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Lyapunov functional techniques for the global stability analysis of a delayed SIRS epidemic model 

Enatsu, Y.; Nakata, Y.; Muroya, Y. (2012-12-31)
In this paper, we study the global dynamics of a delayed SIRS epidemic model for transmission of disease with a class of nonlinear incidence rates of the form βS(t)∫ 0 hf(τ)G(I(t-τ))dτ. Applying Lyapunov functional techniques ...
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Global stability of sirs epidemic models with a class of nonlinear incidence rates and distributed delays 

Enatsu, Y.; Nakata, Y.; Muroya, Y. (2012-12-31)
In this article, we establish the global asymptotic stability of a disease-free equilibrium and an endemic equilibrium of an SIRS epidemic model with a class of nonlinear incidence rates and distributed delays. By using ...
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On the global stability of an SIRS epidemic model with distributed delays 

Nakata, Y.; Enatsu, Y.; Muroya, Y. (2011-12-31)
In this paper, we establish the global asymptotic stability of an endemic equilibrium for an SIRS epidemic model with distributed time delays. It is shown that the global stability holds for any rate of immunity loss, if ...
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Global stability of SIR epidemic models with a wide class of nonlinear incidence rates and distributed delays 

Enatsu, Y.; Nakata, Y.; Muroya, Y. (2011-12-31)
In this paper, we establish the global asymptotic stability of equi-libria for an SIR model of infectious diseases with distributed time delays gov-erned by a wide class of nonlinear incidence rates. We obtain the global ...
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Monotone iterative techniques to SIRS epidemic models with nonlinear incidence rates and distributed delays 

Muroya, Y.; Enatsu, Y.; Nakata, Y. (2011-12-31)
In this paper, for SIRS epidemic models with a class of nonlinear incidence rates and distributed delays of the forms βS(t)∫0hk(τ)G(I(t-τ) )dτ, we establish the global asymptotic stability of the disease-free equilibrium ...

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AuthorEnatsu, Y. (5)
Muroya, Y. (5)
Nakata, Y. (5)Subject
Distributed delays (5)
Global asymptotic stability (5)Lyapunov functional (4)SIRS epidemic model (4)Nonlinear incidence rate (3)Nonlinear incidence (1)Permanence (1)SIR epidemic models (1)... másFecha2012 (2)2011 (3)

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