<p>This shows the spiking activity in the Purkinje cell for one simulation trial; the activity between 10 s and 10.5 s is given, in other words, it shows the activity before plasticity has had any substantial effect on the behavior of the cell. The simple spikes are marked with short black vertical dashes, the complex spikes by tall green vertical dashes; the horizontal dashes mark the refractory periods which follow each complex spike. During these period 481 spikes arrive from the input neurons correlated with the climbing fiber activity and 354 spikes from the other group.</p
<p>The main firing pattern observed were a tonic pattern (<b>A</b> and <b>C</b>, in blue) or a trimo...
<p>(<b><i>A</i></b>) Recording of spontaneous firing behavior of a Purkinje cell (PC) shows the pres...
<p>Left: (Top) Raster plot of randomly chosen neurons (out of a total of neurons in the simulation...
<p>This shows the spiking activity in the Purkinje cell for one simulation trial with the parameters...
(A) Simulated (left) and electrophysiological (right) recordings of Purkinje cell spike outputs in r...
One distinctive feature of Purkinje cells is that they have two types of discharge: in addition to s...
The Purkinje cells of the cerebellum are responsible for processing the inputs necessary for coordin...
We quantified the impact of presumed subthreshold oscillations on the occurrence and timing of compl...
<p><b>Copyright information:</b></p><p>Taken from "A spiking network model for passage-of-time repre...
<p>A) Loose cell (left panels) and whole cell (right panels) recordings from representative Purkinje...
(A) Representative inter-complex spike-interval (ICSI) histogram of spontaneous firing of a represen...
<p>The spiking activity is from a simulation trial with the network of spiking neurons with alpha sh...
Understanding the relationship between synaptic plasticity and neuronal output is essential if we ar...
<p>(A) Superimposed simple spike (top) and complex spikes from PC recorded in the C3 zone. (B) Frequ...
Background. Cerebellar Purkinje cells (PC) in vivo are commonly reported to generate irregular spike...
<p>The main firing pattern observed were a tonic pattern (<b>A</b> and <b>C</b>, in blue) or a trimo...
<p>(<b><i>A</i></b>) Recording of spontaneous firing behavior of a Purkinje cell (PC) shows the pres...
<p>Left: (Top) Raster plot of randomly chosen neurons (out of a total of neurons in the simulation...
<p>This shows the spiking activity in the Purkinje cell for one simulation trial with the parameters...
(A) Simulated (left) and electrophysiological (right) recordings of Purkinje cell spike outputs in r...
One distinctive feature of Purkinje cells is that they have two types of discharge: in addition to s...
The Purkinje cells of the cerebellum are responsible for processing the inputs necessary for coordin...
We quantified the impact of presumed subthreshold oscillations on the occurrence and timing of compl...
<p><b>Copyright information:</b></p><p>Taken from "A spiking network model for passage-of-time repre...
<p>A) Loose cell (left panels) and whole cell (right panels) recordings from representative Purkinje...
(A) Representative inter-complex spike-interval (ICSI) histogram of spontaneous firing of a represen...
<p>The spiking activity is from a simulation trial with the network of spiking neurons with alpha sh...
Understanding the relationship between synaptic plasticity and neuronal output is essential if we ar...
<p>(A) Superimposed simple spike (top) and complex spikes from PC recorded in the C3 zone. (B) Frequ...
Background. Cerebellar Purkinje cells (PC) in vivo are commonly reported to generate irregular spike...
<p>The main firing pattern observed were a tonic pattern (<b>A</b> and <b>C</b>, in blue) or a trimo...
<p>(<b><i>A</i></b>) Recording of spontaneous firing behavior of a Purkinje cell (PC) shows the pres...
<p>Left: (Top) Raster plot of randomly chosen neurons (out of a total of neurons in the simulation...