Stimulus properties, attention, and behavioral context influence correlations between the spike times produced by a pair of neurons. However, the biophysical mechanisms that modulate these correlations are poorly understood. With a combined theoretical and experimental approach, we show that the rate of balanced excitatory and inhibitory synaptic input modulates the magnitude and timescale of pairwise spike train correlation. High rate synaptic inputs promote spike time synchrony rather than long timescale spike rate correlations, while low rate synaptic inputs produce opposite results. This correlation shaping is due to a combination of enhanced high frequency input transfer and reduced firing rate gain in the high input rate state compare...
Neurons communicate and transmit information predominantly through spikes. Given that experimentally...
Pairwise correlations among spike trains recorded in vivo have been fre-quently reported. It has bee...
Throughout the central nervous system, the timescale over which pairs of neural spike trains are cor...
Stimulus properties, attention, and behavioral context influence correlations between the spike time...
Stimulus properties, attention, and behavioral context influence correlations between the spike time...
Both single neuron and neural population spiking statistics, such as firing rate or temporal pattern...
We study how threshold models and neocortical neurons transfer temporal and interneuronal input corr...
AbstractThe spike trains that transmit information between neurons are stochastic. We used the theor...
In many neural systems, neurons ’ firing rates in response to a suprathreshold current decrease with...
Abstract It was often reported and suggested that the synchronization of spikes can occur without ch...
Neurons are sensitive to correlations among synaptic inputs. However, analytical models that explici...
Correlations in spike-train ensembles can seriously impair the encoding of information by their spat...
Synaptic plasticity is believed to be the biological substrate underlying learning and memory. One o...
<div><p>Novel experimental techniques reveal the simultaneous activity of larger and larger numbers ...
1. We reexamine the possibilities for analyzing and interpreting the time course of correlation in s...
Neurons communicate and transmit information predominantly through spikes. Given that experimentally...
Pairwise correlations among spike trains recorded in vivo have been fre-quently reported. It has bee...
Throughout the central nervous system, the timescale over which pairs of neural spike trains are cor...
Stimulus properties, attention, and behavioral context influence correlations between the spike time...
Stimulus properties, attention, and behavioral context influence correlations between the spike time...
Both single neuron and neural population spiking statistics, such as firing rate or temporal pattern...
We study how threshold models and neocortical neurons transfer temporal and interneuronal input corr...
AbstractThe spike trains that transmit information between neurons are stochastic. We used the theor...
In many neural systems, neurons ’ firing rates in response to a suprathreshold current decrease with...
Abstract It was often reported and suggested that the synchronization of spikes can occur without ch...
Neurons are sensitive to correlations among synaptic inputs. However, analytical models that explici...
Correlations in spike-train ensembles can seriously impair the encoding of information by their spat...
Synaptic plasticity is believed to be the biological substrate underlying learning and memory. One o...
<div><p>Novel experimental techniques reveal the simultaneous activity of larger and larger numbers ...
1. We reexamine the possibilities for analyzing and interpreting the time course of correlation in s...
Neurons communicate and transmit information predominantly through spikes. Given that experimentally...
Pairwise correlations among spike trains recorded in vivo have been fre-quently reported. It has bee...
Throughout the central nervous system, the timescale over which pairs of neural spike trains are cor...