A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain function arises from the collective dynamics of networks of spiking neurons. This challenge has been chiefly addressed through large-scale numerical simulations. Alternatively, researchers have formulated mean-field theories to gain insight into macroscopic states of large neuronal networks in terms of the collective firing activity of the neurons, or the firing rate. However, these theories have not succeeded in establishing an exact correspondence between the firing rate of the network and the underlying microscopic state of the spiking neurons. This has largely constrained the range of applicability of such macroscopic descriptions, parti...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
The topic of this dissertation is the study of the emergence of higher-order correlations in recurre...
The brain is a very complex system in the strong sense. It features a huge amount of individual cell...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
This paper models the dynamics of a large set of interacting neurons within the framework of statist...
Author summary Population models describing the average activity of large neuronal ensembles are a p...
This paper models the dynamics of a large set of interacting neurons within the framework of statist...
The mathematical theory of pattern formation in electrically coupled networks of excitable neurons f...
There is broad consent that understanding the brain's function relies on the investigation of the mu...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
A complex interplay of single-neuron properties and the recurrent network structure shapes the activ...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
The topic of this dissertation is the study of the emergence of higher-order correlations in recurre...
The brain is a very complex system in the strong sense. It features a huge amount of individual cell...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
A major goal of neuroscience, statistical physics, and nonlinear dynamics is to understand how brain...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
This paper models the dynamics of a large set of interacting neurons within the framework of statist...
Author summary Population models describing the average activity of large neuronal ensembles are a p...
This paper models the dynamics of a large set of interacting neurons within the framework of statist...
The mathematical theory of pattern formation in electrically coupled networks of excitable neurons f...
There is broad consent that understanding the brain's function relies on the investigation of the mu...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
A complex interplay of single-neuron properties and the recurrent network structure shapes the activ...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
The topic of this dissertation is the study of the emergence of higher-order correlations in recurre...
The brain is a very complex system in the strong sense. It features a huge amount of individual cell...