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Modelling Optimal Control of In-Host HIV Dynamics Using Different Control Strategies

机译:使用不同控制策略对宿主体内HIV动态的最佳控制进行建模

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HIV is one of the major causes of deaths, especially in Sub-Saharan Africa. In this paper, an in vivo deterministic model of differential equations is presented and analyzed for HIV dynamics. Optimal control theory is applied to investigate the key roles played by the various HIV treatment strategies. In particular, we establish the optimal strategies for controlling the infection using three treatment regimes as the system control variables. We have applied Pontryagin’s Maximum Principle in characterizing the optimality control, which then has been solved numerically by applying the Runge-Kutta forth-order scheme. The numerical results indicate that an optimal controlled treatment strategy would ensure significant reduction in viral load and also in HIV transmission. It is also evident from the results that protease inhibitor plays a key role in virus suppression; this is not to underscore the benefits accrued when all the three drug regimes are used in combination.
机译:艾滋病毒是造成死亡的主要原因之一,尤其是在撒哈拉以南非洲。在本文中,提出了一种微分方程的体内确定性模型,并对其进行了HIV动态分析。最佳控制理论用于研究各种HIV治疗策略所起的关键作用。特别是,我们建立了使用三种治疗方案作为系统控制变量来控制感染的最佳策略。我们已将Pontryagin的极大原理应用于表征最优控制,然后通过应用Runge-Kutta四阶方案对其进行了数值求解。数值结果表明,最佳的控制治疗策略将确保病毒载量和HIV传播的显着降低。从结果还可以看出蛋白酶抑制剂在病毒抑制中起关键作用。这并不是要强调将所有三种药物组合使用会带来的好处。

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