[1] |
Lee H, Lee H, Song KH, et al. Impact of public health interventions on seasonal influenza activity during the COVID-19 outbreak in Korea. Clin Infect Dis, 2021; 73, e132−40. doi: 10.1093/cid/ciaa672 |
[2] |
Olsen SJ, Azziz-Baumgartner E, Budd AP, et al. Decreased influenza activity during the COVID-19 Pandemic—United States, Australia, Chile, and South Africa, 2020. MMWR Morb Mortal Wkly Rep, 2020; 69, 1305−9. doi: 10.15585/mmwr.mm6937a6 |
[3] |
Hosseini-Moghaddam SM, He SY, Calzavara A, et al. Association of influenza vaccination with SARS-CoV-2 infection and associated hospitalization and mortality among patients aged 66 years or older. JAMA Network Open, 2022; 5, e2233730. doi: 10.1001/jamanetworkopen.2022.33730 |
[4] |
Grijalva CG, Nguyen HQ, Zhu YW, et al. Estimated effectiveness of influenza vaccines in preventing secondary infections in households. JAMA Netw Open, 2024; 7, e2446814. doi: 10.1001/jamanetworkopen.2024.46814 |
[5] |
Kang J, Jang YY, Kim J, et al. South Korea's responses to stop the COVID-19 pandemic. Am J Infect Control, 2020; 48, 1080−6. doi: 10.1016/j.ajic.2020.06.003 |
[6] |
Kim H. The sociopolitical context of the COVID-19 response in South Korea. BMJ Glob Health, 2020; 5, 002714. |
[7] |
World Health Organization = Organisation mondiale de la S. Weekly Epidemiological Record, 2022, 97, 19. Weekly Epidemiological Record = Relevé épidémiologique hebdomadaire, 2022; 97, 185−08. |
[8] |
Choi YJ, Kim HJ, Park J, et al. Acute and post-acute respiratory complications of SARS-CoV-2 infection: population-based cohort study in South Korea and Japan. Nat Commun, 2024; 15, 4499. doi: 10.1038/s41467-024-48825-w |
[9] |
Bachtiger P, Adamson A, Chow JJ, et al. The impact of the COVID-19 pandemic on the uptake of influenza vaccine: UK-Wide observational study. JMIR Public Health Sur, 2021; 7, e26734. doi: 10.2196/26734 |
[10] |
Kim HJ, Park H, Yon DK, et al. National trends in influenza vaccination coverage rates in South Korea between 2007-2020, including the COVID-19 pandemic: a longitudinal nationwide serial study. Life Cycle, 2023; 3, e9. doi: 10.54724/lc.2023.e9 |
[11] |
Kim SY. Nationwide COVID-19 vaccination coverage and COVID-19 incidence in South Korea, January 2022: a national official report. Life Cycle, 2022; 2, e2. doi: 10.54724/lc.2022.e2 |
[12] |
Kang YW, Ko YS, Kim YJ, et al. Korea community health survey data profiles. Osong Public Health, 2015; 6, 211−7. |
[13] |
Park S, Kim HJ, Kim S, et al. National trends in physical activity among adults in south Korea before and during the COVID-19 pandemic, 2009-2021. JAMA Netw Open, 2023; 6, e2316930. doi: 10.1001/jamanetworkopen.2023.16930 |
[14] |
Dighe A, Cattarino L, Cuomo-Dannenburg G, et al. Response to COVID-19 in South Korea and implications for lifting stringent interventions. BMC Med, 2020; 18, 321. doi: 10.1186/s12916-020-01791-8 |
[15] |
Eum S, Rhee SY. Age, ethnic, and sex disparity in body mass index and waist circumference: a bi-national large-scale study in South Korea and the United States. Life Cycle, 2023; 3, e4. doi: 10.54724/lc.2023.e4 |
[16] |
Lee SW. Methods for testing statistical differences between groups in medical research: statistical standard and guideline of Life Cycle Committee. Life Cycle, 2022; 2, e1. doi: 10.54724/lc.2022.e1 |
[17] |
Dzau V, Yadav P. The influenza imperative: we must prepare now for seasonal and pandemic influenza. Lancet Microbe, 2023; 4, e203−5. doi: 10.1016/S2666-5247(23)00013-7 |
[18] |
Seo J, Lim J. The impact of free vaccination policies under the Korean Influenza National Immunization Program: Trends in influenza vaccination rates in South Korea from 2010 to 2019. PLoS One, 2022; 17, e0262594. doi: 10.1371/journal.pone.0262594 |
[19] |
Nguyen KH, Zhao RT, Chen SY, et al. Exclusive and dual influenza and COVID-19 vaccination among U. S. adults and adolescents in 2021. Ann Med, 2023; 55, 2196436. doi: 10.1080/07853890.2023.2196436 |
[20] |
Wise J. Covid-19: Two rare vaccine side effects detected in large global study. BMJ, 2024; 384, q488. |
[21] |
Murphy J, Vallières F, Bentall RP, et al. Psychological characteristics associated with COVID-19 vaccine hesitancy and resistance in Ireland and the United Kingdom. Nat Commun, 2021; 12, 29. doi: 10.1038/s41467-020-20226-9 |
[22] |
Lee DS, Kim JW, Lee KL, et al. Adverse events following COVID-19 vaccination in South Korea between February 28 and August 21, 2021: a nationwide observational study. Int J Infect Dis, 2022; 118, 173−82. doi: 10.1016/j.ijid.2022.03.007 |
[23] |
Lee M, You M. Direct and Indirect Associations of Media Use With COVID-19 Vaccine Hesitancy in South Korea: Cross-sectional Web-Based Survey. J Med Internet Res, 2022; 24, e32329. doi: 10.2196/32329 |
[24] |
Ruggeri K, Vanderslott S, Yamada Y, et al. Behavioural interventions to reduce vaccine hesitancy driven by misinformation on social media. BMJ, 2024; 384, e076542. |
[25] |
Cowling PBJ, Ali ST, Ng TWY, et al. Impact assessment of non-pharmaceutical interventions against coronavirus disease 2019 and influenza in Hong Kong: an observational study. Lancet Public Health, 2020; 5, e279−88. doi: 10.1016/S2468-2667(20)30090-6 |
[26] |
Solomon DA, Sherman AC, Kanjilal S. Influenza in the COVID-19 Era. JAMA, 2020; 324, 1342−3. doi: 10.1001/jama.2020.14661 |
[27] |
Kwon SL, Kim BI. How COVID-19 shifted the seasonal flu in Korea. Influenza Other Resp, 2023; 17, e13113. doi: 10.1111/irv.13113 |
[28] |
Lin J, Li C, He W. Trends in influenza vaccine uptake before and during the COVID-19 pandemic in the USA. Public Health, 2023; 225, 291−8. doi: 10.1016/j.puhe.2023.10.028 |
[29] |
Del Riccio M, Lina B, Caini S, et al. Letter to the editor: increase of influenza vaccination coverage rates during the COVID-19 pandemic and implications for the upcoming influenza season in northern hemisphere countries and Australia. Eurosurveillance, 2021; 26, 2101143. |
[30] |
Xu ZB, Peng QZ, Song J, et al. Bioinformatic analysis of defective viral genomes in SARS-CoV-2 and its impact on population infection characteristics. Front Immunol, 2024; 15, 1341906. doi: 10.3389/fimmu.2024.1341906 |
[31] |
Ki JS, Kim H. Comparison of estimates and time series stability of Korea community health survey and Korea national health and nutrition examination survey. Epidemiol Health, 2019; 41, e2019012. doi: 10.4178/epih.e2019012 |
[32] |
Chen C, Liu XX, Yan DY, et al. Global influenza vaccination rates and factors associated with influenza vaccination. Int J Infect Dis, 2022; 125, 153−63. doi: 10.1016/j.ijid.2022.10.038 |
[33] |
Guan HY, Zhang LD, Chen XZ, et al. Enhancing vaccination uptake through community engagement: evidence from China. Sci Rep-UK, 2024; 14, 10845. doi: 10.1038/s41598-024-61583-5 |
[34] |
Kim DJ, Cho KH, Kim S, et al. Influenza vaccination before and during the COVID-19 pandemic in the elderly in South Korea. J Infect Public Health, 2023; 17, 503−8. |
[35] |
Xu ZB, Peng QZ, Xu JX, et al. Dynamic modeling of antibody repertoire reshaping in response to viral infections. Comput Biol Med, 2025; 184, 109475. doi: 10.1016/j.compbiomed.2024.109475 |
[36] |
Xu ZB, Wei DQ, Zhang HM, et al. a novel mathematical model that predicts the protection time of SARS-CoV-2 antibodies. Viruses, 2023; 15, 586. doi: 10.3390/v15020586 |
[37] |
Oh J, Lee M, Lee H, et al. Hand and Oral Hygiene Practices of South Korean Adolescents Before and During the COVID-19 Pandemic. JAMA Netw Open, 2023; 6, e2349249. doi: 10.1001/jamanetworkopen.2023.49249 |