void SetMaxAzimuth (long _arg)
virtual void SetMaxElevation (long _arg)
void SetMetaDataDictionary (const MetaDataDictionary &rhs)
virtual void SetParameters (const ParametersType &)=0
void SetParameters (const ParametersType &parameters)
virtual void SetParametersByValue (const ParametersType &p)=0
virtual void SetParametersByValue (const ParametersType &p)
virtual void SetRadiusSampleSize (double _arg)
virtual void SetReferenceCount (int)
void Shear (int axis1, int axis2, TScalarType coef, bool pre=0)
OutputPointType TransformAzElToCartesian (const InputPointType &point) const
OutputPointType TransformCartesianToAzEl (const OutputPointType &point) const
OutputPointType TransformPoint (const InputPointType &point) const
void Translate (const OutputVectorType &offset, bool pre=0)
virtual void UnRegister () const

Static Public Member Functions

static void BreakOnError ()
static Pointer New ()

Protected Member Functions

 AzimuthElevationToCartesianTransform ()
virtual void ComputeMatrix (void)
virtual void ComputeMatrixParameters (void)
virtual void ComputeOffset (void)
virtual void ComputeTranslation (void)
const InverseMatrixTypeGetVarInverseMatrix (void) const
bool InverseMatrixIsOld (void) const
bool PrintObservers (std::ostream &os, Indent indent) const
void PrintSelf (std::ostream &s, Indent indent) const
void SetVarCenter (const InputPointType &center)
void SetVarInverseMatrix (const InverseMatrixType &matrix) const
void SetVarMatrix (const MatrixType &matrix)
void SetVarOffset (const OutputVectorType &offset)
void SetVarTranslation (const OutputVectorType &translation)
virtual ~AzimuthElevationToCartesianTransform ()

Protected Attributes

ParametersType m_FixedParameters
JacobianType m_Jacobian
ParametersType m_Parameters
InternalReferenceCountType m_ReferenceCount
SimpleFastMutexLock m_ReferenceCountLock



typedef InputPointType::ValueType InputPointValueType
typedef MatrixType::ValueType MatrixValueType
typedef OutputPointType::ValueType OutputPointValueType
typedef OutputVectorType::ValueType OutputVectorValueType
bool GetInverse (Self *inverse) const
void SetCenter (const InputPointType &center)
virtual void SetMatrix (const MatrixType &matrix)
void SetOffset (const OutputVectorType &offset)
void SetTranslation (const OutputVectorType &translation)
OutputCovariantVectorType TransformCovariantVector (const InputCovariantVectorType &vector) const
OutputPointType TransformPoint (const InputPointType &point) const
OutputVnlVectorType TransformVector (const InputVnlVectorType &vector) const
OutputVectorType TransformVector (const InputVectorType &vector) const



static const unsigned int InputSpaceDimension = NDimensions
static const unsigned int OutputSpaceDimension = NDimensions
InputCovariantVectorType BackTransform (const OutputCovariantVectorType &vector) const
InputVnlVectorType BackTransform (const OutputVnlVectorType &vector) const
InputVectorType BackTransform (const OutputVectorType &vector) const
void Rotate (int axis1, int axis2, TScalarType angle, bool pre=0)
void Scale (const TScalarType &factor, bool pre=0)
void Scale (const OutputVectorType &factor, bool pre=0)



static const unsigned int ParametersDimension = NDimensions * (NDimensions+1)
static const unsigned int SpaceDimension = NDimensions
InputPointType BackTransform (const OutputPointType &point) const



unsigned long AddObserver (const EventObject &event, Command *) const
unsigned long AddObserver (const EventObject &event, Command *)
static bool GetGlobalWarningDisplay ()
static void GlobalWarningDisplayOff ()
static void GlobalWarningDisplayOn ()
static void SetGlobalWarningDisplay (bool flag)



virtual void PrintHeader (std::ostream &os, Indent indent) const
virtual void PrintTrailer (std::ostream &os, Indent indent) const
typedef int InternalReferenceCountType

Detailed Description

template<class TScalarType = float, unsigned int NDimensions = 3>
class itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >

Transforms from an azimuth, elevation, radius coordinate system to a Cartesian coordinate system, or vice versa.

The three coordinate axis are azimuth, elevation, and range.

The azimuth elevation coordinate system is defined similarly to spherical coordinates but is slightly different in that the azimuth and elevation are measured in degrees between the r-axis (i.e z axis) and the projection on the x-z and y-z planes, respectively. Range, or r, is the distance from the origin.

The equations form performing the conversion from azimuth-elevation coordinates to cartesian coordinates are as follows: z = vcl_sqrt((r^2*(cos(azimuth))^2)/(1 + (cos(azimuth))^2 * (tan(elevation))^2); x = z * vcl_tan(azimuth) y = z * vcl_tan(elevation)

The reversed transforms are: azimuth = arctan(x/y) elevation = arctan(y/z) r = vcl_sqrt(x^2 + y^2 + z^2)

In this class, we can also set what a "forward" transform means. If we call SetForwardAzimuthElevationToCartesian(), a forward transform will return cartesian coordinates when passed azimuth,elevation,r coordinates. Calling SetForwardCartesianToAzimuthElevation() will cause the forward transform to return azimuth,elevation,r coordinates from cartesian coordinates.

Setting the FirstSampleDistance to a non-zero value means that a r value of 12 is actually (12 + FirstSampleDistance) distance from the origin.

There are two template parameters for this class:

ScalarT The type to be used for scalar numeric values. Either float or double.

NDimensions The number of dimensions of the vector space (must be >=3).

Todo:
Is there any real value in allowing the user to template over the scalar type? Perhaps it should always be double, unless there's a compatibility problem with the Point class.
Todo:
Derive this class from a yet undefined TransformBase class. Currently, this class derives from AffineTransform, although it is not an affine transform.

Definition at line 79 of file itkAzimuthElevationToCartesianTransform.h.


Member Typedef Documentation

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::CenterType itk::AffineTransform< TScalarType, NDimensions >::CenterType [inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef SmartPointer<const Self> itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::ConstPointer
template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::InputCovariantVectorType itk::AffineTransform< TScalarType, NDimensions >::InputCovariantVectorType [inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Superclass::InputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::InputPointType

Standard coordinate point type for this class

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 111 of file itkAzimuthElevationToCartesianTransform.h.

typedef InputPointType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::InputPointValueType [inherited]

Standard covariant vector type for this class

Reimplemented in itk::CenteredAffineTransform< TScalarType, NDimensions >.

Definition at line 145 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::InputVectorType itk::AffineTransform< TScalarType, NDimensions >::InputVectorType [inherited]
template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::InputVnlVectorType itk::AffineTransform< TScalarType, NDimensions >::InputVnlVectorType [inherited]
typedef int itk::LightObject::InternalReferenceCountType [protected, inherited]

Define the type of the reference count according to the target. This allows the use of atomic operations

Definition at line 139 of file itkLightObject.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::InverseMatrixType itk::AffineTransform< TScalarType, NDimensions >::InverseMatrixType [inherited]
template<class TScalarType = double, unsigned int NDimensions = 3>
typedef InverseTransformBaseType::Pointer itk::AffineTransform< TScalarType, NDimensions >::InverseTransformBasePointer [inherited]
template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::InverseTransformBaseType itk::AffineTransform< TScalarType, NDimensions >::InverseTransformBaseType [inherited]

Base inverse transform type. This type should not be changed to the concrete inverse transform type or inheritance would be lost.

Reimplemented from itk::MatrixOffsetTransformBase< TScalarType, NDimensions, NDimensions >.

Reimplemented in itk::CenteredAffineTransform< TScalarType, NDimensions >, and itk::ScalableAffineTransform< TScalarType, NDimensions >.

Definition at line 158 of file itkAffineTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Superclass::JacobianType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::JacobianType

Jacobian type.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 105 of file itkAzimuthElevationToCartesianTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Matrix<TScalarType, itkGetStaticConstMacro(SpaceDimension), itkGetStaticConstMacro(SpaceDimension)> itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::MatrixType

Standard matrix type for this class.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 116 of file itkAzimuthElevationToCartesianTransform.h.

typedef MatrixType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::MatrixValueType [inherited]

Standard covariant vector type for this class

Reimplemented in itk::CenteredAffineTransform< TScalarType, NDimensions >, and itk::ScalableAffineTransform< TScalarType, NDimensions >.

Definition at line 156 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::OffsetType itk::AffineTransform< TScalarType, NDimensions >::OffsetType [inherited]
typedef OffsetType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::OffsetValueType [inherited]

Definition at line 167 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::OutputCovariantVectorType itk::AffineTransform< TScalarType, NDimensions >::OutputCovariantVectorType [inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Superclass::OutputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::OutputPointType

Standard covariant vector type for this class

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 112 of file itkAzimuthElevationToCartesianTransform.h.

typedef OutputPointType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::OutputPointValueType [inherited]

Standard covariant vector type for this class

Definition at line 149 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::OutputVectorType itk::AffineTransform< TScalarType, NDimensions >::OutputVectorType [inherited]
typedef OutputVectorType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::OutputVectorValueType [inherited]

Standard covariant vector type for this class

Reimplemented in itk::CenteredAffineTransform< TScalarType, NDimensions >.

Definition at line 120 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::OutputVnlVectorType itk::AffineTransform< TScalarType, NDimensions >::OutputVnlVectorType [inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Superclass::ParametersType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::ParametersType

Parameters type.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 99 of file itkAzimuthElevationToCartesianTransform.h.

typedef Superclass::ParametersValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::ParametersValueType [inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef SmartPointer<Self> itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::Pointer
template<class TScalarType = float, unsigned int NDimensions = 3>
typedef Superclass::ScalarType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::ScalarType

Standard scalar type for this class.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 108 of file itkAzimuthElevationToCartesianTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
typedef AzimuthElevationToCartesianTransform itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::Self

Standard class typedefs.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 84 of file itkAzimuthElevationToCartesianTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
typedef AffineTransform< TScalarType, NDimensions > itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::Superclass
template<class TScalarType = double, unsigned int NDimensions = 3>
typedef Superclass::TranslationType itk::AffineTransform< TScalarType, NDimensions >::TranslationType [inherited]
typedef TranslationType::ValueType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::TranslationValueType [inherited]

Definition at line 171 of file itkMatrixOffsetTransformBase.h.


Constructor & Destructor Documentation

template<class TScalarType = float, unsigned int NDimensions = 3>
itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::AzimuthElevationToCartesianTransform (  )  [protected]
template<class TScalarType = float, unsigned int NDimensions = 3>
virtual itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::~AzimuthElevationToCartesianTransform (  )  [protected, virtual]

Member Function Documentation

unsigned long itk::Object::AddObserver ( const EventObject event,
Command  
) const [inherited]

This is a global flag that controls whether any debug, warning or error messages are displayed.

unsigned long itk::Object::AddObserver ( const EventObject event,
Command  
) [inherited]

Allow people to add/remove/invoke observers (callbacks) to any ITK object. This is an implementation of the subject/observer design pattern. An observer is added by specifying an event to respond to and an itk::Command to execute. It returns an unsigned long tag which can be used later to remove the event or retrieve the command. The memory for the Command becomes the responsibility of this object, so don't pass the same instance of a command to two different objects

template<class TScalarType , unsigned int NDimensions>
AffineTransform< TScalarType, NDimensions >::InputCovariantVectorType itk::AffineTransform< TScalarType, NDimensions >::BackTransform ( const OutputCovariantVectorType vec  )  const [inline, inherited]
template<class TScalarType , unsigned int NDimensions>
AffineTransform< TScalarType, NDimensions >::InputVnlVectorType itk::AffineTransform< TScalarType, NDimensions >::BackTransform ( const OutputVnlVectorType vect  )  const [inline, inherited]
template<class TScalarType , unsigned int NDimensions>
AffineTransform< TScalarType, NDimensions >::InputVectorType itk::AffineTransform< TScalarType, NDimensions >::BackTransform ( const OutputVectorType vect  )  const [inline, inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
InputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::BackTransform ( const OutputPointType point  )  const [inline]

Back transform from cartesian to azimuth-elevation.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 136 of file itkAzimuthElevationToCartesianTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
InputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::BackTransformPoint ( const OutputPointType point  )  const [inline]

Back transform a point by an affine transform

This method finds the point that maps to a given point under the affine transformation defined by self. If no such point exists, an exception is thrown. The returned value is (a pointer to) a brand new point created with new.

Deprecated:
Please use GetInverseTransform and then call the forward transform function

Back transform a given point which is represented as type PointType

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 151 of file itkAzimuthElevationToCartesianTransform.h.

static void itk::LightObject::BreakOnError (  )  [static, inherited]

This method is called when itkExceptionMacro executes. It allows the debugger to break on error.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::Compose ( const Self other,
bool  pre = 0 
) [inherited]

Compose with another MatrixOffsetTransformBase

This method composes self with another MatrixOffsetTransformBase of the same dimension, modifying self to be the composition of self and other. If the argument pre is true, then other is precomposed with self; that is, the resulting transformation consists of first applying other to the source, followed by self. If pre is false or omitted, then other is post-composed with self; that is the resulting transformation consists of first applying self to the source, followed by other. This updates the Translation based on current center.

virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::ComputeMatrix ( void   )  [protected, virtual, inherited]
virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::ComputeMatrixParameters ( void   )  [protected, virtual, inherited]
virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::ComputeOffset ( void   )  [protected, virtual, inherited]
virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::ComputeTranslation ( void   )  [protected, virtual, inherited]
virtual LightObject::Pointer itk::Object::CreateAnother (  )  const [virtual, inherited]
virtual void itk::Object::DebugOff (  )  const [virtual, inherited]

Turn debugging output off.

virtual void itk::Object::DebugOn (  )  const [virtual, inherited]

Turn debugging output on.

virtual void itk::LightObject::Delete (  )  [virtual, inherited]

Delete an itk object. This method should always be used to delete an object when the new operator was used to create it. Using the C delete method will not work with reference counting.

const InputPointType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetCenter ( void   )  const [inline, inherited]

Get center of rotation of the MatrixOffsetTransformBase

This method returns the point used as the fixed center of rotation for the MatrixOffsetTransformBase. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 269 of file itkMatrixOffsetTransformBase.h.

Command* itk::Object::GetCommand ( unsigned long  tag  )  [inherited]

Get the command associated with the given tag. NOTE: This returns a pointer to a Command, but it is safe to asign this to a Command::Pointer. Since Command inherits from LightObject, at this point in the code, only a pointer or a reference to the Command can be used.

bool itk::Object::GetDebug (  )  const [inherited]

Get the value of the debug flag.

virtual const ParametersType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetFixedParameters ( void   )  const [virtual, inherited]

Get the Fixed Parameters.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

static bool itk::Object::GetGlobalWarningDisplay (  )  [static, inherited]

This is a global flag that controls whether any debug, warning or error messages are displayed.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
unsigned int itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::GetInputSpaceDimension ( void   )  const [inline, virtual, inherited]

Get the size of the input space

Implements itk::TransformBase.

Definition at line 87 of file itkTransform.h.

bool itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetInverse ( Self inverse  )  const [inherited]

Create inverse of an affine transformation

This populates the parameters an affine transform such that the transform is the inverse of self. If self is not invertible, an exception is thrown. Note that by default the inverese transform is centered at the origin. If you need to compute the inverse centered at a point, p,

 transform2->SetCenter( p );
 transform1->GetInverse( transform2 );

transform2 will now contain the inverse of transform1 and will with its center set to p. Flipping the two statements will produce an incorrect transform.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

template<class TScalarType = double, unsigned int NDimensions = 3>
bool itk::AffineTransform< TScalarType, NDimensions >::GetInverse ( Self inverse  )  const [inherited]

Get an inverse of this transform.

const InverseMatrixType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetInverseMatrix ( void   )  const [inherited]
Deprecated:
Use GetInverse instead.

Method will eventually be made a protected member function

Referenced by itk::AffineTransform< TScalarType, NDimensions >::BackTransform().

template<class TScalarType = double, unsigned int NDimensions = 3>
virtual InverseTransformBasePointer itk::AffineTransform< TScalarType, NDimensions >::GetInverseTransform (  )  const [virtual, inherited]
const JacobianType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetJacobian ( const InputPointType point  )  const [virtual, inherited]

Compute the Jacobian of the transformation

This method computes the Jacobian matrix of the transformation. given point or vector, returning the transformed point or vector. The rank of the Jacobian will also indicate if the transform is invertible at this point.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

const MatrixType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetMatrix ( void   )  const [inline, inherited]

Get matrix of an MatrixOffsetTransformBase

This method returns the value of the matrix of the MatrixOffsetTransformBase. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 208 of file itkMatrixOffsetTransformBase.h.

Referenced by itk::AffineTransform< TScalarType, NDimensions >::BackTransform().

const MetaDataDictionary& itk::Object::GetMetaDataDictionary ( void   )  const [inherited]
Returns:
A constant reference to this objects MetaDataDictionary.
MetaDataDictionary& itk::Object::GetMetaDataDictionary ( void   )  [inherited]
Returns:
A reference to this objects MetaDataDictionary.
Warning:
This reference may be changed.
virtual unsigned long itk::Object::GetMTime (  )  const [virtual, inherited]

Return this objects modified time.

Reimplemented in itk::ImageRegistrationMethod< TFixedImage, TMovingImage >, itk::ImageToSpatialObjectRegistrationMethod< TFixedImage, TMovingSpatialObject >, itk::MultiResolutionImageRegistrationMethod< TFixedImage, TMovingImage >, itk::PointSetToImageRegistrationMethod< TFixedPointSet, TMovingImage >, itk::PointSetToPointSetRegistrationMethod< TFixedPointSet, TMovingPointSet >, itk::DeformationFieldSource< TOutputImage >, itk::InverseDeformationFieldImageFilter< TInputImage, TOutputImage >, itk::ResampleImageFilter< TInputImage, TOutputImage, TInterpolatorPrecisionType >, itk::VectorResampleImageFilter< TInputImage, TOutputImage, TInterpolatorPrecisionType >, itk::BoundingBox< TPointIdentifier, VPointDimension, TCoordRep, TPointsContainer >, itk::ImageAdaptor< TImage, TAccessor >, itk::ResampleImageFilter< TInputImage, TOutputImage, TInterpolatorPrecisionType >, itk::TransformToDeformationFieldSource< TOutputImage, TTransformPrecisionType >, itk::ImageSpatialObject< TDimension, TPixelType >, itk::MeshSpatialObject< TMesh >, itk::SceneSpatialObject< TSpaceDimension >, itk::SpatialObject< TDimension >, itk::ImageAdaptor< TImage, Accessor::AsinPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::SqrtPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::TanPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::CosPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::VectorToRGBPixelAccessor< TImage::PixelType::ValueType > >, itk::ImageAdaptor< TImage, Accessor::RGBToVectorPixelAccessor< TImage::PixelType::ComponentType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToModulusPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AbsPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::SinPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, PixelAccessor >, itk::ImageAdaptor< TImage, Accessor::LogPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToPhasePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< VectorImage< TPixelType, Dimension >, Accessor::VectorImageToImagePixelAccessor< TPixelType > >, itk::ImageAdaptor< TImage, Accessor::Log10PixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AtanPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToRealPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToImaginaryPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ExpNegativePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ExpPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AcosPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::RGBToLuminancePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AddPixelAccessor< TImage::PixelType > >, itk::ImageSpatialObject< TDimension, unsigned char >, itk::SpatialObject< 3 >, and itk::SpatialObject< ::itk::GetMeshDimension< TMesh >::PointDimension >.

Referenced by itk::SpatialObject< ::itk::GetMeshDimension< TMesh >::PointDimension >::GetObjectMTime().

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual const char* itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::GetNameOfClass (  )  const [virtual]

Run-time type information (and related methods).

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
virtual unsigned int itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::GetNumberOfParameters ( void   )  const [inline, virtual, inherited]

Return the number of parameters that completely define the Transfom

Implements itk::TransformBase.

Reimplemented in itk::BSplineDeformableTransform< TScalarType, NDimensions, VSplineOrder >, and itk::TranslationTransform< TScalarType, NDimensions >.

Definition at line 229 of file itkTransform.h.

const OutputVectorType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetOffset ( void   )  const [inline, inherited]

Get offset of an MatrixOffsetTransformBase

This method returns the offset value of the MatrixOffsetTransformBase. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 231 of file itkMatrixOffsetTransformBase.h.

Referenced by itk::AffineTransform< TScalarType, NDimensions >::BackTransform().

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
unsigned int itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::GetOutputSpaceDimension ( void   )  const [inline, virtual, inherited]

Get the size of the output space

Implements itk::TransformBase.

Definition at line 90 of file itkTransform.h.

const ParametersType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetParameters ( void   )  const [virtual, inherited]
virtual int itk::LightObject::GetReferenceCount (  )  const [inline, virtual, inherited]

Gets the reference count on this object.

Definition at line 106 of file itkLightObject.h.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
virtual std::string itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::GetTransformTypeAsString (  )  const [virtual, inherited]

Generate a platform independant name

Implements itk::TransformBase.

const OutputVectorType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetTranslation ( void   )  const [inline, inherited]

Get translation component of the MatrixOffsetTransformBase

This method returns the translation used after rotation about the center point. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 291 of file itkMatrixOffsetTransformBase.h.

const InverseMatrixType& itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::GetVarInverseMatrix ( void   )  const [inline, protected, inherited]

Definition at line 404 of file itkMatrixOffsetTransformBase.h.

static void itk::Object::GlobalWarningDisplayOff (  )  [inline, static, inherited]

This is a global flag that controls whether any debug, warning or error messages are displayed.

Definition at line 100 of file itkObject.h.

References itk::Object::SetGlobalWarningDisplay().

static void itk::Object::GlobalWarningDisplayOn (  )  [inline, static, inherited]

This is a global flag that controls whether any debug, warning or error messages are displayed.

Definition at line 98 of file itkObject.h.

References itk::Object::SetGlobalWarningDisplay().

bool itk::Object::HasObserver ( const EventObject event  )  const [inherited]

Return true if an observer is registered for this event.

bool itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::InverseMatrixIsOld ( void   )  const [inline, protected, inherited]

Definition at line 408 of file itkMatrixOffsetTransformBase.h.

void itk::Object::InvokeEvent ( const EventObject  )  const [inherited]

Call Execute on all the Commands observing this event id. The actions triggered by this call doesn't modify this object.

void itk::Object::InvokeEvent ( const EventObject  )  [inherited]

Call Execute on all the Commands observing this event id.

virtual bool itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::IsLinear (  )  const [inline, virtual, inherited]

Indicates that this transform is linear. That is, given two points P and Q, and scalar coefficients a and b, then

T( a*P + b*Q ) = a * T(P) + b * T(Q)

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

Definition at line 381 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
ScalarType itk::AffineTransform< TScalarType, NDimensions >::Metric ( void   )  const [inherited]

This method computes the distance from self to the identity transformation, using the same metric as the one-argument form of the Metric() method.

template<class TScalarType = double, unsigned int NDimensions = 3>
ScalarType itk::AffineTransform< TScalarType, NDimensions >::Metric ( const Self other  )  const [inherited]

Compute distance between two affine transformations

This method computes a ``distance'' between two affine transformations. This distance is guaranteed to be a metric, but not any particular metric. (At the moment, the algorithm is to collect all the elements of the matrix and offset into a vector, and compute the euclidean (L2) norm of that vector. Some metric which could be used to estimate the distance between two points transformed by the affine transformation would be more useful, but I don't have time right now to work out the mathematical details.)

virtual void itk::Object::Modified (  )  const [virtual, inherited]

Update the modification time for this object. Many filters rely on the modification time to determine if they need to recompute their data.

Reimplemented in itk::NormalizeImageFilter< TInputImage, TOutputImage >, itk::ImageAdaptor< TImage, TAccessor >, itk::MiniPipelineSeparableImageFilter< TInputImage, TOutputImage, TFilter >, itk::GrayscaleDilateImageFilter< TInputImage, TOutputImage, TKernel >, itk::GrayscaleErodeImageFilter< TInputImage, TOutputImage, TKernel >, itk::GrayscaleMorphologicalClosingImageFilter< TInputImage, TOutputImage, TKernel >, itk::GrayscaleMorphologicalOpeningImageFilter< TInputImage, TOutputImage, TKernel >, itk::MorphologicalGradientImageFilter< TInputImage, TOutputImage, TKernel >, itk::ImageAdaptor< TImage, Accessor::AsinPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::SqrtPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::TanPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::CosPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::VectorToRGBPixelAccessor< TImage::PixelType::ValueType > >, itk::ImageAdaptor< TImage, Accessor::RGBToVectorPixelAccessor< TImage::PixelType::ComponentType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToModulusPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AbsPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::SinPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, PixelAccessor >, itk::ImageAdaptor< TImage, Accessor::LogPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToPhasePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< VectorImage< TPixelType, Dimension >, Accessor::VectorImageToImagePixelAccessor< TPixelType > >, itk::ImageAdaptor< TImage, Accessor::Log10PixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AtanPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToRealPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ComplexToImaginaryPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ExpNegativePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::ExpPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AcosPixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::RGBToLuminancePixelAccessor< TImage::PixelType, TOutputPixelType > >, itk::ImageAdaptor< TImage, Accessor::AddPixelAccessor< TImage::PixelType > >, and itk::MiniPipelineSeparableImageFilter< TInputImage, TOutputImage, RankImageFilter< TInputImage, TInputImage, FlatStructuringElement< ::itk::GetImageDimension< TInputImage >::ImageDimension > > >.

Referenced by itk::NarrowBandImageFilterBase< TInputImage, Image< TOutputPixelType,::itk::GetImageDimension< TInputImage >::ImageDimension > >::InsertNarrowBandNode(), itk::MatrixOffsetTransformBase< TScalarType, 3, 3 >::SetCenter(), itk::MatrixOffsetTransformBase< TScalarType, 3, 3 >::SetMatrix(), itk::NarrowBandImageFilterBase< TInputImage, Image< TOutputPixelType,::itk::GetImageDimension< TInputImage >::ImageDimension > >::SetNarrowBand(), itk::NarrowBandImageFilterBase< TInputImage, Image< TOutputPixelType,::itk::GetImageDimension< TInputImage >::ImageDimension > >::SetNarrowBandInnerRadius(), itk::NarrowBandImageFilterBase< TInputImage, Image< TOutputPixelType,::itk::GetImageDimension< TInputImage >::ImageDimension > >::SetNarrowBandTotalRadius(), itk::MatrixOffsetTransformBase< TScalarType, 3, 3 >::SetOffset(), itk::ThresholdLabelerImageFilter< TInputImage, TOutputImage >::SetRealThresholds(), itk::ThresholdLabelerImageFilter< TInputImage, TOutputImage >::SetThresholds(), itk::Statistics::GoodnessOfFitFunctionBase< TInputHistogram >::SetTotalObservedScale(), and itk::MatrixOffsetTransformBase< TScalarType, 3, 3 >::SetTranslation().

template<class TScalarType = float, unsigned int NDimensions = 3>
static Pointer itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::New (  )  [static]

New macro for creation of through a Smart Pointer.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

void itk::LightObject::Print ( std::ostream &  os,
Indent  indent = 0 
) const [inherited]

Cause the object to print itself out.

Referenced by itk::WeakPointer< ProcessObject >::Print().

virtual void itk::LightObject::PrintHeader ( std::ostream &  os,
Indent  indent 
) const [protected, virtual, inherited]

Define the type of the reference count according to the target. This allows the use of atomic operations

bool itk::Object::PrintObservers ( std::ostream &  os,
Indent  indent 
) const [protected, inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::PrintSelf ( std::ostream &  s,
Indent  indent 
) const [protected, virtual]

Print contents of an AzimuthElevationTransform.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

virtual void itk::LightObject::PrintTrailer ( std::ostream &  os,
Indent  indent 
) const [protected, virtual, inherited]

Define the type of the reference count according to the target. This allows the use of atomic operations

virtual void itk::Object::Register (  )  const [virtual, inherited]

Increase the reference count (mark as used by another object).

Reimplemented from itk::LightObject.

void itk::Object::RemoveAllObservers (  )  [inherited]

Remove all observers .

void itk::Object::RemoveObserver ( unsigned long  tag  )  [inherited]

Remove the observer with this tag value.

template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Rotate ( int  axis1,
int  axis2,
TScalarType  angle,
bool  pre = 0 
) [inherited]

Compose affine transformation with an elementary rotation

This method composes self with a rotation that affects two specified axes, replacing the current value of self. The rotation angle is in radians. The axis of rotation goes through the origin. The transformation is given by

y[axis1] = vcl_cos(angle)*x[axis1] + vcl_sin(angle)*x[axis2] y[axis2] = -sin(angle)*x[axis1] + vcl_cos(angle)*x[axis2].

All coordinates other than axis1 and axis2 are unchanged; a rotation of pi/2 radians will carry +axis1 into +axis2. The rotation is precomposed with self if pre is true, and postcomposed otherwise. Note that the rotation is applied centered at the origin.

template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Rotate2D ( TScalarType  angle,
bool  pre = 0 
) [inherited]

Compose 2D affine transformation with a rotation

This method composes self, which must be a 2D affine transformation, with a clockwise rotation through a given angle in radians. The center of rotation is the origin. The rotation is precomposed with self if pre is true, and postcomposed otherwise. Note that the rotation is applied centered at the origin.

Warning:
Only to be use in two dimensions
Todo:
Find a way to generate a compile-time error is this is used with NDimensions != 2.
template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Rotate3D ( const OutputVectorType axis,
TScalarType  angle,
bool  pre = 0 
) [inherited]

Compose 3D affine transformation with a rotation

This method composes self, which must be a 3D affine transformation, with a clockwise rotation around a specified axis. The rotation angle is in radians; the axis of rotation goes through the origin. The rotation is precomposed with self if pre is true, and postcomposed otherwise. Note that the rotation is applied centered at the origin.

Warning:
Only to be used in dimension 3
Todo:
Find a way to generate a compile-time error is this is used with NDimensions != 3.
template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Scale ( const TScalarType &  factor,
bool  pre = 0 
) [inherited]

Dimension of the domain space.

template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Scale ( const OutputVectorType factor,
bool  pre = 0 
) [inherited]

Compose affine transformation with a scaling

This method modifies self to magnify the source by a given factor along each axis. If all factors are the same, or only a single factor is given, then the scaling is isotropic; otherwise it is anisotropic. If an odd number of factors are negative, then the parity of the image changes. If any of the factors is zero, then the transformation becomes a projection and is not invertible. The scaling is precomposed with self if pre is true, and postcomposed otherwise. Note that the scaling is applied centered at the origin.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetAzimuthAngularSeparation ( double  _arg  )  [virtual]

Set the number of degrees between each azimuth unit.

template<class TScalarType = float, unsigned int NDimensions = 3>
void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetAzimuthElevationToCartesianParameters ( const double  sampleSize,
const double  blanking,
const long  maxAzimuth,
const long  maxElevation 
)
template<class TScalarType = float, unsigned int NDimensions = 3>
void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetAzimuthElevationToCartesianParameters ( const double  sampleSize,
const double  blanking,
const long  maxAzimuth,
const long  maxElevation,
const double  azimuthAngleSeparation,
const double  elevationAngleSeparation 
)

Set the transformation parameters.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetCenter ( const InputPointType center  )  [inline, inherited]

Set center of rotation of an MatrixOffsetTransformBase

This method sets the center of rotation of an MatrixOffsetTransformBase to a fixed point - for most transforms derived from this class, this point is not a "parameter" of the transform - the exception is that "centered" transforms have center as a parameter during optimization.

This method updates offset wrt to current translation and matrix. That is, changing the center changes the transform!

WARNING: When using the Center, we strongly recommend only changing the matrix and translation to define a transform. Changing a transform's center, changes the mapping between spaces - specifically, translation is not changed with respect to that new center, and so the offset is updated to * maintain the consistency with translation. If a center is not used, or is set before the matrix and the offset, then it is safe to change the offset directly. As a rule of thumb, if you wish to set the center explicitly, set before Offset computations are done.

To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 256 of file itkMatrixOffsetTransformBase.h.

void itk::Object::SetDebug ( bool  debugFlag  )  const [inherited]

Set the value of the debug flag. A non-zero value turns debugging on.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetElevationAngularSeparation ( double  _arg  )  [virtual]

Set the number of degrees between each elevation unit.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetFirstSampleDistance ( double  _arg  )  [virtual]

Set the distance to add to the radius.

virtual void itk::TransformBase::SetFixedParameters ( const ParametersType  )  [pure virtual, inherited]
virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetFixedParameters ( const ParametersType &   )  [virtual, inherited]

Set the fixed parameters and update internal transformation.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

template<class TScalarType = float, unsigned int NDimensions = 3>
void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetForwardAzimuthElevationToCartesian (  ) 

Defines that the forward transform goes from azimuth,elevation to cartesian.

template<class TScalarType = float, unsigned int NDimensions = 3>
void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetForwardCartesianToAzimuthElevation (  ) 

Defines that the forward transform goes from cartesian to azimuth, elevation.

static void itk::Object::SetGlobalWarningDisplay ( bool  flag  )  [static, inherited]

This is a global flag that controls whether any debug, warning or error messages are displayed.

Referenced by itk::Object::GlobalWarningDisplayOff(), and itk::Object::GlobalWarningDisplayOn().

virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetIdentity ( void   )  [virtual, inherited]

Set the transformation to an Identity

This sets the matrix to identity and the Offset to null.

Reimplemented in itk::ScalableAffineTransform< TScalarType, NDimensions >.

virtual void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetMatrix ( const MatrixType matrix  )  [inline, virtual, inherited]

Set matrix of an MatrixOffsetTransformBase

This method sets the matrix of an MatrixOffsetTransformBase to a value specified by the user.

This updates the Offset wrt to current translation and center. See the warning regarding offset-versus-translation in the documentation for SetCenter.

To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 194 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetMaxAzimuth ( long  _arg  )  [virtual]

Set the maximum azimuth. The maximum azimuth and elevation can be set so that the resulting cartesian space is symmetric about the z axis. Therefore, the line defined by azimuth/2,elevation/2 = z-axis.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetMaxElevation ( long  _arg  )  [virtual]

Set the maximum elevation The maximum azimuth and elevation can be set so that the resulting cartesian space is symmetric about the z axis. Therefore, the line defined by azimuth/2,elevation/2 = z-axis.

void itk::Object::SetMetaDataDictionary ( const MetaDataDictionary rhs  )  [inherited]
Returns:
Set the MetaDataDictionary
void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetOffset ( const OutputVectorType offset  )  [inline, inherited]

Set offset (origin) of an MatrixOffset TransformBase.

This method sets the offset of an MatrixOffsetTransformBase to a value specified by the user. This updates Translation wrt current center. See the warning regarding offset-versus-translation in the documentation for SetCenter. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 219 of file itkMatrixOffsetTransformBase.h.

virtual void itk::TransformBase::SetParameters ( const ParametersType  )  [pure virtual, inherited]
void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetParameters ( const ParametersType &  parameters  )  [virtual, inherited]

Set the transformation from a container of parameters. The first (NOutputDimension x NInputDimension) parameters define the matrix and the last NOutputDimension parameters the translation. Offset is updated based on current center.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

Reimplemented in itk::CenteredAffineTransform< TScalarType, NDimensions >.

virtual void itk::TransformBase::SetParametersByValue ( const ParametersType p  )  [pure virtual, inherited]

Set the transformation by copying parameters and update internal transformation. This method forces the transform to copy the parameters. The default implementation is to call SetParameters. This call must be overridden if the transform normally implements SetParameters by keeping a reference to the parameters.

See also:
SetParameters

Implemented in itk::BSplineDeformableTransform< TScalarType, NDimensions, VSplineOrder >, itk::Transform< TScalarType, NDimensions, NDimensions >, and itk::Transform< TScalarType, 3, 2 >.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
virtual void itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::SetParametersByValue ( const ParametersType p  )  [inline, virtual, inherited]

Set the transformation parameters and update internal transformation. This method forces the transform to copy the parameters. The default implementation is to call SetParameters. This call must be overridden if the transform normally implements SetParameters by keeping a reference to the parameters.

See also:
SetParameters

Reimplemented in itk::BSplineDeformableTransform< TScalarType, NDimensions, VSplineOrder >.

Definition at line 164 of file itkTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
virtual void itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SetRadiusSampleSize ( double  _arg  )  [virtual]

Set the number of cartesian units between each unit along the R .

virtual void itk::Object::SetReferenceCount ( int   )  [virtual, inherited]

Sets the reference count (use with care)

Reimplemented from itk::LightObject.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetTranslation ( const OutputVectorType translation  )  [inline, inherited]

Set translation of an MatrixOffsetTransformBase

This method sets the translation of an MatrixOffsetTransformBase. This updates Offset to reflect current translation. To define an affine transform, you must set the matrix, center, and translation OR the matrix and offset

Definition at line 278 of file itkMatrixOffsetTransformBase.h.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetVarCenter ( const InputPointType center  )  [inline, protected, inherited]

Definition at line 434 of file itkMatrixOffsetTransformBase.h.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetVarInverseMatrix ( const InverseMatrixType matrix  )  const [inline, protected, inherited]

Definition at line 406 of file itkMatrixOffsetTransformBase.h.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetVarMatrix ( const MatrixType matrix  )  [inline, protected, inherited]

Definition at line 423 of file itkMatrixOffsetTransformBase.h.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetVarOffset ( const OutputVectorType offset  )  [inline, protected, inherited]

Definition at line 431 of file itkMatrixOffsetTransformBase.h.

void itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::SetVarTranslation ( const OutputVectorType translation  )  [inline, protected, inherited]

Definition at line 427 of file itkMatrixOffsetTransformBase.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Shear ( int  axis1,
int  axis2,
TScalarType  coef,
bool  pre = 0 
) [inherited]

Compose affine transformation with a shear

This method composes self with a shear transformation, replacing the original contents of self. The shear is precomposed with self if pre is true, and postcomposed otherwise. The transformation is given by

y[axis1] = x[axis1] + coef*x[axis2] y[axis2] = x[axis2].

Note that the shear is applied centered at the origin.

template<class TScalarType = float, unsigned int NDimensions = 3>
OutputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::TransformAzElToCartesian ( const InputPointType point  )  const

Perform conversion from Azimuth Elevation coordinates to Cartesian Coordinates.

template<class TScalarType = float, unsigned int NDimensions = 3>
OutputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::TransformCartesianToAzEl ( const OutputPointType point  )  const

Perform conversion from Cartesian Coordinates to Azimuth Elevation coordinates.

OutputCovariantVectorType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::TransformCovariantVector ( const InputCovariantVectorType vector  )  const [virtual, inherited]

Standard covariant vector type for this class

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

OutputPointType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::TransformPoint ( const InputPointType point  )  const [virtual, inherited]

Transform by an affine transformation

This method applies the affine transform given by self to a given point or vector, returning the transformed point or vector. The TransformPoint method transforms its argument as an affine point, whereas the TransformVector method transforms its argument as a vector.

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

template<class TScalarType = float, unsigned int NDimensions = 3>
OutputPointType itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::TransformPoint ( const InputPointType point  )  const

Transform from azimuth-elevation to cartesian.

OutputVnlVectorType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::TransformVector ( const InputVnlVectorType &  vector  )  const [virtual, inherited]

Standard covariant vector type for this class

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

OutputVectorType itk::MatrixOffsetTransformBase< TScalarType , NInputDimensions, NOutputDimensions >::TransformVector ( const InputVectorType vector  )  const [virtual, inherited]

Standard covariant vector type for this class

Reimplemented from itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >.

template<class TScalarType = double, unsigned int NDimensions = 3>
void itk::AffineTransform< TScalarType, NDimensions >::Translate ( const OutputVectorType offset,
bool  pre = 0 
) [inherited]

Compose affine transformation with a translation

This method modifies self to include a translation of the origin. The translation is precomposed with self if pre is true, and postcomposed otherwise. This updates Translation based on current center.

virtual void itk::Object::UnRegister (  )  const [virtual, inherited]

Decrease the reference count (release by another object).

Reimplemented from itk::LightObject.


Member Data Documentation

template<class TScalarType = double, unsigned int NDimensions = 3>
const unsigned int itk::AffineTransform< TScalarType, NDimensions >::InputSpaceDimension = NDimensions [static, inherited]
template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
ParametersType itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::m_FixedParameters [mutable, protected, inherited]

Definition at line 274 of file itkTransform.h.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
JacobianType itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::m_Jacobian [mutable, protected, inherited]

Definition at line 275 of file itkTransform.h.

template<class TScalarType, unsigned int NInputDimensions = 3, unsigned int NOutputDimensions = 3>
ParametersType itk::Transform< TScalarType, NInputDimensions, NOutputDimensions >::m_Parameters [mutable, protected, inherited]

Definition at line 273 of file itkTransform.h.

Number of uses of this object by other objects.

Definition at line 144 of file itkLightObject.h.

Mutex lock to protect modification to the reference count

Definition at line 147 of file itkLightObject.h.

template<class TScalarType = double, unsigned int NDimensions = 3>
const unsigned int itk::AffineTransform< TScalarType, NDimensions >::OutputSpaceDimension = NDimensions [static, inherited]
template<class TScalarType = float, unsigned int NDimensions = 3>
const unsigned int itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::ParametersDimension = NDimensions * (NDimensions+1) [static]

Dimension of the domain space.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 92 of file itkAzimuthElevationToCartesianTransform.h.

template<class TScalarType = float, unsigned int NDimensions = 3>
const unsigned int itk::AzimuthElevationToCartesianTransform< TScalarType, NDimensions >::SpaceDimension = NDimensions [static]

Dimension of the domain space.

Reimplemented from itk::AffineTransform< TScalarType, NDimensions >.

Definition at line 90 of file itkAzimuthElevationToCartesianTransform.h.


The documentation for this class was generated from the following file:

Generated at Fri Apr 16 20:25:07 2010 for ITK by doxygen 1.6.1 written by Dimitri van Heesch, © 1997-2000