Chaste Commit::baa90ac2819b962188b7562f2326be23c47859a7
Alarcon2004OxygenBasedCellCycleModel.cpp
1/*
2
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34*/
35
36#include "Alarcon2004OxygenBasedCellCycleModel.hpp"
37
38#include "CellLabel.hpp"
39
40Alarcon2004OxygenBasedCellCycleModel::Alarcon2004OxygenBasedCellCycleModel(boost::shared_ptr<AbstractCellCycleModelOdeSolver> pOdeSolver)
41 : AbstractOdeBasedPhaseBasedCellCycleModel(SimulationTime::Instance()->GetTime(), pOdeSolver)
42{
43 if (!mpOdeSolver)
44 {
46 mpOdeSolver->Initialise();
47 }
48 SetDt(0.0001);
49}
50
53{
54 /*
55 * Initialize only those member variables defined in this class.
56 * Create the new cell-cycle model's ODE system and use the current
57 * values of the state variables in mpOdeSystem as an initial condition.
58 *
59 * The member variables mCurrentCellCyclePhase, mG1Duration,
60 * mMinimumGapDuration, mStemCellG1Duration, mTransitCellG1Duration,
61 * mSDuration, mG2Duration and mMDuration are initialized in the
62 * AbstractPhaseBasedCellCycleModel constructor.
63 *
64 * The member variables mBirthTime, mReadyToDivide and mDimension
65 * are initialized in the AbstractCellCycleModel constructor.
66 */
67
68 assert(rModel.GetOdeSystem());
69 bool is_labelled = rModel.mpCell->HasCellProperty<CellLabel>();
70 SetOdeSystem(new Alarcon2004OxygenBasedCellCycleOdeSystem(rModel.mpCell->GetCellData()->GetItem("oxygen"), is_labelled));
72}
73
78
80{
82 assert(mpOdeSystem != nullptr);
83
84 // This model needs the protein concentrations and phase resetting to G0/G1.
85 // Keep the oxygen concentration the same but reset everything else
86 std::vector<double> init_conds = mpOdeSystem->GetInitialConditions();
87 for (unsigned i=0; i<5; i++)
88 {
89 mpOdeSystem->rGetStateVariables()[i] = init_conds[i];
90 }
91}
92
94{
95 assert(mpOdeSystem == nullptr);
96 assert(mpCell != nullptr);
97
98 bool is_labelled = mpCell->HasCellProperty<CellLabel>();
99 mpOdeSystem = new Alarcon2004OxygenBasedCellCycleOdeSystem(mpCell->GetCellData()->GetItem("oxygen"), is_labelled);
101
103}
104
106{
107 // Pass this time step's oxygen concentration into the solver as a constant over this time step
108 mpOdeSystem->rGetStateVariables()[5] = mpCell->GetCellData()->GetItem("oxygen");
109
110 // Use whether the cell is currently labelled as another input
111 bool is_labelled = mpCell->HasCellProperty<CellLabel>();
112 static_cast<Alarcon2004OxygenBasedCellCycleOdeSystem*>(mpOdeSystem)->SetIsLabelled(is_labelled);
113}
114
116{
117 // No new parameters to output, so just call method on direct parent class
119}
120
121// Serialization for Boost >= 1.36
124#include "CellCycleModelOdeSolverExportWrapper.hpp"
125EXPORT_CELL_CYCLE_MODEL_ODE_SOLVER(Alarcon2004OxygenBasedCellCycleModel)
#define CHASTE_CLASS_EXPORT(T)
void SetStateVariables(const VECTOR &rStateVariables)
virtual void OutputCellCycleModelParameters(out_stream &rParamsFile)
Alarcon2004OxygenBasedCellCycleModel(const Alarcon2004OxygenBasedCellCycleModel &rModel)
void SetOdeSystem(AbstractOdeSystem *pOdeSystem)
boost::shared_ptr< AbstractCellCycleModelOdeSolver > mpOdeSolver
void SetStateVariables(const std::vector< double > &rStateVariables)
AbstractOdeSystem * GetOdeSystem() const
static boost::shared_ptr< CellCycleModelOdeSolver< CELL_CYCLE_MODEL, ODE_SOLVER > > Instance()