Model Mathematics

Component: Membrane_potential

ddtimeV=-I_stim+I_ionCm I_ion=I_CaL+I_CaT+I_Kv+I_BK+I_Na+I_NCX+I_NaK+I_NsNa+I_NsK

Component: Cai

Cai_total_rate=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai_total=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai=Cai_total_rate1+n_CRT⁢CRT_total⁢K_D_CRT⁢Cain_CRT-1Cain_CRT+K_D_CRT2+n_CaM⁢CaM_total⁢K_D_CaM⁢Cain_CaM-1Cain_CaM+K_D_CaM2

Component: Nai

ddtimeNai=-I_Na+3⁢I_NaK+3⁢I_NCX+I_NsNa⁢CvtF⁢V_cell

Component: Ki

ddtimeKi=-I_Kv+I_BK+I_stim-2⁢I_NaK+I_NsK⁢CvtF⁢V_cell

Component: Cai

Cai_total_rate=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai_total=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai=Cai_total_rate1+n_CRT⁢CRT_total⁢K_D_CRT⁢Cain_CRT-1Cain_CRT+K_D_CRT2+n_CaM⁢CaM_total⁢K_D_CaM⁢Cain_CaM-1Cain_CaM+K_D_CaM2

Component: Nai

ddtimeNai=-I_Na+3⁢I_NaK+3⁢I_NCX+I_NsNa⁢CvtF⁢V_cell

Component: Ki

ddtimeKi=-I_Kv+I_BK+I_stim-2⁢I_NaK+I_NsK⁢CvtF⁢V_cell

Component: Cai

Cai_total_rate=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai_total=-I_CaL+I_CaT-2⁢I_NCX⁢Cvt2⁢F⁢V_cell ddtimeCai=Cai_total_rate1+n_CRT⁢CRT_total⁢K_D_CRT⁢Cain_CRT-1Cain_CRT+K_D_CRT2+n_CaM⁢CaM_total⁢K_D_CaM⁢Cain_CaM-1Cain_CaM+K_D_CaM2

Component: Nai

ddtimeNai=-I_Na+3⁢I_NaK+3⁢I_NCX+I_NsNa⁢CvtF⁢V_cell

Component: Ki

ddtimeKi=-I_Kv+I_BK+I_stim-2⁢I_NaK+I_NsK⁢CvtF⁢V_cell

Component: ICaL

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: ICaL_channel_states

alpha=phi⁢0.731⁢ⅇV30 beta=phi⁢0.2149⁢ⅇ-V40 alpha_0=4⁢alpha alpha_1=3⁢alpha alpha_2=2⁢alpha alpha_3=1⁢alpha beta_0=1⁢beta beta_1=2⁢beta beta_2=3⁢beta beta_3=4⁢beta phi_f=phi⁢0.4742⁢ⅇV10 phi_s=phi⁢0.005956⁢ⅇ-V40 xi_f=phi⁢0.01407⁢ⅇ-V300 xi_s=phi⁢0.01213⁢ⅇV500 psi_f=phi⁢0.02197⁢ⅇV500 psi_s=phi⁢0.00232⁢ⅇ-V280 omega_f=beta_3⁢xi_f⁢phi_falpha_3⁢psi_f omega_s=beta_3⁢xi_s⁢phi_salpha_3⁢psi_s omega_sf=xi_s⁢psi_fxi_f omega_fs=psi_s delta=phi⁢0.01 theta=phi⁢41+1Cai norm=C3+C2+C1+C0+C3Ca+C2Ca+C1Ca+C0Ca+O_CaL+ICa+IVs+IVf+IVsCa+IVfCa ddtimeC3=alpha_2⁢C2norm-alpha_3+beta_2+phi_s+phi_f+theta⁢C3norm+beta_3⁢O_CaLnorm+omega_f⁢IVfnorm+omega_s⁢IVsnorm+delta⁢C3Canorm ddtimeC2=alpha_1⁢C1norm-alpha_2+beta_1+theta⁢C2norm+beta_2⁢C3norm+delta⁢C2Canorm ddtimeC1=alpha_0⁢C0norm-alpha_1+beta_0+theta⁢C1norm+beta_1⁢C2norm+delta⁢C1Canorm ddtimeC0=-alpha_0+theta⁢C0norm+beta_0⁢C1norm+delta⁢C0Canorm ddtimeC3Ca=theta⁢C3norm+alpha_2⁢C2Canorm-alpha_3+beta_2+phi_f+phi_s+delta⁢C3Canorm+beta_3⁢ICanorm+omega_f⁢IVfCanorm+omega_s⁢IVsCanorm ddtimeC2Ca=theta⁢C2norm+alpha_1⁢C1Canorm-alpha_2+beta_1+delta⁢C2Canorm+beta_2⁢C3Canorm ddtimeC1Ca=theta⁢C1norm+alpha_0⁢C0Canorm-alpha_1+beta_0+delta⁢C1Canorm+beta_1⁢C2Canorm ddtimeC0Ca=theta⁢C0norm-alpha_0+delta⁢C0Canorm+beta_0⁢C1Canorm ddtimeO_CaL=alpha_3⁢C3norm-beta_3+psi_f+psi_s+theta⁢O_CaLnorm+xi_f⁢IVfnorm+xi_s⁢IVsnorm+delta⁢ICanorm ddtimeICa=theta⁢O_CaLnorm+alpha_3⁢C3Canorm-beta_3+psi_f+psi_s+delta⁢ICanorm+xi_f⁢IVfCanorm+xi_s⁢IVsCanorm ddtimeIVs=phi_s⁢C3norm+psi_s⁢O_CaLnorm+omega_fs⁢IVfnorm-omega_s+xi_s+omega_sf+theta⁢IVsnorm+delta⁢IVsCanorm ddtimeIVf=phi_f⁢C3norm+psi_f⁢O_CaLnorm-omega_f+xi_f+omega_fs+theta⁢IVfnorm+omega_sf⁢IVsnorm+delta⁢IVfCanorm ddtimeIVsCa=theta⁢IVsnorm+phi_s⁢C3Canorm+psi_s⁢ICanorm+omega_fs⁢IVfCanorm-omega_s+xi_s+omega_sf+delta⁢IVsCanorm ddtimeIVfCa=theta⁢IVfnorm+phi_f⁢C3Canorm+psi_f⁢ICanorm-omega_f+xi_f+omega_fs+delta⁢IVfCanorm+omega_sf⁢IVsCanorm

Component: temperature_factor

phi=Q10T-T010

Component: ICaT

P_CaT=d_CaT⁢f_CaT

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: gating_kinetics

ddtimeX=X_inf-Xtau_X⁢phi

Component: temperature_factor

phi=Q10T-T010

Component: gating_kinetics

ddtimeX=X_inf-Xtau_X⁢phi

Component: temperature_factor

phi=Q10T-T010

Component: d_inf

X_inf=11+ⅇ-V+60.55.3

Component: f_inf

X_inf=11+ⅇV+75.54.0

Component: tau_f

tau=0.38117⁢8.6+14.7⁢ⅇ-V+502900⁢1

Component: IKv

P_Kv=x_Kv⁢y_Kv

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: gating_kinetics

ddtimeX=X_inf-Xtau_X⁢phi

Component: temperature_factor

phi=Q10T-T010

Component: gating_kinetics

ddtimeX=X_inf-Xtau_X⁢phi

Component: temperature_factor

phi=Q10T-T010

Component: x_inf

X_inf=11+ⅇ-V+43.017.36

Component: y_inf

X_inf=11+ⅇV-44.912.0096

Component: IBK

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: IBK_channel_states

alpha=1⁢ⅇ8.47188⁢V1⁢T beta=1⁢ⅇ-7.77556⁢V1⁢T k_C0O0=0.02162⁢alpha k_C1O1=0.000869⁢alpha k_C2O2=0.0000281⁢alpha k_C3O3=0.000781⁢alpha k_C4O4=0.044324⁢alpha k_O0C0=318.1084⁢beta k_O1C1=144.1736⁢beta k_O2C2=32.6594⁢beta k_O3C3=0.095312⁢beta k_O4C4=0.000106⁢beta k_C0C1=4⁢k_on⁢Cai k_C1C2=3⁢k_on⁢Cai k_C2C3=2⁢k_on⁢Cai k_C3C4=1⁢k_on⁢Cai k_C4C3=4⁢k_off_C k_C3C2=3⁢k_off_C k_C2C1=2⁢k_off_C k_C1C0=1⁢k_off_C k_O0O1=4⁢k_on⁢Cai k_O1O2=3⁢k_on⁢Cai k_O2O3=2⁢k_on⁢Cai k_O3O4=1⁢k_on⁢Cai k_O4O3=4⁢k_off_O k_O3O2=3⁢k_off_O k_O2O1=2⁢k_off_O k_O1O0=1⁢k_off_O norm=C0+C1+C2+C3+C4+O0+O1+O2+O3+O4 ddtimeC4=-k_C4C3+k_C4O4⁢C4norm+k_C3C4⁢C3norm+k_O4C4⁢O4norm ddtimeC3=-k_C3C2+k_C3O3+k_C3C4⁢C3norm+k_C2C3⁢C2norm+k_O3C3⁢O3norm+k_C4C3⁢C4norm ddtimeC2=-k_C2C1+k_C2O2+k_C2C3⁢C2norm+k_C1C2⁢C1norm+k_O2C2⁢O2norm+k_C3C2⁢C3norm ddtimeC1=-k_C1C0+k_C1O1+k_C1C2⁢C1norm+k_C0C1⁢C0norm+k_O1C1⁢O1norm+k_C2C1⁢C2norm ddtimeC0=-k_C0C1+k_C0O0⁢C0norm+k_C1C0⁢C1norm+k_O0C0⁢O0norm ddtimeO4=-k_O4O3+k_O4C4⁢O4norm+k_O3O4⁢O3norm+k_C4O4⁢C4norm ddtimeO3=-k_O3O2+k_O3C3+k_O3O4⁢O3norm+k_O2O3⁢O2norm+k_C3O3⁢C3norm+k_O4O3⁢O4norm ddtimeO2=-k_O2O1+k_O2C2+k_O2O3⁢O2norm+k_O1O2⁢O1norm+k_C2O2⁢C2norm+k_O3O2⁢O3norm ddtimeO1=-k_O1O0+k_O1C1+k_O1O2⁢O1norm+k_O0O1⁢O0norm+k_C1O1⁢C1norm+k_O2O1⁢O2norm ddtimeO0=-k_O0O1+k_O0C0⁢O0norm+k_O1O0⁢O1norm+k_C0O0⁢C0norm

Component: INa

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: INa_channel_states

k_I2I1=phi_T⁢0.0039239⁢ⅇ2.6793+0.0061468⁢V k_I1O=phi_T⁢0.12052⁢ⅇ-9.6028+0.083025⁢V k_OC1=phi_T⁢2.391⁢ⅇ-13.335-0.25289⁢V k_C1C2=phi_T⁢3.1566⁢ⅇ0.36352+0.077193⁢V k_C2C3=phi_T⁢0.55432⁢ⅇ-0.099074+0.036441⁢V k_C3C2=phi_T⁢0.00052548⁢ⅇ-0.069102+0.0031945⁢V k_C2C1=phi_T⁢1.4496⁢ⅇ-0.1566+0.058353⁢V k_C1O=phi_T⁢1.5329⁢ⅇ0.0093193+0.041075⁢V k_OI1=phi_T⁢1.6164⁢ⅇ0.30763+0.0060535⁢V k_I1I2=phi_T⁢0.027735⁢ⅇ0.05149-0.046865⁢V k_I1C1=phi_T⁢1.9046⁢ⅇ-2.484+0.020406⁢V k_C1I1=phi_T⁢0.00021688⁢ⅇ-0.063438+0.0046683⁢V norm=O_Na+C1+C2+C3+I1+I2 ddtimeC3=-k_C3C2⁢C3norm+k_C2C3⁢C2norm ddtimeC2=-k_C2C1+k_C2C3⁢C2norm+k_C1C2⁢C1norm+k_C3C2⁢C3norm ddtimeC1=-k_C1C2+k_C1O+k_C1I1⁢C1norm+k_OC1⁢O_Nanorm+k_C2C1⁢C2norm+k_I1C1⁢I1norm ddtimeO_Na=-k_OC1+k_OI1⁢O_Nanorm+k_C1O⁢C1norm+k_I1O⁢I1norm ddtimeI2=-k_I2I1⁢I2norm+k_I1I2⁢I1norm ddtimeI1=-k_I1O+k_I1I2+k_I1C1⁢I1norm+k_I2I1⁢I2norm+k_C1I1⁢C1norm+k_OI1⁢O_Nanorm

Component: temperature_factor

phi=Q10T-T010

Component: INCX

I_NCX=P_NCX⁢ⅇgamma⁢V⁢FR⁢T⁢Nai3⁢Cao-2.5⁢ⅇgamma-1⁢V⁢FR⁢T⁢Nao3⁢CaiK_mNai3+Nao3⁢K_mCa+Cao⁢1+k_sat⁢ⅇgamma-1⁢V⁢FR⁢T

Component: INaK

I_NaK=P_NaK⁢Ko⁢NaiKo+K_mK⁢K_mNa+Nai⁢1+0.1245⁢ⅇ-0.1⁢V⁢FR⁢T+0.0353⁢ⅇ-V⁢FR⁢T

Component: INS_Na

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: INS_K

Component: Ionic_currents

I=g_max⁢PO⁢V-E

Component: E_Na

Component: E_Ca

Component: E_K

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: constants

Component: model_parameters

Component: initial_conditions

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i

Component: Nernst_potential

E=R⁢Tz⁢F⁢ln⁡X_oX_i