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419 lines
13 KiB
C++
419 lines
13 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkMedicalImageProperties.h
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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// .NAME vtkMedicalImageProperties - some medical image properties.
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// .SECTION Description
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// vtkMedicalImageProperties is a helper class that can be used by medical
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// image readers and applications to encapsulate medical image/acquisition
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// properties. Later on, this should probably be extended to add
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// any user-defined property.
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// .SECTION See Also
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// vtkMedicalImageReader2
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#ifndef vtkMedicalImageProperties_h
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#define vtkMedicalImageProperties_h
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#include "vtkIOImageModule.h" // For export macro
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#include "vtkObject.h"
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class vtkMedicalImagePropertiesInternals;
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class VTKIOIMAGE_EXPORT vtkMedicalImageProperties : public vtkObject
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{
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public:
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static vtkMedicalImageProperties *New();
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vtkTypeMacro(vtkMedicalImageProperties,vtkObject);
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void PrintSelf(ostream& os, vtkIndent indent);
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// Description:
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// Convenience method to reset all fields to an emptry string/value
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virtual void Clear();
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// Description:
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// Patient name
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// For ex: DICOM (0010,0010) = DOE,JOHN
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vtkSetStringMacro(PatientName);
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vtkGetStringMacro(PatientName);
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// Description:
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// Patient ID
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// For ex: DICOM (0010,0020) = 1933197
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vtkSetStringMacro(PatientID);
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vtkGetStringMacro(PatientID);
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// Description:
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// Patient age
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// Format: nnnD, nnW, nnnM or nnnY (eventually nnD, nnW, nnY)
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// with D (day), M (month), W (week), Y (year)
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// For ex: DICOM (0010,1010) = 031Y
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vtkSetStringMacro(PatientAge);
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vtkGetStringMacro(PatientAge);
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// Description:
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// Take as input a string in VR=AS (DICOM PS3.5) and extract either
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// different fields namely: year month week day
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// Return 0 on error, 1 on success
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// One can test fields if they are different from -1 upon success
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static int GetAgeAsFields(const char *age, int &year, int &month, int &week, int &day);
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// For Tcl:
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// From C++ use GetPatientAge + GetAgeAsField
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// Those function parse a DICOM string, and return the value of the number
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// expressed this is either expressed in year, month or days. Thus if a
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// string is expressed in years
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// GetPatientAgeDay/GetPatientAgeWeek/GetPatientAgeMonth will return 0
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int GetPatientAgeYear();
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int GetPatientAgeMonth();
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int GetPatientAgeWeek();
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int GetPatientAgeDay();
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// Description:
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// Patient sex
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// For ex: DICOM (0010,0040) = M
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vtkSetStringMacro(PatientSex);
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vtkGetStringMacro(PatientSex);
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// Description:
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// Patient birth date
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// Format: yyyymmdd
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// For ex: DICOM (0010,0030) = 19680427
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vtkSetStringMacro(PatientBirthDate);
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vtkGetStringMacro(PatientBirthDate);
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// For Tcl:
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// From C++ use GetPatientBirthDate + GetDateAsFields
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int GetPatientBirthDateYear();
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int GetPatientBirthDateMonth();
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int GetPatientBirthDateDay();
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// Description:
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// Study Date
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// Format: yyyymmdd
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// For ex: DICOM (0008,0020) = 20030617
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vtkSetStringMacro(StudyDate);
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vtkGetStringMacro(StudyDate);
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// Description:
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// Acquisition Date
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// Format: yyyymmdd
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// For ex: DICOM (0008,0022) = 20030617
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vtkSetStringMacro(AcquisitionDate);
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vtkGetStringMacro(AcquisitionDate);
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// For Tcl:
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// From C++ use GetAcquisitionDate + GetDateAsFields
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int GetAcquisitionDateYear();
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int GetAcquisitionDateMonth();
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int GetAcquisitionDateDay();
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// Description:
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// Study Time
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// Format: hhmmss.frac (any trailing component(s) can be omitted)
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// For ex: DICOM (0008,0030) = 162552.0705 or 230012, or 0012
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vtkSetStringMacro(StudyTime);
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vtkGetStringMacro(StudyTime);
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// Description:
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// Acquisition time
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// Format: hhmmss.frac (any trailing component(s) can be omitted)
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// For ex: DICOM (0008,0032) = 162552.0705 or 230012, or 0012
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vtkSetStringMacro(AcquisitionTime);
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vtkGetStringMacro(AcquisitionTime);
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// Description:
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// Image Date aka Content Date
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// Format: yyyymmdd
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// For ex: DICOM (0008,0023) = 20030617
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vtkSetStringMacro(ImageDate);
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vtkGetStringMacro(ImageDate);
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// For Tcl:
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// From C++ use GetImageDate + GetDateAsFields
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int GetImageDateYear();
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int GetImageDateMonth();
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int GetImageDateDay();
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// Description:
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// Take as input a string in ISO 8601 date (YYYY/MM/DD) and extract the
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// different fields namely: year month day
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// Return 0 on error, 1 on success
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static int GetDateAsFields(const char *date, int &year, int &month, int &day);
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// Description:
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// Take as input a string in VR:TM format (HHMMSS) and extract the
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// different fields namely: hour, minute and second
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// Return 0 on error, 1 on success
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static int GetTimeAsFields(const char *time, int &hour, int &minute, int &second /* , long &milliseconds */);
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// Description:
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// Take as input a string in ISO 8601 date (YYYY/MM/DD) and construct a
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// locale date based on the different fields (see GetDateAsFields to extract
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// different fields)
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// Return 0 on error, 1 on success
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static int GetDateAsLocale(const char *date, char *locale);
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// Description:
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// Image Time
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// Format: hhmmss.frac (any trailing component(s) can be omitted)
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// For ex: DICOM (0008,0033) = 162552.0705 or 230012, or 0012
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vtkSetStringMacro(ImageTime);
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vtkGetStringMacro(ImageTime);
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// Description:
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// Image number
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// For ex: DICOM (0020,0013) = 1
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vtkSetStringMacro(ImageNumber);
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vtkGetStringMacro(ImageNumber);
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// Description:
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// Series number
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// For ex: DICOM (0020,0011) = 902
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vtkSetStringMacro(SeriesNumber);
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vtkGetStringMacro(SeriesNumber);
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// Description:
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// Series Description
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// User provided description of the Series
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// For ex: DICOM (0008,103e) = SCOUT
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vtkSetStringMacro(SeriesDescription);
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vtkGetStringMacro(SeriesDescription);
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// Description:
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// Study ID
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// For ex: DICOM (0020,0010) = 37481
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vtkSetStringMacro(StudyID);
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vtkGetStringMacro(StudyID);
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// Description:
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// Study description
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// For ex: DICOM (0008,1030) = BRAIN/C-SP/FACIAL
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vtkSetStringMacro(StudyDescription);
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vtkGetStringMacro(StudyDescription);
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// Description:
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// Modality
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// For ex: DICOM (0008,0060)= CT
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vtkSetStringMacro(Modality);
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vtkGetStringMacro(Modality);
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// Description:
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// Manufacturer
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// For ex: DICOM (0008,0070) = Siemens
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vtkSetStringMacro(Manufacturer);
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vtkGetStringMacro(Manufacturer);
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// Description:
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// Manufacturer's Model Name
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// For ex: DICOM (0008,1090) = LightSpeed QX/i
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vtkSetStringMacro(ManufacturerModelName);
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vtkGetStringMacro(ManufacturerModelName);
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// Description:
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// Station Name
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// For ex: DICOM (0008,1010) = LSPD_OC8
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vtkSetStringMacro(StationName);
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vtkGetStringMacro(StationName);
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// Description:
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// Institution Name
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// For ex: DICOM (0008,0080) = FooCity Medical Center
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vtkSetStringMacro(InstitutionName);
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vtkGetStringMacro(InstitutionName);
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// Description:
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// Convolution Kernel (or algorithm used to reconstruct the data)
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// For ex: DICOM (0018,1210) = Bone
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vtkSetStringMacro(ConvolutionKernel);
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vtkGetStringMacro(ConvolutionKernel);
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// Description:
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// Slice Thickness (Nominal reconstructed slice thickness, in mm)
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// For ex: DICOM (0018,0050) = 0.273438
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vtkSetStringMacro(SliceThickness);
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vtkGetStringMacro(SliceThickness);
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virtual double GetSliceThicknessAsDouble();
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// Description:
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// Peak kilo voltage output of the (x-ray) generator used
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// For ex: DICOM (0018,0060) = 120
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vtkSetStringMacro(KVP);
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vtkGetStringMacro(KVP);
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// Description:
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// Gantry/Detector tilt (Nominal angle of tilt in degrees of the scanning
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// gantry.)
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// For ex: DICOM (0018,1120) = 15
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vtkSetStringMacro(GantryTilt);
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vtkGetStringMacro(GantryTilt);
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virtual double GetGantryTiltAsDouble();
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// Description:
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// Echo Time
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// (Time in ms between the middle of the excitation pulse and the peak of
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// the echo produced)
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// For ex: DICOM (0018,0081) = 105
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vtkSetStringMacro(EchoTime);
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vtkGetStringMacro(EchoTime);
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// Description:
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// Echo Train Length
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// (Number of lines in k-space acquired per excitation per image)
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// For ex: DICOM (0018,0091) = 35
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vtkSetStringMacro(EchoTrainLength);
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vtkGetStringMacro(EchoTrainLength);
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// Description:
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// Repetition Time
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// The period of time in msec between the beginning of a pulse sequence and
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// the beginning of the succeeding (essentially identical) pulse sequence.
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// For ex: DICOM (0018,0080) = 2040
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vtkSetStringMacro(RepetitionTime);
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vtkGetStringMacro(RepetitionTime);
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// Description:
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// Exposure time (time of x-ray exposure in msec)
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// For ex: DICOM (0018,1150) = 5
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vtkSetStringMacro(ExposureTime);
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vtkGetStringMacro(ExposureTime);
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// Description:
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// X-ray tube current (in mA)
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// For ex: DICOM (0018,1151) = 400
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vtkSetStringMacro(XRayTubeCurrent);
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vtkGetStringMacro(XRayTubeCurrent);
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// Description:
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// Exposure (The exposure expressed in mAs, for example calculated
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// from Exposure Time and X-ray Tube Current)
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// For ex: DICOM (0018,1152) = 114
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vtkSetStringMacro(Exposure);
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vtkGetStringMacro(Exposure);
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// Description:
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// Get the direction cosine (default to 1,0,0,0,1,0)
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vtkSetVector6Macro(DirectionCosine,double);
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vtkGetVector6Macro(DirectionCosine,double);
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// Interface to allow insertion of user define values, for instance in DICOM
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// one would want to
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// store the Protocol Name (0018,1030), in this case one would do:
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// AddUserDefinedValue( "Protocol Name", "T1W/SE/1024" );
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virtual void AddUserDefinedValue(const char *name, const char *value);
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virtual const char *GetUserDefinedValue(const char *name);
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virtual unsigned int GetNumberOfUserDefinedValues();
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virtual const char *GetUserDefinedNameByIndex(unsigned int idx);
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virtual const char *GetUserDefinedValueByIndex(unsigned int idx);
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virtual void RemoveAllUserDefinedValues();
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// Description:
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// Add/Remove/Query the window/level presets that may have been associated
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// to a medical image. Window is also known as 'width', level is also known
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// as 'center'. The same window/level pair can not be added twice.
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// As a convenience, a comment (aka Explanation) can be associated to
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// a preset.
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// For ex:
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// \verbatim
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// DICOM Window Center (0028,1050) = 00045\000470
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// DICOM Window Width (0028,1051) = 0106\03412
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// DICOM Window Center Width Explanation (0028,1055) = WINDOW1\WINDOW2
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// \endverbatim
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virtual int AddWindowLevelPreset(double w, double l);
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virtual void RemoveWindowLevelPreset(double w, double l);
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virtual void RemoveAllWindowLevelPresets();
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virtual int GetNumberOfWindowLevelPresets();
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virtual int HasWindowLevelPreset(double w, double l);
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virtual int GetWindowLevelPresetIndex(double w, double l);
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virtual int GetNthWindowLevelPreset(int idx, double *w, double *l);
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virtual double* GetNthWindowLevelPreset(int idx);
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virtual void SetNthWindowLevelPresetComment(int idx, const char *comment);
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virtual const char* GetNthWindowLevelPresetComment(int idx);
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// Description:
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// Mapping from a sliceidx within a volumeidx into a DICOM Instance UID
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// Some DICOM reader can populate this structure so that later on from
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// a slice index in a vtkImageData volume we can backtrack and find out
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// which 2d slice it was coming from
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const char *GetInstanceUIDFromSliceID(int volumeidx, int sliceid);
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void SetInstanceUIDFromSliceID(int volumeidx, int sliceid, const char *uid);
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// Description:
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// Provides the inverse mapping. Returns -1 if a slice for this uid is
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// not found.
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int GetSliceIDFromInstanceUID(int &volumeidx, const char *uid);
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//BTX
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typedef enum {
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AXIAL = 0,
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CORONAL,
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SAGITTAL
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} OrientationType;
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//ETX
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int GetOrientationType(int volumeidx);
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void SetOrientationType(int volumeidx, int orientation);
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static const char *GetStringFromOrientationType(unsigned int type);
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// Description:
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// Copy the contents of p to this instance.
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virtual void DeepCopy(vtkMedicalImageProperties *p);
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protected:
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vtkMedicalImageProperties();
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~vtkMedicalImageProperties();
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char *StudyDate;
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char *AcquisitionDate;
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char *StudyTime;
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char *AcquisitionTime;
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char *ConvolutionKernel;
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char *EchoTime;
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char *EchoTrainLength;
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char *Exposure;
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char *ExposureTime;
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char *GantryTilt;
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char *ImageDate;
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char *ImageNumber;
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char *ImageTime;
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char *InstitutionName;
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char *KVP;
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char *ManufacturerModelName;
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char *Manufacturer;
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char *Modality;
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char *PatientAge;
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char *PatientBirthDate;
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char *PatientID;
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char *PatientName;
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char *PatientSex;
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char *RepetitionTime;
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char *SeriesDescription;
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char *SeriesNumber;
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char *SliceThickness;
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char *StationName;
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char *StudyDescription;
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char *StudyID;
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char *XRayTubeCurrent;
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double DirectionCosine[6];
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//BTX
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// Description:
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// PIMPL Encapsulation for STL containers
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vtkMedicalImagePropertiesInternals *Internals;
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//ETX
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private:
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vtkMedicalImageProperties(const vtkMedicalImageProperties&); // Not implemented.
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void operator=(const vtkMedicalImageProperties&); // Not implemented.
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};
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#endif
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