Volume 42 Issue 4
Apr.  2021
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ZHAI Yijiang, LIN Xiaolin, LI Jianquan, LIANG Weiping. Research on the Spread of COVID-19 Based on the SEIR Model for Susceptible Populations With Basic Medical History[J]. Applied Mathematics and Mechanics, 2021, 42(4): 413-421. doi: 10.21656/1000-0887.410313
Citation: ZHAI Yijiang, LIN Xiaolin, LI Jianquan, LIANG Weiping. Research on the Spread of COVID-19 Based on the SEIR Model for Susceptible Populations With Basic Medical History[J]. Applied Mathematics and Mechanics, 2021, 42(4): 413-421. doi: 10.21656/1000-0887.410313

Research on the Spread of COVID-19 Based on the SEIR Model for Susceptible Populations With Basic Medical History

doi: 10.21656/1000-0887.410313
Funds:  The National Natural Science Foundation of China(11971281)
  • Received Date: 2020-10-16
  • Rev Recd Date: 2020-11-27
  • Publish Date: 2021-04-01
  • Based on the classic SEIR infectious disease model, a new type of new coronary pneumonia transmission model containing a population with a history of basic diseases was established, the basic reproduction number of its transmission was obtained, and the existence of the equilibrium of the model was determined. Through construction of the Lyapunov function and with the LaSalle invariance principle, the global stability of the equilibrium was proved, and the theoretical research results were also verified by numerical simulation. At the same time, the influence of the transformation rate coefficient from no basic medical disease to basic disease on the disease transmission was discussed. It is found that, the mathematical model considering no basic disease will underestimate the basic reproduction number of disease transmission and the scale of infection. Numerical simulations also show the definite impact of the transformation rate coefficient from no basic disease to basic disease on the peak number of the infected population.
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  • [1]
    刘昌孝, 伊秀林, 王玉丽, 等. 认识新冠病毒(SARS-CoV-2), 探讨抗病毒药物研发策略[J]. 药物评价研究, 2020,〖STHZ〗 43(3): 361-371.(LIU Changxiao, YI Xiulin, WANG Yuli, et al. Understanding coronavirus (SARS-COV-2) and thinking about strategy of antiviral drug development[J]. Drug Evaluation Research,2020,43(3): 361-371.(in Chinese))
    [2]
    六类人易被新冠病毒攻击[EB/OL]. (2021-03-22)[2020-04-16]. https://k.sina.com.cn/article_1774057271_69bdf73701900qufs.html?cre=tianyi&mod=pcpager_inter&loc=1&r=9&rfunc=56&tj=none&tr=9.
    [3]
    张双德, 郝海. 一类SARS传染病自治动力系统的稳定性分析[J]. 应用数学和力学, 2005,26(7): 840-846.(ZHANG Shuangde, HAO hai. Analysis on the stability of an autonomous dynamics system for SARS epidemic[J]. Applied Mathematics and Mechanics,2005,26(7): 840-846.(in Chinese))
    [4]
    READ J M, BRIDGEN J R E, CUMMINGS D A T, et al. Novel coronavirus 2019- n CoV: early estimation of epidemiological parameters and epidemic predictions[Z]. 2020.
    [5]
    SHEN M W, PENG Z H, XIAO Y N, et al. Modelling the epidemic trend of the 2019 novel coronavirus outbreak in China[Z]. 2020.
    [6]
    WU J T, LEUNG K, LEUNG G M. Nowcasting and forecasting the potential domestic and international spread of the 2019- n CoV outbreak originating in Wuhan, China: a modelling study[J]. Lancet,2020,395(10225): 689-697.
    [7]
    TANG B, WANG X, LI Q, et al. Estimation of the transmission risk of 2019- n Cov and its implication for public health interventions[J]. Journal of Clinical Medicine,2020,〖STHZ〗9(2): 462-482.
    [8]
    周涛, 刘权辉, 杨紫陌, 等. 新型冠状病毒肺炎基本再生数的初步预测[J]. 中国循证医学杂志, 2020,20(3): 359-364.(ZHOU Tao, LIU Quanhui, YANG Zimo, et al. Preliminary prediction of the basic reproduction number of the novel coronavirus 2019- n CoV[J]. Journal of Evidence-based Medicine,2020,20(3): 359-364.(in Chinese))
    [9]
    李承倬, 武文韬, 潘振宇, 等. 基于SIR模型和基本再生数的浙江省新型冠状病毒肺炎防控效果分析[J]. 浙江医学, 2020,42(4): 311-314.(LI Chengzhuo, WU Wentao, PAN Zhenyu, et al. Prevention and control of coronavirus disease 2019 in Zhejiang province based on SIR model and R0[J]. Zhejiang Medical Journal,2020,42(4): 311-314.(in Chinese))
    [10]
    唐三一, 肖燕妮, 彭志行, 等. 新型冠状病毒肺炎疫情预测建模、数据融合与防控策略分析[J]. 中华流行病学杂志, 2020,41(4): 480-484.(TANG Sanyi, XIAO Yanni, PENG Zhihang, et al. Prediction modeling with data fusion and prevention strategy analysis for the COVID-19 outbreak[J]. Chinese Journal of Epidemiology,2020,41(4): 480-484.(in Chinese))
    [11]
    VAN DEN DRIESSCHE P, WATMOUGH J. Reproduction numbers and sub-threshold endemic equilibria for compartmental models of disease transmission[J]. Mathematical Biosciences,2020,180(1/2): 29-48.
    [12]
    NEWHOUSE A. The spectralradius of a matrix (D A Voss)[J]. SIAM Review,1976,18(2): 304-306.
    [13]
    BARBOUR A D, HEESTERBEEK J A P, LUCHSINGER C J. Thresholds and initial growth rates in a model of parasitic infection[J]. The Annals of Applied Probability,1996,6(4): 1045-1074.
    [14]
    LYAPUNOV A M. The general problem of the stability of motion[J]. International Journal of Control,1992,55(3): 531-534.
    [15]
    PARO O. Global stability for a phytoplankton-nutrient system[J]. Journal of Biological Systems,2000,8(2): 195-209.
    [16]
    李倩, 唐彪, WU Jianhong, 等. 缓疫策略执行力与依从性对COVID-19后期疫情及复工影响的模型研究[J]. 陕西师范大学学报(自然科学版), 2020,48(3): 1-6.(LI Qian, TANG Biao, WU Jianhong, et al. Mathematical model reveals the influence of execution and adherence of mitigation strategies on the later period of COVID-19 and resumption of work[J]. Journal of Shaanxi Normal University (Natural Science Edition),2020,48(3): 1-6.(in Chinese))
    [17]
    TANG B, LUIGIBRAGAZZI N, LI Q, et al. An updated estimation of the risk of transmission of the novel coronavirus(2019- n CoV)[J]. Infectious Disease Modelling,2020,5: 248-255.
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