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Location: EI/VirtualLeaf/src/TutorialCode/Tutorial1B/tutorial1B.cpp - annotation
ec439fed4af8
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text/x-c++src
Synchronise leaf movie frame and cell export data timestep references.
--
user: Michael Guravage <michael.guravage@cwi.nl>
branch 'default'
changed doc/v1.html
changed doc/v1.pdf
changed doc/v1.rst
changed src/ChangeLog
changed src/VirtualLeaf.cpp
changed src/canvas.cpp
changed src/canvas.h
changed src/mainbase.h
changed src/mesh.h
--
user: Michael Guravage <michael.guravage@cwi.nl>
branch 'default'
changed doc/v1.html
changed doc/v1.pdf
changed doc/v1.rst
changed src/ChangeLog
changed src/VirtualLeaf.cpp
changed src/canvas.cpp
changed src/canvas.h
changed src/mainbase.h
changed src/mesh.h
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*
* This file is part of the Virtual Leaf.
*
* The Virtual Leaf is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* The Virtual Leaf is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with the Virtual Leaf. If not, see <http://www.gnu.org/licenses/>.
*
* Copyright 2010 Roeland Merks.
*
*/
#include <QObject>
#include <QtGui>
#include "simplugin.h"
#include "parameter.h"
#include "wallbase.h"
#include "cellbase.h"
#include "tutorial1B.h"
static const std::string _module_id("$Id$");
QString Tutorial1B::ModelID(void) {
// specify the name of your model here
return QString( "1B: Cell growth and cell division" );
}
// return the number of chemicals your model uses
int Tutorial1B::NChem(void) { return 0; }
// To be executed after cell division
void Tutorial1B::OnDivide(ParentInfo *parent_info, CellBase *daughter1, CellBase *daughter2) {
// rules to be executed after cell division go here
// (e.g., cell differentiation rules)
}
void Tutorial1B::SetCellColor(CellBase *c, QColor *color) {
// add cell coloring rules here
}
void Tutorial1B::CellHouseKeeping(CellBase *c) {
// add cell behavioral rules here
c->EnlargeTargetArea(par->cell_expansion_rate);
if (c->Area() > par->rel_cell_div_threshold * c->BaseArea()) {
c->Divide();
}
}
void Tutorial1B::CelltoCellTransport(Wall *w, double *dchem_c1, double *dchem_c2) {
// add biochemical transport rules here
}
void Tutorial1B::WallDynamics(Wall *w, double *dw1, double *dw2) {
// add biochemical networks for reactions occuring at walls here
}
void Tutorial1B::CellDynamics(CellBase *c, double *dchem) {
// add biochemical networks for intracellular reactions here
}
Q_EXPORT_PLUGIN2(tutorial1B, Tutorial1B)
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