FoxModel2002Modified.hpp

00001 #ifndef _FoxModel2002Modified_
00002 #define _FoxModel2002Modified_
00003 
00004 // Model: fox_model_2002
00005 // Processed by pycml - CellML Tools in Python
00006 //     (translate: $Revision: 698 $, pycml: $Revision: 693 $)
00007 // on Wed May  9 07:45:54 2007
00008 
00009 #include <cmath>
00010 #include <cassert>
00011 #include "AbstractCardiacCell.hpp"
00012 #include "Exception.hpp"
00013 #include "AbstractStimulusFunction.hpp"
00014 #include "OdeSystemInformation.hpp"
00015 
00019 class FoxModel2002Modified : public AbstractCardiacCell
00020 {
00021 public:
00022     FoxModel2002Modified(AbstractIvpOdeSolver *pSolver,
00023                        AbstractStimulusFunction *pIntracellularStimulus)
00024         : AbstractCardiacCell(pSolver, 13, 0, pIntracellularStimulus)
00025     {
00026         mpSystemInfo = OdeSystemInformation<FoxModel2002Modified>::Instance();
00027 
00028         Init();
00029 
00030     }
00031 
00032     ~FoxModel2002Modified(void)
00033     {
00034     }
00035 
00036 
00037     double GetIIonic()
00038     {
00039         std::vector<double>& rY = rGetStateVariables();
00040         double var_membrane__V = rY[0];
00041         // Units: millivolt; Initial value: -94.7
00042         double var_fast_sodium_current_m_gate__m = rY[1];
00043         // Units: dimensionless; Initial value: 0.00024676
00044         double var_fast_sodium_current_h_gate__h = rY[2];
00045         // Units: dimensionless; Initial value: 0.99869
00046         double var_fast_sodium_current_j_gate__j = rY[3];
00047         // Units: dimensionless; Initial value: 0.99887
00048         double var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr = rY[4];
00049         // Units: dimensionless; Initial value: 0.229
00050         double var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks = rY[5];
00051         // Units: dimensionless; Initial value: 0.0001
00052         double var_transient_outward_potassium_current_X_to_gate__X_to = rY[6];
00053         // Units: dimensionless; Initial value: 0.00003742
00054         double var_transient_outward_potassium_current_Y_to_gate__Y_to = rY[7];
00055         // Units: dimensionless; Initial value: 1
00056         double var_L_type_Ca_current_f_gate__f = rY[8];
00057         // Units: dimensionless; Initial value: 0.983
00058         double var_L_type_Ca_current_d_gate__d = rY[9];
00059         // Units: dimensionless; Initial value: 0.0001
00060         double var_L_type_Ca_current_f_Ca_gate__f_Ca = rY[10];
00061         // Units: dimensionless; Initial value: 0.942
00062         double var_calcium_dynamics__Ca_i = rY[11];
00063         // Units: micromolar; Initial value: 0.0472
00064 
00065         const double var_membrane__R = 8.314;
00066         const double var_membrane__T = 310.0;
00067         const double var_membrane__F = 96.5;
00068         double var_fast_sodium_current__h = var_fast_sodium_current_h_gate__h;
00069         const double var_fast_sodium_current__g_Na = 12.8;
00070         double var_fast_sodium_current__j = var_fast_sodium_current_j_gate__j;
00071         double var_fast_sodium_current__T = var_membrane__T;
00072         double var_fast_sodium_current__R = var_membrane__R;
00073         const double var_standard_ionic_concentrations__Na_i = 10.0;
00074         double var_fast_sodium_current__Na_i = var_standard_ionic_concentrations__Na_i;
00075         const double var_standard_ionic_concentrations__Na_o = 138.0;
00076         double var_fast_sodium_current__Na_o = var_standard_ionic_concentrations__Na_o;
00077         double var_fast_sodium_current__F = var_membrane__F;
00078         double var_fast_sodium_current__E_Na = ((var_fast_sodium_current__R * var_fast_sodium_current__T) / var_fast_sodium_current__F) * log(var_fast_sodium_current__Na_o / var_fast_sodium_current__Na_i);
00079         double var_fast_sodium_current__V = var_membrane__V;
00080         double var_fast_sodium_current__m = var_fast_sodium_current_m_gate__m;
00081         double var_fast_sodium_current__i_Na = var_fast_sodium_current__g_Na * pow(var_fast_sodium_current__m, 3.0) * var_fast_sodium_current__h * var_fast_sodium_current__j * (var_fast_sodium_current__V - var_fast_sodium_current__E_Na);
00082         double var_membrane__i_Na = var_fast_sodium_current__i_Na;
00083         const double var_L_type_Ca_current__P_Ca = 1.26e-05; // was 2.26e-05;
00084         double var_L_type_Ca_current__V = var_membrane__V;
00085         const double var_standard_ionic_concentrations__Ca_o = 2000.0;
00086         double var_L_type_Ca_current__Ca_o = var_standard_ionic_concentrations__Ca_o;
00087         double var_L_type_Ca_current__T = var_membrane__T;
00088         const double var_L_type_Ca_current__C_sc = 1.0;
00089         double var_L_type_Ca_current__Ca_i = var_calcium_dynamics__Ca_i;
00090         double var_L_type_Ca_current__R = var_membrane__R;
00091         double var_L_type_Ca_current__F = var_membrane__F;
00092         double var_L_type_Ca_current__i_Ca_max = ((((var_L_type_Ca_current__P_Ca / var_L_type_Ca_current__C_sc) * 4.0 * var_L_type_Ca_current__V * pow(var_L_type_Ca_current__F, 2.0)) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) * ((var_L_type_Ca_current__Ca_i * exp((2.0 * var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T))) - (0.341 * var_L_type_Ca_current__Ca_o))) / (exp((2.0 * var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) - 1.0);
00093         double var_L_type_Ca_current__d = var_L_type_Ca_current_d_gate__d;
00094         double var_L_type_Ca_current__f = var_L_type_Ca_current_f_gate__f;
00095         double var_L_type_Ca_current__f_Ca = var_L_type_Ca_current_f_Ca_gate__f_Ca;
00096         double var_L_type_Ca_current__i_Ca = var_L_type_Ca_current__i_Ca_max * var_L_type_Ca_current__f * var_L_type_Ca_current__d * var_L_type_Ca_current__f_Ca;
00097         double var_membrane__i_Ca = var_L_type_Ca_current__i_Ca;
00098         const double var_standard_ionic_concentrations__K_o = 4.0;
00099         double var_L_type_Ca_current__K_o = var_standard_ionic_concentrations__K_o;
00100         const double var_L_type_Ca_current__i_Ca_half =  -0.265;
00101         const double var_L_type_Ca_current__P_CaK = 5.79e-07;
00102         const double var_standard_ionic_concentrations__K_i = 149.4;
00103         double var_L_type_Ca_current__K_i = var_standard_ionic_concentrations__K_i;
00104         double var_L_type_Ca_current__i_CaK = ((((((var_L_type_Ca_current__P_CaK / var_L_type_Ca_current__C_sc) * var_L_type_Ca_current__f * var_L_type_Ca_current__d * var_L_type_Ca_current__f_Ca) / (1.0 + (var_L_type_Ca_current__i_Ca_max / var_L_type_Ca_current__i_Ca_half))) * 1000.0 * var_L_type_Ca_current__V * pow(var_L_type_Ca_current__F, 2.0)) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) * ((var_L_type_Ca_current__K_i * exp((var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T))) - var_L_type_Ca_current__K_o)) / (exp((var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) - 1.0);
00105         double var_membrane__i_CaK = var_L_type_Ca_current__i_CaK;
00106         double var_rapid_activating_delayed_rectifiyer_K_current__V = var_membrane__V;
00107         double var_rapid_activating_delayed_rectifiyer_K_current__R_V = 1.0 / (1.0 + (2.5 * exp(0.1 * (var_rapid_activating_delayed_rectifiyer_K_current__V + 28.0))));
00108         double var_rapid_activating_delayed_rectifiyer_K_current__X_kr = var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr;
00109         double var_rapid_activating_delayed_rectifiyer_K_current__R = var_membrane__R;
00110         double var_rapid_activating_delayed_rectifiyer_K_current__K_o = var_standard_ionic_concentrations__K_o;
00111         double var_rapid_activating_delayed_rectifiyer_K_current__T = var_membrane__T;
00112         double var_rapid_activating_delayed_rectifiyer_K_current__K_i = var_standard_ionic_concentrations__K_i;
00113         double var_rapid_activating_delayed_rectifiyer_K_current__F = var_membrane__F;
00114         double var_rapid_activating_delayed_rectifiyer_K_current__E_K = ((var_rapid_activating_delayed_rectifiyer_K_current__R * var_rapid_activating_delayed_rectifiyer_K_current__T) / var_rapid_activating_delayed_rectifiyer_K_current__F) * log(var_rapid_activating_delayed_rectifiyer_K_current__K_o / var_rapid_activating_delayed_rectifiyer_K_current__K_i);
00115         const double var_rapid_activating_delayed_rectifiyer_K_current__g_Kr = 0.0136;
00116         double var_rapid_activating_delayed_rectifiyer_K_current__i_Kr = var_rapid_activating_delayed_rectifiyer_K_current__g_Kr * var_rapid_activating_delayed_rectifiyer_K_current__R_V * var_rapid_activating_delayed_rectifiyer_K_current__X_kr * sqrt(var_rapid_activating_delayed_rectifiyer_K_current__K_o / 4.0) * (var_rapid_activating_delayed_rectifiyer_K_current__V - var_rapid_activating_delayed_rectifiyer_K_current__E_K);
00117         double var_membrane__i_Kr = var_rapid_activating_delayed_rectifiyer_K_current__i_Kr;
00118         const double var_slow_activating_delayed_rectifiyer_K_current__g_Ks = 0.0245;
00119         double var_slow_activating_delayed_rectifiyer_K_current__V = var_membrane__V;
00120         double var_slow_activating_delayed_rectifiyer_K_current__K_i = var_standard_ionic_concentrations__K_i;
00121         double var_slow_activating_delayed_rectifiyer_K_current__F = var_membrane__F;
00122         double var_slow_activating_delayed_rectifiyer_K_current__K_o = var_standard_ionic_concentrations__K_o;
00123         double var_slow_activating_delayed_rectifiyer_K_current__T = var_membrane__T;
00124         double var_slow_activating_delayed_rectifiyer_K_current__Na_o = var_standard_ionic_concentrations__Na_o;
00125         double var_slow_activating_delayed_rectifiyer_K_current__R = var_membrane__R;
00126         double var_slow_activating_delayed_rectifiyer_K_current__Na_i = var_standard_ionic_concentrations__Na_i;
00127         double var_slow_activating_delayed_rectifiyer_K_current__E_Ks = ((var_slow_activating_delayed_rectifiyer_K_current__R * var_slow_activating_delayed_rectifiyer_K_current__T) / var_slow_activating_delayed_rectifiyer_K_current__F) * log((var_slow_activating_delayed_rectifiyer_K_current__K_o + (0.01833 * var_slow_activating_delayed_rectifiyer_K_current__Na_o)) / (var_slow_activating_delayed_rectifiyer_K_current__K_i + (0.01833 * var_slow_activating_delayed_rectifiyer_K_current__Na_i)));
00128         double var_slow_activating_delayed_rectifiyer_K_current__X_ks = var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks;
00129         double var_slow_activating_delayed_rectifiyer_K_current__i_Ks = var_slow_activating_delayed_rectifiyer_K_current__g_Ks * pow(var_slow_activating_delayed_rectifiyer_K_current__X_ks, 2.0) * (var_slow_activating_delayed_rectifiyer_K_current__V - var_slow_activating_delayed_rectifiyer_K_current__E_Ks);
00130         double var_membrane__i_Ks = var_slow_activating_delayed_rectifiyer_K_current__i_Ks;
00131         const double var_transient_outward_potassium_current__g_to = 0.23815;
00132         double var_transient_outward_potassium_current__V = var_membrane__V;
00133         double var_transient_outward_potassium_current__X_to = var_transient_outward_potassium_current_X_to_gate__X_to;
00134         double var_transient_outward_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00135         double var_transient_outward_potassium_current__Y_to = var_transient_outward_potassium_current_Y_to_gate__Y_to;
00136         double var_transient_outward_potassium_current__i_to = var_transient_outward_potassium_current__g_to * var_transient_outward_potassium_current__X_to * var_transient_outward_potassium_current__Y_to * (var_transient_outward_potassium_current__V - var_transient_outward_potassium_current__E_K);
00137         double var_membrane__i_to = var_transient_outward_potassium_current__i_to;
00138         const double var_time_independent_potassium_current__g_K1 = 2.8;
00139         double var_time_independent_potassium_current__F = var_membrane__F;
00140         double var_time_independent_potassium_current_K1_gate__F = var_time_independent_potassium_current__F;
00141         double var_time_independent_potassium_current__V = var_membrane__V;
00142         double var_time_independent_potassium_current_K1_gate__V = var_time_independent_potassium_current__V;
00143         double var_time_independent_potassium_current__T = var_membrane__T;
00144         double var_time_independent_potassium_current_K1_gate__T = var_time_independent_potassium_current__T;
00145         double var_time_independent_potassium_current__R = var_membrane__R;
00146         double var_time_independent_potassium_current_K1_gate__R = var_time_independent_potassium_current__R;
00147         double var_time_independent_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00148         double var_time_independent_potassium_current_K1_gate__E_K = var_time_independent_potassium_current__E_K;
00149         double var_time_independent_potassium_current_K1_gate__K1_infinity = 1.0 / (2.0 + exp(((1.62 * var_time_independent_potassium_current_K1_gate__F) / (var_time_independent_potassium_current_K1_gate__R * var_time_independent_potassium_current_K1_gate__T)) * (var_time_independent_potassium_current_K1_gate__V - var_time_independent_potassium_current_K1_gate__E_K)));
00150         double var_time_independent_potassium_current__K1_infinity = var_time_independent_potassium_current_K1_gate__K1_infinity;
00151         double var_time_independent_potassium_current__K_o = var_standard_ionic_concentrations__K_o;
00152         const double var_time_independent_potassium_current__K_mK1 = 13.0;
00153         double var_time_independent_potassium_current__i_K1 = ((var_time_independent_potassium_current__g_K1 * var_time_independent_potassium_current__K1_infinity * var_time_independent_potassium_current__K_o) / (var_time_independent_potassium_current__K_o + var_time_independent_potassium_current__K_mK1)) * (var_time_independent_potassium_current__V - var_time_independent_potassium_current__E_K);
00154         double var_membrane__i_K1 = var_time_independent_potassium_current__i_K1;
00155         double var_plateau_potassium_current__V = var_membrane__V;
00156         double var_plateau_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00157         const double var_plateau_potassium_current__g_Kp = 0.002216;
00158         double var_plateau_potassium_current_Kp_gate__V = var_plateau_potassium_current__V;
00159         double var_plateau_potassium_current_Kp_gate__Kp_V = 1.0 / (1.0 + exp((7.488 - var_plateau_potassium_current_Kp_gate__V) / 5.98));
00160         double var_plateau_potassium_current__Kp_V = var_plateau_potassium_current_Kp_gate__Kp_V;
00161         double var_plateau_potassium_current__i_Kp = var_plateau_potassium_current__g_Kp * var_plateau_potassium_current__Kp_V * (var_plateau_potassium_current__V - var_plateau_potassium_current__E_K);
00162         double var_membrane__i_Kp = var_plateau_potassium_current__i_Kp;
00163         double var_Na_Ca_exchanger__Na_o = var_standard_ionic_concentrations__Na_o;
00164         const double var_Na_Ca_exchanger__K_NaCa = 1500.0;
00165         double var_Na_Ca_exchanger__V = var_membrane__V;
00166         double var_Na_Ca_exchanger__Ca_o = var_standard_ionic_concentrations__Ca_o;
00167         const double var_Na_Ca_exchanger__eta = 0.35;
00168         double var_Na_Ca_exchanger__Na_i = var_standard_ionic_concentrations__Na_i;
00169         double var_Na_Ca_exchanger__T = var_membrane__T;
00170         double var_Na_Ca_exchanger__R = var_membrane__R;
00171         const double var_Na_Ca_exchanger__K_sat = 0.2;
00172         const double var_Na_Ca_exchanger__K_mCa = 1380.0;
00173         double var_Na_Ca_exchanger__F = var_membrane__F;
00174         const double var_Na_Ca_exchanger__K_mNa = 87.5;
00175         double var_Na_Ca_exchanger__Ca_i = var_calcium_dynamics__Ca_i;
00176         double var_Na_Ca_exchanger__i_NaCa = (var_Na_Ca_exchanger__K_NaCa / ((pow(var_Na_Ca_exchanger__K_mNa, 3.0) + pow(var_Na_Ca_exchanger__Na_o, 3.0)) * (var_Na_Ca_exchanger__K_mCa + var_Na_Ca_exchanger__Ca_o) * (1.0 + (var_Na_Ca_exchanger__K_sat * exp(((var_Na_Ca_exchanger__eta - 1.0) * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)))))) * ((exp((var_Na_Ca_exchanger__eta * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)) * pow(var_Na_Ca_exchanger__Na_i, 3.0) * var_Na_Ca_exchanger__Ca_o) - (exp(((var_Na_Ca_exchanger__eta - 1.0) * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)) * pow(var_Na_Ca_exchanger__Na_o, 3.0) * var_Na_Ca_exchanger__Ca_i));
00177         double var_membrane__i_NaCa = var_Na_Ca_exchanger__i_NaCa;
00178         double var_sodium_potassium_pump__Na_i = var_standard_ionic_concentrations__Na_i;
00179         double var_sodium_potassium_pump__K_o = var_standard_ionic_concentrations__K_o;
00180         const double var_sodium_potassium_pump__i_NaK_max = 0.693;
00181         const double var_sodium_potassium_pump__K_mNai = 10.0;
00182         double var_sodium_potassium_pump__T = var_membrane__T;
00183         double var_sodium_potassium_pump__R = var_membrane__R;
00184         double var_sodium_potassium_pump__Na_o = var_standard_ionic_concentrations__Na_o;
00185         double var_sodium_potassium_pump__sigma = (1.0 / 7.0) * (exp(var_sodium_potassium_pump__Na_o / 67.3) - 1.0);
00186         double var_sodium_potassium_pump__V = var_membrane__V;
00187         double var_sodium_potassium_pump__F = var_membrane__F;
00188         double var_sodium_potassium_pump__f_NaK = 1.0 / (1.0 + (0.1245 * exp(((-0.1) * var_sodium_potassium_pump__V * var_sodium_potassium_pump__F) / (var_sodium_potassium_pump__R * var_sodium_potassium_pump__T))) + (0.0365 * var_sodium_potassium_pump__sigma * exp(((-var_sodium_potassium_pump__V) * var_sodium_potassium_pump__F) / (var_sodium_potassium_pump__R * var_sodium_potassium_pump__T))));
00189         const double var_sodium_potassium_pump__K_mKo = 1.5;
00190         double var_sodium_potassium_pump__i_NaK = (((var_sodium_potassium_pump__i_NaK_max * var_sodium_potassium_pump__f_NaK) / (1.0 + pow(var_sodium_potassium_pump__K_mNai / var_sodium_potassium_pump__Na_i, 1.5))) * var_sodium_potassium_pump__K_o) / (var_sodium_potassium_pump__K_o + var_sodium_potassium_pump__K_mKo);
00191         double var_membrane__i_NaK = var_sodium_potassium_pump__i_NaK;
00192         const double var_sarcolemmal_calcium_pump__i_pCa_max = 0.05;
00193         double var_sarcolemmal_calcium_pump__Ca_i = var_calcium_dynamics__Ca_i;
00194         const double var_sarcolemmal_calcium_pump__K_mpCa = 0.05;
00195         double var_sarcolemmal_calcium_pump__i_p_Ca = (var_sarcolemmal_calcium_pump__i_pCa_max * var_sarcolemmal_calcium_pump__Ca_i) / (var_sarcolemmal_calcium_pump__K_mpCa + var_sarcolemmal_calcium_pump__Ca_i);
00196         double var_membrane__i_p_Ca = var_sarcolemmal_calcium_pump__i_p_Ca;
00197         const double var_calcium_background_current__g_Cab = 0.0003842;
00198         double var_calcium_background_current__R = var_membrane__R;
00199         double var_calcium_background_current__Ca_i = var_calcium_dynamics__Ca_i;
00200         double var_calcium_background_current__F = var_membrane__F;
00201         double var_calcium_background_current__Ca_o = var_standard_ionic_concentrations__Ca_o;
00202         double var_calcium_background_current__T = var_membrane__T;
00203         double var_calcium_background_current__E_Ca = ((var_calcium_background_current__R * var_calcium_background_current__T) / (2.0 * var_calcium_background_current__F)) * log(var_calcium_background_current__Ca_o / var_calcium_background_current__Ca_i);
00204         double var_calcium_background_current__V = var_membrane__V;
00205         double var_calcium_background_current__i_Ca_b = var_calcium_background_current__g_Cab * (var_calcium_background_current__V - var_calcium_background_current__E_Ca);
00206         double var_membrane__i_Ca_b = var_calcium_background_current__i_Ca_b;
00207         double var_sodium_background_current__V = var_membrane__V;
00208         const double var_sodium_background_current__g_Nab = 0.0031;
00209         double var_sodium_background_current__E_Na = var_fast_sodium_current__E_Na;
00210         double var_sodium_background_current__i_Na_b = var_sodium_background_current__g_Nab * (var_sodium_background_current__V - var_sodium_background_current__E_Na);
00211         double var_membrane__i_Na_b = var_sodium_background_current__i_Na_b;
00212 
00213         return var_membrane__i_Na+var_membrane__i_Ca+var_membrane__i_CaK+var_membrane__i_Kr+var_membrane__i_Ks+var_membrane__i_to+var_membrane__i_K1+var_membrane__i_Kp+var_membrane__i_NaCa+var_membrane__i_NaK+var_membrane__i_p_Ca+var_membrane__i_Ca_b+var_membrane__i_Na_b;
00214     }
00215 
00216     void EvaluateYDerivatives (
00217             double var_environment__time,
00218             const std::vector<double> &rY,
00219             std::vector<double> &rDY)
00220     {
00221         // Inputs:
00222         // Time units: millisecond
00223         double var_membrane__V = rY[0];
00224         // Units: millivolt; Initial value: -94.7
00225         double var_fast_sodium_current_m_gate__m = rY[1];
00226         // Units: dimensionless; Initial value: 0.00024676
00227         double var_fast_sodium_current_h_gate__h = rY[2];
00228         // Units: dimensionless; Initial value: 0.99869
00229         double var_fast_sodium_current_j_gate__j = rY[3];
00230         // Units: dimensionless; Initial value: 0.99887
00231         double var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr = rY[4];
00232         // Units: dimensionless; Initial value: 0.229
00233         double var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks = rY[5];
00234         // Units: dimensionless; Initial value: 0.0001
00235         double var_transient_outward_potassium_current_X_to_gate__X_to = rY[6];
00236         // Units: dimensionless; Initial value: 0.00003742
00237         double var_transient_outward_potassium_current_Y_to_gate__Y_to = rY[7];
00238         // Units: dimensionless; Initial value: 1
00239         double var_L_type_Ca_current_f_gate__f = rY[8];
00240         // Units: dimensionless; Initial value: 0.983
00241         double var_L_type_Ca_current_d_gate__d = rY[9];
00242         // Units: dimensionless; Initial value: 0.0001
00243         double var_L_type_Ca_current_f_Ca_gate__f_Ca = rY[10];
00244         // Units: dimensionless; Initial value: 0.942
00245         double var_calcium_dynamics__Ca_i = rY[11];
00246         // Units: micromolar; Initial value: 0.0472
00247         double var_calcium_dynamics__Ca_SR = rY[12];
00248         // Units: micromolar; Initial value: 320
00249 
00250         //#ifndef NDEBUG
00251         #define COVERAGE_IGNORE
00252         //Iterate over gating variables
00253         for (unsigned index=1; index<=10; index++)
00254         {
00255             if (!(0.0<=rY[index] && rY[index]<=1.0))
00256             {
00257                 EXCEPTION(DumpState(rGetVariableNames()[index] +
00258                           " gate has gone out of range. Check model parameters, for example spatial stepsize"));
00259             }
00260         }
00261         #undef COVERAGE_IGNORE
00262         //#endif //NDEBUG
00263 
00264         // Mathematics
00265         const double var_membrane__R = 8.314;
00266         const double var_membrane__T = 310.0;
00267         const double var_membrane__F = 96.5;
00268         double var_membrane__time = var_environment__time;
00269         double var_fast_sodium_current__h = var_fast_sodium_current_h_gate__h;
00270         const double var_fast_sodium_current__g_Na = 12.8;
00271         double var_fast_sodium_current__j = var_fast_sodium_current_j_gate__j;
00272         double var_fast_sodium_current__T = var_membrane__T;
00273         double var_fast_sodium_current__R = var_membrane__R;
00274         const double var_standard_ionic_concentrations__Na_i = 10.0;
00275         double var_fast_sodium_current__Na_i = var_standard_ionic_concentrations__Na_i;
00276         const double var_standard_ionic_concentrations__Na_o = 138.0;
00277         double var_fast_sodium_current__Na_o = var_standard_ionic_concentrations__Na_o;
00278         double var_fast_sodium_current__F = var_membrane__F;
00279         double var_fast_sodium_current__E_Na = ((var_fast_sodium_current__R * var_fast_sodium_current__T) / var_fast_sodium_current__F) * log(var_fast_sodium_current__Na_o / var_fast_sodium_current__Na_i);
00280         double var_fast_sodium_current__V = var_membrane__V;
00281         double var_fast_sodium_current__m = var_fast_sodium_current_m_gate__m;
00282         double var_fast_sodium_current__i_Na = var_fast_sodium_current__g_Na * pow(var_fast_sodium_current__m, 3.0) * var_fast_sodium_current__h * var_fast_sodium_current__j * (var_fast_sodium_current__V - var_fast_sodium_current__E_Na);
00283         double var_membrane__i_Na = var_fast_sodium_current__i_Na;
00284         const double var_L_type_Ca_current__P_Ca = 1.26e-05; // was 2.26e-05;
00285         double var_L_type_Ca_current__V = var_membrane__V;
00286         const double var_standard_ionic_concentrations__Ca_o = 2000.0;
00287         double var_L_type_Ca_current__Ca_o = var_standard_ionic_concentrations__Ca_o;
00288         double var_L_type_Ca_current__T = var_membrane__T;
00289         const double var_L_type_Ca_current__C_sc = 1.0;
00290         double var_L_type_Ca_current__Ca_i = var_calcium_dynamics__Ca_i;
00291         double var_L_type_Ca_current__R = var_membrane__R;
00292         double var_L_type_Ca_current__F = var_membrane__F;
00293         double var_L_type_Ca_current__i_Ca_max = ((((var_L_type_Ca_current__P_Ca / var_L_type_Ca_current__C_sc) * 4.0 * var_L_type_Ca_current__V * pow(var_L_type_Ca_current__F, 2.0)) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) * ((var_L_type_Ca_current__Ca_i * exp((2.0 * var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T))) - (0.341 * var_L_type_Ca_current__Ca_o))) / (exp((2.0 * var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) - 1.0);
00294         double var_L_type_Ca_current__d = var_L_type_Ca_current_d_gate__d;
00295         double var_L_type_Ca_current__f = var_L_type_Ca_current_f_gate__f;
00296         double var_L_type_Ca_current__f_Ca = var_L_type_Ca_current_f_Ca_gate__f_Ca;
00297         double var_L_type_Ca_current__i_Ca = var_L_type_Ca_current__i_Ca_max * var_L_type_Ca_current__f * var_L_type_Ca_current__d * var_L_type_Ca_current__f_Ca;
00298         double var_membrane__i_Ca = var_L_type_Ca_current__i_Ca;
00299         const double var_standard_ionic_concentrations__K_o = 4.0;
00300         double var_L_type_Ca_current__K_o = var_standard_ionic_concentrations__K_o;
00301         const double var_L_type_Ca_current__i_Ca_half =  -0.265;
00302         const double var_L_type_Ca_current__P_CaK = 5.79e-07;
00303         const double var_standard_ionic_concentrations__K_i = 149.4;
00304         double var_L_type_Ca_current__K_i = var_standard_ionic_concentrations__K_i;
00305         double var_L_type_Ca_current__i_CaK = ((((((var_L_type_Ca_current__P_CaK / var_L_type_Ca_current__C_sc) * var_L_type_Ca_current__f * var_L_type_Ca_current__d * var_L_type_Ca_current__f_Ca) / (1.0 + (var_L_type_Ca_current__i_Ca_max / var_L_type_Ca_current__i_Ca_half))) * 1000.0 * var_L_type_Ca_current__V * pow(var_L_type_Ca_current__F, 2.0)) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) * ((var_L_type_Ca_current__K_i * exp((var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T))) - var_L_type_Ca_current__K_o)) / (exp((var_L_type_Ca_current__V * var_L_type_Ca_current__F) / (var_L_type_Ca_current__R * var_L_type_Ca_current__T)) - 1.0);
00306         double var_membrane__i_CaK = var_L_type_Ca_current__i_CaK;
00307         double var_rapid_activating_delayed_rectifiyer_K_current__V = var_membrane__V;
00308         double var_rapid_activating_delayed_rectifiyer_K_current__R_V = 1.0 / (1.0 + (2.5 * exp(0.1 * (var_rapid_activating_delayed_rectifiyer_K_current__V + 28.0))));
00309         double var_rapid_activating_delayed_rectifiyer_K_current__X_kr = var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr;
00310         double var_rapid_activating_delayed_rectifiyer_K_current__R = var_membrane__R;
00311         double var_rapid_activating_delayed_rectifiyer_K_current__K_o = var_standard_ionic_concentrations__K_o;
00312         double var_rapid_activating_delayed_rectifiyer_K_current__T = var_membrane__T;
00313         double var_rapid_activating_delayed_rectifiyer_K_current__K_i = var_standard_ionic_concentrations__K_i;
00314         double var_rapid_activating_delayed_rectifiyer_K_current__F = var_membrane__F;
00315         double var_rapid_activating_delayed_rectifiyer_K_current__E_K = ((var_rapid_activating_delayed_rectifiyer_K_current__R * var_rapid_activating_delayed_rectifiyer_K_current__T) / var_rapid_activating_delayed_rectifiyer_K_current__F) * log(var_rapid_activating_delayed_rectifiyer_K_current__K_o / var_rapid_activating_delayed_rectifiyer_K_current__K_i);
00316         const double var_rapid_activating_delayed_rectifiyer_K_current__g_Kr = 0.0136;
00317         double var_rapid_activating_delayed_rectifiyer_K_current__i_Kr = var_rapid_activating_delayed_rectifiyer_K_current__g_Kr * var_rapid_activating_delayed_rectifiyer_K_current__R_V * var_rapid_activating_delayed_rectifiyer_K_current__X_kr * sqrt(var_rapid_activating_delayed_rectifiyer_K_current__K_o / 4.0) * (var_rapid_activating_delayed_rectifiyer_K_current__V - var_rapid_activating_delayed_rectifiyer_K_current__E_K);
00318         double var_membrane__i_Kr = var_rapid_activating_delayed_rectifiyer_K_current__i_Kr;
00319         const double var_slow_activating_delayed_rectifiyer_K_current__g_Ks = 0.0245;
00320         double var_slow_activating_delayed_rectifiyer_K_current__V = var_membrane__V;
00321         double var_slow_activating_delayed_rectifiyer_K_current__K_i = var_standard_ionic_concentrations__K_i;
00322         double var_slow_activating_delayed_rectifiyer_K_current__F = var_membrane__F;
00323         double var_slow_activating_delayed_rectifiyer_K_current__K_o = var_standard_ionic_concentrations__K_o;
00324         double var_slow_activating_delayed_rectifiyer_K_current__T = var_membrane__T;
00325         double var_slow_activating_delayed_rectifiyer_K_current__Na_o = var_standard_ionic_concentrations__Na_o;
00326         double var_slow_activating_delayed_rectifiyer_K_current__R = var_membrane__R;
00327         double var_slow_activating_delayed_rectifiyer_K_current__Na_i = var_standard_ionic_concentrations__Na_i;
00328         double var_slow_activating_delayed_rectifiyer_K_current__E_Ks = ((var_slow_activating_delayed_rectifiyer_K_current__R * var_slow_activating_delayed_rectifiyer_K_current__T) / var_slow_activating_delayed_rectifiyer_K_current__F) * log((var_slow_activating_delayed_rectifiyer_K_current__K_o + (0.01833 * var_slow_activating_delayed_rectifiyer_K_current__Na_o)) / (var_slow_activating_delayed_rectifiyer_K_current__K_i + (0.01833 * var_slow_activating_delayed_rectifiyer_K_current__Na_i)));
00329         double var_slow_activating_delayed_rectifiyer_K_current__X_ks = var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks;
00330         double var_slow_activating_delayed_rectifiyer_K_current__i_Ks = var_slow_activating_delayed_rectifiyer_K_current__g_Ks * pow(var_slow_activating_delayed_rectifiyer_K_current__X_ks, 2.0) * (var_slow_activating_delayed_rectifiyer_K_current__V - var_slow_activating_delayed_rectifiyer_K_current__E_Ks);
00331         double var_membrane__i_Ks = var_slow_activating_delayed_rectifiyer_K_current__i_Ks;
00332         const double var_transient_outward_potassium_current__g_to = 0.23815;
00333         double var_transient_outward_potassium_current__V = var_membrane__V;
00334         double var_transient_outward_potassium_current__X_to = var_transient_outward_potassium_current_X_to_gate__X_to;
00335         double var_transient_outward_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00336         double var_transient_outward_potassium_current__Y_to = var_transient_outward_potassium_current_Y_to_gate__Y_to;
00337         double var_transient_outward_potassium_current__i_to = var_transient_outward_potassium_current__g_to * var_transient_outward_potassium_current__X_to * var_transient_outward_potassium_current__Y_to * (var_transient_outward_potassium_current__V - var_transient_outward_potassium_current__E_K);
00338         double var_membrane__i_to = var_transient_outward_potassium_current__i_to;
00339         const double var_time_independent_potassium_current__g_K1 = 2.8;
00340         double var_time_independent_potassium_current__F = var_membrane__F;
00341         double var_time_independent_potassium_current_K1_gate__F = var_time_independent_potassium_current__F;
00342         double var_time_independent_potassium_current__V = var_membrane__V;
00343         double var_time_independent_potassium_current_K1_gate__V = var_time_independent_potassium_current__V;
00344         double var_time_independent_potassium_current__T = var_membrane__T;
00345         double var_time_independent_potassium_current_K1_gate__T = var_time_independent_potassium_current__T;
00346         double var_time_independent_potassium_current__R = var_membrane__R;
00347         double var_time_independent_potassium_current_K1_gate__R = var_time_independent_potassium_current__R;
00348         double var_time_independent_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00349         double var_time_independent_potassium_current_K1_gate__E_K = var_time_independent_potassium_current__E_K;
00350         double var_time_independent_potassium_current_K1_gate__K1_infinity = 1.0 / (2.0 + exp(((1.62 * var_time_independent_potassium_current_K1_gate__F) / (var_time_independent_potassium_current_K1_gate__R * var_time_independent_potassium_current_K1_gate__T)) * (var_time_independent_potassium_current_K1_gate__V - var_time_independent_potassium_current_K1_gate__E_K)));
00351         double var_time_independent_potassium_current__K1_infinity = var_time_independent_potassium_current_K1_gate__K1_infinity;
00352         double var_time_independent_potassium_current__K_o = var_standard_ionic_concentrations__K_o;
00353         const double var_time_independent_potassium_current__K_mK1 = 13.0;
00354         double var_time_independent_potassium_current__i_K1 = ((var_time_independent_potassium_current__g_K1 * var_time_independent_potassium_current__K1_infinity * var_time_independent_potassium_current__K_o) / (var_time_independent_potassium_current__K_o + var_time_independent_potassium_current__K_mK1)) * (var_time_independent_potassium_current__V - var_time_independent_potassium_current__E_K);
00355         double var_membrane__i_K1 = var_time_independent_potassium_current__i_K1;
00356         double var_plateau_potassium_current__V = var_membrane__V;
00357         double var_plateau_potassium_current__E_K = var_rapid_activating_delayed_rectifiyer_K_current__E_K;
00358         const double var_plateau_potassium_current__g_Kp = 0.002216;
00359         double var_plateau_potassium_current_Kp_gate__V = var_plateau_potassium_current__V;
00360         double var_plateau_potassium_current_Kp_gate__Kp_V = 1.0 / (1.0 + exp((7.488 - var_plateau_potassium_current_Kp_gate__V) / 5.98));
00361         double var_plateau_potassium_current__Kp_V = var_plateau_potassium_current_Kp_gate__Kp_V;
00362         double var_plateau_potassium_current__i_Kp = var_plateau_potassium_current__g_Kp * var_plateau_potassium_current__Kp_V * (var_plateau_potassium_current__V - var_plateau_potassium_current__E_K);
00363         double var_membrane__i_Kp = var_plateau_potassium_current__i_Kp;
00364         double var_Na_Ca_exchanger__Na_o = var_standard_ionic_concentrations__Na_o;
00365         const double var_Na_Ca_exchanger__K_NaCa = 1500.0;
00366         double var_Na_Ca_exchanger__V = var_membrane__V;
00367         double var_Na_Ca_exchanger__Ca_o = var_standard_ionic_concentrations__Ca_o;
00368         const double var_Na_Ca_exchanger__eta = 0.35;
00369         double var_Na_Ca_exchanger__Na_i = var_standard_ionic_concentrations__Na_i;
00370         double var_Na_Ca_exchanger__T = var_membrane__T;
00371         double var_Na_Ca_exchanger__R = var_membrane__R;
00372         const double var_Na_Ca_exchanger__K_sat = 0.2;
00373         const double var_Na_Ca_exchanger__K_mCa = 1380.0;
00374         double var_Na_Ca_exchanger__F = var_membrane__F;
00375         const double var_Na_Ca_exchanger__K_mNa = 87.5;
00376         double var_Na_Ca_exchanger__Ca_i = var_calcium_dynamics__Ca_i;
00377         double var_Na_Ca_exchanger__i_NaCa = (var_Na_Ca_exchanger__K_NaCa / ((pow(var_Na_Ca_exchanger__K_mNa, 3.0) + pow(var_Na_Ca_exchanger__Na_o, 3.0)) * (var_Na_Ca_exchanger__K_mCa + var_Na_Ca_exchanger__Ca_o) * (1.0 + (var_Na_Ca_exchanger__K_sat * exp(((var_Na_Ca_exchanger__eta - 1.0) * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)))))) * ((exp((var_Na_Ca_exchanger__eta * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)) * pow(var_Na_Ca_exchanger__Na_i, 3.0) * var_Na_Ca_exchanger__Ca_o) - (exp(((var_Na_Ca_exchanger__eta - 1.0) * var_Na_Ca_exchanger__V * var_Na_Ca_exchanger__F) / (var_Na_Ca_exchanger__R * var_Na_Ca_exchanger__T)) * pow(var_Na_Ca_exchanger__Na_o, 3.0) * var_Na_Ca_exchanger__Ca_i));
00378         double var_membrane__i_NaCa = var_Na_Ca_exchanger__i_NaCa;
00379         double var_sodium_potassium_pump__Na_i = var_standard_ionic_concentrations__Na_i;
00380         double var_sodium_potassium_pump__K_o = var_standard_ionic_concentrations__K_o;
00381         const double var_sodium_potassium_pump__i_NaK_max = 0.693;
00382         const double var_sodium_potassium_pump__K_mNai = 10.0;
00383         double var_sodium_potassium_pump__T = var_membrane__T;
00384         double var_sodium_potassium_pump__R = var_membrane__R;
00385         double var_sodium_potassium_pump__Na_o = var_standard_ionic_concentrations__Na_o;
00386         double var_sodium_potassium_pump__sigma = (1.0 / 7.0) * (exp(var_sodium_potassium_pump__Na_o / 67.3) - 1.0);
00387         double var_sodium_potassium_pump__V = var_membrane__V;
00388         double var_sodium_potassium_pump__F = var_membrane__F;
00389         double var_sodium_potassium_pump__f_NaK = 1.0 / (1.0 + (0.1245 * exp(((-0.1) * var_sodium_potassium_pump__V * var_sodium_potassium_pump__F) / (var_sodium_potassium_pump__R * var_sodium_potassium_pump__T))) + (0.0365 * var_sodium_potassium_pump__sigma * exp(((-var_sodium_potassium_pump__V) * var_sodium_potassium_pump__F) / (var_sodium_potassium_pump__R * var_sodium_potassium_pump__T))));
00390         const double var_sodium_potassium_pump__K_mKo = 1.5;
00391         double var_sodium_potassium_pump__i_NaK = (((var_sodium_potassium_pump__i_NaK_max * var_sodium_potassium_pump__f_NaK) / (1.0 + pow(var_sodium_potassium_pump__K_mNai / var_sodium_potassium_pump__Na_i, 1.5))) * var_sodium_potassium_pump__K_o) / (var_sodium_potassium_pump__K_o + var_sodium_potassium_pump__K_mKo);
00392         double var_membrane__i_NaK = var_sodium_potassium_pump__i_NaK;
00393         const double var_sarcolemmal_calcium_pump__i_pCa_max = 0.05;
00394         double var_sarcolemmal_calcium_pump__Ca_i = var_calcium_dynamics__Ca_i;
00395         const double var_sarcolemmal_calcium_pump__K_mpCa = 0.05;
00396         double var_sarcolemmal_calcium_pump__i_p_Ca = (var_sarcolemmal_calcium_pump__i_pCa_max * var_sarcolemmal_calcium_pump__Ca_i) / (var_sarcolemmal_calcium_pump__K_mpCa + var_sarcolemmal_calcium_pump__Ca_i);
00397         double var_membrane__i_p_Ca = var_sarcolemmal_calcium_pump__i_p_Ca;
00398         const double var_calcium_background_current__g_Cab = 0.0003842;
00399         double var_calcium_background_current__R = var_membrane__R;
00400         double var_calcium_background_current__Ca_i = var_calcium_dynamics__Ca_i;
00401         double var_calcium_background_current__F = var_membrane__F;
00402         double var_calcium_background_current__Ca_o = var_standard_ionic_concentrations__Ca_o;
00403         double var_calcium_background_current__T = var_membrane__T;
00404         double var_calcium_background_current__E_Ca = ((var_calcium_background_current__R * var_calcium_background_current__T) / (2.0 * var_calcium_background_current__F)) * log(var_calcium_background_current__Ca_o / var_calcium_background_current__Ca_i);
00405         double var_calcium_background_current__V = var_membrane__V;
00406         double var_calcium_background_current__i_Ca_b = var_calcium_background_current__g_Cab * (var_calcium_background_current__V - var_calcium_background_current__E_Ca);
00407         double var_membrane__i_Ca_b = var_calcium_background_current__i_Ca_b;
00408         double var_sodium_background_current__V = var_membrane__V;
00409         const double var_sodium_background_current__g_Nab = 0.0031;
00410         double var_sodium_background_current__E_Na = var_fast_sodium_current__E_Na;
00411         double var_sodium_background_current__i_Na_b = var_sodium_background_current__g_Nab * (var_sodium_background_current__V - var_sodium_background_current__E_Na);
00412         double var_membrane__i_Na_b = var_sodium_background_current__i_Na_b;
00413         double var_membrane__i_Stim = GetStimulus(var_membrane__time);
00414         double var_fast_sodium_current_m_gate__V = var_fast_sodium_current__V;
00415         double var_fast_sodium_current_m_gate__E0_m = var_fast_sodium_current_m_gate__V + 47.13;
00416         double var_fast_sodium_current_m_gate__alpha_m = (0.32 * var_fast_sodium_current_m_gate__E0_m) / (1.0 - exp((-0.1) * var_fast_sodium_current_m_gate__E0_m));
00417         double var_fast_sodium_current_m_gate__beta_m = 0.08 * exp((-var_fast_sodium_current_m_gate__V) / 11.0);
00418         double var_fast_sodium_current_h_gate__V = var_fast_sodium_current__V;
00419         double var_fast_sodium_current_h_gate__alpha_h = 0.135 * exp((var_fast_sodium_current_h_gate__V + 80.0) / (-6.8));
00420         double var_fast_sodium_current_h_gate__beta_h = 7.5 / (1.0 + exp((-0.1) * (var_fast_sodium_current_h_gate__V + 11.0)));
00421         double var_fast_sodium_current_j_gate__V = var_fast_sodium_current__V;
00422         double var_fast_sodium_current_j_gate__alpha_j = (0.175 * exp((var_fast_sodium_current_j_gate__V + 100.0) / (-23.0))) / (1.0 + exp(0.15 * (var_fast_sodium_current_j_gate__V + 79.0)));
00423         double var_fast_sodium_current_j_gate__beta_j = 0.3 / (1.0 + exp((-0.1) * (var_fast_sodium_current_j_gate__V + 32.0)));
00424         double var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__V = var_rapid_activating_delayed_rectifiyer_K_current__V;
00425         double var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr_inf = 1.0 / (1.0 + exp((-2.182) - (0.1819 * var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__V)));
00426         double var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__tau_X_kr = 43.0 + (1.0 / (exp((-5.495) + (0.1691 * var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__V)) + exp((-7.677) - (0.0128 * var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__V))));
00427         double var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V = var_slow_activating_delayed_rectifiyer_K_current__V;
00428         double var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__tau_X_ks = 1.0 / (((7.19e-05 * (var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V - 10.0)) / (1.0 - exp((-0.148) * (var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V - 10.0)))) + ((0.000131 * (var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V - 10.0)) / (exp(0.0687 * (var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V - 10.0)) - 1.0)));
00429         double var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks_infinity = 1.0 / (1.0 + exp((var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__V - 16.0) / (-13.6)));
00430         double var_transient_outward_potassium_current_X_to_gate__V = var_transient_outward_potassium_current__V;
00431         double var_transient_outward_potassium_current_X_to_gate__alpha_X_to = 0.04516 * exp(0.03577 * var_transient_outward_potassium_current_X_to_gate__V);
00432         double var_transient_outward_potassium_current_X_to_gate__beta_X_to = 0.0989 * exp((-0.06237) * var_transient_outward_potassium_current_X_to_gate__V);
00433         double var_transient_outward_potassium_current_Y_to_gate__V = var_transient_outward_potassium_current__V;
00434         double var_transient_outward_potassium_current_Y_to_gate__alpha_Y_to = (0.005415 * exp((var_transient_outward_potassium_current_Y_to_gate__V + 33.5) / (-5.0))) / (1.0 + (0.051335 * exp((var_transient_outward_potassium_current_Y_to_gate__V + 33.5) / (-5.0))));
00435         double var_transient_outward_potassium_current_Y_to_gate__beta_Y_to = (0.005415 * exp((var_transient_outward_potassium_current_Y_to_gate__V + 33.5) / 5.0)) / (1.0 + (0.051335 * exp((var_transient_outward_potassium_current_Y_to_gate__V + 33.5) / 5.0)));
00436         double var_L_type_Ca_current_f_gate__V = var_L_type_Ca_current__V;
00437         double var_L_type_Ca_current_f_gate__f_infinity = 1.0 / (1.0 + exp((var_L_type_Ca_current_f_gate__V + 12.5) / 5.0));
00438         double var_L_type_Ca_current_f_gate__tau_f = 30.0 + (200.0 / (1.0 + exp((var_L_type_Ca_current_f_gate__V + 20.0) / 9.5)));
00439         double var_L_type_Ca_current_d_gate__V = var_L_type_Ca_current__V;
00440         double var_L_type_Ca_current_d_gate__d_infinity = 1.0 / (1.0 + exp((var_L_type_Ca_current_d_gate__V + 10.0) / (-6.24)));
00441         double var_L_type_Ca_current_d_gate__E0_m = var_L_type_Ca_current_d_gate__V + 40.0;
00442         double var_L_type_Ca_current_d_gate__tau_d = 1.0 / (((0.25 * exp((-0.01) * var_L_type_Ca_current_d_gate__V)) / (1.0 + exp((-0.07) * var_L_type_Ca_current_d_gate__V))) + ((0.07 * exp((-0.05) * var_L_type_Ca_current_d_gate__E0_m)) / (1.0 + exp(0.05 * var_L_type_Ca_current_d_gate__E0_m))));
00443         double var_L_type_Ca_current_f_Ca_gate__tau_f_Ca = 30.0;
00444         double var_L_type_Ca_current_f_Ca_gate__Ca_i = var_L_type_Ca_current__Ca_i;
00445         const double var_L_type_Ca_current_f_Ca_gate__K_mfCa = 0.18;
00446         double var_L_type_Ca_current_f_Ca_gate__f_Ca_infinity = 1.0 / (1.0 + pow(var_L_type_Ca_current_f_Ca_gate__Ca_i / var_L_type_Ca_current_f_Ca_gate__K_mfCa, 3.0));
00447         const double var_calcium_dynamics__K_mCMDN = 2.0;
00448         const double var_calcium_dynamics__CMDN_tot = 10.0;
00449         double var_calcium_dynamics__beta_i = 1.0 / (1.0 + ((var_calcium_dynamics__CMDN_tot * var_calcium_dynamics__K_mCMDN) / pow(var_calcium_dynamics__K_mCMDN + var_calcium_dynamics__Ca_i, 2.0)));
00450         const double var_calcium_dynamics__V_myo = 2.584e-05;
00451         double var_calcium_dynamics__F = var_membrane__F;
00452         double var_calcium_dynamics__C_sc = var_L_type_Ca_current__C_sc;
00453         const double var_calcium_dynamics__A_Cap = 0.0001534;
00454         double var_calcium_dynamics__d = var_L_type_Ca_current__d;
00455         double var_calcium_dynamics__V = var_membrane__V;
00456         const double var_calcium_dynamics__P_rel = 6.0;
00457         double var_calcium_dynamics__gamma = 1.0 / (1.0 + pow(2000.0 / var_calcium_dynamics__Ca_SR, 3.0));
00458         double var_calcium_dynamics__f = var_L_type_Ca_current__f;
00459         double var_calcium_dynamics__f_Ca = var_L_type_Ca_current__f_Ca;
00460         double var_calcium_dynamics__J_rel = (var_calcium_dynamics__P_rel * var_calcium_dynamics__f * var_calcium_dynamics__d * var_calcium_dynamics__f_Ca * ((var_calcium_dynamics__gamma * var_calcium_dynamics__Ca_SR) - var_calcium_dynamics__Ca_i)) / (1.0 + (1.65 * exp(var_calcium_dynamics__V / 20.0)));
00461         const double var_calcium_dynamics__P_leak = 1e-06;
00462         double var_calcium_dynamics__J_leak = var_calcium_dynamics__P_leak * (var_calcium_dynamics__Ca_SR - var_calcium_dynamics__Ca_i);
00463         const double var_calcium_dynamics__V_up = 0.1;
00464         const double var_calcium_dynamics__K_mup = 0.32;
00465         double var_calcium_dynamics__J_up = var_calcium_dynamics__V_up / (1.0 + pow(var_calcium_dynamics__K_mup / var_calcium_dynamics__Ca_i, 2.0));
00466         double var_calcium_dynamics__i_Ca = var_L_type_Ca_current__i_Ca;
00467         double var_calcium_dynamics__i_Ca_b = var_calcium_background_current__i_Ca_b;
00468         double var_calcium_dynamics__i_p_Ca = var_sarcolemmal_calcium_pump__i_p_Ca;
00469         double var_calcium_dynamics__i_NaCa = var_Na_Ca_exchanger__i_NaCa;
00470         const double var_calcium_dynamics__K_mCSQN = 600.0;
00471         const double var_calcium_dynamics__CSQN_tot = 10000.0;
00472         const double var_calcium_dynamics__V_SR = 2e-06;
00473         double var_calcium_dynamics__beta_SR = 1.0 / (1.0 + ((var_calcium_dynamics__CSQN_tot * var_calcium_dynamics__K_mCSQN) / pow(var_calcium_dynamics__K_mCSQN + var_calcium_dynamics__Ca_SR, 2.0)));
00474         double d_dt_membrane__V = -(var_membrane__i_Na + var_membrane__i_Ca + var_membrane__i_CaK + var_membrane__i_Kr + var_membrane__i_Ks + var_membrane__i_to + var_membrane__i_K1 + var_membrane__i_Kp + var_membrane__i_NaCa + var_membrane__i_NaK + var_membrane__i_p_Ca + var_membrane__i_Na_b + var_membrane__i_Ca_b + var_membrane__i_Stim);
00475 
00476         // do not update voltage if the mSetVoltageDerivativeToZero flag has been set
00477         if (mSetVoltageDerivativeToZero)
00478         {
00479             d_dt_membrane__V = 0;
00480         }
00481 
00482         double d_dt_fast_sodium_current_m_gate__m = (var_fast_sodium_current_m_gate__alpha_m * (1.0 - var_fast_sodium_current_m_gate__m)) - (var_fast_sodium_current_m_gate__beta_m * var_fast_sodium_current_m_gate__m);
00483         double d_dt_fast_sodium_current_h_gate__h = (var_fast_sodium_current_h_gate__alpha_h * (1.0 - var_fast_sodium_current_h_gate__h)) - (var_fast_sodium_current_h_gate__beta_h * var_fast_sodium_current_h_gate__h);
00484         double d_dt_fast_sodium_current_j_gate__j = (var_fast_sodium_current_j_gate__alpha_j * (1.0 - var_fast_sodium_current_j_gate__j)) - (var_fast_sodium_current_j_gate__beta_j * var_fast_sodium_current_j_gate__j);
00485         double d_dt_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr = (var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr_inf - var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr) / var_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__tau_X_kr;
00486         double d_dt_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks = (var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks_infinity - var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks) / var_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__tau_X_ks;
00487         double d_dt_transient_outward_potassium_current_X_to_gate__X_to = (var_transient_outward_potassium_current_X_to_gate__alpha_X_to * (1.0 - var_transient_outward_potassium_current_X_to_gate__X_to)) - (var_transient_outward_potassium_current_X_to_gate__beta_X_to * var_transient_outward_potassium_current_X_to_gate__X_to);
00488         double d_dt_transient_outward_potassium_current_Y_to_gate__Y_to = (var_transient_outward_potassium_current_Y_to_gate__alpha_Y_to * (1.0 - var_transient_outward_potassium_current_Y_to_gate__Y_to)) - (var_transient_outward_potassium_current_Y_to_gate__beta_Y_to * var_transient_outward_potassium_current_Y_to_gate__Y_to);
00489         double d_dt_L_type_Ca_current_f_gate__f = (var_L_type_Ca_current_f_gate__f_infinity - var_L_type_Ca_current_f_gate__f) / var_L_type_Ca_current_f_gate__tau_f;
00490         double d_dt_L_type_Ca_current_d_gate__d = (var_L_type_Ca_current_d_gate__d_infinity - var_L_type_Ca_current_d_gate__d) / var_L_type_Ca_current_d_gate__tau_d;
00491         double d_dt_L_type_Ca_current_f_Ca_gate__f_Ca = (var_L_type_Ca_current_f_Ca_gate__f_Ca_infinity - var_L_type_Ca_current_f_Ca_gate__f_Ca) / var_L_type_Ca_current_f_Ca_gate__tau_f_Ca;
00492         double d_dt_calcium_dynamics__Ca_SR = (var_calcium_dynamics__beta_SR * ((var_calcium_dynamics__J_up - var_calcium_dynamics__J_leak) - var_calcium_dynamics__J_rel) * var_calcium_dynamics__V_myo) / var_calcium_dynamics__V_SR;
00493         double d_dt_calcium_dynamics__Ca_i = var_calcium_dynamics__beta_i * (((var_calcium_dynamics__J_rel + var_calcium_dynamics__J_leak) - var_calcium_dynamics__J_up) - (((var_calcium_dynamics__A_Cap * var_calcium_dynamics__C_sc) / (2.0 * var_calcium_dynamics__F * var_calcium_dynamics__V_myo)) * ((var_calcium_dynamics__i_Ca + var_calcium_dynamics__i_Ca_b + var_calcium_dynamics__i_p_Ca) - (2.0 * var_calcium_dynamics__i_NaCa))));
00494 
00495         rDY[0] = d_dt_membrane__V;
00496         rDY[1] = d_dt_fast_sodium_current_m_gate__m;
00497         rDY[2] = d_dt_fast_sodium_current_h_gate__h;
00498         rDY[3] = d_dt_fast_sodium_current_j_gate__j;
00499         rDY[4] = d_dt_rapid_activating_delayed_rectifiyer_K_current_X_kr_gate__X_kr;
00500         rDY[5] = d_dt_slow_activating_delayed_rectifiyer_K_current_X_ks_gate__X_ks;
00501         rDY[6] = d_dt_transient_outward_potassium_current_X_to_gate__X_to;
00502         rDY[7] = d_dt_transient_outward_potassium_current_Y_to_gate__Y_to;
00503         rDY[8] = d_dt_L_type_Ca_current_f_gate__f;
00504         rDY[9] = d_dt_L_type_Ca_current_d_gate__d;
00505         rDY[10] = d_dt_L_type_Ca_current_f_Ca_gate__f_Ca;
00506         rDY[11] = d_dt_calcium_dynamics__Ca_i;
00507         rDY[12] = d_dt_calcium_dynamics__Ca_SR;
00508     }
00509 };
00510 
00511 
00512 
00513 template<>
00514 void OdeSystemInformation<FoxModel2002Modified>::Initialise(void)
00515 {
00516     // Time units: millisecond
00517 
00518     this->mVariableNames.push_back("V");
00519     this->mVariableUnits.push_back("millivolt");
00520     this->mInitialConditions.push_back(-94.7);
00521 
00522     this->mVariableNames.push_back("m");
00523     this->mVariableUnits.push_back("dimensionless");
00524     this->mInitialConditions.push_back(0.00024676);
00525 
00526     this->mVariableNames.push_back("h");
00527     this->mVariableUnits.push_back("dimensionless");
00528     this->mInitialConditions.push_back(0.99869);
00529 
00530     this->mVariableNames.push_back("j");
00531     this->mVariableUnits.push_back("dimensionless");
00532     this->mInitialConditions.push_back(0.99887);
00533 
00534     this->mVariableNames.push_back("X_kr");
00535     this->mVariableUnits.push_back("dimensionless");
00536     this->mInitialConditions.push_back(0.229);
00537 
00538     this->mVariableNames.push_back("X_ks");
00539     this->mVariableUnits.push_back("dimensionless");
00540     this->mInitialConditions.push_back(0.0001);
00541 
00542     this->mVariableNames.push_back("X_to");
00543     this->mVariableUnits.push_back("dimensionless");
00544     this->mInitialConditions.push_back(0.00003742);
00545 
00546     this->mVariableNames.push_back("Y_to");
00547     this->mVariableUnits.push_back("dimensionless");
00548     this->mInitialConditions.push_back(1);
00549 
00550     this->mVariableNames.push_back("f");
00551     this->mVariableUnits.push_back("dimensionless");
00552     this->mInitialConditions.push_back(0.983);
00553 
00554     this->mVariableNames.push_back("d");
00555     this->mVariableUnits.push_back("dimensionless");
00556     this->mInitialConditions.push_back(0.0001);
00557 
00558     this->mVariableNames.push_back("f_Ca");
00559     this->mVariableUnits.push_back("dimensionless");
00560     this->mInitialConditions.push_back(0.942);
00561 
00562     this->mVariableNames.push_back("CaI");
00563     this->mVariableUnits.push_back("micromolar");
00564     this->mInitialConditions.push_back(0.0472);
00565 
00566     this->mVariableNames.push_back("Ca_SR");
00567     this->mVariableUnits.push_back("micromolar");
00568     this->mInitialConditions.push_back(320);
00569     
00570     this->mInitialised = true;
00571 }
00572 
00573 #endif

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