Import Geant4 10.0.0 source tree
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@@ -23,7 +23,7 @@
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// Authors: S. Guatelli and M. G. Pia, INFN Genova, Italy
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// Authors: S. Guatelli , M. G. Pia, INFN Genova and F. Ambroglini INFN Perugia, Italy
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//
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// Based on code developed by the undergraduate student G. Guerrieri
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// Note: this is a preliminary beta-version of the code; an improved
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@@ -46,9 +46,12 @@
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#include "G4PVPlacement.hh"
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#include "G4Sphere.hh"
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#include "G4UnionSolid.hh"
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#include "G4HumanPhantomColour.hh"
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#include "G4SystemOfUnits.hh"
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G4MIRDHeart::G4MIRDHeart()
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{
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}
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G4MIRDHeart::~G4MIRDHeart()
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@@ -56,62 +59,56 @@ G4MIRDHeart::~G4MIRDHeart()
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}
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G4VPhysicalVolume* G4MIRDHeart::Construct(const G4String&,G4VPhysicalVolume*,
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const G4String&, G4bool, G4bool)
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G4VPhysicalVolume* G4MIRDHeart::Construct(const G4String& volumeName,G4VPhysicalVolume* mother,
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const G4String& colourName, G4bool wireFrame, G4bool)
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{
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G4cout << " MIRD Heart is not available yet !!!! " << G4endl;
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/*
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G4HumanPhantomMaterial* material = new G4HumanPhantomMaterial();
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G4Material* soft = material -> GetMaterial("soft_tissue");
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delete material;
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G4cout << "Construct " << volumeName <<" with mother "<<mother->GetName()<<G4endl;
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G4double ax= 4.00* cm;
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G4double by= 4.00 *cm;
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G4double cz= 7.00 *cm;
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G4double zcut1= -7.00 *cm;
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G4double zcut2= 0.0 *cm;
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G4HumanPhantomMaterial* material = new G4HumanPhantomMaterial();
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G4Ellipsoid* heart1 = new G4Ellipsoid("Heart1",ax, by, cz, zcut1, zcut2);
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G4double rmin =0.*cm;
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G4double rmax = 3.99*cm;
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G4double startphi = 0. * degree;
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G4double deltaphi = 360. * degree;
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G4double starttheta = 0. * degree;
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G4double deltatheta = 90. * degree;
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G4Sphere* heart2 = new G4Sphere("Heart2", rmin,rmax,
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startphi, deltaphi,
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starttheta, deltatheta);
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G4UnionSolid* heart = new G4UnionSolid("Heart", heart1, heart2);
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G4LogicalVolume* logicHeart = new G4LogicalVolume(heart, soft,
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"HeartVolume",
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0, 0, 0);
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G4RotationMatrix* matrix = new G4RotationMatrix();
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matrix -> rotateY(25. * degree);
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G4Material* soft = material -> GetMaterial("soft_tissue");
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// Define rotation and position here!
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G4VPhysicalVolume* physHeart = new G4PVPlacement(matrix,G4ThreeVector(0.0,-3.0*cm, 15.32 *cm),
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"physicalHeart",
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logicHeart,
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mother,
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false,
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0);
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G4double ax= 4.00* cm;
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G4double by= 4.00 *cm;
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G4double cz= 7.00 *cm;
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G4double zcut1= -7.00 *cm;
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G4double zcut2= 0.0 *cm;
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G4Ellipsoid* heart1 = new G4Ellipsoid("Heart1",ax, by, cz, zcut1, zcut2);
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G4double rmin =0.*cm;
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G4double rmax = 3.99*cm;
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G4double startphi = 0. * degree;
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G4double deltaphi = 360. * degree;
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G4double starttheta = 0. * degree;
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G4double deltatheta = 90. * degree;
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G4Sphere* heart2 = new G4Sphere("Heart2", rmin,rmax,
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startphi, deltaphi,
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starttheta, deltatheta);
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G4UnionSolid* heart = new G4UnionSolid("Heart", heart1, heart2);
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G4LogicalVolume* logicHeart = new G4LogicalVolume(heart, soft,
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"HeartVolume",
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0, 0, 0);
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// Sensitive Body Part
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if (sensitivity==true)
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{
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G4SDManager* SDman = G4SDManager::GetSDMpointer();
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logicHeart->SetSensitiveDetector( SDman->FindSensitiveDetector("BodyPartSD") );
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}
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// Define rotation and position here!
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G4RotationMatrix* rm = new G4RotationMatrix();
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rm->rotateY(25.*degree);
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G4VPhysicalVolume* physHeart = new G4PVPlacement(rm,G4ThreeVector(0.0,-3.0*cm, 15.32 *cm),
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"physicalHeart",
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logicHeart,
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mother,
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false,
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0,true);
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// Visualization Attributes
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G4VisAttributes* HeartVisAtt = new G4VisAttributes(G4Colour(1.0,0.0,0.0));
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HeartVisAtt->SetForceSolid(true);
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G4HumanPhantomColour* colourPointer = new G4HumanPhantomColour();
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G4Colour colour = colourPointer -> GetColour(colourName);
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G4VisAttributes* HeartVisAtt = new G4VisAttributes(colour);
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HeartVisAtt->SetForceSolid(wireFrame);
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logicHeart->SetVisAttributes(HeartVisAtt);
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G4cout << "Heart created !!!!!!" << G4endl;
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@@ -130,10 +127,8 @@ G4VPhysicalVolume* G4MIRDHeart::Construct(const G4String&,G4VPhysicalVolume*,
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// Testing Mass
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G4double HeartMass = (HeartVol)*HeartDensity;
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G4cout << "Mass of Heart = " << HeartMass/gram << " g" << G4endl;
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G4cout << "Mass of Heart = " << HeartMass/gram << " g" << G4endl;
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return physHeart;
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*/
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return 0;
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}
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