International audienceWe introduce a modified SIR model with memory for the dynamics of epidemic spreading in a constant population of individuals. Each individual is in one of the states susceptible (S), infected (I) or recovered (R). In the state R an individual is assumed to stay immune within a finite time interval. In the first part, we introduce a random life time or duration of immunity which is drawn from a certain probability density function. Once the time of immunity is elapsed an individual makes an instantaneous transition to the susceptible state. By introducing a random duration of immunity a memory effect is introduced into the process which crucially determines the epidemic dynamics. In the second part, we investigate the i...
Most real networks are characterized by connectivity patterns that evolve in time following complex,...
We study how spontaneous reduction in the number of contacts could develop, as a defensive response,...
In this paper, we study the behavior of immune memory against antigenic mutation. Using a dynamic mo...
International audienceWe introduce a modified SIR model with memory for the dynamics of epidemic spr...
Time-varying network topologies can deeply influence dynamical processes mediated by them. Memory ef...
Memory has a great impact on the evolution of every process related to human societies. Among them, ...
We study an extended and modified SIR model of epidemic spread in which susceptible agents during in...
We study how spontaneous reduction in the number of contacts could develop, as a defensive response,...
In the behavioral epidemiology (BE) of infectious diseases, little theoretical effort seems to have ...
In the behavioral epidemiology (BE) of infectious diseases, little theoretical effort seems to have ...
We investigate a stochastic model of infection dynamics based on the Susceptible-Infective-Recovered...
In this thesis we study an epidemic spreading through a finite population where each individual can ...
We introduce an epidemic model with varying infectivity and general exposed and infectious periods, ...
Endemic infectious diseases constantly circulate in human populations, with prevalence fluctuating a...
The simplest delay differential equation describing the dynamics of non-lethal infectious diseases i...
Most real networks are characterized by connectivity patterns that evolve in time following complex,...
We study how spontaneous reduction in the number of contacts could develop, as a defensive response,...
In this paper, we study the behavior of immune memory against antigenic mutation. Using a dynamic mo...
International audienceWe introduce a modified SIR model with memory for the dynamics of epidemic spr...
Time-varying network topologies can deeply influence dynamical processes mediated by them. Memory ef...
Memory has a great impact on the evolution of every process related to human societies. Among them, ...
We study an extended and modified SIR model of epidemic spread in which susceptible agents during in...
We study how spontaneous reduction in the number of contacts could develop, as a defensive response,...
In the behavioral epidemiology (BE) of infectious diseases, little theoretical effort seems to have ...
In the behavioral epidemiology (BE) of infectious diseases, little theoretical effort seems to have ...
We investigate a stochastic model of infection dynamics based on the Susceptible-Infective-Recovered...
In this thesis we study an epidemic spreading through a finite population where each individual can ...
We introduce an epidemic model with varying infectivity and general exposed and infectious periods, ...
Endemic infectious diseases constantly circulate in human populations, with prevalence fluctuating a...
The simplest delay differential equation describing the dynamics of non-lethal infectious diseases i...
Most real networks are characterized by connectivity patterns that evolve in time following complex,...
We study how spontaneous reduction in the number of contacts could develop, as a defensive response,...
In this paper, we study the behavior of immune memory against antigenic mutation. Using a dynamic mo...