<p>A: Covariation of the mean membrane potential and the mean intrinsic current across neurons in the GIF (blue) and IF (red) networks. B, C: Bivariate probability density function of the mean and standard deviation of the membrane potential variable across neurons for the GIF (B) and IF (C) networks. Brighter colors indicate higher probabilities.</p
<p>A homogeneous density of noisy input currents is applied throughout the neural membrane. Columns ...
<p>Single-neuron and network statistics for the IF and GIF models considered.</p
<p>Each neuron in population receives randomly drawn excitatory inputs with weight , randomly dra...
<p>A: Deviation from independence of intrinsic currents flowing through the membrane of pairs of ...
<p>Population rate (A), along with the mean membrane potential <i>v</i> (B), the mean synaptic curr...
<p>Probability density functions of intrinsic currents in the GIF (blue) and IF (red) networks. Sol...
<p>A: Membrane potential distributions of GIF and r-matched IF neurons in response to the background...
<p>Top panels: a) Two self-similar Gaussian synaptic weight distributions. b) The distribution of th...
<p>(A) Homogeneous network. Example profiles for two neurons with identical kernels. Vertical line r...
<p><b>A</b>,<b>B</b> Adjusted common input fraction (<b>A</b>) and input firing rate (<b>B</b>) fo...
<p>(<b>a</b>) The standard deviation of the membrane potential is approximately constant as a functi...
(a): Distribution of mean amplitudes of excitatory (blue) and inhibitory (red) membrane currents ont...
<p><b>A, B.</b> Example membrane potential traces for a randomly selected neuron in the Hamiltonian ...
<p>Tuning of the membrane potential for neurons in the LIF network shown in <a href="http://www.plos...
<p>The same E-I network as in <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal....
<p>A homogeneous density of noisy input currents is applied throughout the neural membrane. Columns ...
<p>Single-neuron and network statistics for the IF and GIF models considered.</p
<p>Each neuron in population receives randomly drawn excitatory inputs with weight , randomly dra...
<p>A: Deviation from independence of intrinsic currents flowing through the membrane of pairs of ...
<p>Population rate (A), along with the mean membrane potential <i>v</i> (B), the mean synaptic curr...
<p>Probability density functions of intrinsic currents in the GIF (blue) and IF (red) networks. Sol...
<p>A: Membrane potential distributions of GIF and r-matched IF neurons in response to the background...
<p>Top panels: a) Two self-similar Gaussian synaptic weight distributions. b) The distribution of th...
<p>(A) Homogeneous network. Example profiles for two neurons with identical kernels. Vertical line r...
<p><b>A</b>,<b>B</b> Adjusted common input fraction (<b>A</b>) and input firing rate (<b>B</b>) fo...
<p>(<b>a</b>) The standard deviation of the membrane potential is approximately constant as a functi...
(a): Distribution of mean amplitudes of excitatory (blue) and inhibitory (red) membrane currents ont...
<p><b>A, B.</b> Example membrane potential traces for a randomly selected neuron in the Hamiltonian ...
<p>Tuning of the membrane potential for neurons in the LIF network shown in <a href="http://www.plos...
<p>The same E-I network as in <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal....
<p>A homogeneous density of noisy input currents is applied throughout the neural membrane. Columns ...
<p>Single-neuron and network statistics for the IF and GIF models considered.</p
<p>Each neuron in population receives randomly drawn excitatory inputs with weight , randomly dra...