annotate userPrograms/pitchModel_RM.m @ 35:25d53244d5c8

latest parameters
author Ray Meddis <rmeddis@essex.ac.uk>
date Thu, 15 Sep 2011 13:50:20 +0100
parents 82fb37eb430e
children
rev   line source
rmeddis@32 1 function pitchModel_RM
rmeddis@32 2 % Modification of testMAP_14 to replicate the pitch model published
rmeddis@32 3 % in JASA 2006.
rmeddis@32 4 %
rmeddis@32 5 % test_MAP1_14 is a general purpose test routine that can be adjusted to
rmeddis@32 6 % test a number of different applications of MAP1_14
rmeddis@32 7 %
rmeddis@32 8 % A range of options are supplied in the early part of the program
rmeddis@32 9 %
rmeddis@32 10 % One use of the function is to create demonstrations; filenames <demoxx>
rmeddis@32 11 % to illustrate particular features
rmeddis@32 12 %
rmeddis@32 13 % #1
rmeddis@32 14 % Identify the file (in 'MAPparamsName') containing the model parameters
rmeddis@32 15 %
rmeddis@32 16 % #2
rmeddis@32 17 % Identify the kind of model required (in 'AN_spikesOrProbability').
rmeddis@32 18 % A full brainstem model (spikes) can be computed or a shorter model
rmeddis@32 19 % (probability) that computes only so far as the auditory nerve
rmeddis@32 20 %
rmeddis@32 21 % #3
rmeddis@32 22 % Choose between a tone signal or file input (in 'signalType')
rmeddis@32 23 %
rmeddis@32 24 % #4
rmeddis@32 25 % Set the signal rms level (in leveldBSPL)
rmeddis@32 26 %
rmeddis@32 27 % #5
rmeddis@32 28 % Identify the channels in terms of their best frequencies in the vector
rmeddis@32 29 % BFlist.
rmeddis@32 30 %
rmeddis@32 31 % Last minute changes to the parameters fetched earlier can be made using
rmeddis@32 32 % the cell array of strings 'paramChanges'.
rmeddis@32 33 % Each string must have the same format as the corresponding line in the
rmeddis@32 34 % file identified in 'MAPparamsName'
rmeddis@32 35 %
rmeddis@32 36 % When the demonstration is satisfactory, freeze it by renaming it <demoxx>
rmeddis@32 37
rmeddis@32 38 dbstop if error
rmeddis@32 39 restorePath=path;
rmeddis@32 40 addpath (['..' filesep 'MAP'], ['..' filesep 'wavFileStore'], ...
rmeddis@32 41 ['..' filesep 'utilities'])
rmeddis@32 42
rmeddis@32 43 % Pitch model modification here
rmeddis@32 44 global ICrate % used to collect rate profile from showMAP temporary
rmeddis@32 45 rates=[]; F0count=0;
rmeddis@32 46
rmeddis@32 47 % F0s=[150 200 250]; % fundamental frequency
rmeddis@32 48 % harmonics= 3:5;
rmeddis@32 49
rmeddis@32 50 % F0s=[3000]; % fundamental frequency
rmeddis@32 51 F0s=50:5:1000;
rmeddis@32 52 harmonics= 1;
rmeddis@32 53 % F0s=150;
rmeddis@32 54 for F0=F0s
rmeddis@32 55 F0count=F0count+1;
rmeddis@32 56
rmeddis@32 57
rmeddis@32 58 %% #1 parameter file name
rmeddis@32 59 MAPparamsName='Normal';
rmeddis@32 60
rmeddis@32 61
rmeddis@32 62 %% #2 probability (fast) or spikes (slow) representation
rmeddis@32 63 AN_spikesOrProbability='spikes';
rmeddis@32 64
rmeddis@32 65 % or
rmeddis@32 66 % NB probabilities are not corrected for refractory effects
rmeddis@32 67 % AN_spikesOrProbability='probability';
rmeddis@32 68
rmeddis@32 69
rmeddis@32 70 %% #3 pure tone, harmonic sequence or speech file input
rmeddis@32 71 signalType= 'tones';
rmeddis@32 72 sampleRate= 50000;
rmeddis@32 73 duration=0.50; % seconds
rmeddis@32 74 % toneFrequency= 1000; % or a pure tone (Hz8
rmeddis@32 75
rmeddis@32 76 % F0=210;
rmeddis@32 77 toneFrequency= F0*harmonics; % harmonic sequence (Hz)
rmeddis@32 78
rmeddis@32 79 rampDuration=.005; % raised cosine ramp (seconds)
rmeddis@32 80
rmeddis@32 81 % or
rmeddis@32 82
rmeddis@32 83 % signalType= 'file';
rmeddis@32 84 % fileName='twister_44kHz';
rmeddis@32 85
rmeddis@32 86
rmeddis@32 87 %% #4 rms level
rmeddis@32 88 % signal details
rmeddis@32 89 leveldBSPL= 50; % dB SPL
rmeddis@32 90
rmeddis@32 91
rmeddis@32 92 %% #5 number of channels in the model
rmeddis@32 93 % 21-channel model (log spacing)
rmeddis@32 94 numChannels=21;
rmeddis@32 95 lowestBF=250; highestBF= 8000;
rmeddis@32 96 BFlist=round(logspace(log10(lowestBF), log10(highestBF), numChannels));
rmeddis@32 97
rmeddis@32 98 % or specify your own channel BFs
rmeddis@32 99 % numChannels=1;
rmeddis@32 100 BFlist=toneFrequency;
rmeddis@32 101 % BFlist=500;
rmeddis@32 102
rmeddis@32 103
rmeddis@32 104 %% #6 change model parameters
rmeddis@32 105 paramChanges=[];
rmeddis@32 106
rmeddis@32 107 % or
rmeddis@32 108 % Parameter changes can be used to change one or more model parameters
rmeddis@32 109 % *after* the MAPparams file has been read
rmeddis@32 110 % This example declares only one fiber type with a calcium clearance time
rmeddis@32 111 % constant of 80e-6 s (HSR fiber) when the probability option is selected.
rmeddis@32 112
rmeddis@32 113 % paramChanges={'AN_IHCsynapseParams.ANspeedUpFactor=5;', ...
rmeddis@32 114 % 'IHCpreSynapseParams.tauCa=86e-6;'};
rmeddis@32 115
rmeddis@32 116 % paramChanges={'DRNLParams.rateToAttenuationFactorProb = 0;'};
rmeddis@32 117
rmeddis@32 118 % paramChanges={'IHCpreSynapseParams.tauCa=86e-6;',
rmeddis@32 119 % 'AN_IHCsynapseParams.numFibers= 1000;'};
rmeddis@32 120
rmeddis@32 121 % fixed MOC attenuation(using negative factor)
rmeddis@32 122 % paramChanges={'DRNLParams.rateToAttenuationFactorProb=-0.005;'};
rmeddis@32 123
rmeddis@32 124 % slow the CN chopping rate
rmeddis@32 125 % paramChanges={'IHCpreSynapseParams.tauCa= 70e-6;'...'
rmeddis@32 126 % 'MacGregorMultiParams.tauGk= [0.75e-3:.0001 : 3e-3];'...
rmeddis@32 127 % ' MacGregorParams.dendriteLPfreq=4000;'...
rmeddis@32 128 % 'MacGregorParams.tauGk= 1e-4;'...
rmeddis@32 129 % 'MacGregorParams.currentPerSpike=220e-8;'...
rmeddis@32 130 % };
rmeddis@32 131 paramChanges={...
rmeddis@32 132 'MacGregorMultiParams.currentPerSpike=25e-9;'...
rmeddis@32 133 'MacGregorMultiParams.tauGk= [0.1e-3:.00005 : 1e-3];'...
rmeddis@32 134 'MacGregorParams.currentPerSpike=40e-9;'...
rmeddis@32 135 };
rmeddis@32 136
rmeddis@32 137 %% delare 'showMap' options to control graphical output
rmeddis@32 138
rmeddis@32 139 showMapOptions.printModelParameters=0; % prints all parameters
rmeddis@32 140 showMapOptions.showModelOutput=1; % plot of all stages
rmeddis@32 141 showMapOptions.printFiringRates=1; % prints stage activity levels
rmeddis@32 142 showMapOptions.showACF=0; % shows SACF (probability only)
rmeddis@32 143 showMapOptions.showEfferent=0; % tracks of AR and MOC
rmeddis@32 144 showMapOptions.surfProbability=0; % 2D plot of HSR response
rmeddis@32 145 showMapOptions.surfSpikes=0; % 2D plot of spikes histogram
rmeddis@32 146 showMapOptions.ICrates=1; % IC rates by CNtauGk
rmeddis@32 147
rmeddis@32 148 % disable certain silly options
rmeddis@32 149 if strcmp(AN_spikesOrProbability, 'spikes')
rmeddis@32 150 % avoid nonsensical options
rmeddis@32 151 showMapOptions.surfProbability=0;
rmeddis@32 152 showMapOptions.showACF=0;
rmeddis@32 153 else
rmeddis@32 154 showMapOptions.surfSpikes=0;
rmeddis@32 155 end
rmeddis@32 156 if strcmp(signalType, 'file')
rmeddis@32 157 % needed for labeling plot
rmeddis@32 158 showMapOptions.fileName=fileName;
rmeddis@32 159 else
rmeddis@32 160 showMapOptions.fileName=[];
rmeddis@32 161 end
rmeddis@32 162
rmeddis@32 163 %% Generate stimuli
rmeddis@32 164
rmeddis@32 165 switch signalType
rmeddis@32 166 case 'tones'
rmeddis@32 167 inputSignal=createMultiTone(sampleRate, toneFrequency, ...
rmeddis@32 168 leveldBSPL, duration, rampDuration);
rmeddis@32 169
rmeddis@32 170 case 'file'
rmeddis@32 171 %% file input simple or mixed
rmeddis@32 172 [inputSignal sampleRate]=wavread(fileName);
rmeddis@32 173 dt=1/sampleRate;
rmeddis@32 174 inputSignal=inputSignal(:,1);
rmeddis@32 175 targetRMS=20e-6*10^(leveldBSPL/20);
rmeddis@32 176 rms=(mean(inputSignal.^2))^0.5;
rmeddis@32 177 amp=targetRMS/rms;
rmeddis@32 178 inputSignal=inputSignal*amp;
rmeddis@32 179 silence= zeros(1,round(0.1/dt));
rmeddis@32 180 inputSignal= [silence inputSignal' silence];
rmeddis@32 181 end
rmeddis@32 182
rmeddis@32 183
rmeddis@32 184 %% run the model
rmeddis@32 185 tic
rmeddis@32 186
rmeddis@32 187 fprintf('\n')
rmeddis@32 188 disp(['Signal duration= ' num2str(length(inputSignal)/sampleRate)])
rmeddis@32 189 disp([num2str(numChannels) ' channel model'])
rmeddis@32 190 disp([num2str(F0) ' F0'])
rmeddis@32 191 disp('Computing ...')
rmeddis@32 192
rmeddis@32 193 MAP1_14(inputSignal, sampleRate, BFlist, ...
rmeddis@32 194 MAPparamsName, AN_spikesOrProbability, paramChanges);
rmeddis@32 195
rmeddis@32 196
rmeddis@32 197 % the model run is now complete. Now display the results
rmeddis@32 198 UTIL_showMAP(showMapOptions, paramChanges)
rmeddis@32 199
rmeddis@32 200 %% pitch model Collect and analyse data
rmeddis@32 201 % ICrate is global and computed in showMAP
rmeddis@32 202 % a vector of 'stage4' rates; one value for each tauCNGk
rmeddis@32 203 rates=[rates; ICrate];
rmeddis@32 204 figure(92), imagesc(rates)
rmeddis@32 205 ylabel ('F0 no'), xlabel('tauGk')
rmeddis@32 206 % figure(92), plot(rates), ylim([0 inf])
rmeddis@32 207
rmeddis@32 208 h=figure(99); CNmovie(F0count)=getframe(h);
rmeddis@32 209 figure(91), plot(rates'),ylim([0 inf])
rmeddis@32 210 pause (0.1)
rmeddis@32 211 path(restorePath)
rmeddis@32 212
rmeddis@32 213 end
rmeddis@32 214 %% show results
rmeddis@32 215 toc
rmeddis@32 216 figure(91), plot(F0s,rates'), xlabel('F0'), ylabel('rate'),ylim([0 inf])
rmeddis@32 217 % figure(99),clf,movie(CNmovie,1,4)
rmeddis@32 218
rmeddis@32 219
rmeddis@32 220 function inputSignal=createMultiTone(sampleRate, toneFrequency, ...
rmeddis@32 221 leveldBSPL, duration, rampDuration)
rmeddis@32 222 % Create pure tone stimulus
rmeddis@32 223 dt=1/sampleRate; % seconds
rmeddis@32 224 time=dt: dt: duration;
rmeddis@32 225 inputSignal=sum(sin(2*pi*toneFrequency'*time), 1);
rmeddis@32 226 amp=10^(leveldBSPL/20)*28e-6; % converts to Pascals (peak)
rmeddis@32 227 inputSignal=amp*inputSignal;
rmeddis@32 228
rmeddis@32 229 % apply ramps
rmeddis@32 230 % catch rampTime error
rmeddis@32 231 if rampDuration>0.5*duration, rampDuration=duration/2; end
rmeddis@32 232 rampTime=dt:dt:rampDuration;
rmeddis@32 233 ramp=[0.5*(1+cos(2*pi*rampTime/(2*rampDuration)+pi)) ...
rmeddis@32 234 ones(1,length(time)-length(rampTime))];
rmeddis@32 235 inputSignal=inputSignal.*ramp;
rmeddis@32 236 ramp=fliplr(ramp);
rmeddis@32 237 inputSignal=inputSignal.*ramp;
rmeddis@32 238
rmeddis@32 239 % add 10 ms silence
rmeddis@32 240 silence= zeros(1,round(0.005/dt));
rmeddis@32 241 inputSignal= [silence inputSignal silence];
rmeddis@32 242