International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in spatiotemporal dynamics with delays and their capability to be entrained by a periodic input. We then focus on delayed neural fields, which describe the spatiotemporal evolution of neuronal activity. We provide an explicit condition, involving the slope of the activation functions and the strength of coupling, under which delayed neural fields are incrementally stable regardless of communication delays. We finally show how this approach can be used to draw frequency profiles of neuronal populations
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Neural field models with delays define a useful framework for modeling macroscopic parts of the cort...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Neural field models with delays define a useful framework for modeling macroscopic parts of the cort...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
International audienceWe propose a Lyapounov-Krasovskii approach to study incremental stability in s...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
This document is an extended version of the eponym paper published at the IEEE Conference on Decisio...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Extended preprint of the eponym paper to appear in AutomaticaNeural fields are integro-differential ...
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Special issue on Mathematical NeuroscienceInternational audienceIn this paper we study neural field ...
Neural field models with delays define a useful framework for modeling macroscopic parts of the cort...