Random networks of integrate-and-fire neurons with strong current-based synapses can, unlike previously believed, assume stable states of sustained asynchronous and irregular firing, even without external random background or pacemaker neurons. We analyze the mechanisms underlying the emergence, lifetime and irregularity of such self-sustained activity states. We first demonstrate how the competition between the mean and the variance of the synaptic input leads to a non-monotonic firing-rate transfer in the network. Thus, by increasing the synaptic coupling strength, the system can become bistable: In addition to the quiescent state, a second stable fixed-point at moderate firing rates can emerge by a saddle-node bifurcation. Inherently gen...
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 ...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
Random networks of integrate-and-fire neurons with strong current-based synapses can, unlike previou...
There is consensus in the current literature that stable states of asynchronous irregular spiking ac...
Self-sustained activity in the brain is observed in the absence of external stimuli and contributes ...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
The study of balanced networks of excitatory and inhibitory neurons has led to several open question...
Cortical neurons are characterized by irregular firing and a broad distribution of rates. The balanc...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
We investigate theoretically the conditions for the emergence of synchronous activity in large netwo...
We investigate the occurrence of quasisynchronous events in a random network of excitatory leaky int...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
Firing patterns in the central nervous system often exhibit strong temporal irregularity and conside...
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 ...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...
Random networks of integrate-and-fire neurons with strong current-based synapses can, unlike previou...
There is consensus in the current literature that stable states of asynchronous irregular spiking ac...
Self-sustained activity in the brain is observed in the absence of external stimuli and contributes ...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
The study of balanced networks of excitatory and inhibitory neurons has led to several open question...
Cortical neurons are characterized by irregular firing and a broad distribution of rates. The balanc...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
Large sparse circuits of spiking neurons exhibit a balanced state of highly irregular activity under...
We investigate theoretically the conditions for the emergence of synchronous activity in large netwo...
We investigate the occurrence of quasisynchronous events in a random network of excitatory leaky int...
International audienceRecurrent networks of non-linear units display a variety of dynamical regimes ...
Firing patterns in the central nervous system often exhibit strong temporal irregularity and conside...
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 ...
International audienceThe emergence of synchrony in the activity of large, heterogeneous networks of...