2010Unpublished venueRequires access

Global dynamics behaviors for an SIR epidemic disease model with distributed time delays and pulse vaccination

Tongqian Zhang, Yi Song, Xinzhu Meng

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Abstract

In this paper, by using impulsive delay differential equation, we investigate the dynamics of an SIR epidemic disease model with distributed times delay and pulse vaccination. We show that the conditions for global attractivity of “infection-free” periodic solution and permanence of the “infection” depend on time delay and pulse vaccination.

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What this paper is about

In this paper, by using impulsive delay differential equation, we investigate the dynamics of an SIR epidemic disease model with distributed times delay and pulse vaccination. We show that the conditions for global attractivity of “infection-free” periodic solution and permanence of the “infection” depend on time delay and pulse vaccination.

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Available abstract

In this paper, by using impulsive delay differential equation, we investigate the dynamics of an SIR epidemic disease model with distributed times delay and pulse vaccination. We show that the conditions for global attractivity of “infection-free” periodic solution and permanence of the “infection” depend on time delay and pulse vaccination.

Key concepts: Vaccination, Epidemic model, Pulse (music), Computer science, Dynamics (music), Epidemic disease, Virology, Medicine

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