Location: Tabak, Toporikova, Freeman, Bertram, 2007 @ 2609162274cf / tabak_toporikova_freeman_bertram_2007_a.cellml

Author:
Geoff Nunns <gnunns1@jhu.edu>
Date:
2010-04-28 14:28:10+12:00
Desc:
Added titles for each variant in RDF, edited model status to eliminate confusion.
Permanent Source URI:
https://models.cellml.org/workspace/tabak_toporikova_freeman_bertram_2007/rawfile/2609162274cf9c37f205ee9c050337055aacf89c/tabak_toporikova_freeman_bertram_2007_a.cellml

<?xml version="1.0"?>
<!--
This CellML file was generated on 23/11/2009 at 4:22:19 at p.m. using:

COR (0.9.31.1333)
Copyright 2002-2009 Dr Alan Garny
http://cor.physiol.ox.ac.uk/ - cor@physiol.ox.ac.uk

CellML 1.0 was used to generate this model
http://www.cellml.org/
--><model xmlns="http://www.cellml.org/cellml/1.0#" xmlns:cmeta="http://www.cellml.org/metadata/1.0#" xml:base="file:///C:/Documents%20and%20Settings/mcho099/Desktop/repository/synchronise/tabak2007/tabak_toporikova_freeman_bertram_2007_a.cellml" cmeta:id="tabak_2007_a" name="tabak_2007_a">
	<documentation xmlns="http://cellml.org/tmp-documentation">
		<article>
			<articleinfo>
				<title>Low dose of dopamine may stimulate prolactin secretion by increasing fast potassium currents</title>
				<author>
					<firstname>Catherine</firstname>
					<surname>Lloyd</surname>
					<affiliation>
						<shortaffil>Bioengineering Institute, University of Auckland</shortaffil>
					</affiliation>
				</author>
			</articleinfo>
			<section id="sec_status">
				<title>Model Status</title>
				<para>
            The authors highlight that the original code they wrote for this model can be downloaded <ulink url="http://www.math.fsu.edu/~bertram/software/pituitary/JCNS_07.ode">here</ulink>.  This particular CellML version of the model has the A-type potassium current switched off.  For the alternative model which has the A-type current switched on and the BK-type potassium current switched off (gBK=0.2). This CellML model runs in PCEnv and COR to replicate the published results (figure 2B).  Please note that the model needs to be run for at least 3000ms to allow the model to reach stability.
          </para>
			</section>
			
			
			<sect1 id="sec_structure">
				<title>Model Structure</title>
				<para>
ABSTRACT: Dopamine (DA) released from the hypothalamus tonically inhibits pituitary lactotrophs. DA (at micromolar concentration) opens potassium channels, hyperpolarizing the lactotrophs and thus preventing the calcium influx that triggers prolactin hormone release. Surprisingly, at concentrations ~1000 lower, DA can stimulate prolactin secretion. Here, we investigated whether an increase in a K+ current could mediate this stimulatory effect. We considered the fast K+ currents flowing through large-conductance BK channels and through A-type channels. We developed a minimal lactotroph model to investigate the effects of these two currents. Both I BK and I A could transform the electrical pattern of activity from spiking to bursting, but through distinct mechanisms. I BK always increased the intracellular Ca2+ concentration, while I A could either increase or decrease it. Thus, the stimulatory effects of DA could be mediated by a fast K+ conductance which converts tonically spiking cells to bursters. In addition, the study illustrates that a heterogeneous distribution of fast K+ conductances could cause heterogeneous lactotroph firing patterns.
</para>

<informalfigure float="0" id="fig_reaction_diagram">
<mediaobject>
  <imageobject>
    <objectinfo>
      <title>model diagram</title>
    </objectinfo>
    <imagedata fileref="tabak_2007.png"/>
  </imageobject>
</mediaobject>
<caption>Schematic diagram of the model.</caption>
</informalfigure>
				
				<para>
The original paper reference is cited below:
</para>
				<para>
					Low dose of dopamine may stimulate prolactin secretion by increasing fast potassium currents, Joel Tabak, Natalia Toporikova, Marc E. Freeman, and Richard Bertram, 2007,
						<emphasis>Journal of Computational Neuroscience</emphasis>
					, 22, 211-222. <ulink url="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&amp;cmd=Retrieve&amp;dopt=AbstractPlus&amp;list_uids=17058022&amp;query_hl=1&amp;itool=pubmed_docsum">PubMed ID: 17058022</ulink>
				</para>

			</sect1>
		</article>
	</documentation>
	
	
	
	
	
	
	
	
	
	
	   <units name="millisecond">
      <unit prefix="milli" units="second"/>
   </units>
   <units name="millivolt">
      <unit prefix="milli" units="volt"/>
   </units>
   <units name="picofarad">
      <unit prefix="pico" units="farad"/>
   </units>
   <units name="nanosiemens">
      <unit prefix="nano" units="siemens"/>
   </units>
   <units name="picoampere">
      <unit prefix="pico" units="ampere"/>
   </units>
   <units name="micromolar">
      <unit prefix="micro" units="mole"/>
      <unit exponent="-1" units="litre"/>
   </units>
   <units name="micromolar_4">
      <unit exponent="-4" units="micromolar"/>
   </units>
   <units name="micromolar_femtocoulomb">
      <unit units="micromolar"/>
      <unit exponent="-1" prefix="femto" units="coulomb"/>
   </units>
   <units name="first_order_rate_constant">
      <unit exponent="-1" units="millisecond"/>
   </units>
   <component name="environment">
      <variable name="time" public_interface="out" units="millisecond"/>
   </component>
   <component name="membrane">
      <variable initial_value="-60" name="V" public_interface="out" units="millivolt"/>
      <variable initial_value="10" name="C" units="picofarad"/>
      <variable name="I_Ca" public_interface="in" units="picoampere"/>
      <variable name="I_K" public_interface="in" units="picoampere"/>
      <variable name="I_SK" public_interface="in" units="picoampere"/>
      <variable name="I_DA" public_interface="in" units="picoampere"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <apply>
               <diff/>
               <bvar>
                  <ci>time</ci>
               </bvar>
               <ci>V</ci>
            </apply>
            <apply>
               <divide/>
               <apply>
                  <minus/>
                  <apply>
                     <plus/>
                     <ci>I_Ca</ci>
                     <ci>I_K</ci>
                     <ci>I_SK</ci>
                     <ci>I_DA</ci>
                  </apply>
               </apply>
               <ci>C</ci>
            </apply>
         </apply>
      </math>
   </component>
   <component name="I_K">
      <variable name="I_K" public_interface="out" units="picoampere"/>
      <variable initial_value="4" name="gK" units="nanosiemens"/>
      <variable name="time" private_interface="out" public_interface="in" units="millisecond"/>
      <variable name="VK" public_interface="in" units="millivolt"/>
      <variable name="V" private_interface="out" public_interface="in" units="millivolt"/>
      <variable name="n" private_interface="in" units="dimensionless"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <ci>I_K</ci>
            <apply>
               <times/>
               <ci>gK</ci>
               <ci>n</ci>
               <apply>
                  <minus/>
                  <ci>V</ci>
                  <ci>VK</ci>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="n">
      <variable initial_value="0.1" name="n" public_interface="out" units="dimensionless"/>
      <variable name="n_infinity" units="dimensionless"/>
      <variable initial_value="0.7" name="lambda" units="dimensionless"/>
      <variable initial_value="30" name="tau_n" units="millisecond"/>
      <variable initial_value="-5" name="vn" units="millivolt"/>
      <variable initial_value="10" name="sn" units="millivolt"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <variable name="V" public_interface="in" units="millivolt"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <apply>
               <diff/>
               <bvar>
                  <ci>time</ci>
               </bvar>
               <ci>n</ci>
            </apply>
            <apply>
               <divide/>
               <apply>
                  <times/>
                  <ci>lambda</ci>
                  <apply>
                     <minus/>
                     <ci>n_infinity</ci>
                     <ci>n</ci>
                  </apply>
               </apply>
               <ci>tau_n</ci>
            </apply>
         </apply>
         <apply>
            <eq/>
            <ci>n_infinity</ci>
            <apply>
               <divide/>
               <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
               <apply>
                  <plus/>
                  <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
                  <apply>
                     <exp/>
                     <apply>
                        <divide/>
                        <apply>
                           <minus/>
                           <ci>vn</ci>
                           <ci>V</ci>
                        </apply>
                        <ci>sn</ci>
                     </apply>
                  </apply>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="I_Ca">
      <variable name="I_Ca" public_interface="out" units="picoampere"/>
      <variable initial_value="2" name="gCa" units="nanosiemens"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <variable name="VCa" public_interface="in" units="millivolt"/>
      <variable name="V" private_interface="out" public_interface="in" units="millivolt"/>
      <variable name="m_infinity" private_interface="in" units="dimensionless"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <ci>I_Ca</ci>
            <apply>
               <times/>
               <ci>gCa</ci>
               <ci>m_infinity</ci>
               <apply>
                  <minus/>
                  <ci>V</ci>
                  <ci>VCa</ci>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="m">
      <variable name="m_infinity" public_interface="out" units="dimensionless"/>
      <variable initial_value="-20" name="vm" units="millivolt"/>
      <variable initial_value="12" name="sm" units="millivolt"/>
      <variable name="V" public_interface="in" units="millivolt"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <ci>m_infinity</ci>
            <apply>
               <divide/>
               <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
               <apply>
                  <plus/>
                  <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
                  <apply>
                     <exp/>
                     <apply>
                        <divide/>
                        <apply>
                           <minus/>
                           <ci>vm</ci>
                           <ci>V</ci>
                        </apply>
                        <ci>sm</ci>
                     </apply>
                  </apply>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="I_SK">
      <variable name="I_SK" public_interface="out" units="picoampere"/>
      <variable initial_value="1.7" name="gSK" units="nanosiemens"/>
      <variable name="s_infinity" units="dimensionless"/>
      <variable initial_value="0.5" name="ks" units="micromolar"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <variable name="VK" public_interface="in" units="millivolt"/>
      <variable name="Ca" public_interface="in" units="micromolar"/>
      <variable name="V" public_interface="in" units="millivolt"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <ci>I_SK</ci>
            <apply>
               <times/>
               <ci>gSK</ci>
               <ci>s_infinity</ci>
               <apply>
                  <minus/>
                  <ci>V</ci>
                  <ci>VK</ci>
               </apply>
            </apply>
         </apply>
         <apply>
            <eq/>
            <ci>s_infinity</ci>
            <apply>
               <divide/>
               <apply>
                  <power/>
                  <ci>Ca</ci>
                  <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">2</cn>
               </apply>
               <apply>
                  <plus/>
                  <apply>
                     <power/>
                     <ci>Ca</ci>
                     <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">2</cn>
                  </apply>
                  <apply>
                     <power/>
                     <ci>ks</ci>
                     <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">2</cn>
                  </apply>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="I_DA">
      <variable name="I_DA" public_interface="out" units="picoampere"/>
      <variable name="I_BK" units="picoampere"/>
      <variable initial_value="0.2" name="gBK" units="nanosiemens"/>
      <variable name="time" private_interface="out" public_interface="in" units="millisecond"/>
      <variable name="VK" public_interface="in" units="millivolt"/>
      <variable name="V" private_interface="out" public_interface="in" units="millivolt"/>
      <variable name="f_infinity" private_interface="in" units="dimensionless"/>
      
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply><eq/><ci>I_DA</ci><ci>I_BK</ci></apply>
         <apply><eq/><ci>I_BK</ci><apply><times/><ci>gBK</ci><ci>f_infinity</ci><apply><minus/><ci>V</ci><ci>VK</ci></apply></apply></apply>
      </math>
   </component>
   <component name="f">
      <variable name="f_infinity" public_interface="out" units="dimensionless"/>
      <variable initial_value="-20" name="vf" units="millivolt"/>
      <variable initial_value="5.6" name="sf" units="millivolt"/>
      <variable name="V" public_interface="in" units="millivolt"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply><eq/><ci>f_infinity</ci><apply><divide/><cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn><apply><plus/><cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn><apply><exp/><apply><divide/><apply><minus/><ci>vf</ci><ci>V</ci></apply><ci>sf</ci></apply></apply></apply></apply></apply>
      </math>
   </component>
   <component name="h">
      <variable initial_value="0.1" name="h" public_interface="out" units="dimensionless"/>
      <variable name="h_infinity" units="dimensionless"/>
      <variable initial_value="20" name="tau_h" units="millisecond"/>
      <variable initial_value="-60" name="vh" units="millivolt"/>
      <variable initial_value="5" name="sh" units="millivolt"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <variable name="V" public_interface="in" units="millivolt"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <apply>
               <diff/>
               <bvar>
                  <ci>time</ci>
               </bvar>
               <ci>h</ci>
            </apply>
            <apply>
               <divide/>
               <apply>
                  <minus/>
                  <ci>h_infinity</ci>
                  <ci>h</ci>
               </apply>
               <ci>tau_h</ci>
            </apply>
         </apply>
         <apply>
            <eq/>
            <ci>h_infinity</ci>
            <apply>
               <divide/>
               <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
               <apply>
                  <plus/>
                  <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">1</cn>
                  <apply>
                     <exp/>
                     <apply>
                        <divide/>
                        <apply>
                           <minus/>
                           <ci>V</ci>
                           <ci>vh</ci>
                        </apply>
                        <ci>sh</ci>
                     </apply>
                  </apply>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="Ca">
      <variable initial_value="0.1" name="Ca" public_interface="out" units="micromolar"/>
      <variable initial_value="0.01" name="fc" units="dimensionless"/>
      <variable initial_value="0.0015" name="alpha" units="micromolar_femtocoulomb"/>
      <variable initial_value="0.16" name="kc" units="first_order_rate_constant"/>
      <variable name="I_Ca" public_interface="in" units="picoampere"/>
      <variable name="time" public_interface="in" units="millisecond"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <apply>
               <diff/>
               <bvar>
                  <ci>time</ci>
               </bvar>
               <ci>Ca</ci>
            </apply>
            <apply>
               <times/>
               <apply>
                  <minus/>
                  <ci>fc</ci>
               </apply>
               <apply>
                  <plus/>
                  <apply>
                     <times/>
                     <ci>alpha</ci>
                     <ci>I_Ca</ci>
                  </apply>
                  <apply>
                     <times/>
                     <ci>kc</ci>
                     <ci>Ca</ci>
                  </apply>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="PRL">
      <variable name="PRL" units="dimensionless"/>
      <variable initial_value="1" name="kPRL" units="micromolar_4"/>
      <variable name="Ca" public_interface="in" units="micromolar"/>
      <math xmlns="http://www.w3.org/1998/Math/MathML">
         <apply>
            <eq/>
            <ci>PRL</ci>
            <apply>
               <times/>
               <ci>kPRL</ci>
               <apply>
                  <power/>
                  <ci>Ca</ci>
                  <cn xmlns:cellml="http://www.cellml.org/cellml/1.0#" cellml:units="dimensionless">4</cn>
               </apply>
            </apply>
         </apply>
      </math>
   </component>
   <component name="model_parameters">
      <variable initial_value="-75" name="VK" public_interface="out" units="millivolt"/>
      <variable initial_value="50" name="VCa" public_interface="out" units="millivolt"/>
   </component>
   <group>
      <relationship_ref relationship="containment"/>
      <component_ref component="membrane">
         <component_ref component="I_Ca">
            <component_ref component="m"/>
         </component_ref>
         <component_ref component="I_K">
            <component_ref component="n"/>
         </component_ref>
         <component_ref component="I_SK"/>
         <component_ref component="I_DA">
            <component_ref component="f"/>
            <component_ref component="h"/>
         </component_ref>
      </component_ref>
   </group>
   <group>
      <relationship_ref relationship="encapsulation"/>
      <component_ref component="I_Ca">
         <component_ref component="m"/>
      </component_ref>
      <component_ref component="I_K">
         <component_ref component="n"/>
      </component_ref>
      <component_ref component="I_DA">
         <component_ref component="f"/>
         <component_ref component="h"/>
      </component_ref>
   </group>
   <connection>
      <map_components component_1="membrane" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="I_K" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="I_Ca" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="I_SK" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="I_DA" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="Ca" component_2="environment"/>
      <map_variables variable_1="time" variable_2="time"/>
   </connection>
   <connection>
      <map_components component_1="membrane" component_2="I_Ca"/>
      <map_variables variable_1="I_Ca" variable_2="I_Ca"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="membrane" component_2="I_K"/>
      <map_variables variable_1="I_K" variable_2="I_K"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="membrane" component_2="I_SK"/>
      <map_variables variable_1="I_SK" variable_2="I_SK"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="membrane" component_2="I_DA"/>
      <map_variables variable_1="I_DA" variable_2="I_DA"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="f" component_2="I_DA"/>
      <map_variables variable_1="f_infinity" variable_2="f_infinity"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="h" component_2="I_DA"/>
      
      <map_variables variable_1="time" variable_2="time"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="I_K" component_2="model_parameters"/>
      <map_variables variable_1="VK" variable_2="VK"/>
   </connection>
   <connection>
      <map_components component_1="n" component_2="I_K"/>
      <map_variables variable_1="n" variable_2="n"/>
      <map_variables variable_1="time" variable_2="time"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="I_Ca" component_2="model_parameters"/>
      <map_variables variable_1="VCa" variable_2="VCa"/>
   </connection>
   <connection>
      <map_components component_1="m" component_2="I_Ca"/>
      <map_variables variable_1="m_infinity" variable_2="m_infinity"/>
      <map_variables variable_1="V" variable_2="V"/>
   </connection>
   <connection>
      <map_components component_1="I_SK" component_2="model_parameters"/>
      <map_variables variable_1="VK" variable_2="VK"/>
   </connection>
   <connection>
      <map_components component_1="I_SK" component_2="Ca"/>
      <map_variables variable_1="Ca" variable_2="Ca"/>
   </connection>
   <connection>
      <map_components component_1="I_DA" component_2="model_parameters"/>
      <map_variables variable_1="VK" variable_2="VK"/>
   </connection>
   <connection>
      <map_components component_1="Ca" component_2="I_Ca"/>
      <map_variables variable_1="I_Ca" variable_2="I_Ca"/>
   </connection>
   <connection>
      <map_components component_1="PRL" component_2="Ca"/>
      <map_variables variable_1="Ca" variable_2="Ca"/>
   </connection>

   <rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:bqs="http://www.cellml.org/bqs/1.0#" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:vCard="http://www.w3.org/2001/vcard-rdf/3.0#">
    <foo xmlns="http://www.example.org/foo/bar/baz" />
    <!--
      The following RDF block contains metadata that applies to this document
      as a whole, as indicated by the empty about attribute on the 
      <rdf:Description> element.
    -->
    <rdf:Description rdf:about="">
      <!--
        The Model Builder Metadata.  The Dublin Core "creator" element is used  
        to indicate the person who translated the model into CellML.
      -->
	  <dc:title>
            Low dose of dopamine may stimulate prolactin secretion by increasing fast potassium currents (BK-Type K Current)
      </dc:title>
      <dc:creator rdf:parseType="Resource">
        <vCard:N rdf:parseType="Resource">
          <vCard:Family>Lloyd</vCard:Family>
          <vCard:Given>Catherine</vCard:Given>
		  <vCard:Other>May</vCard:Other>
        </vCard:N>
        <vCard:EMAIL rdf:parseType="Resource">
          <rdf:value>c.lloyd@auckland@auckland.ac.nz</rdf:value>
          <rdf:type rdf:resource="http://imc.org/vCard/3.0#internet"/>
        </vCard:EMAIL>
        <vCard:ORG rdf:parseType="Resource">
          <vCard:Orgname>The University of Auckland</vCard:Orgname>
          <vCard:Orgunit>Auckland Bioengineering Institute</vCard:Orgunit>
        </vCard:ORG>
      </dc:creator>
      
      <!--
        The Creation Date metadata. This is the date on which the model
        was translated into CellML.
      -->
      <dcterms:created rdf:parseType="Resource">
        <dcterms:W3CDTF>2007-08-07</dcterms:W3CDTF>
      </dcterms:created>
      
      <!--
        The Modification History metadata. This lists the changes that have been
        made to the document, who made the changes, and when they were made.
      -->
     
    </rdf:Description>
    
    <!--
      The following metadata refers to the model itself, as indicated by the
      reference to the ID "tabak_2007_a", which is    
      declared on the <model> element.
    -->
    <rdf:Description rdf:about="#tabak_2007_a">
      
      <!--  Keyword(s) -->
      <bqs:reference rdf:parseType="Resource">
        <dc:subject rdf:parseType="Resource">
          <bqs:subject_type>keyword</bqs:subject_type>
          <rdf:value>
            <rdf:Bag>
              <rdf:li>endocrine</rdf:li>
              <rdf:li>dopamine</rdf:li>
              <rdf:li>prolactin</rdf:li>
              <rdf:li>pituitary</rdf:li>
              <rdf:li>lactotroph</rdf:li>
            </rdf:Bag>
          </rdf:value>
        </dc:subject>
      </bqs:reference>

      <bqs:reference rdf:parseType="Resource">
        <bqs:Pubmed_id>17058022</bqs:Pubmed_id>
        <bqs:JournalArticle rdf:parseType="Resource">
          <dc:creator>
            <rdf:Seq>
              <rdf:li rdf:parseType="Resource">
                <bqs:Person rdf:parseType="Resource">
                  <vCard:N rdf:parseType="Resource">
                    <vCard:Family>Tabak</vCard:Family>
                    <vCard:Given>J</vCard:Given>
                  </vCard:N>
                </bqs:Person>
              </rdf:li>
			  <rdf:li rdf:parseType="Resource">
                <bqs:Person rdf:parseType="Resource">
                  <vCard:N rdf:parseType="Resource">
                    <vCard:Family>Toporikova</vCard:Family>
                    <vCard:Given>N</vCard:Given>
                  </vCard:N>
                </bqs:Person>
              </rdf:li>
			  <rdf:li rdf:parseType="Resource">
                <bqs:Person rdf:parseType="Resource">
                  <vCard:N rdf:parseType="Resource">
                    <vCard:Family>Freeman</vCard:Family>
                    <vCard:Given>M</vCard:Given>
					<vCard:Other>E</vCard:Other>
				  </vCard:N>
                </bqs:Person>
              </rdf:li>
			  <rdf:li rdf:parseType="Resource">
                <bqs:Person rdf:parseType="Resource">
                  <vCard:N rdf:parseType="Resource">
                    <vCard:Family>Bertram</vCard:Family>
                    <vCard:Given>R</vCard:Given>
                  </vCard:N>
                </bqs:Person>
              </rdf:li>
            </rdf:Seq>
          </dc:creator>
          <dc:title>
            Low dose of dopamine may stimulate prolactin secretion by increasing fast potassium currents
          </dc:title>
          <dcterms:issued rdf:parseType="Resource">
            <dcterms:W3CDTF>2007-04</dcterms:W3CDTF>
          </dcterms:issued>
          <bqs:Journal rdf:parseType="Resource">
            <dc:title>Journal of Computational Neuroscience</dc:title>
			<bqs:volume>22</bqs:volume>
            <bqs:first_page>211</bqs:first_page>
            <bqs:last_page>222</bqs:last_page>
          </bqs:Journal>
        </bqs:JournalArticle>
      </bqs:reference>
    </rdf:Description>
  </rdf:RDF> 

</model>