Abstract. Synchronous and asynchronous dynamics in all-to-all coupled networks of identical excitatory, current-based, integrate-and-fire (I&F) neurons with delta-impulse coupling currents and Poisson spike-train external drive are studied. Repeating synchronous total firing events, during which all the neurons fire simultaneously, are observed using numerical simulations and found to be the attracting state of the network for a large range of parameters. Mechanisms leading to such events are then described in two regimes of external drive: superthreshold and subthreshold. In the former, a probabilistic argument similar to the proof of the Central Limit Theorem yields the oscillation period, while in the latter, this period is analyzed ...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
We investigate the occurrence of quasisynchronous events in a random network of excitatory leaky int...
Electrical synapses are ubiquitous in the mammalian CNS. Particularly in the neocortex, electrical s...
Dedicated to Andy Majda in honor of his sixtieth birthday. Abstract. Synchronous and asynchronous dy...
Dedicated to the sixtieth birthday of Professor Andrew Majda Abstract. Synchronous and asynchronous ...
We present a mathematical analysis of a networks with Integrate-and-Fire neurons with conductance ba...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
The time-interval sequences and the spatiotemporal patterns of the firings of a coupled neuronal net...
This paper studies the synchronization characteristics of a locally connected, planar network of (le...
International audienceThe Network Noisy Leaky Integrate and Fire equation is among the simplest mode...
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...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
We investigate the occurrence of quasisynchronous events in a random network of excitatory leaky int...
Electrical synapses are ubiquitous in the mammalian CNS. Particularly in the neocortex, electrical s...
Dedicated to Andy Majda in honor of his sixtieth birthday. Abstract. Synchronous and asynchronous dy...
Dedicated to the sixtieth birthday of Professor Andrew Majda Abstract. Synchronous and asynchronous ...
We present a mathematical analysis of a networks with Integrate-and-Fire neurons with conductance ba...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
International audienceWe present a mathematical analysis of a networks with Integrate-and-Fire neuro...
The time-interval sequences and the spatiotemporal patterns of the firings of a coupled neuronal net...
This paper studies the synchronization characteristics of a locally connected, planar network of (le...
International audienceThe Network Noisy Leaky Integrate and Fire equation is among the simplest mode...
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...
Neuronal activity in the central nervous system varies strongly in time and across neuronal populati...
We investigate the occurrence of quasisynchronous events in a random network of excitatory leaky int...
Electrical synapses are ubiquitous in the mammalian CNS. Particularly in the neocortex, electrical s...