School of Mathematics and Statistics, Ningxia University, Yinchuan 750021, China.
State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.
Math Biosci Eng. 2023 Jul 5;20(8):14596-14615. doi: 10.3934/mbe.2023653.
A transmission dynamics model with the logistic growth of cystic echinococcus in sheep was formulated and analyzed. The basic reproduction number was derived and the results showed that the global dynamical behaviors were determined by its value. The disease-free equilibrium is globally asymptotically stable when the value of the basic reproduction number is less than one; otherwise, there exists a unique endemic equilibrium and it is globally asymptotically stable. Sensitivity analysis and uncertainty analysis of the basic reproduction number were also performed to screen the important factors that influence the spread of cystic echinococcosis. Contour plots of the basic reproduction number versus these important factors are presented, too. The results showed that the higher the deworming rate of dogs, the lower the prevalence of echinococcosis in sheep and dogs. Similarly, the higher the slaughter rate of sheep, the lower the prevalence of echinococcosis in sheep and dogs. It also showed that the spread of echinococcosis has a close relationship with the maximum environmental capacity of sheep, and that they have a remarkable negative correlation. This reminds us that the risk of cystic echinococcosis may be underestimated if we ignore the increasing number of sheep in reality.
建立并分析了具有绵羊包虫病 logistic 增长的传播动力学模型。推导了基本再生数,结果表明其值决定了全局动力学行为。当基本再生数小于 1 时,无病平衡点全局渐近稳定;否则,存在唯一的地方平衡点且全局渐近稳定。还对基本再生数进行了敏感性分析和不确定性分析,以筛选影响包虫病传播的重要因素。还绘制了基本再生数与这些重要因素的等高线图。结果表明,狗的驱虫率越高,绵羊和狗的包虫病流行率越低。同样,绵羊的屠宰率越高,绵羊和狗的包虫病流行率越低。结果还表明,包虫病的传播与绵羊的最大环境容量密切相关,且呈显著负相关。这提醒我们,如果忽略现实中绵羊数量的增加,可能会低估包虫病的风险。