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Forward_Problem_Solution.m
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Forward_Problem_Solution.m
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function varargout = Forward_Problem_Solution(varargin)
% FORWARD_PROBLEM_SOLUTION M-file for Forward_Problem_Solution.fig
% FORWARD_PROBLEM_SOLUTION, by itself, creates a new FORWARD_PROBLEM_SOLUTION or raises the existing
% singleton*.
%
% H = FORWARD_PROBLEM_SOLUTION returns the handle to a new FORWARD_PROBLEM_SOLUTION or the handle to
% the existing singleton*.
%
% FORWARD_PROBLEM_SOLUTION('CALLBACK',hObject,eventData,handles,...) calls the local
% function named CALLBACK in FORWARD_PROBLEM_SOLUTION.M with the given input arguments.
%
% FORWARD_PROBLEM_SOLUTION('Property','Value',...) creates a new FORWARD_PROBLEM_SOLUTION or raises the
% existing singleton*. Starting from the left, property value pairs are
% applied to the GUI before Forward_Problem_Solution_OpeningFunction gets called. An
% unrecognized property name or invalid value makes property application
% stop. All inputs are passed to Forward_Problem_Solution_OpeningFcn via varargin.
%
% *See GUI Options on GUIDE's Tools menu. Choose "GUI allows only one
% instance to run (singleton)".
%
% See also: GUIDE, GUIDATA, GUIHANDLES
%
% Author: Zeynep Akalin Acar, SCCN, 2008
% Copyright (C) 2007 Zeynep Akalin Acar, SCCN, zeynep@sccn.ucsd.edu
%
% This program 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 2 of the License, or
% (at your option) any later version.
%
% This program 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 this program; if not, write to the Free Software
% Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
% Edit the above text to modify the response to help Forward_Problem_Solution
% Last Modified by GUIDE v2.5 20-Mar-2008 12:14:54
% Begin initialization code - DO NOT EDIT
gui_Singleton = 1;
gui_State = struct('gui_Name', mfilename, ...
'gui_Singleton', gui_Singleton, ...
'gui_OpeningFcn', @Forward_Problem_Solution_OpeningFcn, ...
'gui_OutputFcn', @Forward_Problem_Solution_OutputFcn, ...
'gui_LayoutFcn', [] , ...
'gui_Callback', []);
if nargin && ischar(varargin{1})
gui_State.gui_Callback = str2func(varargin{1});
end
if nargout
[varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:});
else
gui_mainfcn(gui_State, varargin{:});
end
% End initialization code - DO NOT EDIT
% --- Executes just before Forward_Problem_Solution is made visible.
function Forward_Problem_Solution_OpeningFcn(hObject, eventdata, handles, varargin)
% This function has no output args, see OutputFcn.
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% varargin command line arguments to Forward_Problem_Solution (see VARARGIN)
% Parse arguments and set handles as necessary
for i = 1:length(varargin)
if strcmp(varargin{i}, 'subjectdir')
i = i + 1;
handles.OutputFolder = varargin{i};
elseif strcmp(varargin{i}, 'subject')
i = i + 1;
handles.arg_subject = varargin{i};
elseif strcmp(varargin{i}, 'session')
i = i + 1;
handles.arg_session = varargin{i};
end
end
handles.session_changed = 0;
handles.model_changed = 0;
if isfield(handles,'OutputFolder')
% change dir
path = handles.OutputFolder;
lof = length(path);
if path(lof) ~= '/'; path(lof+1) = '/'; end;
cd(path) % change directory
% try to load mesh, model or session
if ~isempty(handles.arg_subject) && ~isempty(handles.arg_session)
% try to load session
file = [handles.arg_session '.session'];
try
ssave = load(file, '-MAT');
handles = load_model(hObject,handles, [path ssave.model_name, '.model']);
handles.session = bem_create_session(ssave.name, handles.model, ssave.Smatrix);
handles.session = bem_load_transfer_matrix(handles.session, 'tmte');
handles.sensors = sensMatToCoord(handles.session.Smatrix, handles.mesh.coord);
catch
try
% try to load model
file = [handles.arg_subject '.model'];
handles = load_model(hObject,handles, file);
handles.session = [];
catch
try
% try to load mesh
file = handles.arg_subject;
handles.mesh = bem_load_mesh(file);
handles.model = [];
handles.session = [];
catch
handles.mesh = [];
handles.model = [];
handles.model_changed = 0;
handles.session = [];
handles.session_changed = 0;
rethrow(lasterror);
end
end
end
elseif ~isempty(handles.arg_subject)
try
% try to load model
file = [handles.arg_subject '.model'];
handles = load_model(hObject,handles, file);
handles.session = [];
catch
try
% try to load mesh
file = handles.arg_subject;
handles.mesh = bem_load_mesh(file);
handles.model = [];
handles.session = [];
catch
handles.mesh = [];
handles.model = [];
handles.model_changed = 0;
handles.session = [];
handles.session_changed = 0;
end
end
else % ~isfield(handles,'arg_subject') & ~isfield(handles,'arg_session')
handles.mesh = [];
handles.model = [];
handles.model_changed = 0;
handles.session = [];
handles.session_changed = 0;
end %if isfield(handles, 'arg_subject') & isfield(handles,'arg_session')
% try loading source space
try
file = 'sourcespace.dip';
% handles.dipoles_name = file(1:length(file)-4);
handles.dipoles.pos = load([file], '-ascii');
handles.dipoles.sym = 0;
set(handles.editNumberofdipoles,'String',size(handles.dipoles.pos,1));
end
else % if no output folder is specified
% XXX check!
% Choose default command line output for Forward_Problem_Solution
handles.mesh = [];
handles.model = [];
handles.model_changed = 0;
handles.session = [];
handles.session_changed = 0;
end
handles.output = hObject;
update_display(handles);
if isfield(handles, 'arg_subject') && ~isempty(handles.arg_subject)
set(handles.editModelName,'String',handles.arg_subject);
set_model_changed(handles);
end
if isfield(handles,'arg_session') && ~isempty(handles.arg_session)
set(handles.editSessionName,'String',handles.arg_session);
set_session_changed(handles);
end
% Update handles structure
guidata(hObject, handles);
% UIWAIT makes Forward_Problem_Solution wait for user response (see UIRESUME)
% uiwait(handles.figure1);
% --- Outputs from this function are returned to the command line.
function varargout = Forward_Problem_Solution_OutputFcn(hObject, eventdata, handles)
% varargout cell array for returning output args (see VARARGOUT);
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Get default command line output from handles structure
varargout{1} = handles.output;
function editMeshName_Callback(hObject, eventdata, handles)
% hObject handle to editMeshName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editMeshName as text
% str2double(get(hObject,'String')) returns contents of editMeshName as a double
% --- Executes during object creation, after setting all properties.
function editMeshName_CreateFcn(hObject, eventdata, handles)
% hObject handle to editMeshName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function set_model_changed(handles)
% call when any change is made to the model edit boxes
if (handles.model_changed ~= 1)
set(handles.modelProgressText,'String','Value Changed!');
set(handles.pushbuttonCreateModel,'Enable','on');
end
handles.model_changed = 1;
guidata(handles.figure1, handles);
function editModelName_Callback(hObject, eventdata, handles)
% hObject handle to editModelName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editModelName as text
% str2double(get(hObject,'String')) returns contents of editModelName as a double
set_model_changed(handles);
% --- Executes during object creation, after setting all properties.
function editModelName_CreateFcn(hObject, eventdata, handles)
% hObject handle to editModelName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function set_session_changed(handles)
% call when any change is made to the model edit boxes
if (handles.session_changed ~= 1)
set(handles.sessionProgressText, 'String', 'Value Changed!');
end
if (isempty(handles.session) && ~isempty(get(handles.editSessionName,'String'))...
&& isfield(handles,'sensors') && ~isempty(handles.model))
set(handles.pushbuttonGenerateTM, 'Enable', 'on');
else
set(handles.pushbuttonGenerateTM, 'Enable', 'off');
end
handles.session_changed = 1;
guidata(handles.figure1, handles);
function editSessionName_Callback(hObject, eventdata, handles)
% hObject handle to editSessionName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editSessionName as text
% str2double(get(hObject,'String')) returns contents of editSessionName as a double
set_session_changed(handles);
% --- Executes during object creation, after setting all properties.
function editSessionName_CreateFcn(hObject, eventdata, handles)
% hObject handle to editSessionName (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editScalpCond_Callback(hObject, eventdata, handles)
% hObject handle to editScalpCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editScalpCond as text
% str2double(get(hObject,'String')) returns contents of editScalpCond as a double
set_model_changed(handles);
% --- Executes during object creation, after setting all properties.
function editScalpCond_CreateFcn(hObject, eventdata, handles)
% hObject handle to editScalpCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editCSFCond_Callback(hObject, eventdata, handles)
% hObject handle to editCSFCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editCSFCond as text
% str2double(get(hObject,'String')) returns contents of editCSFCond as a double
set_model_changed(handles);
% --- Executes during object creation, after setting all properties.
function editCSFCond_CreateFcn(hObject, eventdata, handles)
% hObject handle to editCSFCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editBrainCond_Callback(hObject, eventdata, handles)
% hObject handle to editBrainCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editBrainCond as text
% str2double(get(hObject,'String')) returns contents of editBrainCond as a double
set_model_changed(handles);
% --- Executes during object creation, after setting all properties.
function editBrainCond_CreateFcn(hObject, eventdata, handles)
% hObject handle to editBrainCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editSkullCond_Callback(hObject, eventdata, handles)
% hObject handle to editSkullCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editSkullCond as text
% str2double(get(hObject,'String')) returns contents of editSkullCond as a double
set_model_changed(handles);
% --- Executes during object creation, after setting all properties.
function editSkullCond_CreateFcn(hObject, eventdata, handles)
% hObject handle to editSkullCond (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in checkbox1.
function checkbox1_Callback(hObject, eventdata, handles)
% hObject handle to checkbox1 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hint: get(hObject,'Value') returns toggle state of checkbox1
set_model_changed(handles);
% --- Executes on button press in pushbuttonCreateModel.
function pushbuttonCreateModel_Callback(hObject, eventdata, handles)
% hObject handle to pushbuttonCreateModel (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
if (isempty(handles.mesh))
errordlg('Please Load a Mesh first');
return
end
if (handles.mesh.num_boundaries < 3)
errordlg('Mesh must have at least 3 layers');
return
end
name = get(handles.editModelName,'String');
if (isempty(name))
errordlg('Please Enter Model Name');
return
end
if (handles.mesh.num_boundaries < 3)
errordlg('Mesh must have at least 3 layers');
return
end
if handles.mesh.num_boundaries == 3
set(handles.editCSFCond, 'String' ,'');
end
cond1 = str2num(get(handles.editScalpCond, 'String'));
cond2 = str2num(get(handles.editSkullCond, 'String'));
cond3 = str2num(get(handles.editCSFCond, 'String'));
cond4 = str2num(get(handles.editBrainCond, 'String'));
if (handles.mesh.num_boundaries == 3 && ~isempty(cond3))
errordlg('Mesh has no CSF layer');
return
end
cond = [cond1 cond2 cond3 cond4];
if (isempty(cond1) || isempty(cond2) || isempty(cond4))
errordlg('Please Enter Scalp, Skull and Brain Conductivities');
return
end
if (handles.mesh.num_boundaries == 4 && isempty(cond3))
errordlg('Please Enter CSF Conductivity');
return
end
if (get(handles.checkbox1, 'Value') == 1)
mod = 3;
else
mod = -1;
end
handles.model = bem_create_model(name, handles.mesh, cond, mod);
set(handles.modelProgressText,'String','Generating matrices...');
pause(0.5);
bem_generate_eeg_matrices(handles.model);
set(handles.modelProgressText,'String','BEM Model Created');
% save model
msave.name = handles.model.name;
msave.mesh_name = handles.model.mesh.name;
msave.cond = handles.model.cond;
msave.mod = handles.model.mod;
save([handles.model.name '.model'], '-STRUCT', 'msave')
vol = mesh2volstr(handles.model.name);
vol.cond = handles.model.cond;
vol.type = 'metubem';
save([handles.arg_subject '_vol.mat'], 'vol');
set(handles.pushbuttonCreateModel,'Enable','off');
handles.model_changed = 0;
guidata(handles.figure1, handles);
function edit9_Callback(hObject, eventdata, handles)
% hObject handle to edit9 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of edit9 as text
% str2double(get(hObject,'String')) returns contents of edit9 as a double
% --- Executes during object creation, after setting all properties.
function edit9_CreateFcn(hObject, eventdata, handles)
% hObject handle to edit9 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in pushbuttonGenerateTM.
function pushbuttonGenerateTM_Callback(hObject, eventdata, handles)
% hObject handle to pushbuttonGenerateTM (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
if (isempty(handles.mesh))
errordlg('Please load a mesh first');
return
end
if (isempty(handles.model))
errordlg('Please load or generate a model first');
return
end
name = get(handles.editSessionName,'String');
if (isempty(name))
errordlg('Please Enter Session Name');
return
end
if (isempty(handles.sensors))
errordlg('Please Load a Sensor file');
return
end
a = dir(['ori_sen_loc.mat']);
if size(a,1) > 0
load ori_sen_loc
handles.elocfn = sens_fn;
eloc = readlocs(sens_fn);
end
sens.pnt = handles.sensors;
nsens = size(handles.sensors,1);
ind = handles.sensorindex;
%
if isfield(handles, 'sensorindex') & isfield(handles,'elocfn')
for ii=1:nsens
sens.label{ii} = eloc(ind(ii)).labels;
end
end
if isvector(handles.sensors)
Smatrix = bem_smatrix_from_nodes(handles.mesh, handles.sensors);
elseif size(handles.sensors,2) == 3
Smatrix = bem_smatrix_from_coordinates(handles.mesh, handles.sensors);
end
handles.session = bem_create_session(name, handles.model, Smatrix);
set(handles.sessionProgressText,'String','Generating matrices...');
handles.session = bem_generate_eeg_transfer_matrix(handles.session);
set(handles.sessionProgressText,'String','Session Created');
% save session
ssave.name = handles.session.name;
ssave.model_name = handles.session.model.name;
ssave.Smatrix = Smatrix;
ssave.sens = sens;
%ssave.tmte = handles.session.tmte;
save([handles.session.name '.session'], '-STRUCT', 'ssave');
set(handles.pushbuttonGenerateTM,'Enable','off');
handles.session_changed = 0;
guidata(handles.figure1, handles);
update_display(handles);
function edit10_Callback(hObject, eventdata, handles)
% hObject handle to edit10 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of edit10 as text
% str2double(get(hObject,'String')) returns contents of edit10 as a double
% --- Executes during object creation, after setting all properties.
function edit10_CreateFcn(hObject, eventdata, handles)
% hObject handle to edit10 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in pushbutton4.
function pushbutton4_Callback(hObject, eventdata, handles)
% hObject handle to pushbutton4 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% --- Executes on button press in pushbutton5.
function pushbutton5_Callback(hObject, eventdata, handles)
% hObject handle to pushbutton5 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
set(handles.textComputeLFM,'String','Computing...');
pause(0.5);
[handles.potentials, handles.session] = bem_solve_lfm_eeg(handles.session, handles.dipoles.pos);
set(handles.textComputeLFM,'String','LFM Computed');
guidata(hObject, handles);
update_display(handles);
f = handles.session.name;
if handles.dipoles.sym == 0
LFM = handles.potentials;
save([f '_LFM.mat'],'LFM');
clear LFM;
else % symmetric dipoles
Np = size(handles.dipoles.pos,1);
LFM1 = handles.potentials(:,1:Np/2);
LFM2 = handles.potentials(:,Np/2+1:Np);
LFM = LFM1+ LFM2;
save([f '_sLFM.mat'],'LFM');
clear LFM*;
end
% --- Executes on button press in pushbuttonShowMesh.
function pushbuttonShowMesh_Callback(hObject, eventdata, handles)
% hObject handle to pushbuttonShowMesh (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
coordt = handles.mesh.coord;
ma = mean(coordt);
coordt = coordt - ones(length(coordt),1) * ma;
h = eeglab_plotmesh(handles.mesh.elem, coordt);
set(gcf, 'Name', 'Figure: Mesh', 'NumberTitle', 'off', 'Color', [0.925 0.957 1]);
function editNumberofLayers_Callback(hObject, eventdata, handles)
% hObject handle to editNumberofLayers (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editNumberofLayers as text
% str2double(get(hObject,'String')) returns contents of editNumberofLayers as a double
% --- Executes during object creation, after setting all properties.
function editNumberofLayers_CreateFcn(hObject, eventdata, handles)
% hObject handle to editNumberofLayers (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editNumberofNodes_Callback(hObject, eventdata, handles)
% hObject handle to editNumberofNodes (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editNumberofNodes as text
% str2double(get(hObject,'String')) returns contents of editNumberofNodes as a double
% --- Executes during object creation, after setting all properties.
function editNumberofNodes_CreateFcn(hObject, eventdata, handles)
% hObject handle to editNumberofNodes (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editNumberofElements_Callback(hObject, eventdata, handles)
% hObject handle to editNumberofElements (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editNumberofElements as text
% str2double(get(hObject,'String')) returns contents of editNumberofElements as a double
% --- Executes during object creation, after setting all properties.
function editNumberofElements_CreateFcn(hObject, eventdata, handles)
% hObject handle to editNumberofElements (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function editNumberofNE_Callback(hObject, eventdata, handles)
% hObject handle to editNumberofNE (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editNumberofNE as text
% str2double(get(hObject,'String')) returns contents of editNumberofNE as a double
% --- Executes during object creation, after setting all properties.
function editNumberofNE_CreateFcn(hObject, eventdata, handles)
% hObject handle to editNumberofNE (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in pushbuttonLoadSensors.
function pushbuttonLoadSensors_Callback(hObject, eventdata, handles)
% hObject handle to pushbuttonLoadSensors (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% XXX control node list
if get(handles.radiobuttonNodeList, 'Value') == 1
[file, path] = uigetfile('*.dat');
if ~isequal(file, 0) && length(file) > 5
% remove .dat extension
file = [path file(1:length(file)-4)];
handles.sensors = load([file '.dat'], '-ascii');
% Update handles structure
guidata(hObject, handles);
set(handles.editNumberofSensors,'String',length(handles.sensors));
end
% XXX control coordinate list 1. size =(Nx3) 2. on the mesh?
else % load from coordinates
[file, path] = uigetfile('*.sens; *.sensors');
if ~isequal(file, 0) && length(file) > 6
if file(length(file)-3:length(file)) == 'sens'
% remove .sens extension
filen = [path file(1:length(file)-5)];
handles.sensors = load([filen '.sens'], '-ascii');
fileind = [path file(1:length(file)-16)]; % clear headsensors.sens
handles.sensorindex = load([fileind 'sensorindex'], '-ascii');
% Update handles structure
guidata(hObject, handles);
set(handles.editNumberofSensors,'String',length(handles.sensors));
else
sens = load([path file],'-mat');
handles.sensors = sens.pnt;
handles.sensorindex = sens.ind;
% Update handles structure
guidata(hObject, handles);
set(handles.editNumberofSensors,'String',length(handles.sensors));
end
end
end
set_session_changed(handles);
%update_display(handles);
%set_model_changed(handles);
set(handles.uipanelSensLoad,'visible','on')
%
function editNumberofSensors_Callback(hObject, eventdata, handles)
% hObject handle to editNumberofSensors (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of editNumberofSensors as text
% str2double(get(hObject,'String')) returns contents of editNumberofSensors as a double
% --- Executes during object creation, after setting all properties.
function editNumberofSensors_CreateFcn(hObject, eventdata, handles)
% hObject handle to editNumberofSensors (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Convert sensMat to Electrode coordinates.
function C = sensMatToCoord(S, Coord)
% S Sens Mat
% Coord Mesh Coordinates
idx = unique(S(:, 1));
C = zeros(length(idx), 3);
for i = 1:length(idx)
si = find(S(:,1) == idx(i));
C(i,:) = S(si, 3)' * Coord(S(si,2),:);
end
% --- Executes on button press in pushbutton8.
function pushbutton8_Callback(hObject, eventdata, handles)
% hObject handle to pushbutton8 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
if ~isfield(handles,'sensors')
handles.sensors = sensMatToCoord(handles.session.Smatrix, handles.mesh.coord);
end
if size(handles.sensors, 2) == 3
eloc = handles.sensors;
else
eloc = handles.mesh.coord(handles.sensors,:);
end
dipnum = str2num(get(handles.editDipoleNumber, 'String'));
szdip = size(handles.potentials,2);
if dipnum < 1
dipnum == 1
elseif dipnum > szdip
dipnum == szdip;
end
dipnum = round(dipnum);
set(handles.editDipoleNumber, 'String', dipnum);
figure;
utilbem_headplot(handles.potentials(:,dipnum), handles.mesh, eloc);
set(gcf, 'Name', 'Figure: Potential distribution', 'NumberTitle', 'off', 'Color', [0.925 0.957 1]);
% --- Executes on button press in pushbuttonLoadDipoles.
function pushbuttonLoadDipoles_Callback(hObject, eventdata, handles)
% hObject handle to pushbuttonLoadDipoles (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
[file, path] = uigetfile('*.dip;*.sdip');
if ~isequal(file, 0) && length(file) > 5
if file(length(file)-3)=='s' %sdip
handles.dipoles_name = file(1:length(file)-5);
file = [path file(1:length(file)-5)];
handles.dipoles.pos = load([file '.sdip'], '-ascii');
handles.dipoles.sym = 1;
else % dip
handles.dipoles_name = file(1:length(file)-4);
file = [path file(1:length(file)-4)];
handles.dipoles.pos = load([file '.dip'], '-ascii');
handles.dipoles.sym = 0;
end
% Update handles structure
guidata(hObject, handles);
set(handles.editNumberofdipoles,'String',size(handles.dipoles.pos,1));
end
%update_display(handles);
%set_model_changed(handles);
set(handles.uipanelDipLoad,'visible','on')
set(handles.textComputeLFM,'String',' ');
% --------------------------------------------------------------------
function File_Menu_Callback(hObject, eventdata, handles)
% hObject handle to File_Menu (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% --------------------------------------------------------------------
function Untitled_2_Callback(hObject, eventdata, handles)
% hObject handle to Untitled_2 (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% --------------------------------------------------------------------
function update_display(handles)
if (isempty(handles.mesh))
set(handles.editMeshName,'String',[]);
set(handles.editNumberofLayers,'String',[]);
set(handles.editNumberofNodes,'String',[]);
set(handles.editNumberofElements,'String',[]);
set(handles.editNumberofNE,'String',[]);
set(handles.pushbuttonShowMesh,'Enable','off');
else
set(handles.editMeshName,'String',handles.mesh.name);
set(handles.editNumberofLayers,'String',handles.mesh.num_boundaries);
set(handles.editNumberofNodes,'String',handles.mesh.num_nodes);
set(handles.editNumberofElements,'String',handles.mesh.num_elements);
set(handles.editNumberofNE,'String',handles.mesh.num_node_elem);
set(handles.pushbuttonShowMesh,'Enable','on');
end
if (isempty(handles.model))
set(handles.editModelName,'String',[]);
%set(handles.editScalpCond,'String',[]);
%set(handles.editSkullCond,'String',[]);
%set(handles.editCSFCond,'String',[]);
%set(handles.editBrainCond,'String',[]);
set(handles.checkbox1,'Value',1);
set(handles.modelProgressText,'String','No Model');
set(handles.pushbuttonCreateModel,'Enable','off');
handles.model_changed = 0;
guidata(handles.figure1, handles);
else
set(handles.editModelName,'String',handles.model.name);
set(handles.editScalpCond,'String',handles.model.cond(1));
set(handles.editSkullCond,'String',handles.model.cond(2));
if length(handles.model.cond) == 3
set(handles.editCSFCond,'String',[]);
set(handles.editBrainCond,'String',handles.model.cond(3));
elseif length(handles.model.cond) == 4
set(handles.editCSFCond,'String',handles.model.cond(3));
set(handles.editBrainCond,'String',handles.model.cond(4));
end
set(handles.modelProgressText,'String','BEM Model Loaded');
end
if (isempty(handles.session))
set(handles.editSessionName,'String',[]);
set(handles.pushbuttonGenerateTM,'Enable','off');
set(handles.sessionProgressText,'String','No Session');
set(handles.pushbutton5, 'Enable', 'off');
else
set(handles.editSessionName,'String',handles.session.name);
set(handles.editNumberofSensors,'String',length(unique(handles.session.Smatrix(:,1))));
set(handles.sessionProgressText,'String','Session Loaded');
if ~isfield(handles.session,'tmte')
set(handles.pushbuttonGenerateTM,'Enable','on');
end
set(handles.pushbutton5, 'Enable', 'on');
end
if ~isfield(handles,'potentials')
set(handles.editDipoleNumber,'Enable','off');
set(handles.pushbutton8,'Enable','off')
else
set(handles.editDipoleNumber,'Enable','on');
set(handles.pushbutton8,'Enable','on')
end
if (isfield(handles,'sensors'))
set(handles.uipanelSensLoad, 'visible', 'on')
else
set(handles.uipanelSensLoad, 'visible', 'off')
end
if isfield(handles.mesh,'num_boundaries')
if handles.mesh.num_boundaries == 4
set(handles.uipanelCSF, 'visible', 'on')
elseif handles.mesh.num_boundaries == 3
set(handles.uipanelCSF, 'visible', 'off')
end
end
% --------------------------------------------------------------------
function Load_Mesh_Menu_Callback(hObject, eventdata, handles)
% hObject handle to Load_Mesh_Menu (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
[file, path] = uigetfile('*.bei');
if ~isequal(file, 0) && length(file) > 5
% remove .bei extension
file = [path file(1:length(file)-4)];
handles.mesh = bem_load_mesh(file);
handles.model = [];
handles.session = [];
% Update handles structure
guidata(hObject, handles);
end
update_display(handles);
function handles = load_model(hObject,handles, file)
msave = load(file, '-MAT');
handles.mesh = bem_load_mesh(msave.mesh_name);
handles.model = bem_create_model(msave.name, handles.mesh, msave.cond, msave.mod);
handles.session = [];
% Update handles structure
guidata(hObject, handles); % comment out
% --------------------------------------------------------------------
function Load_Model_Menu_Callback(hObject, eventdata, handles)
% hObject handle to Load_Model_Menu (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
[file, path] = uigetfile('*.model');
if ~isequal(file, 0) && length(file) > 7
file = [path file];
handles = load_model(hObject,handles, file);