In this paper, we focus on the emergence of diverse neuronal oscillations arising in a mixed population of neurons with different excitability properties. These properties produce mixed mode oscillations (MMOs) characterized by the combination of large amplitudes and alternate subthreshold or small amplitude oscillations. Considering the biophysically plausible, Izhikevich neuron model, we demonstrate that various MMOs, including MMBOs (mixed mode bursting oscillations) and synchronized tonic spiking appear in a randomly connected network of neurons, where a fraction of them is in a quiescent (silent) state and the rest in self-oscillatory (firing) states. We show that MMOs and other patterns of neural activity depend on the number of oscil...
Dynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoked to explain the irreg...
Computational models at different space-time scales allow us to understand the fundamental mechanism...
A prominent feature of the dynamics of large neuronal networks are the synchrony- driven collective ...
Activity types of isolated neurons and their models may be generically classified as hyper- and depo...
Upon sensory stimulation, primary cortical areas readily engage in narrow-band rhythmic activity bet...
We investigate a model for neural activity that generates long range temporal correlations, 1/ f noi...
Population-wide synchronized rhythmic bursts of electrical activity are present in a variety of ne...
Network bursting is the most common type of spontaneous activity of dissociated neuronal cultures [1...
Understanding the dynamic behavior of neuronal networks in silico is crucial for tackling the analys...
Population-wide synchronized rhythmic bursts of electrical activity are present in a variety of ne...
Fast oscillations of the population firing rate in the gamma range (50-200 Hz), where each individua...
We study an excitatory all-to-all coupled network of N spiking neurons with synaptically filtered ba...
Networks of neurons produce diverse patterns of oscillations, arising from the network's global prop...
International audienceDynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoke...
Synchronized cortical activities in the central nervous systems of mammals are crucial for sensory p...
Dynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoked to explain the irreg...
Computational models at different space-time scales allow us to understand the fundamental mechanism...
A prominent feature of the dynamics of large neuronal networks are the synchrony- driven collective ...
Activity types of isolated neurons and their models may be generically classified as hyper- and depo...
Upon sensory stimulation, primary cortical areas readily engage in narrow-band rhythmic activity bet...
We investigate a model for neural activity that generates long range temporal correlations, 1/ f noi...
Population-wide synchronized rhythmic bursts of electrical activity are present in a variety of ne...
Network bursting is the most common type of spontaneous activity of dissociated neuronal cultures [1...
Understanding the dynamic behavior of neuronal networks in silico is crucial for tackling the analys...
Population-wide synchronized rhythmic bursts of electrical activity are present in a variety of ne...
Fast oscillations of the population firing rate in the gamma range (50-200 Hz), where each individua...
We study an excitatory all-to-all coupled network of N spiking neurons with synaptically filtered ba...
Networks of neurons produce diverse patterns of oscillations, arising from the network's global prop...
International audienceDynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoke...
Synchronized cortical activities in the central nervous systems of mammals are crucial for sensory p...
Dynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoked to explain the irreg...
Computational models at different space-time scales allow us to understand the fundamental mechanism...
A prominent feature of the dynamics of large neuronal networks are the synchrony- driven collective ...