International audienceRecurrent networks of non-linear units display a variety of dynamical regimes depending on the structure of their synaptic connectivity. A particularly remarkable phenomenon is the appearance of strongly fluctuating, chaotic activity in networks of deterministic, but randomly connected rate units. How this type of intrinsically generated fluctuations appears in more realistic networks of spiking neurons has been a long standing question. To ease the comparison between rate and spiking networks, recent works investigated the dynamical regimes of randomly-connected rate networks with segregated excitatory and inhibitory populations, and firing rates constrained to be positive. These works derived general dynamical mean f...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
Recurrent networks of non-linear units display a variety of dynamical regimes depending on the struc...
<div><p>The brain exhibits temporally complex patterns of activity with features similar to those of...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
Firing patterns in the central nervous system often exhibit strong temporal irregularity and conside...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
<p>Discrete-time rate evolution. <b>a-b.</b> Network discrete-time activity: numerical integration o...
Pattern formation, i.e., the generation of an inhomogeneous spatial activity distribution in a dynam...
<p>The network cohesion and inhibition levels are and , respectively. (<b>A</b>) Firing activity fo...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
Recurrent networks of non-linear units display a variety of dynamical regimes depending on the struc...
<div><p>The brain exhibits temporally complex patterns of activity with features similar to those of...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
Firing patterns in the central nervous system often exhibit strong temporal irregularity and conside...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
<p>Discrete-time rate evolution. <b>a-b.</b> Network discrete-time activity: numerical integration o...
Pattern formation, i.e., the generation of an inhomogeneous spatial activity distribution in a dynam...
<p>The network cohesion and inhibition levels are and , respectively. (<b>A</b>) Firing activity fo...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...