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Mathematical Analysis and Treatment for a Delayed Hepatitis B Viral Infection Model with the Adaptive Immune Response and DNA-Containing Capsids

机译:具有自适应免疫应答和DNA衣壳的乙型肝炎病毒延迟感染模型的数学分析和治疗

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摘要

We model the transmission of the hepatitis B virus (HBV) by six differential equations that represent the reactions between HBV with DNA-containing capsids, the hepatocytes, the antibodies and the cytotoxic T-lymphocyte (CTL) cells. The intracellular delay and treatment are integrated into the model. The existence of the optimal control pair is supported and the characterization of this pair is given by the Pontryagin’s minimum principle. Note that one of them describes the effectiveness of medical treatment in restraining viral production, while the second stands for the success of drug treatment in blocking new infections. Using the finite difference approximation, the optimality system is derived and solved numerically. Finally, the numerical simulations are illustrated in order to determine the role of optimal treatment in preventing viral replication.
机译:我们通过六个微分方程来模拟乙型肝炎病毒(HBV)的传播,这六个微分方程代表HBV与含DNA的衣壳,肝细胞,抗体和细胞毒性T淋巴细胞(CTL)细胞之间的反应。细胞内延迟和治疗被整合到模型中。支持最优控制对的存在,并且庞特里亚金的最小原理给出了该对的特征。请注意,其中一个描述了药物治疗在抑制病毒产生中的有效性,而第二个代表药物治疗在阻止新感染方面的成功。使用有限差分逼近,得出最优系统并对其进行数值求解。最后,说明了数值模拟,以确定最佳治疗在预防病毒复制中的作用。

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