基于疫苗和药物联合治疗策略的COVID-19年龄结构数学模型研究

Q2 Mathematics
Bishal Chhetri, D. Vamsi, D. Prakash, S. Balasubramanian, C. Sanjeevi
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引用次数: 3

摘要

在本研究中,我们建立了一个包含COVID-19年龄特异性传播动态的数学模型,以评估疫苗接种和治疗策略在减少COVID-19负担规模方面的作用。首先建立了非控制模型解的正性和有界性,计算了基本再现数,并进行了稳定性分析。然后,我们以疫苗接种和治疗作为控制变量,提出了一个最优控制问题,并对其进行了研究。使用庞特里亚金最小原理来获得最佳的疫苗接种率和治疗率。针对与疫苗接种成本相关的不同权重常数值和不同疫苗效力水平,分析了最优疫苗接种和治疗政策。这些研究结果表明,联合策略(疫苗接种和治疗)在最大限度地减少感染和疾病引起的死亡率方面效果最好。为了最大限度地减少COVID-19感染和COVID-19引起的死亡,最优控制策略应优先考虑年龄大于40岁的人群。改变疫苗接种成本发现,充分接种疫苗(77%以上)可减少COVID-19感染规模和死亡人数。我们还分析了不同疫苗抗感染效果的感染曲线,发现疫苗效果越好,感染人数和COVID引起的死亡人数就越少。这些发现将有助于政策制定者制定有效的战略,以控制COVID-19大流行的规模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Age Structured Mathematical Modeling Studies on COVID-19 with respect to Combined Vaccination and Medical Treatment Strategies
Abstract In this study, we develop a mathematical model incorporating age-specific transmission dynamics of COVID-19 to evaluate the role of vaccination and treatment strategies in reducing the size of COVID-19 burden. Initially, we establish the positivity and boundedness of the solutions of the non controlled model and calculate the basic reproduction number and do the stability analysis. We then formulate an optimal control problem with vaccination and treatment as control variables and study the same. Pontryagin’s Minimum Principle is used to obtain the optimal vaccination and treatment rates. Optimal vaccination and treatment policies are analysed for different values of the weight constant associated with the cost of vaccination and different efficacy levels of vaccine. Findings from these suggested that the combined strategies (vaccination and treatment) worked best in minimizing the infection and disease induced mortality. In order to reduce COVID-19 infection and COVID-19 induced deaths to maximum, it was observed that optimal control strategy should be prioritized to the population with age greater than 40 years. Varying the cost of vaccination it was found that sufficient implementation of vaccines (more than 77 %) reduces the size of COVID-19 infections and number of deaths. The infection curves varying the efficacies of the vaccines against infection were also analysed and it was found that higher efficacy of the vaccine resulted in lesser number of infections and COVID induced deaths. The findings would help policymakers to plan effective strategies to contain the size of the COVID-19 pandemic.
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来源期刊
Computational and Mathematical Biophysics
Computational and Mathematical Biophysics Mathematics-Mathematical Physics
CiteScore
2.50
自引率
0.00%
发文量
8
审稿时长
30 weeks
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