modelCardiovascularSystem_GCG

Cardiovascular part of Guyton-Coleman-Granger's model from 1972

Extends from Modelica.Icons.Example (Icon for runnable examples).

Information

Cardiovascular subsystem in famous Guyton-Coleman-Granger model from 1972.


Model, all parameters and all initial values are from article:

A.C. Guyton, T.G. Coleman, H.J. Granger (1972). "Circulation: overall regulation." Annual review of physiology 34(1): 13-44.

Components

TypeNameDefaultDescription
Hydraulic.Components.ElasticVesselpulmonaryVeinsAndLeftAtrium
Hydraulic.Components.ElasticVesselpulmonaryArteries
Hydraulic.Components.Conductorpulmonary
Hydraulic.Components.ElasticVesselarteries
Hydraulic.Components.ElasticVesselveins
Hydraulic.Components.ConductornonMuscle
Hydraulic.Sensors.PressureMeasurepressureMeasure
Hydraulic.Components.MassPumprightHeart
Physiolibrary.Types.Constants.MassFlowRateConstRNormalCO
Hydraulic.Sensors.PressureMeasurepressureMeasure1
Hydraulic.Components.MassPumpleftHeart
Physiolibrary.Types.Constants.MassFlowRateConstLNormalCO
Hydraulic.Components.Conductorkidney
Hydraulic.Components.Conductormuscle
Hydraulic.Components.ConductorlargeVeins
Hydraulic.Components.ElasticVesselrightAtrium
Physiolibrary.Blocks.Factors.SplinerightStarlingAt filling pressure 0mmHg (because external thorax pressure is -4mmHg) is normal cardiac output (effect=1).
Physiolibrary.Blocks.Factors.SplineleftStarlingAt filling pressure -0.0029mmHg (because external thorax pressure is -4mmHg) is normal cardiac output (effect=1).
Modelica.Fluid.Systemsystem
Hydraulic.Sensors.PressureMeasureMeanArterialPressureMAP

Revisions

2014-2018

Marek Matejak, marek@matfyz.cz