We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamics of a physiologically-detailed model for fast-spiking cortical neurons. Through a systematic set of approximations, we reduce the conductance based model to two variants of integrate-and-fire models. In the first variant (non-linear integrate-and-fire model), parameters depend on the instantaneous membrane potential whereas in the second variant, they depend on the time elapsed since the last spike (Spike Response Model). The direct reduction links features of the simple models to biophysical features of the full conductance based model. To quantitatively test the predictive power of the Spike Response Model and of the non-linear integrate-a...
Models of the integrate-and-fire type have been widely used in the study of neural systems [1]. Usua...
Firing-rate models provide an attractive approach for studying large neural networks because they ca...
International audienceEvent-driven strategies have been used to simulate spiking neural networks exa...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
We introduce a two-dimensional integrate-and-fire model that combines an exponential spike mechanism...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
The dynamic I–V curve method was recently introduced for the efficient experimental generation of re...
The ability of simple mathematical models to predict the activity of single neurons is important for...
The dynamic I–V curve method was recently introduced for the efficient experimental generation of re...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
This work investigates the capacity of Integrate-and-Fire-type (I&F-type) models to quantitatively p...
The mathematical modelling of behaviour at the single neuron level is an important part of computati...
For simulations of large spiking neuron networks, an accurate, simple and versatile single-neuron mo...
Models of the integrate-and-fire type have been widely used in the study of neural systems [1]. Usua...
Firing-rate models provide an attractive approach for studying large neural networks because they ca...
International audienceEvent-driven strategies have been used to simulate spiking neural networks exa...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
We introduce a two-dimensional integrate-and-fire model that combines an exponential spike mechanism...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
The dynamic I–V curve method was recently introduced for the efficient experimental generation of re...
The ability of simple mathematical models to predict the activity of single neurons is important for...
The dynamic I–V curve method was recently introduced for the efficient experimental generation of re...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
Reduced models of neuronal activity such as Integrate-and-Fire models allow a description of neurona...
This work investigates the capacity of Integrate-and-Fire-type (I&F-type) models to quantitatively p...
The mathematical modelling of behaviour at the single neuron level is an important part of computati...
For simulations of large spiking neuron networks, an accurate, simple and versatile single-neuron mo...
Models of the integrate-and-fire type have been widely used in the study of neural systems [1]. Usua...
Firing-rate models provide an attractive approach for studying large neural networks because they ca...
International audienceEvent-driven strategies have been used to simulate spiking neural networks exa...