Generated Code
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C
C There are a total of 16 entries in the algebraic variable array.
C There are a total of 6 entries in each of the rate and state variable arrays.
C There are a total of 23 entries in the constant variable array.
C
C
C VOI is time in component environment (second).
C ALGBRC(1) is q_L_B1_init in component environment (fmol).
C CONSTS(1) is q_R_B1_init in component environment (fmol).
C CONSTS(2) is q_Gs_init in component environment (fmol).
C CONSTS(3) is q_LR_B1_init in component environment (fmol).
C CONSTS(4) is q_R_B1Gs_init in component environment (fmol).
C CONSTS(5) is q_LR_B1Gs_init in component environment (fmol).
C CONSTS(6) is stimSt in component environment (second).
C CONSTS(7) is stimDur in component environment (second).
C CONSTS(8) is tR in component environment (second).
C CONSTS(9) is stimMag in component environment (fmol).
C CONSTS(10) is stimHolding in component environment (fmol).
C CONSTS(23) is m in component environment (fmol_per_sec).
C ALGBRC(2) is q_L_B1 in component environment (fmol).
C ALGBRC(3) is q_R_B1 in component environment (fmol).
C ALGBRC(4) is q_Gs in component environment (fmol).
C ALGBRC(5) is q_LR_B1 in component environment (fmol).
C ALGBRC(6) is q_R_B1Gs in component environment (fmol).
C ALGBRC(7) is q_LR_B1Gs in component environment (fmol).
C STATES(1) is q_L_B1 in component LRGbinding_B1AR (fmol).
C STATES(2) is q_R_B1 in component LRGbinding_B1AR (fmol).
C STATES(3) is q_Gs in component LRGbinding_B1AR (fmol).
C STATES(4) is q_LR_B1 in component LRGbinding_B1AR (fmol).
C STATES(5) is q_R_B1Gs in component LRGbinding_B1AR (fmol).
C STATES(6) is q_LR_B1Gs in component LRGbinding_B1AR (fmol).
C CONSTS(11) is kappa_R_C_B1 in component LRGbinding_B1AR_parameters (fmol_per_sec).
C CONSTS(12) is kappa_R_R_B1 in component LRGbinding_B1AR_parameters (fmol_per_sec).
C CONSTS(13) is kappa_R_L_B1 in component LRGbinding_B1AR_parameters (fmol_per_sec).
C CONSTS(14) is K_L_B1 in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(15) is K_R_B1 in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(16) is K_Gs in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(17) is K_LR_B1 in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(18) is K_R_B1Gs in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(19) is K_LR_B1Gs in component LRGbinding_B1AR_parameters (per_fmol).
C CONSTS(20) is R in component constants (J_per_K_per_mol).
C CONSTS(21) is T in component constants (kelvin).
C ALGBRC(8) is mu_L_B1 in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(9) is mu_R_B1 in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(10) is mu_Gs in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(11) is mu_LR_B1 in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(12) is mu_R_B1Gs in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(13) is mu_LR_B1Gs in component LRGbinding_B1AR (J_per_mol).
C ALGBRC(14) is v_R_C_B1 in component LRGbinding_B1AR (fmol_per_sec).
C ALGBRC(15) is v_R_R_B1 in component LRGbinding_B1AR (fmol_per_sec).
C ALGBRC(16) is v_R_L_B1 in component LRGbinding_B1AR (fmol_per_sec).
C CONSTS(22) is F in component constants (C_per_mol).
C RATES(1) is d/dt q_L_B1 in component LRGbinding_B1AR (fmol).
C RATES(2) is d/dt q_R_B1 in component LRGbinding_B1AR (fmol).
C RATES(3) is d/dt q_Gs in component LRGbinding_B1AR (fmol).
C RATES(4) is d/dt q_LR_B1 in component LRGbinding_B1AR (fmol).
C RATES(5) is d/dt q_R_B1Gs in component LRGbinding_B1AR (fmol).
C RATES(6) is d/dt q_LR_B1Gs in component LRGbinding_B1AR (fmol).
C
SUBROUTINE initConsts(CONSTS, RATES, STATES)
REAL CONSTS(*), RATES(*), STATES(*)
CONSTS(1) = 0.0004579000
CONSTS(2) = 0.1455400000
CONSTS(3) = 0
CONSTS(4) = 0
CONSTS(5) = 0
CONSTS(6) = 3.1
CONSTS(7) = 0.5e1
CONSTS(8) = 0.3e1
CONSTS(9) = 1e-7
CONSTS(10) = 1e-8
STATES(1) = 1e-16
STATES(2) = 1e-16
STATES(3) = 1e-16
STATES(4) = 1e-16
STATES(5) = 1e-16
STATES(6) = 1e-16
CONSTS(11) = 5573.84
CONSTS(12) = 641.71
CONSTS(13) = 1143.57
CONSTS(14) = 0.885956
CONSTS(15) = 0.834078
CONSTS(16) = 0.18177
CONSTS(17) = 7.24472
CONSTS(18) = 172.108
CONSTS(19) = 2.80863
CONSTS(20) = 8.31
CONSTS(21) = 310
CONSTS(22) = 96485
CONSTS(23) = CONSTS(9)/CONSTS(8)
RETURN
END
SUBROUTINE computeRates(VOI, CONSTS, RATES, STATES, ALGBRC)
REAL VOI, CONSTS(*), RATES(*), STATES(*), ALGBRC(*)
ALGBRC(3) = STATES(2)+CONSTS(1)
ALGBRC(9) = CONSTS(20)*CONSTS(21)*log( CONSTS(15)*ALGBRC(3))
ALGBRC(4) = STATES(3)+CONSTS(2)
ALGBRC(10) = CONSTS(20)*CONSTS(21)*log( CONSTS(16)*ALGBRC(4))
ALGBRC(6) = STATES(5)+CONSTS(4)
ALGBRC(12) = CONSTS(20)*CONSTS(21)*log( CONSTS(18)*ALGBRC(6))
ALGBRC(14) = CONSTS(11)*EXP((ALGBRC(9)+ALGBRC(10))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(12)/( CONSTS(20)*CONSTS(21)))
RATES(5) = ALGBRC(14)
ALGBRC(5) = STATES(4)+CONSTS(3)
ALGBRC(11) = CONSTS(20)*CONSTS(21)*log( CONSTS(17)*ALGBRC(5))
ALGBRC(7) = STATES(6)+CONSTS(5)
ALGBRC(13) = CONSTS(20)*CONSTS(21)*log( CONSTS(19)*ALGBRC(7))
ALGBRC(15) = CONSTS(12)*EXP((ALGBRC(11)+ALGBRC(10))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(13)/( CONSTS(20)*CONSTS(21)))
RATES(3) = - ALGBRC(14) - ALGBRC(15)
RATES(6) = ALGBRC(15)
ALGBRC(1) = TERNRY(VOI.LT.CONSTS(6).AND.VOI.GT.CONSTS(6) - CONSTS(8), CONSTS(10)+ CONSTS(23)*((VOI - CONSTS(6))+CONSTS(8)), TERNRY(VOI.GE.CONSTS(6).AND.VOI.LT.CONSTS(6)+CONSTS(7), CONSTS(9)+CONSTS(10), TERNRY(VOI.LT.CONSTS(6)+CONSTS(8)+CONSTS(7).AND.VOI.GE.CONSTS(6)+CONSTS(7), CONSTS(10)+ - CONSTS(23)*(((VOI - CONSTS(6)) - CONSTS(8)) - CONSTS(7)), CONSTS(10))
ALGBRC(2) = STATES(1)+ALGBRC(1)
ALGBRC(8) = CONSTS(20)*CONSTS(21)*log( CONSTS(14)*ALGBRC(2))
ALGBRC(16) = CONSTS(13)*EXP((ALGBRC(9)+ALGBRC(8))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(11)/( CONSTS(20)*CONSTS(21)))
RATES(1) = - ALGBRC(16)
RATES(2) = - ALGBRC(14) - ALGBRC(16)
RATES(4) = - ALGBRC(15)+ALGBRC(16)
RETURN
END
SUBROUTINE computeVariables(VOI, CONSTS, RATES, STATES, ALGBRC)
REAL VOI, CONSTS(*), RATES(*), STATES(*), ALGBRC(*)
ALGBRC(3) = STATES(2)+CONSTS(1)
ALGBRC(9) = CONSTS(20)*CONSTS(21)*log( CONSTS(15)*ALGBRC(3))
ALGBRC(4) = STATES(3)+CONSTS(2)
ALGBRC(10) = CONSTS(20)*CONSTS(21)*log( CONSTS(16)*ALGBRC(4))
ALGBRC(6) = STATES(5)+CONSTS(4)
ALGBRC(12) = CONSTS(20)*CONSTS(21)*log( CONSTS(18)*ALGBRC(6))
ALGBRC(14) = CONSTS(11)*EXP((ALGBRC(9)+ALGBRC(10))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(12)/( CONSTS(20)*CONSTS(21)))
ALGBRC(5) = STATES(4)+CONSTS(3)
ALGBRC(11) = CONSTS(20)*CONSTS(21)*log( CONSTS(17)*ALGBRC(5))
ALGBRC(7) = STATES(6)+CONSTS(5)
ALGBRC(13) = CONSTS(20)*CONSTS(21)*log( CONSTS(19)*ALGBRC(7))
ALGBRC(15) = CONSTS(12)*EXP((ALGBRC(11)+ALGBRC(10))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(13)/( CONSTS(20)*CONSTS(21)))
ALGBRC(1) = TERNRY(VOI.LT.CONSTS(6).AND.VOI.GT.CONSTS(6) - CONSTS(8), CONSTS(10)+ CONSTS(23)*((VOI - CONSTS(6))+CONSTS(8)), TERNRY(VOI.GE.CONSTS(6).AND.VOI.LT.CONSTS(6)+CONSTS(7), CONSTS(9)+CONSTS(10), TERNRY(VOI.LT.CONSTS(6)+CONSTS(8)+CONSTS(7).AND.VOI.GE.CONSTS(6)+CONSTS(7), CONSTS(10)+ - CONSTS(23)*(((VOI - CONSTS(6)) - CONSTS(8)) - CONSTS(7)), CONSTS(10))
ALGBRC(2) = STATES(1)+ALGBRC(1)
ALGBRC(8) = CONSTS(20)*CONSTS(21)*log( CONSTS(14)*ALGBRC(2))
ALGBRC(16) = CONSTS(13)*EXP((ALGBRC(9)+ALGBRC(8))/( CONSTS(20)*CONSTS(21))) - EXP(ALGBRC(11)/( CONSTS(20)*CONSTS(21)))
RETURN
END
REAL FUNCTION TERNRY(TEST, VALA, VALB)
LOGICAL TEST
REAL VALA, VALB
IF (TEST) THEN
TERNRY = VALA
ELSE
TERNRY = VALB
ENDIF
RETURN
END
