Chaste Release::3.1
CryptSimulation1d.cpp
00001 /*
00002 
00003 Copyright (c) 2005-2012, University of Oxford.
00004 All rights reserved.
00005 
00006 University of Oxford means the Chancellor, Masters and Scholars of the
00007 University of Oxford, having an administrative office at Wellington
00008 Square, Oxford OX1 2JD, UK.
00009 
00010 This file is part of Chaste.
00011 
00012 Redistribution and use in source and binary forms, with or without
00013 modification, are permitted provided that the following conditions are met:
00014  * Redistributions of source code must retain the above copyright notice,
00015    this list of conditions and the following disclaimer.
00016  * Redistributions in binary form must reproduce the above copyright notice,
00017    this list of conditions and the following disclaimer in the documentation
00018    and/or other materials provided with the distribution.
00019  * Neither the name of the University of Oxford nor the names of its
00020    contributors may be used to endorse or promote products derived from this
00021    software without specific prior written permission.
00022 
00023 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
00024 AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
00025 IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
00026 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
00027 LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
00028 CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
00029 GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
00030 HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
00031 LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
00032 OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
00033 
00034 */
00035 
00036 #include "CryptSimulation1d.hpp"
00037 #include "WntConcentration.hpp"
00038 #include "SmartPointers.hpp"
00039 
00040 CryptSimulation1d::CryptSimulation1d(AbstractCellPopulation<1>& rCellPopulation,
00041                   bool deleteCellPopulationInDestructor,
00042                   bool initialiseCells)
00043     : OffLatticeSimulation<1>(rCellPopulation,
00044                           deleteCellPopulationInDestructor,
00045                           initialiseCells)
00046 {
00047     mpStaticCastCellPopulation = static_cast<MeshBasedCellPopulation<1>*>(&mrCellPopulation);
00048 
00049     if (!mDeleteCellPopulationInDestructor)
00050     {
00051         // Pass a CryptSimulationBoundaryCondition object into mBoundaryConditions
00052         MAKE_PTR_ARGS(CryptSimulationBoundaryCondition<1>, p_bc, (&rCellPopulation));
00053         AddCellPopulationBoundaryCondition(p_bc);
00054     }
00055 }
00056 
00057 CryptSimulation1d::~CryptSimulation1d()
00058 {
00059 }
00060 
00061 c_vector<double, 1> CryptSimulation1d::CalculateCellDivisionVector(CellPtr pParentCell)
00062 {
00063     // Location of parent and daughter cells
00064     c_vector<double, 1> parent_coords = mpStaticCastCellPopulation->GetLocationOfCellCentre(pParentCell);
00065     c_vector<double, 1> daughter_coords;
00066 
00067     // Get separation parameter
00068     double separation = mpStaticCastCellPopulation->GetMeinekeDivisionSeparation();
00069 
00070     // Make a random direction vector of the required length
00071     c_vector<double, 1> random_vector;
00072 
00073     /*
00074      * Pick a random direction and move the parent cell backwards by 0.5*separation
00075      * in that direction and return the position of the daughter cell 0.5*separation
00076      * forwards in that direction.
00077      */
00078 
00079     double random_direction = -1.0 + 2.0*(RandomNumberGenerator::Instance()->ranf() < 0.5);
00080     random_vector(0) = 0.5*separation*random_direction;
00081     c_vector<double, 1> proposed_new_parent_coords = parent_coords - random_vector;
00082     c_vector<double, 1> proposed_new_daughter_coords = parent_coords + random_vector;
00083 
00084     if (   (proposed_new_parent_coords(0) >= 0.0)
00085         && (proposed_new_daughter_coords(0) >= 0.0))
00086     {
00087         // We are not too close to the bottom of the cell population, so move parent
00088         parent_coords = proposed_new_parent_coords;
00089         daughter_coords = proposed_new_daughter_coords;
00090     }
00091     else
00092     {
00093         proposed_new_daughter_coords = parent_coords + 2.0*random_vector;
00094         while (proposed_new_daughter_coords(0) < 0.0)
00095         {
00096             double random_direction = -1.0 + 2.0*(RandomNumberGenerator::Instance()->ranf() < 0.5);
00097             random_vector(0) = 0.5*separation*random_direction;
00098             proposed_new_daughter_coords = parent_coords + random_vector;
00099         }
00100         daughter_coords = proposed_new_daughter_coords;
00101     }
00102 
00103     assert(daughter_coords(0) >= 0.0); // to make sure dividing cells stay in the cell population
00104     assert(parent_coords(0) >= 0.0);   // to make sure dividing cells stay in the cell population
00105 
00106     // Set the parent to use this location
00107     ChastePoint<1> parent_coords_point(parent_coords);
00108 
00109     unsigned node_index = mpStaticCastCellPopulation->GetLocationIndexUsingCell(pParentCell);
00110     mrCellPopulation.SetNode(node_index, parent_coords_point);
00111 
00112     return daughter_coords;
00113 }
00114 
00115 void CryptSimulation1d::OutputSimulationParameters(out_stream& rParamsFile)
00116 {
00117     // No parameters to output
00118 
00119     // Call method on direct parent class
00120     OffLatticeSimulation<1>::OutputSimulationParameters(rParamsFile);
00121 }
00122 
00123 // Serialization for Boost >= 1.36
00124 #include "SerializationExportWrapperForCpp.hpp"
00125 CHASTE_CLASS_EXPORT(CryptSimulation1d)