Electrical stimulation of neural systems is a key tool for understanding neural dynamics and ultimately for developing clinical treatments. Many applications of electrical stimulation affect large populations of neurons. However, computational models of large networks of spiking neurons are inherently hard to simulate and analyze. We evaluate a reduced mean-field model of excitatory and inhibitory adaptive exponential integrate-and-fire (AdEx) neurons which can be used to efficiently study the effects of electrical stimulation on large neural populations. The rich dynamical properties of this basic cortical model are described in detail and validated using large network simulations. Bifurcation diagrams reflecting the network's state reveal...
International audienceAccurate population models are needed to build very large scale neural models,...
In computational neuroscience, it is of crucial importance to dispose of a model that is able to acc...
International audienceVoltage-sensitive dye imaging (VSDi) has revealed fundamental properties of ne...
Accurate population models are needed to build very large-scale neural models, but their derivation ...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
More interest has been shown in recent years to large-scale spiking simulations of cerebral neuronal...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
21 pages, 7 figuresVoltage-sensitive dye imaging (VSDi) has revealed fundamental properties of neoco...
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...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
International audienceAccurate population models are needed to build very large scale neural models,...
In computational neuroscience, it is of crucial importance to dispose of a model that is able to acc...
International audienceVoltage-sensitive dye imaging (VSDi) has revealed fundamental properties of ne...
Accurate population models are needed to build very large-scale neural models, but their derivation ...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
More interest has been shown in recent years to large-scale spiking simulations of cerebral neuronal...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
International audienceHigher and higher interest has been shown in the recent years to large scale s...
21 pages, 7 figuresVoltage-sensitive dye imaging (VSDi) has revealed fundamental properties of neoco...
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...
International audienceWe present a mean-field formalism able to predict the collective dynamics of l...
We present a mean-field formalism able to predict the collective dynamics of large networks of condu...
International audienceAccurate population models are needed to build very large scale neural models,...
In computational neuroscience, it is of crucial importance to dispose of a model that is able to acc...
International audienceVoltage-sensitive dye imaging (VSDi) has revealed fundamental properties of ne...