[1] HEMMER C J, LÖBERMANN M, REISINGER E C. COVID-19: epidemiologie und mutationen[J]. Der Radiologe, 2021, 61(10): 880-887.
[2] 温竞华, 宋晨. 当前疫情形势如何?校园防疫如何做?[N]. 新华每日电讯, 2022-05-07(4).
WEN J, SONG C. What is the current situation of the epidemic? How to do campus epidemic prevention?[N]. Xinhua Daily Telegraph, 2022-05-07(4).
[3] 陈晶. 落细防控举措,抓好社区和校园疫情防控[N]. 人民政协报, 2022-05-11(5).
CHEN J. Implement detailed prevention and control measures, and focus on community and campus epidemic prevention and control[N]. CPPCC DAILY, 2022-05-11(5).
[4] 郭丽菲. 太原学院疫情防控不松懈,筑牢校园“安全网”[N]. 山西青年报, 2022-04-21(8).
GUO L. Taiyuan University remains vigilant in epidemic prevention and control, building a strong campus "safety net"[N]. Shanxi Youth Daily, 2022-04-21(8).
[5] HABIB H. Has Sweden’s controversial covid-19 strategy been successful?[J]. Bmj, 2020, 369: m2376.
[6] 贝壳, 陆默. “群体免疫” 策略: 科学还是赌博[J]. 世界科学, 2020 (5): 10-12.
BEI K, LU M. "Group immunity" strategy: science or gambling[J]. World Science, 2020(5): 10-12.
[7] FERRETTI L, WYMANT C, KENDALL M, et al. Quantifying SARS-CoV-2 transmission suggests epidemic control with digital contact tracing[J]. Science, 2020, 368(6491): eabb6936.
[8] BAKER A, BIAZZO I, BRAUNSTEIN A, et al. Epidemic mitigation by statistical inference from contact tracing data[J]. Proceedings of the National Academy of Sciences, 2021, 118(32): e2106548118.
[9] SOLDANO G J, FRAIRE J A, FINOCHIETTO J M, et al. COVID-19 mitigation by digital contact tracing and contact prevention (app-based social exposure warnings)[J]. Scientific Reports, 2021, 11(1): 1-8.
[10] MATRAJT L, LEUNG T. Evaluating the effectiveness of social distancing interventions to delay or flatten the epidemic curve of coronavirus disease[J]. Emerging Infectious Diseases, 2020, 26(8): 1740-1748.
[11] SILVA P C L, BATISTA P V C, LIMA H S, et al. COVID-ABS: an agent-based model of COVID-19 epidemic to simulate health and economic effects of social distancing interventions[J]. Chaos, Solitons & Fractals, 2020, 139: 110088.
[12] NGONGHALA C N, IBOI E, EIKENBERRY S, et al. Mathematical assessment of the impact of non-pharmaceutical interventions on curtailing the 2019 novel Coronavirus[J]. Mathematical Biosciences, 2020, 325: 108364.
[13] ULLAH S, KHAN M A. Modeling the impact of non-pharmaceutical interventions on the dynamics of novel coronavirus with optimal control analysis with a case study[J]. Chaos, Solitons & Fractals, 2020, 139: 110075.
[14] EICHENBAUM M S, REBELO S, TRABANDT M. The macroeconomics of epidemics[J]. The Review of Financial Studies, 2021, 34(11): 5149-5187.
[15] SUN J, HAO Y. Hierarchicalsemantic community detection in information networks: a complete information graph approach[J]. Tehnicˇki Vjesnik, 2019, 26(6): 1700-1706.
[16] 张长伦, 宁楠, 金占勇. 基于双重网络社团结构的隐私信息传播模型[J]. 信息技术, 2018(9): 38-43.
ZHANG C, NING N, JIN Z. Privacy information spreading model based on community structure on dual netword[J]. Information Technology, 2018(9): 38-43.
[17] MATRAJT L, LEUNG T. Evaluating the effectiveness of social distancing interventions to delay or flatten the epidemic curve of coronavirus disease[J]. Emerging Infectious Diseases, 2020, 26(8): 1740.
[18] SALATHÉ M, JONES J H. Dynamics and control of diseases in networks with community structure[J]. PLoS computational biology, 2010, 6(4): e1000736
[19] ZHANG J, JIN Z. Epidemic spreading on complex networks with community structure[J]. Applied Mathematics and Computation, 2012, 219(6): 2829-2838.
[20] ZHOU M, MA M, ZHANG Y, et al. EDUM: classroom education measurements via large-scale WiFi networks[C]//Proceedings of the 2016 acm international joint conference on pervasive and ubiquitous computing. Heidelberg Germany, 2016: 316-327.
[21] WANG R, CHEN F,CHEN Z, et al. StudentLife: assessing mental health, academic performance and behavioral trends of college students using smartphones[C]//Proceedings of the 2014 ACM International Joint Conference on Pervasive and Ubiquitous Computing. Seattle Washington, 2014: 3-14.
[22] STEHLÉ J, VOIRIN N, BARRAT A, et al. High-resolution measurements of face-to-face contact patterns in a primary school[J].PloS One, 2011, 6(8): e23176.
[23] MASTRANDREA R, FOURNET J, BARRAT A. Contact patterns in a high school: a comparison between data collected using wearable sensors, contact diaries and friendship surveys[J].PloS One, 2015, 10(9): e0136497.
[24] BARTHÉLEMY M, BARRAT A, PASTOR-SATORRAS R, et al. Velocity and hierarchical spread of epidemic outbreaks in scale-free networks[J]. PhysicalReview Lletters, 2004, 92(17): 178701.
[25] QIN Y, ZHONG X, JIANG H, et al. An environment aware epidemic spreading model and immune strategy in complex networks[J]. Applied Mathematics and Computation, 2015, 261: 206-215.
[26] SALATHÉ M, JONES J H. Dynamics and control of diseases in networks with community structure[J].PLoS Computational Biology, 2010, 6(4): e1000736.
[27] 范如国, 王奕博, 罗明, 等. 基于SEIR的新冠肺炎传播模型及拐点预测分析[J]. 电子科技大学学报, 2020, 49(3): 369-374.
FAN R, WANG Y, LUO M, et al. SEIR-Based COVID-19 Transmission Model and Inflection Point Prediction Analysis[J]. Journal of University of Electronic Science and Technology of China, 2020, 49(3): 369-374.
[28] PEGHIN M, BOUZA E, FABRIS M, et al. Low risk of reinfections and relation with serological response after recovery from the first wave of COVID-19[J]. European Journal of Clinical Microbiology & Infectious Diseases, 2021, 40(12): 2597-2604.
[29] WALLINGA J, TEUNIS P. Different epidemic curves for severe acute respiratory syndrome reveal similar impacts of control measures[J]. American Journal of Epidemiology,2004,160(6):509-16.
[30] ROCKX B, KUIKEN T, HERFST S, et al. Comparative pathogenesis of COVID-19, MERS, and SARS in a nonhuman primate model[J]. Science, 2020, 368(6494): 1012-1015.
[31] ZHAO S, LIN Q, RAN J, et al. Preliminary estimation of the basic reproduction number of novel coronavirus (2019-nCoV) in China, from 2019 to 2020: A data-driven analysis in the early phase of the outbreak[J]. InternationalJournal of Infectious Diseases, 2020, 92: 214-217.
[32] SANCHE S, LIN Y T, XU C, et al. High contagiousness and rapid spread of severe acute respiratory syndrome coronavirus 2[J]. Emerging Infectious Diseases, 2020, 26(7): 1470-1477.
[33] GUAN W, NI Z, HU Y, et al. Clinical characteristics of coronavirus disease 2019 in China[J]. New EnglandJournal of Medicine, 2020, 382(18): 1708-1720.
[34] WANG D, HU B, HU C, et al. Clinical characteristics of 138 hospitalized patients with 2019 novel coronavirus-infected pneumonia in Wuhan, China[J]. Jama, 2020, 323(11): 1061-1069.