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Monodomain.h
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1 ///////////////////////////////////////////////////////////////////////////////
2 //
3 // File Monodomain.h
4 //
5 // For more information, please see: http://www.nektar.info
6 //
7 // The MIT License
8 //
9 // Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
10 // Department of Aeronautics, Imperial College London (UK), and Scientific
11 // Computing and Imaging Institute, University of Utah (USA).
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31 //
32 // Description: Monodomain cardiac electrophysiology homogenised model.
33 //
34 ///////////////////////////////////////////////////////////////////////////////
35 
36 #ifndef NEKTAR_SOLVERS_ADRSOLVER_EQUATIONSYSTEMS_MONODOMAIN_H
37 #define NEKTAR_SOLVERS_ADRSOLVER_EQUATIONSYSTEMS_MONODOMAIN_H
38 
42 
43 using namespace Nektar::SolverUtils;
44 
45 namespace Nektar
46 {
47 
48 
49  /// A model for cardiac conduction.
50  class Monodomain : public UnsteadySystem
51  {
52  public:
53  friend class MemoryManager<Monodomain>;
54 
55  /// Creates an instance of this class
56  static EquationSystemSharedPtr create(
58  {
60  p->InitObject();
61  return p;
62  }
63 
64  /// Name of class
65  static std::string className;
66 
67  /// Desctructor
68  virtual ~Monodomain();
69 
70  protected:
71  /// Constructor
72  Monodomain(
73  const LibUtilities::SessionReaderSharedPtr& pSession);
74 
75  virtual void v_InitObject();
76 
77  /// Solve for the diffusion term.
78  void DoImplicitSolve(
79  const Array<OneD, const Array<OneD, NekDouble> >&inarray,
80  Array<OneD, Array<OneD, NekDouble> >&outarray,
81  NekDouble time,
82  NekDouble lambda);
83 
84  /// Computes the reaction terms \f$f(u,v)\f$ and \f$g(u,v)\f$.
85  void DoOdeRhs(
86  const Array<OneD, const Array<OneD, NekDouble> >&inarray,
87  Array<OneD, Array<OneD, NekDouble> >&outarray,
88  const NekDouble time);
89 
90  /// Sets a custom initial condition.
91  virtual void v_SetInitialConditions(NekDouble initialtime,
92  bool dumpInitialConditions,
93  const int domain);
94 
95  /// Prints a summary of the model parameters.
96  virtual void v_GenerateSummary(SummaryList& s);
97 
98  private:
99  /// Cell model.
101 
102  std::vector<StimulusSharedPtr> m_stimulus;
103 
104  /// Variable diffusivity
106 
109 
110  /// Stimulus current
112 
113  void LoadStimuli();
114  };
115 
116 }
117 
118 #endif