Cardona-Salgado Daiver, Campo-Duarte Doris Elena, Sepulveda-Salcedo Lilian Sofia, Vasilieva Olga, Svinin Mikhail
Dept. of Mathematics and Statistics, Universidad Autónoma de Occidente, Cali, Colombia.
Dept. of Mathematics, Universidad del Valle, Cali, Colombia.
Math Biosci Eng. 2021 Mar 29;18(3):2952-2990. doi: 10.3934/mbe.2021149.
In this paper, we propose a dengue transmission model of SIR(S)-SI type that accounts for two sex-structured mosquito populations: the wild mosquitoes (males and females that are Wolbachia-free), and those deliberately infected with either wMel or wMelPop strain of Wolbachia. This epidemiological model has four possible outcomes: with or without Wolbachia and with or without dengue. To reach the desired outcome, with Wolbachia and without dengue, we employ the dynamic optimization approach and then design optimal programs for releasing Wolbachia-carrying male and female mosquitoes. Our discussion is focused on advantages and drawbacks of two Wolbachia strains, wMelPop and wMel, that are recommended for dengue prevention and control. On the one hand, the wMel strain guarantees a faster population replacement, ensures durable Wolbachia persistence in the wild mosquito population, and requiters fewer releases. On the other hand, the wMelPop strain displays better results for averting dengue infections in the human population.
在本文中,我们提出了一种SIR(S)-SI型登革热传播模型,该模型考虑了两种按性别结构划分的蚊子种群:野生蚊子(不含沃尔巴克氏体的雄性和雌性蚊子)以及故意感染了沃尔巴克氏体的wMel或wMelPop菌株的蚊子。这个流行病学模型有四种可能的结果:有或没有沃尔巴克氏体以及有或没有登革热。为了实现期望的结果,即有沃尔巴克氏体且没有登革热,我们采用动态优化方法,然后设计释放携带沃尔巴克氏体的雄性和雌性蚊子的最优方案。我们的讨论聚焦于推荐用于登革热预防和控制的两种沃尔巴克氏体菌株wMelPop和wMel的优缺点。一方面,wMel菌株能保证更快的种群替换,确保沃尔巴克氏体在野生蚊子种群中持久存在,并且所需的释放量更少。另一方面,wMelPop菌株在避免人类感染登革热方面表现出更好的效果。