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@ -252,12 +252,6 @@ def spike_times(stim):
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dt = ti.sampling_interval
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dt = ti.sampling_interval
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return spikes, stim_dur, dt # se changed spike_times to spikes so its not the same as name of function
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return spikes, stim_dur, dt # se changed spike_times to spikes so its not the same as name of function
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'''TODO: AM-freq plot:
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meaning of am peak in spectrum? why is it there how does it change with stim intensity?
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make plot with AM 1/2 EODf over stim frequency (df+eodf), get amplitude of am peak and plot
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amplitude over frequency of peak'''
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def calculate_integral(freq, power, point, delta):
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def calculate_integral(freq, power, point, delta):
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"""
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"""
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Calculate the integral around a single specified point.
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Calculate the integral around a single specified point.
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@ -292,8 +286,6 @@ def calculate_integral(freq, power, point, delta):
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local_mean = np.mean([l_integral, r_integral])
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local_mean = np.mean([l_integral, r_integral])
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return integral, local_mean
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return integral, local_mean
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def valid_integrals(integral, local_mean, threshold, point):
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def valid_integrals(integral, local_mean, threshold, point):
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"""
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"""
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Check if the integral exceeds the threshold compared to the local mean and
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Check if the integral exceeds the threshold compared to the local mean and
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@ -323,3 +315,8 @@ def valid_integrals(integral, local_mean, threshold, point):
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else:
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else:
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message = f"The point {point} is not valid, as its integral does not exceed the threshold."
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message = f"The point {point} is not valid, as its integral does not exceed the threshold."
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return valid, message
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return valid, message
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'''TODO Sarah: AM-freq plot:
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meaning of am peak in spectrum? why is it there how does it change with stim intensity?
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make plot with AM 1/2 EODf over stim frequency (df+eodf), get amplitude of am peak and plot
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amplitude over frequency of peak'''
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