modelKidneyCl
Extends from Physiolibrary.Icons.Kidney.
Information
TODO: Chloride extracellular body concentration should play a role in chloride excretion by kidney?
In this implementation is chloride outflow driven only by electroneutrality.
That means - there is hard to calculate steady state for chloride concentration !!
Chloride concentration sholud be calculate also from internal electroneutrality, better than integrated value from inflow and outflow.
Connectors
| Type | Name | Default | Description |
|---|---|---|---|
| Physiolibrary.Types.BusConnector | busConnector |
Components
| Type | Name | Default | Description |
|---|---|---|---|
| Physiolibrary.Blocks.Factors.Spline | PhEffect | marek: normal pH corrected from 7.45 to 7.42 | |
| Physiolibrary.Chemical.Components.SolutePump | CD_Outflow | ||
| Modelica.Blocks.Math.Sum | CD_Cations_Outflow | ||
| Modelica.Blocks.Math.Sum | CD_AnionsLessCl_Outflow | ||
| Modelica.Blocks.Math.Feedback | CD_Cl_Outflow | ||
| Physiolibrary.Chemical.Interfaces.ChemicalPort_a | q_in | sodium concentration in blood incomming to glomerulus capillaries; sodium mass flow is filtration - reabsorbtion | |
| Physiolibrary.Chemical.Interfaces.ChemicalPort_b | q_out | sodium mass outflow to urine from collecting ducts | |
| Modelica.Blocks.Math.Sum | CD_AnionsLessCl_Outflow1 | ||
| Modelica.Blocks.Math.Gain | gain | ||
| Physiolibrary.Blocks.Factors.Spline | ChloridePoolEffect | electroneutrality does not allow to extract cation without anion |
Revisions
| Author: | Marek Matejak |
| License: | Physiomodel License 1.0 |
| By: | Charles University, Prague |
| Date of: | 2009 |
| References: | Tom Coleman: QHP 2008 beta 3, University of Mississippi Medical Center |
Copyright © 2014 Marek Matejak, Charles University in Prague.