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src/n/e/NeuroTools-0.2.0/examples/retina/benchmark_retina.py   NeuroTools(Download)
 
############# MAKING FIGURE ############################
from NeuroTools.plotting import pylab_params
from numpy import zeros, where, arange
 
 
"""
pylab.rcParams.update(pylab_params(fig_width_pt = 497.9) )#, text_fontsize=8))
pylab.figure(num = 1, dpi=300, facecolor='w', edgecolor='k')
 

src/n/e/NeuroTools-0.2.0/examples/retina/test_parallel.py   NeuroTools(Download)
    import NeuroTools.plotting as plotting
    pylab = plotting.get_display(True)
    pylab.rcParams.update(plotting.pylab_params())
    print rates, neuron_rates
    subplot = pylab.imshow( neuron_rates, 

src/n/e/NeuroTools-0.2.0/examples/parameter_search/parameter_search_example.py   NeuroTools(Download)
    import NeuroTools.plotting as plotting
    pylab = plotting.get_display(True)
    pylab.rcParams.update(plotting.pylab_params())
    subplot = pylab.imshow(neuron_rates, 
                           interpolation = 'nearest',  

src/n/e/NeuroTools-0.2.0/examples/retina/benchmark_noise.py   NeuroTools(Download)
results.close()
 
from NeuroTools.plotting import pylab_params
 
""" Figure 1

src/n/e/NeuroTools-0.2.0/examples/retina/benchmark_linear.py   NeuroTools(Download)
###############################################################################
 
from NeuroTools.plotting import pylab_params
 
""" Figure 1