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首页> 外文期刊>Journal of biological dynamics >Global dynamics of a tuberculosis model with fast and slow progression and age-dependent latency and infection
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Global dynamics of a tuberculosis model with fast and slow progression and age-dependent latency and infection

机译:快速缓慢缓慢和年龄依赖性延迟和感染结核模型的全球动态

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In this paper, a mathematical model describing tuberculosis transmission with fast and slow progression and age-dependent latency and infection is investigated. It is assumed in the model that infected individuals can develop tuberculosis by either of two pathogenic mechanisms: direct progression or endogenous reactivation. It is shown that the transmission dynamics of the disease is fully determined by the basic reproduction number. By analyzing corresponding characteristic equations, the local stability of a disease-free steady state and an endemic steady state of the model is established. By using the persistence theory for infinite dimensional system, it is proved that the system is uniformly persistent when the basic reproduction number is greater than unity. By constructing suitable Lyapunov functionals and using LaSalle's invariance principle, it is verified that the global dynamics of the system is completely determined by the basic reproduction number.
机译:本文研究了描述具有快速和缓慢进展和年龄依赖性潜伏和感染的结核病传播的数学模型。在该模型中假设感染的个体可以通过两种致病机制中的任一种产生结核病:直接进展或内源性再活化。结果表明,该疾病的透射动力学通过基本再现数完全决定。通过分析相应的特性方程,建立了无病稳态的局部稳定性和模型的流动稳态。通过使用无限尺寸系统的持久性理论,事实证明,当基本再现数大于单位时,系统是均匀的持久性。通过构建合适的Lyapunov功能并使用Lasalle的不变原理,验证系统的全局动态完全由基本再现号决定。

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