北京
基本再生数
2019年冠状病毒病(COVID-19)
传递率(结构动力学)
中国
爆发
严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)
传输(电信)
肺炎
医学
冠状病毒
2019-20冠状病毒爆发
人口学
兽医学
地理
病毒学
内科学
环境卫生
疾病
物理
电信
计算机科学
传染病(医学专业)
振动
考古
人口
社会学
量子力学
隔振
作者
Tao Liu,Jianxiong Hu,Jianpeng Xiao,Guanhao He,Min Kang,Zuhua Rong,Lifeng Lin,Haojie Zhong,Qiong Huang,Aiping Deng,Weilin Zeng,Xiaohua Tan,Siqing Zeng,Zhihua Zhu,Jiansen Li,Dexin Gong,Donghua Wan,Shaowei Chen,Lingchuan Guo,Yan Li,Limei Sun,Wenjia Liang,Tie Song,Jianfeng He,Wenjun Ma
标识
DOI:10.1101/2020.01.25.919787
摘要
ABSTRACT Rationale Several studies have estimated basic production number of novel coronavirus pneumonia (NCP). However, the time-varying transmission dynamics of NCP during the outbreak remain unclear. Objectives We aimed to estimate the basic and time-varying transmission dynamics of NCP across China, and compared them with SARS. Methods Data on NCP cases by February 7, 2020 were collected from epidemiological investigations or official websites. Data on severe acute respiratory syndrome (SARS) cases in Guangdong Province, Beijing and Hong Kong during 2002-2003 were also obtained. We estimated the doubling time, basic reproduction number ( R 0 ) and time-varying reproduction number ( R t ) of NCP and SARS. Measurements and main results As of February 7, 2020, 34,598 NCP cases were identified in China, and daily confirmed cases decreased after February 4. The doubling time of NCP nationwide was 2.4 days which was shorter than that of SARS in Guangdong (14.3 days), Hong Kong (5.7 days) and Beijing (12.4 days). The R 0 of NCP cases nationwide and in Wuhan were 4.5 and 4.4 respectively, which were higher than R 0 of SARS in Guangdong ( R 0 =2.3), Hongkong ( R 0 =2.3), and Beijing ( R 0 =2.6). The R t for NCP continuously decreased especially after January 16 nationwide and in Wuhan. The R 0 for secondary NCP cases in Guangdong was 0.6, and the R t values were less than 1 during the epidemic. Conclusions NCP may have a higher transmissibility than SARS, and the efforts of containing the outbreak are effective. However, the efforts are needed to persist in for reducing time-varying reproduction number below one. At a Glance Commentary Scientific Knowledge on the Subject Since December 29, 2019, pneumonia infection with 2019-nCoV, now named as Novel Coronavirus Pneumonia (NCP), occurred in Wuhan, Hubei Province, China. The disease has rapidly spread from Wuhan to other areas. As a novel virus, the time-varying transmission dynamics of NCP remain unclear, and it is also important to compare it with SARS. What This Study Adds to the Field We compared the transmission dynamics of NCP with SARS, and found that NCP has a higher transmissibility than SARS. Time-varying production number indicates that rigorous control measures taken by governments are effective across China, and persistent efforts are needed to be taken for reducing instantaneous reproduction number below one.