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This paper presents a nonlinear family of stochastic SEIRS models for diseases such as malaria in a highly random environment with noises from the disease transmission and natural death rates,and also from the random delays of the incubation and immunity periods.Improved analytical methods and local martingale characterizations are applied to find conditions for the disease to persist near an endemic steady state,and also for the disease to remain permanently in the system over time.Moreover,the ergodic stationary distribution for the stochastic process describing the disease dynamics is defined,and the statistical characteristics of the distribution are given mumerically.The results of this study show that the disease will persist and become permanent in the system,regardless of(1)whether the noises are from the discase transmission rate and/or from the natural death rates or(2)whether the delays in the system are constant or random for individuals in the system.Furthermore,it is shown that"weak"noise is associated with the existence of an endemic stationary distribution for the disease,while"strong"noise is associated with extinction of the population over time.Numerical simulation examples for Plasnodiurr vitar malaria are given.
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篇名 The stationary distribution and stochastic persistence for a class of disease models:Case study of malarial
来源期刊 生物数学学报:英文版 学科 数学
关键词 Basic reproduction number permanence in the mean local martingale Lyapunov functional technique white noise intensity stationary distribution
年,卷(期) 2020,(4) 所属期刊栏目
研究方向 页码范围 49-107
页数 59页 分类号 O17
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Basic
reproduction
number
permanence
in
the
mean
local
martingale
Lyapunov
functional
technique
white
noise
intensity
stationary
distribution
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研究分支
研究去脉
引文网络交叉学科
相关学者/机构
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生物数学学报:英文版
其它
1793-5245
Singapore596224,or 2
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68
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0
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0
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