Geant4  9.6.p02
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G4MIRDLiver.cc
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25 //
26 // Authors: S. Guatelli and M. G. Pia, INFN Genova, Italy
27 //
28 // Based on code developed by the undergraduate student G. Guerrieri
29 // Note: this is a preliminary beta-version of the code; an improved
30 // version will be distributed in the next Geant4 public release, compliant
31 // with the design in a forthcoming publication, and subject to a
32 // design and code review.
33 //
34 #include "G4MIRDLiver.hh"
35 #include "globals.hh"
36 #include "G4SDManager.hh"
37 #include "G4VisAttributes.hh"
39 #include "G4SDManager.hh"
40 #include "G4PVPlacement.hh"
41 #include "G4SubtractionSolid.hh"
42 #include "G4Ellipsoid.hh"
43 #include "G4ThreeVector.hh"
44 #include "G4VPhysicalVolume.hh"
45 #include "G4RotationMatrix.hh"
46 #include "G4Material.hh"
47 #include "G4EllipticalTube.hh"
48 #include "G4Box.hh"
49 #include <cmath>
50 
52 {
53 }
54 
56 {
57 }
58 
60  const G4String&, G4bool, G4bool)
61 {
62  G4cout << "MIRD Liver is not available yet !!!" << G4endl;
63 
64 // G4HumanPhantomMaterial* material = new G4HumanPhantomMaterial();
65 // G4Material* soft = material -> GetMaterial("soft_tissue");
66 // delete material;
67 
68 // G4double dx= 14.19 *cm; //a
69 // G4double dy= 7.84 *cm; //b
70 // G4double dz= 7.21* cm; //(z2-z1)/2
71 
72 // G4EllipticalTube* firstLiver = new G4EllipticalTube("FirstLiver",dx, dy, dz);
73 
74 // G4double xx = 20.00 * cm;
75 // G4double yy = 50.00 * cm;
76 // G4double zz = 50.00 *cm;
77 
78 // G4Box* subtrLiver = new G4Box("SubtrLiver", xx/2., yy/2., zz/2.);
79 
80 // G4RotationMatrix* rm_relative = new G4RotationMatrix();
81 // rm_relative -> rotateY(32.* degree);
82 // rm_relative -> rotateZ(40.9* degree);
83 
84 // G4double aa = (1.00/31.51);
85 // G4double bb = (1.00/44.75);
86 // G4double cc = (-1.00/38.76);
87 // G4cout<< aa << " "<< bb << " "<<cc<< G4endl;
88 
89 // G4double dd = sqrt(aa*aa + bb*bb + cc*cc);
90 // G4cout<< "dd" << dd << G4endl;
91 // G4cout << aa/dd << "" << bb/dd << " "<< cc/dd <<G4endl;
92 // G4cout << (std::atan(1.42))/deg << G4endl;
93 
94 // G4SubtractionSolid* liver = new G4SubtractionSolid("Liver",
95 // firstLiver,subtrLiver,
96 // rm_relative,
97 // G4ThreeVector(10.0*cm,0.0*cm,0.0 *cm));
98 
99 
100 // G4LogicalVolume* logicLiver = new G4LogicalVolume(liver,
101 // soft,
102 // "LiverVolume",
103 // 0, 0, 0);
104 
105 // G4RotationMatrix* rm = new G4RotationMatrix();
106 // rm -> rotateX(180.* degree);
107 
108 // // Define rotation and position here!
109 // G4VPhysicalVolume* physLiver = new G4PVPlacement(rm,G4ThreeVector(0. *cm,0. *cm,0.*cm),
110 // "physicalLiver",
111 // logicLiver,
112 // mother,
113 // false,
114 // 0);
115 
116 // // Sensitive Body Part
117 // if (sensitivity==true)
118 // {
119 // G4SDManager* SDman = G4SDManager::GetSDMpointer();
120 // logicLiver->SetSensitiveDetector( SDman->FindSensitiveDetector("BodyPartSD") );
121 // }
122 
123 // // Visualization Attributes
124 // G4VisAttributes* LiverVisAtt = new G4VisAttributes(G4Colour(2.0,2.0,0.0));
125 // LiverVisAtt->SetForceSolid(true);
126 // logicLiver->SetVisAttributes(LiverVisAtt);
127 
128 // G4cout << "Liver created !!!!!!" << G4endl;
129 
130 // // Testing Liver Volume
131 // G4double LiverVol = logicLiver->GetSolid()->GetCubicVolume();
132 // G4cout << "Volume of Liver = " << LiverVol/cm3 << " cm^3" << G4endl;
133 
134 // // Testing Liver Material
135 // G4String LiverMat = logicLiver->GetMaterial()->GetName();
136 // G4cout << "Material of Liver = " << LiverMat << G4endl;
137 
138 // // Testing Density
139 // G4double LiverDensity = logicLiver->GetMaterial()->GetDensity();
140 // G4cout << "Density of Material = " << LiverDensity*cm3/g << " g/cm^3" << G4endl;
141 
142 // // Testing Mass
143 // G4double LiverMass = (LiverVol)*LiverDensity;
144 // G4cout << "Mass of Liver = " << LiverMass/gram << " g" << G4endl;
145 
146 // return physLiver;
147  return 0;
148 }