We introduce an epidemic model with varying infectivity and general exposed and infectious periods, where the infectivity of each individual is a random function of the elapsed time since infection, those function being i.i.d. for the various individuals in the population. This approach models infection-age dependent infectivity, and extends the classical SIR and SEIR models. We focus on the infectivity process (total force of infection at each time), and prove a functional law of large number (FLLN). In the deterministic limit of this LLN, the infectivity process and the susceptible process are determined by a two-dimensional deterministic integral equation. From its solutions, we then derive the exposed, infectious and recovered processes...
We analyse SIS epidemics amongst populations partitioned into households. The analysis considers bot...
A framework is developed that enables the modeling of the various mechanisms of epidemic processes. ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
We introduce an epidemic model with varying infectivity and general exposed and infectious periods, ...
International audienceWe introduce an epidemic model with varying infectivity and general exposed an...
International audienceWe study epidemic models where the infectivity of each individual is a random ...
We study epidemic models where the infectivity of each individual is a random function of the infect...
We study an individual-based stochastic epidemic model in which infected individuals become suscepti...
A stochastic continuous-infection model is developed that describes the evolution of an infectious d...
A stochastic continuous-infection model is developed that describes the evolution of an infectious d...
We investigate a stochastic model of infection dynamics based on the Susceptible-Infective-Recovered...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this paper, we prove functional central limit theorems (FCLTs) for a stochastic epidemic model wi...
We analyse SIS epidemics amongst populations partitioned into households. The analysis considers bot...
A framework is developed that enables the modeling of the various mechanisms of epidemic processes. ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
We introduce an epidemic model with varying infectivity and general exposed and infectious periods, ...
International audienceWe introduce an epidemic model with varying infectivity and general exposed an...
International audienceWe study epidemic models where the infectivity of each individual is a random ...
We study epidemic models where the infectivity of each individual is a random function of the infect...
We study an individual-based stochastic epidemic model in which infected individuals become suscepti...
A stochastic continuous-infection model is developed that describes the evolution of an infectious d...
A stochastic continuous-infection model is developed that describes the evolution of an infectious d...
We investigate a stochastic model of infection dynamics based on the Susceptible-Infective-Recovered...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this survey paper, we review the recent advances in individual based non--Markovian epidemic mode...
In this paper, we prove functional central limit theorems (FCLTs) for a stochastic epidemic model wi...
We analyse SIS epidemics amongst populations partitioned into households. The analysis considers bot...
A framework is developed that enables the modeling of the various mechanisms of epidemic processes. ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...