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MODELING AND OPTIMAL CONTROL OF HIV/AIDS PREVENTION THROUGH PREP

机译:通过预防对艾滋病毒/艾滋病的建模和最佳控制

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Pre-exposure prophylaxis (PrEP) consists in the use of an antiretroviral medication to prevent the acquisition of HIV infection by uninfected individuals and has recently demonstrated to be highly efficacious for HIV prevention. We propose a new epidemiological model for HIV/AIDS transmission including PrEP. Existence, uniqueness and global stability of the disease free and endemic equilibriums are proved. The model with no PrEP is calibrated with the cumulative cases of infection by HIV and AIDS reported in Cape Verde from 1987 to 2014, showing that it predicts well such reality. An optimal control problem with a mixed state control constraint is then proposed and analyzed, where the control function represents the PrEP strategy and the mixed constraint models the fact that, due to PrEP costs, epidemic context and program coverage, the number of individuals under PrEP is limited at each instant of time. The objective is to determine the PrEP strategy that satisfies the mixed state control constraint and minimizes the number of individuals with pre-AIDS HIV-infection as well as the costs associated with PrEP. The optimal control problem is studied analytically. Through numerical simulations, we demonstrate that PrEP reduces HIV transmission significantly.
机译:暴露前预防(PrEP)在于使用抗逆转录病毒药物来防止未感染个体感染艾滋病毒,最近证明对预防艾滋病毒非常有效。我们为包括PrEP在内的HIV / AIDS传播提出了一种新的流行病学模型。证明了无病和地方病平衡的存在,唯一性和全局稳定性。没有PrEP的模型已根据1987年至2014年佛得角报道的艾滋病毒和艾滋病感染的累计病例进行了校准,表明该模型可以很好地预测这种现实。然后提出并分析了具有混合状态控制约束的最优控制问题,其中控制功能代表PrEP策略,混合约束对以下事实进行建模:由于PrEP成本,流行病情和计划覆盖范围,在PrEP下的个体数量在每个时刻都是有限的。目的是确定满足混合状态控制约束条件并最大限度地减少艾滋病前感染艾滋病毒的人数以及与PrEP相关的费用的PrEP策略。通过分析研究了最优控制问题。通过数值模拟,我们证明PrEP可以显着减少HIV传播。

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