Model Mathematics

Component: environment

Component: model_parameters

Sms=2⁢3.141592⁢rc2+2⁢3.14159⁢rc⁢Lc Vc=3.14159⁢rc2⁢Lc Vmyo=Vc⁢0.68 VSRup=Vc⁢0.055 VSRrel=Vc⁢0.00316 Vd=Vc⁢0.68⁢0.00006 pt=ptcm⁢2⁢3.14159⁢rc⁢Lc Smt=2⁢3.14159⁢rt⁢Lt⁢pt Vt=3.14159⁢rt2⁢Lt⁢pt Cmt=Smt⁢1 Cms=Sms⁢1 Rst=Rot⁢Lt23.14159⁢rt2⁢pt

Component: i_circ

i_circ=1000⁢Vm_tRst-Vm_sRst

Component: membrane_permeabilities

g_Na_s=g_Na⁢Sms+Smt⁢1-fNat g_Na_t=g_Na⁢Sms+Smt⁢fNat g_Naps_s=g_Naps⁢Sms+Smt⁢1-fNapst g_Naps_t=g_Naps⁢Sms+Smt⁢fNapst q_Ks_s=q_Ks⁢Sms+Smt⁢1-fKst q_Ks_t=q_Ks⁢Sms+Smt⁢fKst q_Kr_s=q_Kr⁢Sms+Smt⁢1-fKrt q_Kr_t=q_Kr⁢Sms+Smt⁢fKrt g_K1_s=g_K1⁢Sms+Smt⁢1-fK1t g_K1_t=g_K1⁢Sms+Smt⁢fK1t g_Kp_s=g_Kp⁢Sms+Smt⁢1-fKpt g_Kp_t=g_Kp⁢Sms+Smt⁢fKpt g_Kto_s=g_Kto⁢Sms+Smt⁢1-fKtot g_Kto_t=g_Kto⁢Sms+Smt⁢fKtot g_KNa_s=g_KNa⁢Sms+Smt⁢1-fKNat g_KNa_t=g_KNa⁢Sms+Smt⁢fKNat g_Nab_s=g_Nab⁢Sms+Smt⁢1-fNabt g_Nab_t=g_Nab⁢Sms+Smt⁢fNabt g_Cab_s=g_Cab⁢Sms+Smt⁢1-fCabt g_Cab_t=g_Cab⁢Sms+Smt⁢fCabt g_KATP_s=g_KATP⁢Sms+Smt⁢1-fKATPt g_KATP_t=g_KATP⁢Sms+Smt⁢fKATPt P_CaL_s=P_CaL⁢Sms+Smt⁢1-fCaLt P_CaL_t=P_CaL⁢Sms+Smt⁢fCaLt P_KL_s=P_KL⁢Sms+Smt⁢1-fCaLt P_KL_t=P_KL⁢Sms+Smt⁢fCaLt P_nsNa_s=P_nsNa⁢Sms+Smt⁢1-fnsNat P_nsNa_t=P_nsNa⁢Sms+Smt⁢fnsNat P_nsK_s=P_nsK⁢Sms+Smt⁢1-fnsKt P_nsK_t=P_nsK⁢Sms+Smt⁢fnsKt i_NaCa_max_s=i_NaCa_max⁢Sms+Smt⁢1-fNaCat i_NaCa_max_t=i_NaCa_max⁢Sms+Smt⁢fNaCat i_NaK_max_s=i_NaK_max⁢Sms+Smt⁢1-fNaKt i_NaK_max_t=i_NaK_max⁢Sms+Smt⁢fNaKt i_pCa_max_s=i_pCa_max⁢Sms+Smt⁢1-fpCat i_pCa_max_t=i_pCa_max⁢Sms+Smt⁢fpCat

Component: i_Kext

i_Kext=45⁢Sms+Smtiftime-⌊timestim_Period⌋⁢stim_Period≥0∧time-⌊timestim_Period⌋⁢stim_Period≦0.0010otherwise

Component: i_Na_s

E_Na_s=ln⁡Na_eNa_i⁢R⁢TF i_Na_s=g_Na_s⁢m3⁢h⁢Vm_s-ln⁡Na_e+0.12⁢K_eNa_i+0.12⁢K_i⁢R⁢TF

Component: i_Na_s_m_gate

m_infinity=11+ⅇVm_s+52.2-9-7.4 tau_m=0.001101.6⁢ⅇVm_s⁢0.1135+0.02268⁢ⅇ-0.0717⁢Vm_s+0.00014.83 ddtimem=m_infinity-mtau_m

Component: i_Na_s_h_gate

h_infinity=11+ⅇVm_s+85.6-95.5 tau_h=0.0011.1381e-6⁢ⅇ-0.1017⁢Vm_s+6.537⁢ⅇVm_s⁢0.08016+0.00054.83 ddtimeh=h_infinity-htau_h

Component: i_Na_t

E_Na_t=ln⁡Na_tNa_i⁢R⁢TF i_Na_t=g_Na_t⁢m3⁢h⁢Vm_t-ln⁡Na_t+0.12⁢K_tNa_i+0.12⁢K_i⁢R⁢TF

Component: i_Na_t_m_gate

m_infinity=11+ⅇVm_t+52.2-9-7.4 tau_m=0.001101.6⁢ⅇVm_t⁢0.1135+0.02268⁢ⅇ-0.0717⁢Vm_t+0.00014.83 ddtimem=m_infinity-mtau_m

Component: i_Na_t_h_gate

h_infinity=11+ⅇVm_t+85.6-95.5 tau_h=0.0011.1381e-6⁢ⅇ-0.1017⁢Vm_t+6.537⁢ⅇVm_t⁢0.08016+0.00054.83 ddtimeh=h_infinity-htau_h

Component: i_Naps_s

i_Naps_s=g_Naps_s1+ⅇ-54-Vm_s8⁢Vm_s-ln⁡Na_e+0.12⁢K_eNa_i+0.12⁢K_i⁢R⁢TF

Component: i_Naps_t

i_Naps_t=g_Naps_t1+ⅇ-54-Vm_t8⁢Vm_t-ln⁡Na_t+0.12⁢K_tNa_i+0.12⁢K_i⁢R⁢TF

Component: i_CaL_s

i_CaL_s=1⁢P_CaL_s⁢4⁢Co+Ccao⁢y⁢Vm_s⁢F2R⁢T⁢0.001⁢ⅇ2⁢Vm_s⁢FR⁢T-0.341⁢Ca_eⅇ2⁢Vm_s⁢FR⁢T-1 i_KL_s=1⁢P_KL_s1-i_CaL_s+i_CaL_t0.458⁢Sms+Smt⁢Co+Ccao⁢y⁢Vm_s⁢F2R⁢T⁢K_i⁢ⅇVm_s⁢FR⁢T-K_eⅇVm_s⁢FR⁢T-1 ddtimeCst=betas⁢C1+omega⁢Ccast-4⁢alfas+gama⁢Cst ddtimeC1=4⁢alfas⁢Cst+2⁢betas⁢C2+omegab⁢Cca1-betas+3⁢alfas+gama⁢a⁢C1 ddtimeC2=3⁢alfas⁢C1+3⁢betas⁢C3+omegab2⁢Cca2-2⁢betas+2⁢alfas+gama⁢a2⁢C2 ddtimeC3=2⁢alfas⁢C2+4⁢betas⁢C4+omegab3⁢Cca3-3⁢betas+alfas+gama⁢a3⁢C3 ddtimeC4=alfas⁢C3+g⁢Co+omegab4⁢Cca4-4⁢betas+f+gama⁢a4⁢C4 ddtimeCo=f⁢C4-g⁢Co ddtimeCcast=beta2s⁢Cca1+gama⁢Cst-4⁢alfa2s+omega⁢Ccast ddtimeCca1=4⁢alfa2s⁢Ccast+2⁢beta2s⁢Cca2+gama⁢a⁢C1-beta2s+3⁢alfa2s+omegab⁢Cca1 ddtimeCca2=3⁢alfa2s⁢Cca1+3⁢beta2s⁢Cca3+gama⁢a2⁢C2-2⁢beta2s+2⁢alfa2s+omegab2⁢Cca2 ddtimeCca3=2⁢alfa2s⁢Cca2+4⁢beta2s⁢Cca4+gama⁢a3⁢C3-3⁢beta2s+alfa2s+omegab3⁢Cca3 ddtimeCca4=alfa2s⁢Cca3+g2⁢Ccao+gama⁢a4⁢C4-4⁢beta2s+f2+omegab4⁢Cca4 ddtimeCcao=f2⁢Cca4-g2⁢Ccao alfas=400⁢ⅇVm_s+1210 betas=50⁢ⅇ-Vm_s+1213 gama=187.5⁢Ca_ss alfa2s=alfas⁢a beta2s=betasb

Component: i_CaL_s_y_gate

y_infinity=11+ⅇVm_s+356 tau_y=0.0010.02+0.0197⁢ⅇ-Vm_s+10⁢0.03372+0.551+ⅇVm_s+409.5⁢4 ddtimey=y_infinity-ytau_y

Component: i_CaL_t

i_CaL_t=1⁢P_CaL_t⁢4⁢TCo+TCcao⁢y⁢Vm_t⁢F2R⁢T⁢0.001⁢ⅇ2⁢Vm_t⁢FR⁢T-0.341⁢Ca_tⅇ2⁢Vm_t⁢FR⁢T-1 i_KL_t=1⁢P_KL_t1-i_CaL_s+i_CaL_t0.458⁢Sms+Smt⁢TCo+TCcao⁢y⁢Vm_t⁢F2R⁢T⁢K_i⁢ⅇVm_t⁢FR⁢T-K_tⅇVm_t⁢FR⁢T-1 ddtimeTCst=betat⁢TC1+omega⁢TCcast-4⁢alfat+gama⁢TCst ddtimeTC1=4⁢alfat⁢TCst+2⁢betat⁢TC2+omegab⁢TCca1-betat+3⁢alfat+gama⁢a⁢TC1 ddtimeTC2=3⁢alfat⁢TC1+3⁢betat⁢TC3+omegab2⁢TCca2-2⁢betat+2⁢alfat+gama⁢a2⁢TC2 ddtimeTC3=2⁢alfat⁢TC2+4⁢betat⁢TC4+omegab3⁢TCca3-3⁢betat+alfat+gama⁢a3⁢TC3 ddtimeTC4=alfat⁢TC3+g⁢TCo+omegab4⁢TCca4-4⁢betat+f+gama⁢a4⁢TC4 ddtimeTCo=f⁢TC4-g⁢TCo ddtimeTCcast=beta2t⁢TCca1+gama⁢TCst-4⁢alfa2t+omega⁢TCcast ddtimeTCca1=4⁢alfa2t⁢TCcast+2⁢beta2t⁢TCca2+gama⁢a⁢TC1-beta2t+3⁢alfa2t+omegab⁢TCca1 ddtimeTCca2=3⁢alfa2t⁢TCca1+3⁢beta2t⁢TCca3+gama⁢a2⁢TC2-2⁢beta2t+2⁢alfa2t+omegab2⁢TCca2 ddtimeTCca3=2⁢alfa2t⁢TCca2+4⁢beta2t⁢TCca4+gama⁢a3⁢TC3-3⁢beta2t+alfa2t+omegab3⁢TCca3 ddtimeTCca4=alfa2t⁢TCca3+g2⁢TCcao+gama⁢a4⁢TC4-4⁢beta2t+f2+omegab4⁢TCca4 ddtimeTCcao=f2⁢TCca4-g2⁢TCcao gama=187.5⁢Ca_ss alfat=400⁢ⅇVm_t+1210 betat=50⁢ⅇ-Vm_t+1213 alfa2t=alfat⁢a beta2t=betatb

Component: i_CaL_t_y_gate

y_infinity=11+ⅇVm_t+356 tau_y=0.0010.02+0.0197⁢ⅇ-Vm_t+10⁢0.03372+0.551+ⅇVm_t+409.5⁢4 ddtimey=y_infinity-ytau_y

Component: i_Kr_s

i_Kr_s=q_Kr_s⁢0.02614⁢K_e5.4⁢xr⁢xri⁢Vm_s-E_Kr_s E_Kr_s=ln⁡K_eK_i⁢R⁢TF

Component: i_Kr_s_xr_gate

xr_infinity=11+ⅇ-Vm_s+21.57.5 tau_xr=0.0010.00138⁢Vm_s+14.21-ⅇ-0.123⁢Vm_s+14.2+0.00061⁢Vm_s+38.9ⅇ0.145⁢Vm_s+38.9-1 ddtimexr=xr_infinity-xrtau_xr

Component: i_Kr_s_xri_gate

xri=11+ⅇVm_s+922.4

Component: i_Kr_t

i_Kr_t=q_Kr_t⁢0.02614⁢K_t5.4⁢xr⁢xri⁢Vm_t-E_Kr_t E_Kr_t=ln⁡K_tK_i⁢R⁢TF

Component: i_Kr_t_xr_gate

xr_infinity=11+ⅇ-Vm_t+21.57.5 tau_xr=0.0010.00138⁢Vm_t+14.21-ⅇ-0.123⁢Vm_t+14.2+0.00061⁢Vm_t+38.9ⅇ0.145⁢Vm_t+38.9-1 ddtimexr=xr_infinity-xrtau_xr

Component: i_Kr_t_xri_gate

xri=11+ⅇVm_t+922.4

Component: i_Ks_s

i_Ks_s=q_Ks_s⁢0.2308+0.76921+ⅇ-log10⁡1⁢Ca_i-4.20.6⁢xs2⁢Vm_s-E_Ks_s E_Ks_s=ln⁡K_e+PRNaK⁢Na_eK_i+PRNaK⁢Na_i⁢R⁢TF

Component: i_Ks_s_xs_gate

xs_infinity=11+ⅇ-Vm_s-1.516.7 tau_xs=0.0017.19e-5⁢Vm_s+301-ⅇ-0.148⁢Vm_s+30+1.31e-4⁢Vm_s+30ⅇ0.0687⁢Vm_s+30-1 ddtimexs=xs_infinity-xstau_xs

Component: i_Ks_t

i_Ks_t=q_Ks_t⁢0.2308+0.76921+ⅇ-log10⁡1⁢Ca_i-4.20.6⁢xs2⁢Vm_t-E_Ks_t E_Ks_t=ln⁡K_t+PRNaK⁢Na_tK_i+PRNaK⁢Na_i⁢R⁢TF

Component: i_Ks_t_xs_gate

xs_infinity=11+ⅇ-Vm_t-1.516.7 tau_xs=0.0017.19e-5⁢Vm_t+301-ⅇ-0.148⁢Vm_t+30+1.31e-4⁢Vm_t+30ⅇ0.0687⁢Vm_t+30-1 ddtimexs=xs_infinity-xstau_xs

Component: i_K1_s

i_K1_s=g_K1_s⁢K_e5.4⁢aK1saK1s+bK1s⁢Vm_s-E_K1_s E_K1_s=E_Kr_s aK1s=10201+ⅇ0.2385⁢Vm_s-E_K1_s-59.215 bK1s=1000⁢0.49124⁢ⅇ0.08032⁢Vm_s-E_K1_s+5.476+ⅇ0.06175⁢Vm_s-E_K1_s-594.311+ⅇ-0.5143⁢Vm_s-E_K1_s+4.753

Component: i_K1_t

i_K1_t=g_K1_t⁢K_t5.4⁢aK1taK1t+bK1t⁢Vm_t-E_K1_t E_K1_t=E_Kr_t aK1t=10201+ⅇ0.2385⁢Vm_t-E_K1_t-59.215 bK1t=1000⁢0.49124⁢ⅇ0.08032⁢Vm_t-E_K1_t+5.476+ⅇ0.06175⁢Vm_t-E_K1_t-594.311+ⅇ-0.5143⁢Vm_t-E_K1_t+4.753

Component: i_Kp_s

i_Kp_s=g_Kp_s⁢kps⁢Vm_s-E_Kp_s E_Kp_s=E_Kr_s kps=11+ⅇ20-Vm_s5

Component: i_Kp_t

i_Kp_t=g_Kp_t⁢kpt⁢Vm_t-E_Kp_t E_Kp_t=E_Kr_t kpt=11+ⅇ20-Vm_t5

Component: i_Kto_s

i_Kto_s=g_Kto_s1+ⅇVm_s+57.53-5.863⁢1+ⅇVm_s-45.825.87⁢r2⁢fr2+r3⁢1-fr2⁢Vm_s-E_Kto_s E_Kto_s=E_Kr_s

Component: i_Kto_s_r2_gate

r2_infinity=1.0061+ⅇVm_s+36.69+1012.43 ddtimer2=r2_infinity-r2tau_r2

Component: i_Kto_s_r3_gate

r3_infinity=r2_infinity ddtimer3=r3_infinity-r3tau_r3

Component: i_Kto_t

i_Kto_t=g_Kto_t1+ⅇVm_t+57.53-5.863⁢1+ⅇVm_t-45.825.87⁢r2⁢fr2+r3⁢1-fr2⁢Vm_t-E_Kto_t E_Kto_t=E_Kr_t

Component: i_Kto_t_r2_gate

r2_infinity=1.0061+ⅇVm_t+36.69+1012.43 ddtimer2=r2_infinity-r2tau_r2

Component: i_Kto_t_r3_gate

r3_infinity=r2_infinity ddtimer3=r3_infinity-r3tau_r3

Component: i_KNa_s

i_KNa_s=g_KNa_s⁢0.8-0.651+ⅇVm_s+12515⁢0.851+66Na_i2.8⁢Vm_s-E_KNa_s E_KNa_s=E_Kr_s

Component: i_KNa_t

i_KNa_t=g_KNa_t⁢0.8-0.651+ⅇVm_t+12515⁢0.851+66Na_i2.8⁢Vm_t-E_KNa_t E_KNa_t=E_Kr_t

Component: i_nsNa_s

i_nsNa_s=1⁢P_nsNa_s⁢Vm_s⁢F2R⁢T⁢0.75⁢Na_i⁢ⅇVm_s⁢FR⁢T-0.75⁢Na_eⅇVm_s⁢FR⁢T-11+0.0025Ca_i3

Component: i_nsNa_t

i_nsNa_t=1⁢P_nsNa_t⁢Vm_t⁢F2R⁢T⁢0.75⁢Na_i⁢ⅇVm_t⁢FR⁢T-0.75⁢Na_tⅇVm_t⁢FR⁢T-11+0.0025Ca_i3

Component: i_nsK_s

i_nsK_s=1⁢P_nsK_s⁢Vm_s⁢F2R⁢T⁢0.75⁢K_i⁢ⅇVm_s⁢FR⁢T-0.75⁢K_eⅇVm_s⁢FR⁢T-11+0.0025Ca_i3

Component: i_nsK_t

i_nsK_t=1⁢P_nsK_t⁢Vm_t⁢F2R⁢T⁢0.75⁢K_i⁢ⅇVm_t⁢FR⁢T-0.75⁢K_tⅇVm_t⁢FR⁢T-11+0.0025Ca_i3

Component: i_Nab_s

i_Nab_s=g_Nab_s⁢Vm_s-E_Na_s

Component: i_Nab_t

i_Nab_t=g_Nab_t⁢Vm_t-E_Na_t

Component: i_Cab_s

i_Cab_s=g_Cab_s⁢Vm_s-E_Ca_s E_Ca_s=ln⁡Ca_eCa_i⁢R⁢T2⁢F

Component: i_Cab_t

i_Cab_t=g_Cab_t⁢Vm_t-E_Ca_t E_Ca_t=ln⁡Ca_tCa_i⁢R⁢T2⁢F

Component: i_NaCa_s

i_NaCa_s=i_NaCa_max_s⁢ⅇ-0.85⁢Vm_s⁢FR⁢T⁢ⅇVm_s⁢FR⁢T⁢Na_i3⁢Ca_e-Na_e3⁢Ca_i1+0.0001⁢ⅇ-0.85⁢Vm_s⁢FR⁢T⁢ⅇVm_s⁢FR⁢T⁢Na_i3⁢Ca_e+Na_e3⁢Ca_i

Component: i_NaCa_t

i_NaCa_t=i_NaCa_max_t⁢ⅇ-0.85⁢Vm_t⁢FR⁢T⁢ⅇVm_t⁢FR⁢T⁢Na_i3⁢Ca_t-Na_t3⁢Ca_i1+0.0001⁢ⅇ-0.85⁢Vm_t⁢FR⁢T⁢ⅇVm_t⁢FR⁢T⁢Na_i3⁢Ca_t+Na_t3⁢Ca_i

Component: i_NaK_s

i_NaK_s=i_NaK_max_s1+0.1245⁢ⅇ-0.1⁢Vm_s⁢FR⁢T+0.0365⁢17⁢ⅇNa_e67.3-1⁢ⅇ-Vm_s⁢FR⁢T⁢11+10Na_i1.5⁢K_eK_e+1.5

Component: i_NaK_t

i_NaK_t=i_NaK_max_t1+0.1245⁢ⅇ-0.1⁢Vm_t⁢FR⁢T+0.0365⁢17⁢ⅇNa_t67.3-1⁢ⅇ-Vm_t⁢FR⁢T⁢11+10Na_i1.5⁢K_tK_t+1.5

Component: i_pCa_s

i_pCa_s=i_pCa_max_s⁢Ca_i0.0005+Ca_i

Component: i_pCa_t

i_pCa_t=i_pCa_max_t⁢Ca_i0.0005+Ca_i

Component: i_KATP_s

i_KATP_s=g_KATP_s⁢11+ATP_i0.1142⁢K_e40.24⁢Vm_s-E_KATP_s E_KATP_s=E_Kr_s

Component: i_KATP_t

i_KATP_t=g_KATP_t⁢11+ATP_i0.1142⁢K_t40.24⁢Vm_t-E_KATP_t E_KATP_t=E_Kr_t

Component: t_tubular_ion_fluxes

JteNa=1⁢Vttau_Na⁢Na_t-Na_e JteCa=1⁢Vttau_Ca⁢Ca_t-Ca_e JteK=1⁢Vttau_K⁢K_t-K_e

Component: JCaSRup

JCaSRup=1⁢1000⁢Vmyo⁢0.0018⁢Ca_i2Ca_i2+0.00052

Component: JCaSRleak

JCaSRleak=1250⁢Vmyo⁢0.000058⁢CaSRup-Ca_i

Component: Jtr

Jtr=1⁢VSRreltau_tr⁢CaSRup-CaSRrel

Component: JCaSRrel

JCaSRrel=1800⁢VSRrel⁢F2+F3⁢CaSRrel-Ca_ss ddtimeF1=F2⁢kam-F1⁢kap⁢Ca_ss4 ddtimeF2=F1⁢kap⁢Ca_ss4+F3⁢kbm+F4⁢kcm-F2⁢kam+kbp⁢Ca_ss3+kcp ddtimeF3=F2⁢kbp⁢Ca_ss3-F3⁢kbm ddtimeF4=F2⁢kcp-F4⁢kcm kap=3⁢12.15e12 kbp=4.05e9

Component: JCad

JCad=1⁢Ca_ss-Ca_i⁢Vmyotau_d

Component: CaSRrel

ddtimeCaSRrel=11+15⁢0.80.8+CaSRrel2⁢Jtr-JCaSRrelVSRrel

Component: CaSRup

ddtimeCaSRup=JCaSRup-JCaSRleak-Jtr1⁢VSRup

Component: ion_concentrations

ddtimeCa_ss=11+0.05⁢0.002380.00238+Ca_ss2⁢-i_CaL_s+i_CaL_t2⁢F⁢Vd+1⁢JCaSRrelVd-1⁢JCadVd ddtimeCa_i=11+0.05⁢0.002380.00238+Ca_i2⁢-2⁢i_NaCa_s+i_NaCa_t+i_Cab_s+i_Cab_t+i_pCa_s+i_pCa_t-2⁢F⁢Vmyo+1⁢JCad+JCaSRleak-JCaSRupVmyo-dBTRH⁢0.14-dBTRL⁢0.07 dBTRH=20000⁢Ca_i⁢1-BTRH-0.07⁢BTRH dBTRL=40000⁢Ca_i⁢1-BTRL-BTRL⁢40 ddtimeBTRH=dBTRH ddtimeBTRL=dBTRL ddtimeNa_i=-i_Na_s+i_Na_t+i_Naps_s+i_Naps_t+i_nsNa_s+i_nsNa_t+i_Nab_s+i_Nab_t+3⁢i_NaCa_s+3⁢i_NaCa_t+3⁢i_NaK_s+3⁢i_NaK_tF⁢Vmyo ddtimeK_i=--0⁢i_Kext+i_Ks_s+i_Ks_t+i_Kr_s+i_Kr_t+i_K1_s+i_K1_t+i_Kp_s+i_Kp_t+i_KL_s+i_KL_t+i_KNa_s+i_KNa_t+i_nsK_s+i_nsK_t-2⁢i_NaK_s-2⁢i_NaK_t+i_KATP_s+i_KATP_t+i_Kto_s+i_Kto_tF⁢Vmyo ddtimeNa_t=i_Na_t+i_Naps_t+i_nsNa_t+i_Nab_t+3⁢i_NaCa_t+3⁢i_NaK_tF-1⁢JteNaVt ddtimeCa_t=-2⁢i_NaCa_t+i_CaL_t+i_Cab_t+i_pCa_t2⁢F-1⁢JteCaVt ddtimeK_t=i_Ks_t+i_Kr_t+i_K1_t+i_Kp_t+i_KNa_t+i_KL_t+i_nsK_t-2⁢i_NaK_t+i_KATP_t+i_Kto_tF-1⁢JteKVt

Component: Vm_s

ddtimeVm_s=1000⁢i_Kext+i_circ-i_Na_s-i_Naps_s-i_CaL_s-i_KL_s-i_Ks_s-i_Kr_s-i_K1_s-i_Kp_s-i_KNa_s-i_KATP_s-i_nsNa_s-i_nsK_s-i_Nab_s-i_Cab_s-i_NaCa_s-i_NaK_s-i_pCa_s-i_Kto_sCms

Component: Vm_t

ddtimeVm_t=1000⁢-i_circ-i_Na_t-i_Naps_t-i_CaL_t-i_KL_t-i_Ks_t-i_Kr_t-i_K1_t-i_Kp_t-i_KNa_t-i_KATP_t-i_nsNa_t-i_nsK_t-i_Nab_t-i_Cab_t-i_NaCa_t-i_NaK_t-i_pCa_t-i_Kto_tCmt