Control of Transmission of Hepatitis B Disease with Vaccination, Campaign, and Treatment

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Abstract

Hepatitis B disease is an inflammatory liver disease caused by the hepatitis B virus and can cause liver cirrhosis, cancer, and liver failure. This study discusses the optimal control mathematical model of the dynamics of the spread of hepatitis B. This model consists of six population compartments, namely susceptible to infection with hepatitis B or  Susceptible, Exposed,  infected with acute hepatitis B or Acute Infected , infected with chronic hepatitis B or Chronic Infected, suffering from liver cirrhosis or Liver Cirrhotic, and infected who are recovering or Removed. The system is solved by using Pontryagin's minimum principle and numerically by the forward-backward sweep method. Numerical simulation of the optimal control  shows that with vaccination , campaign on hepatitis B, and treatment, the spread of hepatitis B can be eradicated more quickly. The implementation large amounts of vaccination, campaign on hepatitis B, and treatment  need to be carried out from the start and the proportion can be reduced until a certain time is no longer necessary. The use of controls in the form of vaccinations, campaigns on hepatitis B, and treatment  needs to be carried out for a longer time to prevent the spread of hepatitis B infection. 
通过疫苗接种、运动和治疗控制乙型肝炎的传播
乙型肝炎是一种由乙型肝炎病毒引起的炎症性肝病,可导致肝硬化、癌症和肝功能衰竭。本研究讨论了乙型肝炎传播动力学的最优控制数学模型,该模型由6个人群区室组成,即易感人群或易感人群、暴露人群、急性乙型肝炎感染人群或急性感染人群、慢性乙型肝炎感染人群或慢性感染人群、肝硬化患者或肝硬化患者、康复感染者或移出感染者。采用庞特里亚金最小原理对系统进行了求解,并采用正反向扫描法对系统进行了数值求解。最优控制的数值模拟表明,通过疫苗接种、乙型肝炎运动和治疗,可以更快地根除乙型肝炎的传播。需要从一开始就实施大量的疫苗接种,开展乙型肝炎运动和治疗,并且可以减少比例,直到不再需要某个时间为止。需要在较长时间内以疫苗接种、乙型肝炎运动和治疗的形式使用控制措施,以防止乙型肝炎感染的传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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