modelFirstOrderInhibitionEffect

indirect first order inhibition effect model
Diagram of FirstOrderInhibitionEffect

Extends from Pharmacolibrary.Interfaces.PartialIndirectEffect.

Information

FirstOrderInhibitionEffect

indirect first order inhibition effect model. Effect E is calculated using an differential equation

                        c  
E' = kIn - kOut*(1 - ---------)*E
                      c + c50

where c is the free concentration (either tissue or blood/plasma, depending on the switch) at the BloodTissueConcentrationPort connector.

Parameters

c50 - concentration producing 50% maximum inhibition
kIn - zero-order response production constant
kOut - first-order response loss rate constant
Boolean cBSwitch - false: use tissue free conc, true: use blood free conc

Parameters

TypeNameDefaultDescription
RealkIn (from PartialIndirectEffect)zero-order response production constant
RealkOut (from PartialIndirectEffect)first-order response loss rate constant
Pharmacolibrary.Types.MassConcentrationc50concentration producing 50% maximum inhibition

Connectors

TypeNameDefaultDescription
ConcentrationPort_acport (from PartialEffect)
Modelica.Blocks.Interfaces.RealOutputeffect (from PartialEffect)

Components

TypeNameDefaultDescription
Modelica.Units.SI.DimensionlessRatioE (from PartialEffect)efect
Pharmacolibrary.Types.MassConcentrationc (from PartialEffect)free blood or tissue conc
RealIIn (from PartialIndirectEffect)zero-order inhibition/stimulation factor
RealIOut (from PartialIndirectEffect)first-order inhibition/stimulation factor