Ogata T, Tanaka H. Long Diagnostic Delay with Unknown Transmission Route Inversely Correlates with the Subsequent Doubling Time of Coronavirus Disease 2019 in Japan, February–March 2020. IJERPH . 2021;18(7):3377.
Pellis L, Scarabel F, Stage HB, Overton CE, Chappell LH, Fearon E, et al. Challenges in control of Covid-19: short doubling time and long delay to effect of interventions. Philos Trans R Soc Lond B Biol Sci . 2021;376(1829):20200264.
Tang B, Bragazzi NL, Li Q, Tang S, Xiao Y, Wu J. An updated estimation of the risk of transmission of the novel coronavirus (2019-nCov). Infect Dis Model . 2020;5:248-55.
Liu Y, Gayle AA, Wilder-Smith A, Rocklöv J. The reproductive number of COVID-19 is higher compared to SARS coronavirus. J Travel Med. 2020;27(2):taaa021.
Majumder MS, Mandl KD. Early in the epidemic: impact of preprints on global discourse about COVID-19 transmissibility. Lancet Glob Health. 2020;8(5):e627-e30.
Zhou L, Liu J-M, Dong X-P, McGoogan JM, Wu Z-Y. COVID-19 seeding time and doubling time model: an early epidemic risk assessment tool. Infect Dis Poverty. 2020;9(1):76.
Turner K. Introduction to Infectious Disease Modelling. STI. 2010;87(1):21.
Lurie MN, Silva J, Yorlets RR, Tao J, Chan PA. Coronavirus disease 2019 epidemic doubling time in the United States before and during stay-at-home restrictions. J Infect Dis. 2020;222(10):1601-6.
Muniz-Rodriguez K, Chowell G, Cheung C-H, Jia D, Lai P-Y, Lee Y, et al. Doubling time of the COVID-19 epidemic by province, China. Emerg Infect Dis. 2020;26(8):1912.
D'Arienzo M, Coniglio A. Assessment of the SARS-CoV-2 basic reproduction number, R0, based on the early phase of COVID-19 outbreak in Italy. Biosaf Health. 2020;2(2):57-9.
Locatelli I, Trächsel B, Rousson V. Estimating the basic reproduction number for COVID-19 in Western Europe. PLoS One. 2021;16(3):e0248731.
Musa SS, Zhao S, Wang MH, Habib AG, Mustapha UT, He D. Estimation of exponential growth rate and basic reproduction number of the coronavirus disease 2019 (COVID-19) in Africa. Infect Dis Poverty. 2020;9(1):96.
Rahimi E, Hashemi Nazari SS, Mokhayeri Y, Sharhani A, Mohammadi R. Nine-month Trend of Time-Varying Reproduction Numbers of COVID-19 in West of Iran. J Res Health Sci. 2021;21(2):e00517
Azimi SS, Koohi F, Aghaali M, Nikbakht R, Mahdavi M, Mokhayeri Y, et al. Estimation of the basic reproduction number (?0) of the COVID-19 epidemic in Iran. Med J Islam Repub Iran. 2020;34:95.
Boelle PY OT, Obadia MT. Package ‘R0’. 2015.
Wallinga J, Lipsitch M. How generation intervals shape the relationship between growth rates and reproductive numbers. Proc Biol Sci. 2007;274(1609):599-604.
Marimuthu S, Joy M, Malavika B, Nadaraj A, Asirvatham ES, Jeyaseelan L. Modelling of reproduction number for COVID-19 in India and high incidence states. Clin Epidemiol Glob Health. 2021;9:57-61.
You C, Deng Y, Hu W, Sun J, Lin Q, Zhou F, et al. Estimation of the time-varying reproduction number of COVID-19 outbreak in China. Int J Hyg Environ Health. 2020;228:113555.
Shim E, Tariq A, Chowell G. Spatial variability in reproduction number and doubling time across two waves of the COVID-19 pandemic in South Korea, February to July, 2020. IJID. 2021;102:1-9.
Xu S, Clarke C, Shetterly S, Narwaney K. Estimating the growth rate and doubling time for short-term prediction and monitoring trend during the covid-19 pandemic with a sas macro. medRxiv. 2020.
Mazumder A, Arora M, Sra M, Gupta A, Behera P, Gupta M, et al. Geographical variation in case fatality rate and doubling time during the COVID-19 pandemic. Epidemiol Infect. 2020;148:e163.
Mishra D, Haleem A, Javaid M. Analysing the behaviour of doubling rates in 8 major countries affected by COVID-19 virus. J Oral Biol Craniofac Res. 2020;10(4):478-83.
Omori R, Mizumoto K, Chowell G. Changes in testing rates could mask the novel coronavirus disease (COVID-19) growth rate. Int J Infect Dis. 2020;94:116-8.
留言 (0)