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Optimal control applied to a temperature dependent schistosomiasis model

机译:适用于温度依赖性血吸虫病模型的最佳控制

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Schistosomiasis, the most common water-borne infection worldwide, continues to pose a serious public health challenge in developing nations and to travellers who visit these endemic regions. We apply optimal control on a temperature dependent schistosomiasis model. Our optimal control aims to minimize the pre-patent and patent human population at minimal costs. Our analysis and results throughout the paper highlight the impact of optimal control shaping the future patterns of the disease. Our results show that optimal control can significantly reduce the schistosomiasis burden in the community and in some instance by more than three-fold. In addition, our results show that with low costs the optimal strategy will be carried out at or close to its maximum strength for a sufficiently long period of time, so as minimize the exposure and infection. With high costs, however, the control have to be implemented with reduced or even minimum, strength, to achieve an optimal balance between the costs and effects of control. Our findings suggest that optimal control theory can be useful on minimizing the infected host and vector. The study and its findings can provide a useful framework for designing cost-effective control for schistosomiasis.
机译:血吸虫病,全世界最常见的水性感染,继续在发展中国家和访问这些地方区域的旅行者身上提出严重的公共卫生挑战。我们对温度依赖性血吸虫病模型进行最佳控制。我们的最佳控制旨在以最少的成本最小化专利预先和专利人群。我们在整个纸张中的分析和结果突出了最佳控制塑造未来疾病模式的影响。我们的研究结果表明,最佳控制可显着降低社区中的血吸虫病负担,并在某种情况下超过三倍。此外,我们的结果表明,由于低成本,最佳策略将在其最大长时间内或靠近其最大强度,从而使暴露和感染最小化。然而,具有高成本,必须通过减少甚至最小,强度来实现控制,以在控制成本和效果之间实现最佳平衡。我们的研究结果表明,最佳控制理论对最小化受感染的宿主和载体有用。该研究及其研究结果可以为设计血吸虫病的成本有效控制提供有用的框架。

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