This paper considers a basic model for a spread of two diseases in a population. The equilibria of the model are found, and their stability is investigated. In particular, we prove the stability result for a disease-free and a one-disease steady-states. Bifurcation diagrams are used to analyse the stability of possible branches of equilibria, and also they indicate the existence of a co-infected equilibrium with both diseases present. Finally, numerical simulations of the model are performed to study the behaviour of the solutions in different regions of the parameter spac
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
In this paper, a mathematical model consisting of the prey- predator involving infectious disease in...
In this paper, we investigated an epidemic model of a vector-borne disease with treatment. The repro...
This paper considers a basic model for a spread of two diseases in a population. The equilibria of t...
Viruses and bacteria responsible for infectious diseases often mutate and are carried between geogra...
Infectious diseases are a serious problem for public health and spark the interest in interdisciplin...
A susceptible-infectious-susceptible (SIS) epidemic model that describes the coinfection and cotrans...
An SIS epidemic model in two competing species with the mass action incidence is formulated and anal...
A basic simple SIS epidemic model is proposed and analyzed. The population is infected by a transmis...
This paper studies the effects of the spread of two similarly transmitted infectious diseases with c...
We show that incorporating spatial dispersal of individuals into a simple vaccination epidemic model...
In this paper we consider models of two competing species that are both affected by a pathogen which...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
An epidemic model with distributed time delay is derived to describe the dynamics of in-fectious dis...
The mathematical model of spreading of the immuneless contagious disease in unhomogenious population...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
In this paper, a mathematical model consisting of the prey- predator involving infectious disease in...
In this paper, we investigated an epidemic model of a vector-borne disease with treatment. The repro...
This paper considers a basic model for a spread of two diseases in a population. The equilibria of t...
Viruses and bacteria responsible for infectious diseases often mutate and are carried between geogra...
Infectious diseases are a serious problem for public health and spark the interest in interdisciplin...
A susceptible-infectious-susceptible (SIS) epidemic model that describes the coinfection and cotrans...
An SIS epidemic model in two competing species with the mass action incidence is formulated and anal...
A basic simple SIS epidemic model is proposed and analyzed. The population is infected by a transmis...
This paper studies the effects of the spread of two similarly transmitted infectious diseases with c...
We show that incorporating spatial dispersal of individuals into a simple vaccination epidemic model...
In this paper we consider models of two competing species that are both affected by a pathogen which...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
An epidemic model with distributed time delay is derived to describe the dynamics of in-fectious dis...
The mathematical model of spreading of the immuneless contagious disease in unhomogenious population...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
In this paper, a mathematical model consisting of the prey- predator involving infectious disease in...
In this paper, we investigated an epidemic model of a vector-borne disease with treatment. The repro...