ABSTRACT: Seasonality of infectious disease is an important factor in disease incidence, outbreaks, control and prevention. Many mathematical models that incorporate seasonality in the transmission were formulated and analyzed. In this essay a qualitative analysis is given in terms of the effective reproduction number R0, the existence and stability of the disease-free equilibrium and endemic equilibrium of both the SEIR model and seasonal SEIR model. We perform numerical simulations to validate the model formulation
An SEI autonomous model with logistic growth rate and its corresponding nonautonomous model are inve...
AbstractIn this paper, we study a class of periodic SEIRS epidemic models and it is shown that the g...
Research Article published by Hindawi International Journal of Mathematics and Mathematical Sciences...
ABSTRACT: Seasonality of infectious disease is an important factor in disease incidence, outbreaks, ...
Seasonal and non-seasonal Susceptible-Exposed-Infective-Recovered-Susceptible (SEIRS) models are for...
We first study an SIR system of differential equations with periodic coefficients describing an epid...
Abstract Driven by seasonality, many common recurrent infectious diseases are characterized by stron...
Seasonality strongly affects the transmission and spatio-temporal dynamics of many infectious diseas...
Abstract Driven by seasonality, many common recurrent infectious diseases are characterized by stron...
Abstract: In this paper, we propose a discrete-time SEIR epidemic model described by difference equa...
Many infectious diseases like the Spanish flu (1918-1919) or currently SARS-CoV-2, also known as COV...
An SEIR epidemic model with a nonconstant vaccination strategy is studied. This SEIR model has two d...
The annual occurrence of many infectious diseases remains a constant burden to public health systems...
We study the attack rate, that is the total fraction of the population infected each year, for a dis...
In an SIR epidemic model, an infectious disease spreads through a population where each individual i...
An SEI autonomous model with logistic growth rate and its corresponding nonautonomous model are inve...
AbstractIn this paper, we study a class of periodic SEIRS epidemic models and it is shown that the g...
Research Article published by Hindawi International Journal of Mathematics and Mathematical Sciences...
ABSTRACT: Seasonality of infectious disease is an important factor in disease incidence, outbreaks, ...
Seasonal and non-seasonal Susceptible-Exposed-Infective-Recovered-Susceptible (SEIRS) models are for...
We first study an SIR system of differential equations with periodic coefficients describing an epid...
Abstract Driven by seasonality, many common recurrent infectious diseases are characterized by stron...
Seasonality strongly affects the transmission and spatio-temporal dynamics of many infectious diseas...
Abstract Driven by seasonality, many common recurrent infectious diseases are characterized by stron...
Abstract: In this paper, we propose a discrete-time SEIR epidemic model described by difference equa...
Many infectious diseases like the Spanish flu (1918-1919) or currently SARS-CoV-2, also known as COV...
An SEIR epidemic model with a nonconstant vaccination strategy is studied. This SEIR model has two d...
The annual occurrence of many infectious diseases remains a constant burden to public health systems...
We study the attack rate, that is the total fraction of the population infected each year, for a dis...
In an SIR epidemic model, an infectious disease spreads through a population where each individual i...
An SEI autonomous model with logistic growth rate and its corresponding nonautonomous model are inve...
AbstractIn this paper, we study a class of periodic SEIRS epidemic models and it is shown that the g...
Research Article published by Hindawi International Journal of Mathematics and Mathematical Sciences...