<p>(A) A representative example of the simulated synaptic conductance (G<sub>syn</sub>) induced by PC (black) of AnR (upper panel), AnM (middle panel) and AwM (lower panel), and by corresponding realizations of an inhomogeneous Poisson process (green). Rasters: spikes belonging to patterns (black and green dotted lines: start of patterns, black and green solid lines: following spikes in patterns, blue lines: singles), numbers: number of all spikes in the 500 ms window. (B) Distribution of G<sub>syn</sub> values for PCs (black) compared to Poisson processes (green). Bin = 0.2 nS. Red bar: bins where PCs contained significantly more G<sub>syn</sub> values. p<0.05.</p
<p>The figures on the left hand side column show the typical probabilities of a synapse from a neuro...
(First row) 60-s simulated spontaneous electrophysiological activity of the layers of a representati...
<p><b>(A)</b> Color-coded raster plots of spontaneous neuronal network activity recorded on microele...
<p>Panels B and C show traces for 30 representative neurons from a synaptically coupled network with...
<p>Raster plot of simulated network activity after AMPA synaptic weights were increased throughout t...
<p>(a) Black circles: minimum observed ISI for each active cell in network simulations of different ...
(a) The demonstration network consists of populations of excitatory (red dots), inhibitory (blue dot...
<p>A: Histogram showing EPSP amplitude distribution for N = 100 simulated neurons with 130 primary a...
<p>The first panel shows the pre-synaptic spike-rate modulation, λ<sub>S</sub>(<i>t</i>). The second...
Abstract — A network simulation paradigm was developed to be consistent with observations of the hig...
<p>(<b>A</b>) Schematic of the single compartment model used in this study. The various ligand- and ...
<p>(A) Peri-event raster plot of patterns (red) and singles (blue) during tactile stimulation in AnR...
Top left: Raster plots show spike times of 50 out of 10, 000 excitatory (E) and 50 out of 2, 500 inh...
<p>Top panel: The isolated neuron generates a characteristic subthreshold oscillation and spiking ac...
A: The evolution of the joint probability density function at four different points in time (1, 5, 1...
<p>The figures on the left hand side column show the typical probabilities of a synapse from a neuro...
(First row) 60-s simulated spontaneous electrophysiological activity of the layers of a representati...
<p><b>(A)</b> Color-coded raster plots of spontaneous neuronal network activity recorded on microele...
<p>Panels B and C show traces for 30 representative neurons from a synaptically coupled network with...
<p>Raster plot of simulated network activity after AMPA synaptic weights were increased throughout t...
<p>(a) Black circles: minimum observed ISI for each active cell in network simulations of different ...
(a) The demonstration network consists of populations of excitatory (red dots), inhibitory (blue dot...
<p>A: Histogram showing EPSP amplitude distribution for N = 100 simulated neurons with 130 primary a...
<p>The first panel shows the pre-synaptic spike-rate modulation, λ<sub>S</sub>(<i>t</i>). The second...
Abstract — A network simulation paradigm was developed to be consistent with observations of the hig...
<p>(<b>A</b>) Schematic of the single compartment model used in this study. The various ligand- and ...
<p>(A) Peri-event raster plot of patterns (red) and singles (blue) during tactile stimulation in AnR...
Top left: Raster plots show spike times of 50 out of 10, 000 excitatory (E) and 50 out of 2, 500 inh...
<p>Top panel: The isolated neuron generates a characteristic subthreshold oscillation and spiking ac...
A: The evolution of the joint probability density function at four different points in time (1, 5, 1...
<p>The figures on the left hand side column show the typical probabilities of a synapse from a neuro...
(First row) 60-s simulated spontaneous electrophysiological activity of the layers of a representati...
<p><b>(A)</b> Color-coded raster plots of spontaneous neuronal network activity recorded on microele...