A model describing the dynamics related to the spreading of non-lethal infectious diseases in a fixed-size population is proposed. The model consists of a non-linear delay-differential equation describing the time evolution of the increment in the number of infectious individuals and depends upon a limited number of parameters. Predictions are in good qualitative agreement with data on influenza, which is taken to be a representative type of non-lethal infectious disease
This article is an open access article distributed under the terms and conditions of the Creative Co...
We study a simple realistic model for describing the diffusion of an infectious disease on a pop- ul...
In this paper, we have considered a nonautonomous stage‐structured HIV/AIDS epidemic model through v...
The effects of the incubation period q on the dynamics of non-lethal infectious diseases in a fixed-...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
In this work we propose a delay differential equation as a lumped parameter or compartmental infecti...
International audienceWe propose an epidemiological model with distributed recovery and death rates....
International audienceWe propose an epidemiological model with distributed recovery and death rates....
International audienceWe propose an epidemiological model with distributed recovery and death rates....
This article is an open access article distributed under the terms and conditions of the Creative Co...
This article is an open access article distributed under the terms and conditions of the Creative Co...
This article is an open access article distributed under the terms and conditions of the Creative Co...
We study a simple realistic model for describing the diffusion of an infectious disease on a pop- ul...
In this paper, we have considered a nonautonomous stage‐structured HIV/AIDS epidemic model through v...
The effects of the incubation period q on the dynamics of non-lethal infectious diseases in a fixed-...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
The effects of the incubation period "q" on the dynamics of non-lethal infectious diseases in a fixe...
In this work we propose a delay differential equation as a lumped parameter or compartmental infecti...
International audienceWe propose an epidemiological model with distributed recovery and death rates....
International audienceWe propose an epidemiological model with distributed recovery and death rates....
International audienceWe propose an epidemiological model with distributed recovery and death rates....
This article is an open access article distributed under the terms and conditions of the Creative Co...
This article is an open access article distributed under the terms and conditions of the Creative Co...
This article is an open access article distributed under the terms and conditions of the Creative Co...
We study a simple realistic model for describing the diffusion of an infectious disease on a pop- ul...
In this paper, we have considered a nonautonomous stage‐structured HIV/AIDS epidemic model through v...