modelPKPD_HemodynamicsMeurs_flatNorm

Diagram of PKPD_HemodynamicsMeurs_flatNorm

Extends from Physiolibrary.Icons.CardioVascular.

Information

CAUTION: This model depends on Physiolibrary 3.0 and Chemical[3]. Please download and open it before simulating this model example.

Parameters of PD influence on HR and compliance of left ventricle are for ilustrative estimates. Other parameters are from referred articles. Model of hemodynamics of cardiovascular system [1] and PKPD model of digoxin effect [2]. 

[1] W. van Meurs, Modeling and Simulation in Biomedical Engineering: Applications in Cardiorespiratory Physiology, McGraw-Hill Professional, 2011.

[2] Hornestam, B., Jerling, M., Karlsson, M.O. et al. Intravenously administered digoxin in patients with acute atrial fibrillation: a population pharmacokinetic/pharmacodynamic analysis based on the Digitalis in Acute Atrial Fibrillation trial. Eur J Clin Pharmacol 58, 747–755 (2003). doi.org/10.1007/s00228-002-0553-3

[3] https://www.physiolibrary.org

Components

TypeNameDefaultDescription
Physiolibrary.Fluid.Components.ElasticVesselElastanceEpa
Physiolibrary.Fluid.Components.ResistorRpp
Physiolibrary.Fluid.Components.ElasticVesselElastanceEpv
Physiolibrary.Fluid.Components.ResistorRlain
Physiolibrary.Fluid.Components.ElasticVesselElastanceLeftAtrium
Physiolibrary.Fluid.Components.ElasticVesselElastanceLeftVentricle
Physiolibrary.Fluid.Components.IdealValveResistanceAorticValve
Physiolibrary.Fluid.Examples.MeursModel2011.Parts.AtrialElastanceLAtrialElastance
Physiolibrary.Fluid.Examples.MeursModel2011.Parts.VentricularElastanceLVentricularElastance
Physiolibrary.Fluid.Components.IdealValveResistanceMitralValve
Physiolibrary.Fluid.Components.ElasticVesselElastanceEitha
Physiolibrary.Fluid.Components.ElasticVesselElastanceEetha
Physiolibrary.Fluid.Components.Inertiainertia
Physiolibrary.Fluid.Components.ResistorRetha
Physiolibrary.Fluid.Components.ResistorRsart
Physiolibrary.Fluid.Components.ResistorRsven
Physiolibrary.Fluid.Components.ElasticVesselElastanceEst
Physiolibrary.Fluid.Components.ResistorRethv
Physiolibrary.Fluid.Components.ResistorRrain
Physiolibrary.Fluid.Components.ElasticVesselElastanceEithv
Physiolibrary.Fluid.Components.ElasticVesselElastanceEethv
Physiolibrary.Fluid.Components.ElasticVesselElastanceRightAtrium
Physiolibrary.Fluid.Components.ElasticVesselElastanceRightVentricle
Physiolibrary.Fluid.Components.IdealValveResistancePulmonaryValve
Physiolibrary.Fluid.Examples.MeursModel2011.Parts.AtrialElastanceRAtrialElastance
Physiolibrary.Fluid.Examples.MeursModel2011.Parts.VentricularElastanceRVentricularElastance
Physiolibrary.Fluid.Components.IdealValveResistanceTricuspidValve
Modelica.Fluid.Systemsystem
Physiolibrary.Fluid.Sensors.PressureMeasureEithaPressure
Physiolibrary.Fluid.Sensors.PressureMeasureEethaPressure
Physiolibrary.Fluid.Sensors.PressureMeasureEstPressure
Physiolibrary.Fluid.Sensors.PressureMeasureEethvPressure
Physiolibrary.Fluid.Sensors.PressureMeasureEithvPressure
Physiolibrary.Fluid.Sensors.Powerpower
Physiolibrary.Fluid.Sensors.Powerpower1
Modelica.Blocks.Math.MeanrightHeartPower
Modelica.Blocks.Math.Feedbackfeedback
Physiolibrary.Fluid.Sensors.Powerpower2
Physiolibrary.Fluid.Sensors.Powerpower3
Modelica.Blocks.Math.MeanleftHeartPower
Modelica.Blocks.Math.Feedbackfeedback1
Physiolibrary.Fluid.Sensors.SphygmomanometerarterialPressure
Sources.SingleDosesingleDose
Pharmacokinetic.NoPerfusedTissueCompartmentcentral
Pharmacokinetic.ClearanceDrivenEliminationelim
Pharmacodynamic.SigmoidEmaxEffectPD_Digoxin_Compliance
Pharmacokinetic.NoPerfusedTissueCompartmentperipheral
Pharmacokinetic.TransferFirstOrderNonSymc_p
Pharmacodynamic.SigmoidEmaxEffectPD_Digoxin_HR
Physiolibrary.Fluid.Sensors.PressureMeasureLVpressure

Revisions

  • Jul 2025 by Tomas Kulhanek: demo integration to pharmacolibrary, pharmacokinetics and pharmacodynamics