- Author:
- Soroush Safaei <ssaf006@aucklanduni.ac.nz>
- Date:
- 2016-11-29 18:34:58+13:00
- Desc:
- adding N matrix
- Permanent Source URI:
- https://models.physiomeproject.org/workspace/290/rawfile/4ef16f8d2089083dd313b22d6f3aa0e0c7d013ca/Weinstein_2000_AE1_Fig2E.cellml
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<import xlink:href="Units/Units.cellml">
<units name="mM" units_ref="mM"/>
<units name="mM_per_s" units_ref="mM_per_s"/>
<units name="umol_per_s_per_cm2" units_ref="umol_per_s_per_cm2"/>
</import>
<import xlink:href="Weinstein_2000_AE1.cellml">
<component component_ref="AE1" name="AE1"/>
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<component name="environment">
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<component name="concentrations">
<variable name="time" public_interface="in" units="second"/>
<variable initial_value="1.0" name="HCO3_int" public_interface="out" units="mM"/>
<variable initial_value="1.0" name="HCO3_ext" public_interface="out" units="mM"/>
<variable initial_value="0.0" name="Cl_int" public_interface="out" units="mM"/>
<variable initial_value="0.0" name="Cl_ext" public_interface="out" units="mM"/>
<math xmlns="http://www.w3.org/1998/Math/MathML">
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<eq/>
<apply>
<diff/>
<bvar>
<ci>time</ci>
</bvar>
<ci>HCO3_int</ci>
</apply>
<cn cellml:units="mM_per_s">1.0</cn>
</apply>
<apply>
<eq/>
<apply>
<diff/>
<bvar>
<ci>time</ci>
</bvar>
<ci>HCO3_ext</ci>
</apply>
<cn cellml:units="mM_per_s">1.0</cn>
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<apply>
<eq/>
<apply>
<diff/>
<bvar>
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<ci>Cl_int</ci>
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<cn cellml:units="mM_per_s">0.0</cn>
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<apply>
<eq/>
<apply>
<diff/>
<bvar>
<ci>time</ci>
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<ci>Cl_ext</ci>
</apply>
<cn cellml:units="mM_per_s">0.0</cn>
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</math>
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<component name="fluxes">
<variable name="J_AE1_HCO3" public_interface="in" units="umol_per_s_per_cm2"/>
<variable name="J_AE1_Cl" public_interface="in" units="umol_per_s_per_cm2"/>
<variable name="J_HCO3_influx" public_interface="in" units="umol_per_s_per_cm2"/>
<variable name="J_Cl_influx" public_interface="in" units="umol_per_s_per_cm2"/>
</component>
<connection>
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<map_variables variable_1="HCO3_int" variable_2="HCO3_int"/>
<map_variables variable_1="HCO3_ext" variable_2="HCO3_ext"/>
<map_variables variable_1="Cl_int" variable_2="Cl_int"/>
<map_variables variable_1="Cl_ext" variable_2="Cl_ext"/>
</connection>
<connection>
<map_components component_1="fluxes" component_2="AE1"/>
<map_variables variable_1="J_AE1_HCO3" variable_2="J_AE1_HCO3"/>
<map_variables variable_1="J_AE1_Cl" variable_2="J_AE1_Cl"/>
<map_variables variable_1="J_HCO3_influx" variable_2="J_HCO3_influx"/>
<map_variables variable_1="J_Cl_influx" variable_2="J_Cl_influx"/>
</connection>
<connection>
<map_components component_1="concentrations" component_2="environment"/>
<map_variables variable_1="time" variable_2="time"/>
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The Weinstein 2000 quantitative model of AE1 (Cl/HCO3 exchanger).
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A mathematical model of the outer medullary collecting duct of the rat
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