We develop a mathematical model for the disease which can be transmitted via vector and through blood transfusion in host population. The host population is structured by the chronological age. We assume that the instantaneous death and infection rates depend on the age. Applying semigroup theory and so forth, we investigate the existence of equilibria. We also discuss local stability of steady states
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
The health and socioeconomic risks posed by severe and sudden epidemics of infectious diseases have ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
We develop a mathematical model for the disease which can be transmitted via vector and through bloo...
We develop a mathematical model for the disease which can be transmitted via vector and through bloo...
We develop a six-compartment differential equation model for the transmission of COVID-19 by dividin...
In this work, we investigate the Global Stabilityof a Mathematical model that describes the impact o...
In this paper, we construct an infection-age model to study the interaction between viruses and the ...
Vaccination has been included in a model which describes an epidemic. A traveling wave solution toge...
(Communicated by Glenn Webb) Abstract. In this paper, we consider a mathematical model for the sprea...
In this paper, we study the qualitative behavior of a discrete-time epidemic model with vaccination....
We study a vector-borne disease with age of vaccination. A nonlinear incidence rate including mass a...
In this study, we present a mathematical model that describes the dynamics of reinfection under the ...
Abstract. We propose a general class of multistage epidemiological models that allow possible deteri...
AbstractA new mathematical model for the transmission dynamics of a disease subject to the quarantin...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
The health and socioeconomic risks posed by severe and sudden epidemics of infectious diseases have ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
We develop a mathematical model for the disease which can be transmitted via vector and through bloo...
We develop a mathematical model for the disease which can be transmitted via vector and through bloo...
We develop a six-compartment differential equation model for the transmission of COVID-19 by dividin...
In this work, we investigate the Global Stabilityof a Mathematical model that describes the impact o...
In this paper, we construct an infection-age model to study the interaction between viruses and the ...
Vaccination has been included in a model which describes an epidemic. A traveling wave solution toge...
(Communicated by Glenn Webb) Abstract. In this paper, we consider a mathematical model for the sprea...
In this paper, we study the qualitative behavior of a discrete-time epidemic model with vaccination....
We study a vector-borne disease with age of vaccination. A nonlinear incidence rate including mass a...
In this study, we present a mathematical model that describes the dynamics of reinfection under the ...
Abstract. We propose a general class of multistage epidemiological models that allow possible deteri...
AbstractA new mathematical model for the transmission dynamics of a disease subject to the quarantin...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
The health and socioeconomic risks posed by severe and sudden epidemics of infectious diseases have ...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...