<p>The firing rate is plotted for the numerical simulations in black, with analytic <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0159300#pone.0159300.e022" target="_blank">Eq (1)</a> in green and red, with solid for <i>τ</i><sub><i>r</i></sub> = 3 ms, and dashed for <i>τ</i><sub><i>r</i></sub> = 0 ms.</p
<p>Illustration for a given set of parameters ( Hz, mV, mv, ms). From top to bottom: input signal...
<p><b>A</b>. Firing rate in the “leaves” natural movie (M1) plotted against firing rate in the “wate...
<p>All the simulations had a tonic firing of 5.6 Hz and release probability of 0.5 during the first ...
<p>The slope of the input/output firing rate curves at <i>r</i><sub><i>E</i></sub> = 0 computed from...
<p>Population-averaged firing rates for encoded in color (<b>A</b>) predicted by the analytical the...
<p>A Analytical firing rate compared to simulation in dependence of the mean drive . Black: Analytic...
<p><b>A–B.</b> Gain and <b>C–D.</b> phase of the linear response of the QIF (red), EIF (green), LIF ...
<p>Results for both small decreases of 150 and large decreases of 600 in the firing rate are shown.<...
<p>Results for both small increases of 150 and large increases of 600 in the firing rate are shown.<...
<p>(<b>A, B</b>) The emergence of a spontaneous discharge from H/IP depended from the conductance ac...
(a) Log-normal like distribution of firing rates. Top, firing rates of all biophysical cells from th...
(a)-(c) Firing rate estimates for the cases of low, medium and high frequency, respectively. (d)-(f)...
The profile with the smallest amplitude corresponds to the simulation by the “adaptive” firing-rate ...
<p><i>N</i> = 40,000, <i>K</i> = 800. <i>J</i><sub>0</sub> = 2, <i>I</i><sub>0</sub> = 0.3, <i>τ</i>...
<p>The response of each rate model is compared to a spiking population receiving an input with fluct...
<p>Illustration for a given set of parameters ( Hz, mV, mv, ms). From top to bottom: input signal...
<p><b>A</b>. Firing rate in the “leaves” natural movie (M1) plotted against firing rate in the “wate...
<p>All the simulations had a tonic firing of 5.6 Hz and release probability of 0.5 during the first ...
<p>The slope of the input/output firing rate curves at <i>r</i><sub><i>E</i></sub> = 0 computed from...
<p>Population-averaged firing rates for encoded in color (<b>A</b>) predicted by the analytical the...
<p>A Analytical firing rate compared to simulation in dependence of the mean drive . Black: Analytic...
<p><b>A–B.</b> Gain and <b>C–D.</b> phase of the linear response of the QIF (red), EIF (green), LIF ...
<p>Results for both small decreases of 150 and large decreases of 600 in the firing rate are shown.<...
<p>Results for both small increases of 150 and large increases of 600 in the firing rate are shown.<...
<p>(<b>A, B</b>) The emergence of a spontaneous discharge from H/IP depended from the conductance ac...
(a) Log-normal like distribution of firing rates. Top, firing rates of all biophysical cells from th...
(a)-(c) Firing rate estimates for the cases of low, medium and high frequency, respectively. (d)-(f)...
The profile with the smallest amplitude corresponds to the simulation by the “adaptive” firing-rate ...
<p><i>N</i> = 40,000, <i>K</i> = 800. <i>J</i><sub>0</sub> = 2, <i>I</i><sub>0</sub> = 0.3, <i>τ</i>...
<p>The response of each rate model is compared to a spiking population receiving an input with fluct...
<p>Illustration for a given set of parameters ( Hz, mV, mv, ms). From top to bottom: input signal...
<p><b>A</b>. Firing rate in the “leaves” natural movie (M1) plotted against firing rate in the “wate...
<p>All the simulations had a tonic firing of 5.6 Hz and release probability of 0.5 during the first ...