Sequences of events in noise-driven excitable systems with slow variables often show serial correlations among their intervals of events. Here, we employ a master equation for generalized non-renewal processes to calculate the interval and count statistics of superimposed processes governed by a slow adaptation variable. For an ensemble of neurons with spike-frequency adaptation, this results in the regularization of the population activity and an enhanced postsynaptic signal decoding. We confirm our theoretical results in a population of cortical neurons recorded in vivo
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...
The calculation of the steady-state probability density for multidimensional stochastic systems that...
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
We propose a Markov process model for spike-frequency adapting neural en-sembles which synthesizes e...
<div><p>The response of a neuron to a time-dependent stimulus, as measured in a Peri-Stimulus-Time-H...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
We study an excitatory all-to-all coupled network of N spiking neurons with synaptically filtered ba...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Neural firing is often subject to negative feedback by adaptationcurrents. These currents can induce...
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...
The calculation of the steady-state probability density for multidimensional stochastic systems that...
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
We propose a Markov process model for spike-frequency adapting neural en-sembles which synthesizes e...
<div><p>The response of a neuron to a time-dependent stimulus, as measured in a Peri-Stimulus-Time-H...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
We study an excitatory all-to-all coupled network of N spiking neurons with synaptically filtered ba...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Neural firing is often subject to negative feedback by adaptationcurrents. These currents can induce...
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...
The calculation of the steady-state probability density for multidimensional stochastic systems that...
Gamma rhythms (30-100 Hz) are an extensively studied synchronous brain state responsible for a numbe...