Chaste Release::3.1
SingleOdeWntCellCycleModel.cpp
00001 /*
00002 
00003 Copyright (c) 2005-2012, University of Oxford.
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00008 Square, Oxford OX1 2JD, UK.
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00034 */
00035 
00036 #include "UblasIncludes.hpp"
00037 #include "SingleOdeWntCellCycleModel.hpp"
00038 
00039 SingleOdeWntCellCycleModel::SingleOdeWntCellCycleModel(boost::shared_ptr<AbstractCellCycleModelOdeSolver> pOdeSolver)
00040     : CellCycleModelOdeHandler(DOUBLE_UNSET, pOdeSolver),
00041       mBetaCateninDivisionThreshold(100)// MAGIC NUMBER!
00042 {
00043     if (mpOdeSolver == boost::shared_ptr<AbstractCellCycleModelOdeSolver>())
00044     {
00045 #ifdef CHASTE_CVODE
00046         mpOdeSolver = CellCycleModelOdeSolver<SingleOdeWntCellCycleModel, CvodeAdaptor>::Instance();
00047         mpOdeSolver->Initialise();
00048         mpOdeSolver->SetMaxSteps(10000);
00049 #else
00050         mpOdeSolver = CellCycleModelOdeSolver<SingleOdeWntCellCycleModel, RungeKutta4IvpOdeSolver>::Instance();
00051         mpOdeSolver->Initialise();
00052         SetDt(0.001);
00053 #endif //CHASTE_CVODE
00054     }
00055     assert(mpOdeSolver->IsSetUp());
00056 }
00057 
00058 AbstractCellCycleModel* SingleOdeWntCellCycleModel::CreateCellCycleModel()
00059 {
00060     // Create a new cell-cycle model
00061     SingleOdeWntCellCycleModel* p_model = new SingleOdeWntCellCycleModel(this->mpOdeSolver);
00062 
00063     /*
00064      * Set each member variable of the new cell-cycle model that inherits
00065      * its value from the parent.
00066      *
00067      * Note 1: some of the new cell-cycle model's member variables (namely
00068      * mBirthTime, mCurrentCellCyclePhase, mReadyToDivide, mDt, mpOdeSolver)
00069      * will already have been correctly initialized in its constructor.
00070      *
00071      * Note 2: one or more of the new cell-cycle model's member variables
00072      * may be set/overwritten as soon as InitialiseDaughterCell() is called on
00073      * the new cell-cycle model.
00074      */
00075     p_model->SetBirthTime(mBirthTime);
00076     p_model->SetDimension(mDimension);
00077     p_model->SetMinimumGapDuration(mMinimumGapDuration);
00078     p_model->SetStemCellG1Duration(mStemCellG1Duration);
00079     p_model->SetTransitCellG1Duration(mTransitCellG1Duration);
00080     p_model->SetSDuration(mSDuration);
00081     p_model->SetG2Duration(mG2Duration);
00082     p_model->SetMDuration(mMDuration);
00083     p_model->SetUseCellProliferativeTypeDependentG1Duration(mUseCellProliferativeTypeDependentG1Duration);
00084     p_model->SetWntStemThreshold(mWntStemThreshold);
00085     p_model->SetWntTransitThreshold(mWntTransitThreshold);
00086     p_model->SetWntLabelledThreshold(mWntLabelledThreshold);
00087     p_model->SetLastTime(mLastTime);
00088     p_model->SetBetaCateninDivisionThreshold(mBetaCateninDivisionThreshold);
00089 
00090     /*
00091      * Create the new cell-cycle model's ODE system and use the current values
00092      * of the state variables in mpOdeSystem as an initial condition.
00093      */
00094     assert(mpOdeSystem);
00095     double wnt_level = this->GetWntLevel();
00096     p_model->SetOdeSystem(new Mirams2010WntOdeSystem(wnt_level, mpCell->GetMutationState()));
00097     p_model->SetStateVariables(mpOdeSystem->rGetStateVariables());
00098 
00099     return p_model;
00100 }
00101 
00102 void SingleOdeWntCellCycleModel::UpdateCellCyclePhase()
00103 {
00104     assert(SimulationTime::Instance()->IsStartTimeSetUp());
00105     SolveOdeToTime(SimulationTime::Instance()->GetTime());
00106     ChangeCellProliferativeTypeDueToCurrentBetaCateninLevel();
00107     AbstractSimpleCellCycleModel::UpdateCellCyclePhase(); 
00108 }
00109 
00110 void SingleOdeWntCellCycleModel::Initialise()
00111 {
00112     assert(mpOdeSystem == NULL);
00113     assert(mpCell != NULL);
00114 
00115     double wnt_level = this->GetWntLevel();
00116     mpOdeSystem = new Mirams2010WntOdeSystem(wnt_level, mpCell->GetMutationState());
00117     mpOdeSystem->SetStateVariables(mpOdeSystem->GetInitialConditions());
00118 
00119     // MAGIC NUMBER!
00120     //mBetaCateninDivisionThreshold = 100.0;
00121 
00122     // This call actually sets up the G1 phase to something sensible (random number generated)
00123     SimpleWntCellCycleModel::Initialise();
00124 
00125     SetLastTime(mBirthTime);
00126 
00127     ChangeCellProliferativeTypeDueToCurrentBetaCateninLevel();
00128 }
00129 
00130 void SingleOdeWntCellCycleModel::AdjustOdeParameters(double currentTime)
00131 {
00132     // Pass this time step's Wnt stimulus into the solver as a constant over this timestep.
00133     mpOdeSystem->rGetStateVariables()[2] = this->GetWntLevel();
00134 
00135     // Use the cell's current mutation status as another input
00136     static_cast<Mirams2010WntOdeSystem*>(mpOdeSystem)->SetMutationState(mpCell->GetMutationState());
00137 }
00138 
00139 void SingleOdeWntCellCycleModel::ChangeCellProliferativeTypeDueToCurrentBetaCateninLevel()
00140 {
00141     assert(mpOdeSystem != NULL);
00142     assert(mpCell != NULL);
00143 
00144     CellProliferativeType cell_type = TRANSIT;
00145     if (GetBetaCateninConcentration() < GetBetaCateninDivisionThreshold())
00146     {
00147         cell_type = DIFFERENTIATED;
00148     }
00149 
00150     mpCell->SetCellProliferativeType(cell_type);
00151 }
00152 
00153 double SingleOdeWntCellCycleModel::GetBetaCateninConcentration()
00154 {
00155     return mpOdeSystem->rGetStateVariables()[0] + mpOdeSystem->rGetStateVariables()[1];
00156 }
00157 
00158 void SingleOdeWntCellCycleModel::SetBetaCateninDivisionThreshold(double betaCateninDivisionThreshold)
00159 {
00160     mBetaCateninDivisionThreshold = betaCateninDivisionThreshold;
00161 }
00162 
00163 double SingleOdeWntCellCycleModel::GetBetaCateninDivisionThreshold()
00164 {
00165     return mBetaCateninDivisionThreshold;
00166 }
00167 
00168 void SingleOdeWntCellCycleModel::OutputCellCycleModelParameters(out_stream& rParamsFile)
00169 {
00170     // No new parameters to output
00171 
00172     // Call method on direct parent class
00173     SimpleWntCellCycleModel::OutputCellCycleModelParameters(rParamsFile);
00174 }
00175 
00176 // Declare identifier for the serializer
00177 #include "SerializationExportWrapperForCpp.hpp"
00178 CHASTE_CLASS_EXPORT(SingleOdeWntCellCycleModel)
00179 #include "CellCycleModelOdeSolverExportWrapper.hpp"
00180 EXPORT_CELL_CYCLE_MODEL_ODE_SOLVER(SingleOdeWntCellCycleModel)