1 | %'sub_background': substract a sliding background to an image series |
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2 | %------------------------------------------------------------------------ |
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3 | % Method: |
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4 | %calculate the background image by sorting the luminosity of each point |
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5 | % over a sliding sub-sequence of 'nbaver_ima' images. |
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6 | % The luminosity value of rank 'rank' is selected as the |
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7 | % 'background'. rank=nbimages/2 gives the median value. Smaller values are appropriate |
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8 | % for a dense set of particles. The extrem value rank=1 gives the true minimum |
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9 | % luminosity, but it can be polluted by noise. |
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10 | % Organization of image indices: |
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11 | % The program is working on a series of images, |
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12 | % In the mode 'volume', nbfield2=1 (1 image at each level)and NbSlice (=nbfield_j) |
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13 | % Else nbfield2=nbfield_j =nbre of images in a burst (j index) |
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14 | |
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15 | % function GUI_config=sub_background(Param) |
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16 | % |
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17 | %%%%%%%%%%% GENERAL TO ALL SERIES ACTION FCTS %%%%%%%%%%%%%%%%%%%%%%%%%%% |
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18 | % |
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19 | %OUTPUT |
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20 | % ParamOut: sets options in the GUI series.fig needed for the function |
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21 | % |
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22 | %INPUT: |
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23 | % In run mode, the input parameters are given as a Matlab structure Param copied from the GUI series. |
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24 | % In batch mode, Param is the name of the corresponding xml file containing the same information |
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25 | % when Param.Action.RUN=0 (as activated when the current Action is selected |
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26 | % in series), the function ouput paramOut set the activation of the needed GUI elements |
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27 | % |
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28 | % Param contains the elements:(use the menu bar command 'export/GUI config' in series to |
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29 | % see the current structure Param) |
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30 | % .InputTable: cell of input file names, (several lines for multiple input) |
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31 | % each line decomposed as {RootPath,SubDir,Rootfile,NomType,Extension} |
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32 | % .OutputSubDir: name of the subdirectory for data outputs |
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33 | % .OutputDirExt: directory extension for data outputs |
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34 | % .Action: .ActionName: name of the current activated function |
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35 | % .ActionPath: path of the current activated function |
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36 | % .ActionExt: fct extension ('.m', Matlab fct, '.sh', compiled Matlab fct |
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37 | % .RUN =0 for GUI input, =1 for function activation |
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38 | % .RunMode='local','background', 'cluster': type of function use |
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39 | % |
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40 | % .IndexRange: set the file or frame indices on which the action must be performed |
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41 | % .FieldTransform: .TransformName: name of the selected transform function |
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42 | % .TransformPath: path of the selected transform function |
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43 | % .InputFields: sub structure describing the input fields withfields |
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44 | % .FieldName: name(s) of the field |
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45 | % .VelType: velocity type |
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46 | % .FieldName_1: name of the second field in case of two input series |
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47 | % .VelType_1: velocity type of the second field in case of two input series |
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48 | % .Coord_y: name of y coordinate variable |
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49 | % .Coord_x: name of x coordinate variable |
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50 | % .ProjObject: %sub structure describing a projection object (read from ancillary GUI set_object) |
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51 | %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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52 | |
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53 | function ParamOut=sub_background (Param) |
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54 | |
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55 | %% input preparation mode (no RUN) |
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56 | if isstruct(Param) && isequal(Param.Action.RUN,0) |
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57 | ParamOut.AllowInputSort='off';% allow alphabetic sorting of the list of input file SubDir (options 'off'/'on', 'off' by default) |
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58 | ParamOut.WholeIndexRange='on';% prescribes the file index ranges from min to max (options 'off'/'on', 'off' by default) |
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59 | ParamOut.NbSlice='on'; %nbre of slices ('off' by default) |
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60 | ParamOut.VelType='off';% menu for selecting the velocity type (options 'off'/'one'/'two', 'off' by default) |
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61 | ParamOut.FieldName='off';% menu for selecting the field (s) in the input file(options 'off'/'one'/'two', 'off' by default) |
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62 | ParamOut.FieldTransform = 'off';%can use a transform function |
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63 | ParamOut.ProjObject='off';%can use projection object(option 'off'/'on', |
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64 | ParamOut.Mask='off';%can use mask option (option 'off'/'on', 'off' by default) |
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65 | ParamOut.OutputDirExt='.sback';%set the output dir extension |
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66 | ParamOut.OutputFileMode='NbInput';% '=NbInput': 1 output file per input file index, '=NbInput_i': 1 file per input file index i, '=NbSlice': 1 file per slice |
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67 | filecell=get_file_series(Param);%check existence of the first input file |
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68 | %%%%%%%%%%%% STANDARD PART (DO NOT EDIT) %%%%%%%%%%%% |
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69 | |
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70 | %% root input file(s) and type |
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71 | [filecell,i1_series,i2_series,j1_series,j2_series]=get_file_series(Param); |
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72 | if ~exist(filecell{1,1},'file') |
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73 | msgbox_uvmat('WARNING','the first input file does not exist') |
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74 | return |
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75 | end |
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76 | %%%%%%%%%%%% |
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77 | % The cell array filecell is the list of input file names, while |
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78 | % filecell{iview,fileindex}: |
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79 | % iview: line in the table corresponding to a given file series |
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80 | % fileindex: file index within the file series, |
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81 | % i1_series(iview,ref_j,ref_i)... are the corresponding arrays of indices i1,i2,j1,j2, depending on the input line iview and the two reference indices ref_i,ref_j |
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82 | % i1_series(iview,fileindex) expresses the same indices as a 1D array in file indices |
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83 | %%%%%%%%%%%% |
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84 | NbSlice=1;%default |
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85 | if isfield(Param.IndexRange,'NbSlice')&&~isempty(Param.IndexRange.NbSlice) |
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86 | NbSlice=Param.IndexRange.NbSlice; |
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87 | end |
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88 | nbview=numel(i1_series);%number of input file series (lines in InputTable) |
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89 | nbfield_j=size(i1_series{1},1); %nb of fields for the j index (bursts or volume slices) |
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90 | nbfield_i=size(i1_series{1},2); %nb of fields for the i index |
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91 | nbfield=nbfield_j*nbfield_i; %total number of fields |
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92 | nbfield_i=floor(nbfield/NbSlice);%total number of indexes in a slice (adjusted to an integer number of slices) |
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93 | nbfield=nbfield_i*NbSlice; %total number of fields after adjustement |
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94 | |
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95 | %determine the file type on each line from the first input file |
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96 | |
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97 | |
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98 | %% calibration data and timing: read the ImaDoc files |
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99 | %not relevant here |
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100 | |
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101 | %% check coincidence in time for several input file series |
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102 | %not relevant here |
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103 | |
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104 | %% coordinate transform or other user defined transform |
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105 | %not relevant here |
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106 | |
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107 | %%%%%%%%%%%% END STANDARD PART %%%%%%%%%%%% |
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108 | % EDIT FROM HERE |
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109 | |
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110 | %% check the validity of input file types |
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111 | ImageTypeOptions={'image','multimage','mmreader','video'};%allowed input file types(images) |
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112 | FileType=get_file_type(filecell{1,1}); |
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113 | CheckImage=~isempty(find(strcmp(FileType,ImageTypeOptions), 1));% =1 for images |
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114 | if ~CheckImage |
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115 | msgbox_uvmat('ERROR',['invalid file type input: ' FileType ' not an image']) |
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116 | return |
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117 | end |
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118 | |
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119 | %% Set field names and velocity types |
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120 | %not relevant here |
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121 | |
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122 | %% Initiate output fields |
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123 | %not relevant here |
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124 | |
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125 | %%% SPECIFIC PART BEGINS HERE |
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126 | NbSlice=1; |
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127 | if isfield(Param.IndexRange,'NbSlice') |
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128 | NbSlice=Param.IndexRange.NbSlice; %number of slices |
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129 | end |
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130 | %siz=size(i1_series); |
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131 | nbaver_init=23;%approximate number of images used for the sliding background: to be adjusted later to include an integer number of bursts |
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132 | j1=[];%default |
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133 | |
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134 | %% adjust the proposed number of images in the sliding average to include an integer number of bursts |
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135 | if nbfield_i~=1 |
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136 | nbaver=floor(nbaver_init/nbfield_j); % number of bursts used for the sliding background, |
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137 | if isequal(floor(nbaver/2),nbaver) |
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138 | nbaver=nbaver+1;%put the number of burst to an odd number (so the middle burst is defined) |
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139 | end |
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140 | nbaver_init=nbaver*nbfield_j;%propose by default an integer number of bursts |
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141 | end |
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142 | |
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143 | %% input of specific parameters |
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144 | %if checkrun %get specific parameters interactively |
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145 | if isequal(Param.Action.RUN,0) |
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146 | prompt = {'volume scan mode (Yes/No)';'Number of images for the sliding background (MUST FIT IN COMPUTER MEMORY)';... |
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147 | 'the luminosity rank chosen to define the background (0.1=for dense particle seeding, 0.5 (median) for sparse particles'}; |
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148 | dlg_title = 'get (slice by slice) a sliding background and substract to each image'; |
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149 | num_lines= 3; |
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150 | def = { 'No';num2str(nbaver_init);'0.1'}; |
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151 | answer = inputdlg(prompt,dlg_title,num_lines,def); |
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152 | |
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153 | %check input consistency |
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154 | if strcmp(answer{1},'No') && ~isequal(NbSlice,1) |
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155 | check=msgbox_uvmat('INPUT_Y-N',['confirm the multi-level splitting into ' num2str(NbSlice) ' slices']); |
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156 | if ~strcmp(check,'Yes') |
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157 | return |
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158 | end |
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159 | end |
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160 | if strcmp(answer{1},'Yes') |
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161 | step=1; |
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162 | else |
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163 | step=nbfield_j;%case of bursts: the sliding background is shifted by the length of one burst |
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164 | end |
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165 | nbaver_ima=str2num(answer{2});%number of images for the sliding background |
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166 | nbaver=ceil(nbaver_ima/step);%number of bursts for the sliding background |
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167 | if isequal(floor(nbaver/2),nbaver) |
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168 | nbaver=nbaver+1;%set the number of bursts to an odd number (so the middle burst is defined) |
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169 | end |
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170 | nbaver_ima=nbaver*step; |
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171 | end |
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172 | ParamOut.ActionInput.CheckVolume=strcmp(answer{1},'Yes'); |
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173 | ParamOut.ActionInput.SlidingSequenceLength=nbaver_ima; |
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174 | ParamOut.ActionInput.BrightnessRankThreshold=str2num(answer{3}); |
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175 | |
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176 | % apply the image rescaling function 'level' (avoid the blinking effects of bright particles) |
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177 | answer=msgbox_uvmat('INPUT_Y-N','apply image rescaling function levels.m after sub_background'); |
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178 | ParamOut.ActionInput.CheckLevelTransform=strcmp(answer,'Yes'); |
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179 | return |
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180 | end |
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181 | %%%%%%%%%%%%%%%%%%%%%% STOP HERE FOR PAMETER INPUT MODE %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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182 | |
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183 | %% read input parameters from an xml file if input is a file name (batch mode) |
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184 | checkrun=1; |
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185 | if ischar(Param) |
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186 | Param=xml2struct(Param);% read Param as input file (batch case) |
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187 | checkrun=0; |
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188 | end |
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189 | hseries=findobj(allchild(0),'Tag','series'); |
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190 | RUNHandle=findobj(hseries,'Tag','RUN');%handle of RUN button in GUI series |
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191 | WaitbarHandle=findobj(hseries,'Tag','Waitbar');%handle of waitbar in GUI series |
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192 | %% Input preparation |
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193 | nbaver_ima=Param.ActionInput.SlidingSequenceLength; |
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194 | NbSlice=Param.IndexRange.NbSlice; |
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195 | if ~isequal(NbSlice,1) |
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196 | display(['multi-level splitting into ' num2str(NbSlice) ' slices']); |
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197 | end |
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198 | RootPath=Param.InputTable(:,1); |
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199 | RootFile=Param.InputTable(:,3); |
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200 | SubDir=Param.InputTable(:,2); |
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201 | NomType=Param.InputTable(:,4); |
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202 | FileExt=Param.InputTable(:,5); |
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203 | [filecell,i1_series,i2_series,j1_series,j2_series]=get_file_series(Param); |
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204 | [FileType{1},FileInfo{1},MovieObject{1}]=get_file_type(filecell{1,1}); |
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205 | if ~isempty(j1_series{1}) |
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206 | frame_index{1}=j1_series{1}; |
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207 | else |
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208 | frame_index{1}=i1_series{1}; |
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209 | end |
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210 | nbfield_j=size(i1_series{1},1); %nb of fields for the j index (bursts or volume slices) |
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211 | nbfield_i=size(i1_series{1},2); %nb of fields for the i index |
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212 | nbfield=nbfield_j*nbfield_i; %total number of fields |
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213 | nbfield_i=floor(nbfield/NbSlice);%total number of indexes in a slice (adjusted to an integer number of slices) |
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214 | nbfield=nbfield_i*NbSlice; %total number of fields after adjustement |
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215 | |
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216 | %% Output |
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217 | FileExtOut='.png'; % write result as .png images for image inputs |
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218 | if strcmp(lower(NomType{1}(end)),'a') |
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219 | NomTypeOut=NomType{1};%case of letter appendix |
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220 | elseif isempty(j1_series) |
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221 | NomTypeOut='_1'; |
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222 | else |
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223 | NomTypeOut='_1_1';% caseof purely numerical indexing |
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224 | end |
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225 | |
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226 | OutputDir=[Param.OutputSubDir Param.OutputDirExt]; |
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227 | |
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228 | if isequal(Param.ActionInput.CheckVolume,1) |
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229 | step=1; |
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230 | else |
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231 | step=nbfield_j;%case of bursts: the sliding background is shifted by the length of one burst |
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232 | end |
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233 | nbaver_ima=Param.ActionInput.SlidingSequenceLength;%number of images for the sliding background |
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234 | nbaver=ceil(nbaver_ima/step);%number of bursts for the sliding background |
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235 | if isequal(floor(nbaver/2),nbaver) |
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236 | nbaver=nbaver+1;%set the number of bursts to an odd number (so the middle burst is defined) |
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237 | end |
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238 | nbaver_ima=nbaver*step; |
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239 | if nbaver_ima > nbfield |
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240 | display('number of images in a slice smaller than the proposed number of images for the sliding average') |
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241 | return |
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242 | end |
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243 | |
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244 | % calculate absolute brightness rank |
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245 | rank=floor(Param.ActionInput.BrightnessRankThreshold*nbaver_ima); |
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246 | if rank==0 |
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247 | rank=1;%rank selected in the sorted image series |
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248 | end |
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249 | |
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250 | %% prealocate memory for the sliding background |
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251 | try |
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252 | Afirst=read_image(filecell{1,1},FileType{1},MovieObject{1},frame_index{1}(1)); |
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253 | [npy,npx]=size(Afirst); |
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254 | if strcmp(class(Afirst),'uint8') % case of 8bit images |
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255 | Ak=zeros(npy,npx,nbaver_ima,'uint8'); %prealocate memory |
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256 | Asort=zeros(npy,npx,nbaver_ima,'uint8'); %prealocate memory |
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257 | else |
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258 | Ak=zeros(npy,npx,nbaver_ima,'uint16'); %prealocate memory |
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259 | Asort=zeros(npy,npx,nbaver_ima,'uint16'); %prealocate memory |
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260 | end |
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261 | catch ME |
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262 | msgbox_uvmat('ERROR',['sub_background/read_image/' ME.message]) |
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263 | return |
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264 | end |
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265 | |
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266 | %% update the xml file |
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267 | % SubDirBase=regexprep(Param.InputTable{1,2},'\..*','');%take the root part of SubDir, before the first dot '.' |
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268 | % filexml=fullfile(RootPath{1},[SubDirBase '.xml']); |
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269 | % if ~exist(filexml,'file') && exist([fullfile(RootPath{1},SubDir{1},RootFile{1}) '.xml'],'file')% xml inside the image directory |
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270 | % copyfile([filebase '.xml'],filexml);% copy the .xml file |
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271 | % end |
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272 | % if exist(filexml,'file') |
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273 | % t=xmltree(filexml); |
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274 | % %update information on the first image name in the series |
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275 | % uid_Heading=find(t,'ImaDoc/Heading'); |
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276 | % if isempty(uid_Heading) |
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277 | % [t,uid_Heading]=add(t,1,'element','Heading'); |
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278 | % end |
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279 | % uid_ImageName=find(t,'ImaDoc/Heading/ImageName'); |
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280 | % if ~isempty(j1_series{1}) |
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281 | % j1=j1_series{1}(1); |
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282 | % end |
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283 | % ImageName=fullfile_uvmat([dir_images term],'',RootFile{1},'.png',NomType,i1_series(1,1),[],j1); |
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284 | % [pth,ImageName]=fileparts(ImageName); |
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285 | % ImageName=[ImageName '.png']; |
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286 | % if isempty(uid_ImageName) |
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287 | % [t,uid_ImageName]=add(t,uid_Heading,'element','ImageName'); |
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288 | % end |
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289 | % uid_value=children(t,uid_ImageName); |
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290 | % if isempty(uid_value) |
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291 | % t=add(t,uid_ImageName,'chardata',ImageName);%indicate name of the first image, with ;png extension |
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292 | % else |
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293 | % t=set(t,uid_value(1),'value',ImageName);%indicate name of the first image, with ;png extension |
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294 | % end |
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295 | % |
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296 | % %add information about image transform |
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297 | % [t,new_uid]=add(t,1,'element','ImageTransform'); |
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298 | % [t,NameFunction_uid]=add(t,new_uid,'element','NameFunction'); |
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299 | % [t]=add(t,NameFunction_uid,'chardata','sub_background'); |
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300 | % if GUI_config.CheckLevel |
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301 | % [t,NameFunction_uid]=add(t,new_uid,'element','NameFunction'); |
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302 | % [t]=add(t,NameFunction_uid,'chardata','levels'); |
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303 | % end |
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304 | % [t,NbSlice_uid]=add(t,new_uid,'element','NbSlice'); |
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305 | % [t]=add(t,new_uid,'chardata',num2str(NbSlice)); |
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306 | % [t,NbSlidingImages_uid]=add(t,new_uid,'element','NbSlidingImages'); |
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307 | % [t]=add(t,NbSlidingImages_uid,'chardata',num2str(nbaver)); |
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308 | % [t,LuminosityRank_uid]=add(t,new_uid,'element','RankBackground'); |
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309 | % [t]=add(t,LuminosityRank_uid,'chardata',num2str(rank));% luminosity rank almong the nbaver sliding images |
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310 | % save(t,filexml) |
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311 | % end |
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312 | %copy the mask |
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313 | % if exist([filebase '_1mask_1'],'file') |
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314 | % copyfile([filebase '_1mask_1'],[filebase_b '_1mask_1']);% copy the mask file |
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315 | % end |
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316 | |
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317 | %MAIN LOOP ON SLICES |
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318 | % for islice=1:NbSlice |
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319 | %% select the series of image indices |
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320 | indselect=1:step:nbfield;% select file indices of the slice |
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321 | for ifield=1:step-1 |
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322 | indselect=[indselect;indselect(end,:)+1]; |
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323 | end |
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324 | |
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325 | %% read the first series of nbaver_ima images and sort by luminosity at each pixel |
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326 | for ifield = 1:nbaver_ima |
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327 | ifile=indselect(ifield); |
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328 | filename=filecell{1,ifile}; |
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329 | Aread=read_image(filename,FileType{1},MovieObject{1},frame_index{1}(ifile)); |
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330 | if ndims(Aread)==3;%color images |
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331 | Aread=sum(double(Aread),3);% take the sum of color components |
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332 | end |
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333 | Ak(:,:,ifield)=Aread; |
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334 | end |
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335 | Asort=sort(Ak,3);%sort the luminosity of images at each point |
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336 | B=Asort(:,:,rank);%background image |
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337 | display( 'first background image will be substracted') |
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338 | nbfirst=(ceil(nbaver/2))*step; |
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339 | for ifield=1:nbfirst |
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340 | Acor=double(Ak(:,:,ifield))-double(B);%substract background to the current image |
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341 | Acor=(Acor>0).*Acor; % put to 0 the negative elements in Acor |
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342 | ifile=indselect(ifield); |
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343 | if ~isempty(j1_series{1}) |
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344 | j1=j1_series{1}(ifile); |
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345 | end |
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346 | newname=fullfile_uvmat(RootPath{1},OutputDir,RootFile{1},FileExtOut,NomTypeOut,i1_series{1}(ifile),[],j1); |
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347 | |
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348 | %write result file |
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349 | if Param.ActionInput.CheckLevelTransform |
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350 | C=levels(Acor); |
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351 | imwrite(C,newname,'BitDepth',8); % save the new image |
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352 | else |
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353 | if isequal(FileInfo{1}.BitDepth,16) |
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354 | C=uint16(Acor); |
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355 | imwrite(C,newname,'BitDepth',16); % save the new image |
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356 | else |
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357 | C=uint8(Acor); |
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358 | imwrite(C,newname,'BitDepth',8); % save the new image |
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359 | end |
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360 | end |
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361 | display([newname ' written']) |
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362 | end |
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363 | |
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364 | %% repeat the operation on a sliding series of images |
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365 | display('sliding background image will be substracted') |
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366 | if nbfield_i > nbaver_ima |
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367 | for ifield = step*ceil(nbaver/2)+1:step:nbfield_i-step*floor(nbaver/2) |
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368 | update_waitbar(WaitbarHandle,ifield/nbfield_i) |
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369 | if ~isempty(RUNHandle) &&ishandle(RUNHandle) && ~strcmp(get(RUNHandle,'BusyAction'),'queue') |
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370 | disp('program stopped by user') |
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371 | return |
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372 | end |
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373 | % if isequal(stopstate,'queue')% enable STOP command |
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374 | Ak(:,:,1:nbaver_ima-step)=Ak(:,:,1+step:nbaver_ima);% shift the current image series by one burst (step) |
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375 | %incorporate next burst in the current image series |
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376 | for iburst=1:step |
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377 | ifile=indselect(ifield+step*floor(nbaver/2)+iburst-1); |
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378 | filename=fullfile_uvmat(RootPath{1},SubDir{1},RootFile{1},FileExt{1},NomType{1},i1_series{1}(ifile),[],j1_series{1}(ifile)); |
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379 | Aread=read_image(filename,FileType{1},MovieObject{1},i1_series{1}(ifile)); |
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380 | if ndims(Aread)==3;%color images |
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381 | Aread=sum(double(Aread),3);% take the sum of color components |
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382 | end |
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383 | Ak(:,:,nbaver_ima-step+iburst)=Aread; |
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384 | end |
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385 | Asort=sort(Ak,3);%sort the new current image series by luminosity |
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386 | B=Asort(:,:,rank);%current background image |
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387 | for iburst=1:step |
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388 | index=step*floor(nbaver/2)+iburst; |
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389 | Acor=double(Ak(:,:,index))-double(B); |
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390 | Acor=(Acor>0).*Acor; % put to 0 the negative elements in Acor |
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391 | ifile=indselect(ifield+iburst-1); |
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392 | if ~isempty(j1_series{1}) |
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393 | j1=j1_series{1}(ifile); |
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394 | end |
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395 | newname=fullfile_uvmat(RootPath{1},OutputDir,RootFile{1},FileExtOut,NomTypeOut,i1_series{1}(ifile),[],j1); |
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396 | %write result file |
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397 | if Param.ActionInput.CheckLevelTransform |
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398 | C=levels(Acor); |
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399 | imwrite(C,newname,'BitDepth',8); % save the new image |
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400 | else |
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401 | if isequal(FileInfo{1}.BitDepth,16) |
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402 | C=uint16(Acor); |
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403 | imwrite(C,newname,'BitDepth',16); % save the new image |
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404 | else |
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405 | C=uint8(Acor); |
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406 | imwrite(C,newname,'BitDepth',8); % save the new image |
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407 | end |
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408 | end |
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409 | display([newname ' written']) |
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410 | |
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411 | end |
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412 | % else |
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413 | % return |
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414 | % end |
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415 | end |
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416 | end |
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417 | |
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418 | %% substract the background from the last images |
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419 | display('last background image will be substracted') |
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420 | ifield=nbfield_i-(step*ceil(nbaver/2))+1:nbfield_i; |
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421 | for ifield=nbfield_i-(step*floor(nbaver/2))+1:nbfield_i |
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422 | index=ifield-nbfield_i+step*(2*floor(nbaver/2)+1); |
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423 | Acor=double(Ak(:,:,index))-double(B); |
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424 | Acor=(Acor>0).*Acor; % put to 0 the negative elements in Acor |
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425 | ifile=indselect(ifield); |
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426 | if ~isempty(j1_series{1}) |
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427 | j1=j1_series{1}(ifile); |
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428 | end |
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429 | newname=fullfile_uvmat(RootPath{1},OutputDir,RootFile{1},FileExtOut,NomTypeOut,i1_series{1}(ifile),[],j1); |
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430 | |
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431 | %write result file |
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432 | if Param.ActionInput.CheckLevelTransform |
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433 | C=levels(Acor); |
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434 | imwrite(C,newname,'BitDepth',8); % save the new image |
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435 | else |
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436 | if isequal(FileInfo{1}.BitDepth,16) |
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437 | C=uint16(Acor); |
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438 | imwrite(C,newname,'BitDepth',16); % save the new image |
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439 | else |
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440 | C=uint8(Acor); |
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441 | imwrite(C,newname,'BitDepth',8); % save the new image |
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442 | end |
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443 | end |
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444 | display([newname ' written']) |
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445 | end |
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446 | |
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447 | |
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448 | |
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449 | function C=levels(A) |
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450 | %whos A; |
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451 | B=double(A(:,:,1)); |
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452 | windowsize=round(min(size(B,1),size(B,2))/20); |
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453 | windowsize=floor(windowsize/2)*2+1; |
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454 | ix=1/2-windowsize/2:-1/2+windowsize/2;% |
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455 | %del=np/3; |
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456 | %fct=exp(-(ix/del).^2); |
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457 | fct2=cos(ix/(windowsize-1)/2*pi/2); |
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458 | %Mfiltre=(ones(5,5)/5^2); |
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459 | %Mfiltre=fct2'; |
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460 | Mfiltre=fct2'*fct2; |
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461 | Mfiltre=Mfiltre/(sum(sum(Mfiltre))); |
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462 | |
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463 | C=filter2(Mfiltre,B); |
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464 | C(:,1:windowsize)=C(:,windowsize)*ones(1,windowsize); |
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465 | C(:,end-windowsize+1:end)=C(:,end-windowsize+1)*ones(1,windowsize); |
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466 | C(1:windowsize,:)=ones(windowsize,1)*C(windowsize,:); |
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467 | C(end-windowsize+1:end,:)=ones(windowsize,1)*C(end-windowsize,:); |
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468 | C=tanh(B./(2*C)); |
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469 | [n,c]=hist(reshape(C,1,[]),100); |
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470 | % figure;plot(c,n); |
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471 | |
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472 | [m,i]=max(n); |
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473 | c_max=c(i); |
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474 | [dummy,index]=sort(abs(c-c(i))); |
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475 | n=n(index); |
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476 | c=c(index); |
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477 | i_select = find(cumsum(n)<0.95*sum(n)); |
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478 | if isempty(i_select) |
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479 | i_select = 1:length(c); |
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480 | end |
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481 | c_select=c(i_select); |
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482 | n_select=n(i_select); |
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483 | cmin=min(c_select); |
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484 | cmax=max(c_select); |
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485 | C=(C-cmin)/(cmax-cmin)*256; |
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486 | C=uint8(C); |
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