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📄 help_lrd2007.html

📁 Luo-Rudy cardiac cellular action potential model
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<div class="Section1">
<h2><span style="font-size: 24pt;">Getting Started</span></h2>
<p class="MsoNormal" style="margin: 0in 0in 12pt;"><small><small><span
 style="font-size: 24pt;"><small>Begin&nbsp; by opening&nbsp;
Matlab command window</small><br>
<small>In command window prompt&nbsp;</small> <small>specify where
LRd2007 files are located
e.g.,</small><br>
<small>&gt;&gt;&nbsp; cd&nbsp; c:\\simulator</small><br>
<o:p></o:p></span></small></small></p>
<p class="MsoNormal" style="margin: 0in 0in 12pt;"><small><small><span
 style="font-size: 24pt;"><small>type&nbsp;&nbsp; LRd2007&nbsp;
in command prompt and press key ENTER</small><br>
<small>&gt;&gt; LRd2007</small></span></small></small><br style="">
<!--[if !supportLineBreakNewLine]--><br>
<big><big>&nbsp; LRd2007&nbsp;
GUI
will&nbsp; start</big></big>&nbsp; <br>
</p>
<span style="font-size: 24pt;"><small>The <b>Help</b> button will walk
you through the menu<small><br>
<br>
</small></small><small>Choose parameters </small></span><span
 style="font-size: 24pt;"><small>and press <b>Start </b>bottom.<br>
<br>
By pressing&nbsp; the <b>Save</b> button you can</small> s<small>ave
stimulation data
into
Matlab *.mat</small> <small>file.<br>
The output&nbsp; consists of the matrix of states variable&nbsp; <span
 style="font-style: italic;"><span style="font-weight: bold;"></span></span><span
 style="font-style: italic; font-weight: bold;">States</span>, time
vector <span style="font-style: italic; font-weight: bold;">t, </span>and
data structure <span style="font-weight: bold; font-style: italic;">currents.
</span><span style="font-weight: bold;"></span>To acsses<span
 style="font-weight: bold; font-style: italic;">&nbsp; </span><span
 style="font-weight: bold;"></span>s<span style="font-weight: bold;"></span>pecific
field in the structure<span
 style="font-weight: bold; font-style: italic;"> currents,&nbsp;</span>
dot operator should be used&nbsp; i.e., for&nbsp; fast sodioum
current&nbsp; <span style="font-weight: bold; font-style: italic;">currents.INa
. </span><span style="font-weight: bold;"></span>To see the all fields
of&nbsp; the structure <span
 style="font-weight: bold; font-style: italic;">currents</span> <br>
&nbsp;print<span style="font-weight: bold; font-style: italic;"> '</span><span
 style="font-style: italic;"></span>currents<span
 style="font-weight: bold; font-style: italic;">' </span><span
 style="font-style: italic;"></span>in&nbsp; command prompt<span
 style="font-weight: bold; font-style: italic;"> </span><span
 style="font-weight: bold;"></span>and press Enter<br>
</small></span><span style="font-size: 24pt;"><small></small></span><small><span
 style="font-size: 18pt;"></span><span style="font-size: 24pt;"><small><br>
By pressing&nbsp; the <b>Load</b>
button
you can download previously&nbsp; calculated data&nbsp; into</small> <small>GUI</small></span></small><br>
<p class="MsoNormal" style="margin: 0in 0in 12pt;"><small><small><small><b><span
 style="font-size: 24pt;"><small>Zoom
option</small></span></b></small></small></small><span
 style="font-size: 24pt;"><small>:</small> <small>Select desire area
of the plot click the
left mouse button to zoom in
on the<br>
point under the mouse.&nbsp; Click the right mouse
button to
zoom out. Each time you click, the axes limits will be changed
by a
factor of 2 (in or out).<br>
</small></span></p>
<p class="MsoNormal" style="margin: 0in 0in 12pt;"><span
 style="font-size: 24pt;"><small><br>
</small><small>See our poster for more detailed information <span
 style="font-style: italic;">L.
Livshitz, Y. Rudy,</span> 鈥淚nteractive Tool for Cell Model Simulation鈥

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