This paper proposes and analyzes a discrete-time deterministic SIR model with information dependent immunization behaviour, where vaccination coverage at birth during any period of time is a general phenomenological function of the risk of infection that is perceived at the beginning of the period. Results on existence of equilibria, their local stability, and system persistence are proved. Then, by considering the noteworthy subcase of a piecewise linear ‘prevalence-dependent’ coverage function, the local stability of the endemic state is proved and conditions for its global asymptotic stability are given. Some insight on both Neimarck-Sacher and period-doubling bifurcations are provided. Overall we show that prevalence-dependent coverage ...
This paper investigates the effects of vaccination on the dynamics of infectious disease, which is s...
This is an epidemiological SIRV model based study that is de- signed to analyze the impact of vaccin...
In this paper, we study the qualitative behavior of a discrete-time epidemic model with vaccination....
This paper proposes and analyzes a discrete-time deterministic SIR model with information dependent ...
This paper proposes and analyzes a discrete-time deterministic SIR model with information dependent ...
AbstractAn SIR model with vaccination and varying population is formulated. The global dynamics of t...
In this article, we consider the discretized classical Susceptible-Infected-Recovered (SIR) forced e...
When an infectious disease propagates throughout society, the incidence function may rise at first d...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
When an infectious disease propagates throughout society, the incidence function may rise at first d...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
Simple epidemiological models with information dependent vaccination functions can generate sustaine...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
Simple epidemiological models with information dependent vaccination functions can generate sustaine...
This paper investigates the effects of vaccination on the dynamics of infectious disease, which is s...
This is an epidemiological SIRV model based study that is de- signed to analyze the impact of vaccin...
In this paper, we study the qualitative behavior of a discrete-time epidemic model with vaccination....
This paper proposes and analyzes a discrete-time deterministic SIR model with information dependent ...
This paper proposes and analyzes a discrete-time deterministic SIR model with information dependent ...
AbstractAn SIR model with vaccination and varying population is formulated. The global dynamics of t...
In this article, we consider the discretized classical Susceptible-Infected-Recovered (SIR) forced e...
When an infectious disease propagates throughout society, the incidence function may rise at first d...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
When an infectious disease propagates throughout society, the incidence function may rise at first d...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
Simple epidemiological models with information dependent vaccination functions can generate sustaine...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
We study the global behavior of a non-linear susceptible-infectious-removed (SIR)-like epidemic mode...
Simple epidemiological models with information dependent vaccination functions can generate sustaine...
This paper investigates the effects of vaccination on the dynamics of infectious disease, which is s...
This is an epidemiological SIRV model based study that is de- signed to analyze the impact of vaccin...
In this paper, we study the qualitative behavior of a discrete-time epidemic model with vaccination....