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Public Member Functions
DicomPhantomZSliceMerged Class Reference

#include <DicomPhantomZSliceMerged.hh>

Public Member Functions

 DicomPhantomZSliceMerged ()
 
 ~DicomPhantomZSliceMerged ()
 
void AddZSlice (DicomPhantomZSliceHeader *val)
 
void CheckSlices ()
 
void DumpExcessMemory ()
 

Detailed Description

Definition at line 47 of file DicomPhantomZSliceMerged.hh.

Constructor & Destructor Documentation

DicomPhantomZSliceMerged::DicomPhantomZSliceMerged ( )

Definition at line 48 of file DicomPhantomZSliceMerged.cc.

50 {
51 
52 }
DicomPhantomZSliceMerged::~DicomPhantomZSliceMerged ( )

Definition at line 56 of file DicomPhantomZSliceMerged.cc.

57 {
58  fSlices.clear();
59 }

Member Function Documentation

void DicomPhantomZSliceMerged::AddZSlice ( DicomPhantomZSliceHeader val)
inline

Definition at line 56 of file DicomPhantomZSliceMerged.hh.

References DicomPhantomZSliceHeader::GetSliceLocation().

Referenced by DicomHandler::ReadFile().

56  {
57  fSlices[val->GetSliceLocation()] = val;
58  //std::cout << "Slice Location : " << val->GetSliceLocation()/mm << " mm" << std::endl;
59  }
const G4double & GetSliceLocation() const
void DicomPhantomZSliceMerged::CheckSlices ( )

Definition at line 63 of file DicomPhantomZSliceMerged.cc.

References G4cout, G4endl, DicomPhantomZSliceHeader::GetMaxZ(), DicomPhantomZSliceHeader::GetMinZ(), DicomPhantomZSliceHeader::GetSliceLocation(), python.hepunit::mm, DicomPhantomZSliceHeader::SetMaxZ(), and DicomPhantomZSliceHeader::SetMinZ().

Referenced by DicomHandler::CheckFileFormat().

64 {
65  G4cout << "\nDicomPhantomZSliceMerged::Checking "
66  << fSlices.size() << " fSlices..." << G4endl;
67 
68  G4bool uniformSliceThickness = true;
69 
70  if(fSlices.size() > 1) {
71  if(fSlices.size() == 2) {
72  DicomPhantomZSliceHeader* one = fSlices.begin()->second;
73  DicomPhantomZSliceHeader* two = fSlices.end()->second;
74 
75  G4double real_distance = (two->GetSliceLocation()-one->GetSliceLocation())/2.;
76 
77  if(one->GetMaxZ() != two->GetMinZ()) {
78  one->SetMaxZ(one->GetSliceLocation()+real_distance);
79  two->SetMinZ(two->GetSliceLocation()-real_distance);
80  //one->SetMinZ(one->GetSliceLocation()-real_distance);
81  //two->SetMaxZ(two->GetSliceLocation()+real_distance);
82  if(uniformSliceThickness) {
83  one->SetMinZ(one->GetSliceLocation()-real_distance);
84  two->SetMaxZ(two->GetSliceLocation()+real_distance);
85  }
86  }
87  } else {
88  std::map<G4double,DicomPhantomZSliceHeader*>::iterator ite0 = fSlices.begin();
89  std::map<G4double,DicomPhantomZSliceHeader*>::iterator ite1 = fSlices.begin();
90  std::map<G4double,DicomPhantomZSliceHeader*>::iterator ite2 = fSlices.begin();
91  ++ite1;
92  ++ite2; ++ite2;
93 
94  for(; ite2 != fSlices.end(); ++ite0, ++ite1, ++ite2) {
95  DicomPhantomZSliceHeader* prev = ite0->second;
96  DicomPhantomZSliceHeader* slice = ite1->second;
97  DicomPhantomZSliceHeader* next = ite2->second;
98  G4double real_max_distance = (next->GetSliceLocation() -
99  slice->GetSliceLocation())/2.;
100  G4double real_min_distance = (slice->GetSliceLocation() -
101  prev->GetSliceLocation())/2.;
102  G4double real_distance = real_max_distance + real_min_distance;
103  G4double stated_distance = slice->GetMaxZ()-slice->GetMinZ();
104  if(real_distance != stated_distance) {
105  unsigned int sliceNum = std::distance(fSlices.begin(),ite1);
106  G4cout << "\tDicomPhantomZSliceMerged::CheckSlices - \
107  Slice Distance Error in slice [" << sliceNum << "]: Real Distance = "
108  << real_distance/mm
109  << " mm, Stated Distance = " << stated_distance/mm << G4endl;
110  slice->SetMinZ(slice->GetSliceLocation()-real_min_distance);
111  slice->SetMaxZ(slice->GetSliceLocation()+real_max_distance);
112 
113  if(ite0 == fSlices.begin()) {
114  prev->SetMaxZ(slice->GetMinZ());
115  // Using below would make all slice same thickness
116  //prev->SetMinZ(prev->GetSliceLocation()-real_min_distance);
117  if(uniformSliceThickness) {
118  prev->SetMinZ(prev->GetSliceLocation()-real_min_distance); }
119 
120  }
121  if(static_cast<unsigned int>(std::distance(fSlices.begin(), ite2)+1) ==
122  fSlices.size()) {
123  next->SetMinZ(slice->GetMaxZ());
124  // Using below would make all slice same thickness
125  //next->SetMaxZ(next->GetSliceLocation()+real_max_distance);
126  if(uniformSliceThickness) {
127  next->SetMaxZ(next->GetSliceLocation()+real_max_distance); }
128  }
129  }
130  }
131  }
132  }
133  G4cout << G4endl;
134 
135  std::map<G4double,DicomPhantomZSliceHeader*>::iterator ite = fSlices.begin();
136  for(ite = fSlices.begin(); ite != fSlices.end(); ++ite) {
137  ite->second->DumpToFile();
138  }
139 
140 
141 }
void SetMinZ(const G4double &val)
const G4double & GetSliceLocation() const
G4GLOB_DLL std::ostream G4cout
bool G4bool
Definition: G4Types.hh:79
#define G4endl
Definition: G4ios.hh:61
double G4double
Definition: G4Types.hh:76
void SetMaxZ(const G4double &val)
void DicomPhantomZSliceMerged::DumpExcessMemory ( )
inline

Definition at line 75 of file DicomPhantomZSliceMerged.hh.

76 {
77  for(std::map<G4double,DicomPhantomZSliceHeader*>::iterator ite = fSlices.begin();
78  ite != fSlices.end(); ++ite) {
79  ite->second->DumpExcessMemory();
80  }
81 }

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