def model individual_SOC as def import using "units_and_constants/units.cellml" for unit mM using unit mM; unit fmol using unit fmol; unit per_fmol using unit per_fmol; unit J_per_mol using unit J_per_mol; unit fmol_per_sec using unit fmol_per_sec; unit C_per_mol using unit C_per_mol; unit J_per_C using unit J_per_C; unit microm3 using unit microm3; unit fF using unit fF; unit fC using unit fC; unit fA using unit fA; unit per_second using unit per_second; unit millivolt using unit millivolt; unit per_sec using unit per_sec; unit J_per_K_per_mol using unit J_per_K_per_mol; unit fmol_per_L using unit fmol_per_L; unit fmol_per_L_per_sec using unit fmol_per_L_per_sec; unit per_sec_per_fmol_per_L using unit per_sec_per_fmol_per_L; unit uM using unit uM; unit mM_per_sec using unit mM_per_sec; unit uM_per_sec using unit uM_per_sec; unit pL using unit pL; unit m_to_u using unit m_to_u; enddef; def import using "units_and_constants/constants.cellml" for comp constants using comp constants; enddef; def comp environment as var time: second {pub: out}; // initial values var q_Ca_o: fmol {init: 1e-888, pub: out}; var q_Ca_i: fmol {init: 1e-888, pub: out}; var q_Ca_ER: fmol {init: 1e-888, pub: out}; // From submodule var v_Rx_SOC: fmol_per_sec {pub: in}; ode(q_Ca_o, time) = vvv; ode(q_Ca_i, time) = vvv; ode(q_Ca_ER, time) = vvv; enddef; def comp SOC_parameters as var kappa_Rx_SOC: fmol_per_sec {init: 0.956036, pub: out}; var K_Ca_o: per_fmol {init: 0.046034, pub: out}; var K_Ca_i: per_fmol {init: 0.00693454, pub: out}; var K_Ca_ER: per_fmol {init: 0.0346475, pub: out}; enddef; def comp SOC as var time: second {pub: in}; var R: J_per_K_per_mol {pub: in}; var T: kelvin {pub: in}; // parameters var kappa_Rx_SOC: fmol_per_sec {pub: in}; var K_Ca_o: per_fmol {pub: in}; var K_Ca_i: per_fmol {pub: in}; var K_Ca_ER: per_fmol {pub: in}; // Input from global environment var q_Ca_o: fmol {pub: in}; var q_Ca_i: fmol {pub: in}; var q_Ca_ER: fmol {pub: in}; // Constitutive parameters var mu_Ca_o: J_per_mol; var mu_Ca_i: J_per_mol; var mu_Ca_ER: J_per_mol; var v_Rx_SOC: fmol_per_sec {pub: out}; mu_Ca_o = R*T*ln(K_Ca_o*q_Ca_o); mu_Ca_i = R*T*ln(K_Ca_i*q_Ca_i); mu_Ca_ER = R*T*ln(K_Ca_ER*q_Ca_ER); v_Rx_SOC = ppp; enddef; def map between environment and SOC for vars time and time; vars q_Ca_o and q_Ca_o; vars q_Ca_i and q_Ca_i; vars q_Ca_ER and q_Ca_ER; vars v_Rx_SOC and v_Rx_SOC; enddef; def map between SOC and SOC_parameters for vars kappa_Rx_SOC and kappa_Rx_SOC; vars K_Ca_o and K_Ca_o; vars K_Ca_i and K_Ca_i; vars K_Ca_ER and K_Ca_ER; enddef; def map between constants and SOC for vars R and R; vars T and T; enddef; enddef;