[1]Gao R, Cao B, Hu Y, et al.Human infection with a novel avian-origin influenza A (H7N9) virus[J].N Engl J Med, 2013,368(20):1888-1897.
[2]Zhou L, Ren R, Yang L, et al.Sudden increase in human infection with avian influenza A(H7N9) virus in China, September-December 2016[J].Western Pac Surveill Response J, 2017,8(1):6-14.
[3]Li Y, Qi W, Qiao J, et al.Evolving HA and PB2 genes of influenza A (H7N9) viruses in the fifth wave-Increasing threat to both birds and humans[J].J Infect, 2017,75(2):184-186.
[4]Zhang F, Bi Y, Wang J, et al.Human infections with recently-emerging highly pathogenic H7N9 avian influenza virus in China[J].J Infect, 2017,75(1):71-75.
[5]Zhu W, Shu Y.Genetic tuning of avian influenza A (H7N9) virus promotes viral fitness within different species[J].Microbes Infect, 2015,17(2):118-122.
[6]Ge Y, Wu B, Qi X, et al.Rapid and sensitive detection of novel avian-origin influenza A (H7N9) virus by reverse transcription loop-mediated isothermal amplification combined with a lateral-flow device[J].PLoS One, 2013,8(8):e69941.
[7]Wang D, Yang L, Zhu W, et al.Two outbreak sources of influenza A (H7N9) viruses have been established in China[J].J Virol, 2016,90(12):5561-5573.
[8]Jin Y, Ren H, Teng Y, et al.Novel reassortment of avian influenza A(H7N9) virus with subtype H6N6 and H5N6 viruses circulating in Guangdong Province, China[J].J Infect, 2017,75(2):179-182.
[9]Xiao C, Ma W, Sun N, et al.PB2-588 V promotes the mammalian adaptation of H10N8, H7N9 and H9N2 avian influenza viruses[J].Sci Rep, 2016,6:19474.
[10]Ge S, Wang Z.An overview of influenza A virus receptors[J].Crit Rev Microbiol, 2011,37(2):157-165.
[11]Shi Y, Zhang W, Wang F, et al.Structures and receptor binding of hemagglutinins from human-infecting H7N9 influenza viruses[J].Science, 2013,342(6155):243-247.
[12]Zhang Q, Shi J, Deng G, et al.H7N9 influenza viruses are transmissible in ferrets by respiratory droplet[J].Science, 2013,341(6144):410-414.
[13]Belser JA, Gustin KM, Pearce MB, et al.Pathogenesis and transmission of avian influenza A (H7N9) virus in ferrets and mice[J].Nature, 2013,501(7468):556-559.
[14]van Riel D, Leijten LM, de Graaf M, et al.Novel avian-origin influenza A (H7N9) virus attaches to epithelium in both upper and lower respiratory tract of humans[J].Am J Pathol, 2013,183(4):1137-1143.
[15]Chan MC, Chan RW, Chan LL, et al.Tropism and innate host responses of a novel avian influenza A H7N9 virus: an analysis of ex-vivo and in-vitro cultures of the human respiratory tract[J].Lancet Respir Med, 2013,1(7):534-542.
[16]Tharakaraman K, Jayaraman A, Raman R, et al.Glycan receptor binding of the influenza A virus H7N9 hemagglutinin[J].Cell, 2013,153(7):1486-1493.
[17]Xiong X, Martin SR, Haire LF, et al.Receptor binding by an H7N9 influenza virus from humans[J].Nature, 2013,499(7459):496-499.
[18]Zhang W, Shi Y, Qi J, et al.Molecular basis of the receptor binding specificity switch of the hemagglutinins from both the 1918 and 2009 pandemic influenza A viruses by a D225G substitution[J].J Virol, 2013,87(10):5949-5958.
[19]Zhu W, Zhou J, Li Z, et al.Biological characterisation of the emerged highly pathogenic avian influenza (HPAI) A(H7N9) viruses in humans, in mainland China, 2016 to 2017[J].Euro Surveill, 2017,22(19):30533.
[20]Yang JR, Liu MT.Human infection caused by an avian influenza A (H7N9) virus with a polybasic cleavage site in Taiwan, 2017[J].J Formos Med Assoc, 2017,116(3):210-212.
[21]香港卫生署.禽流感疫情周報(第13期第34號 (第34周))[EB/OL].[2017-09-04].http://www.chp.gov.hk/files/pdf/2017_avian_influenza_report_vol13_wk34_chi.pdf.
[22]Xiang N, Iuliano AD, Zhang Y, et al.Comparison of the first three waves of avian influenza A(H7N9) virus circulation in the mainland of the People's Republic of China[J].BMC Infect Dis, 2016,16(1):734.
[23]Wu P, Peng Z, Fang VJ, et al.Human infection with influenza A(H7N9) virus during 3 major epidemic waves, China, 2013-2015[J].Emerg Infect Dis, 2016,22(6):964-972.
[24]Liu B, Havers F, Chen E, et al.Risk factors for influenza A(H7N9) disease-China, 2013[J].Clin Infect Dis, 2014,59(6):787-794.
[25]Cowling BJ, Jin L, Lau EH, et al.Comparative epidemiology of human infections with avian influenza A H7N9 and H5N1 viruses in China: a population-based study of laboratory-confirmed cases[J].Lancet, 2013,382(9887):129-137.
[26]Ai J, Huang Y, Xu K, et al.Case-control study of risk factors for human infection with influenza A(H7N9) virus in Jiangsu Province, China, 2013[J].Euro Surveill, 2013,18(26):20510.
[27]Li J, Chen J, Yang G, et al.Case-control study of risk factors for human infection with avian influenza A(H7N9) virus in Shanghai, China, 2013[J].Epidemiol Infect, 2015,143(9):1826-1832.
[28]Wang X, Jiang H, Wu P, et al.Epidemiology of avian influenza A H7N9 virus in human beings across five epidemics in mainland China, 2013-17: an epidemiological study of laboratory-confirmed case series[J].Lancet Infect Dis, 2017,17(8):822-832.
[29]Zhou L, Tan Y, Kang M, et al.Preliminary epidemiology of human infections with highly pathogenic avian influenza A(H7N9) virus, China, 2017[J].Emerg Infect Dis, 2017,23(8):1355-1359.
[30]To KK, Chan JF, Chen H, et al.The emergence of influenza A H7N9 in human beings 16 years after influenza A H5N1: a tale of two cities[J].Lancet Infect Dis, 2013,13(9):809-821.
[31]Chen Y, Liang W, Yang S, et al.Human infections with the emerging avian influenza A H7N9 virus from wet market poultry: clinical analysis and characterisation of viral genome[J].Lancet, 2013,381(9881):1916-1925.
[32]Lam TT, Wang J, Shen Y, et al.The genesis and source of the H7N9 influenza viruses causing human infections in China[J].Nature, 2013,502(7470):241-244.
[33]Kageyama T, Fujisaki S, Takashita E, et al.Genetic analysis of novel avian A(H7N9) influenza viruses isolated from patients in China, February to April 2013[J].Euro Surveill, 2013,18(15):20453.
[34]Lee RT, Gunalan V, Van TD, et al.A new piece in the puzzle of the novel avian-origin influenza A (H7N9) virus[J].Biol Direct, 2013,8:26.
[35]Xiong C, Zhang Z, Jiang Q, et al.Evolutionary characteristics of A/Hangzhou/1/2013 and source of avian influenza virus H7N9 subtype in China[J].Clin Infect Dis, 2013,57(4):622-624.
[36]Liu D, Shi W, Shi Y, et al.Origin and diversity of novel avian influenza A H7N9 viruses causing human infection: phylogenetic, structural, and coalescent analyses[J].Lancet, 2013,381(9881):1926-1932.
[37]Cui L, Liu D, Shi W, et al.Dynamic reassortments and genetic heterogeneity of the human-infecting influenza A (H7N9) virus[J].Nat Commun, 2014,5:3142.
[38]Olsen B, Munster VJ, Wallensten A, et al.Global patterns of influenza a virus in wild birds[J].Science, 2006,312(5772):384-388.
[39]Yu H, Wu JT, Cowling BJ, et al.Effect of closure of live poultry markets on poultry-to-person transmission of avian influenza A H7N9 virus: an ecological study[J].Lancet, 2014,383(9916):541-548.
[40]Wu J, Lau EH, Xing Q, et al.Seasonality of avian influenza A(H7N9) activity and risk of human A(H7N9) infections from live poultry markets[J].J Infect, 2015,71(6):690-693.
[41]Bao CJ, Cui LB, Zhou MH, et al.Live-animal markets and influenza A (H7N9) virus infection[J].N Engl J Med, 2013,368(24):2337-2339.
[42]Zhao B, Zhang X, Zhu W, et al.Novel avian influenza A(H7N9) virus in tree sparrow, Shanghai, China, 2013[J].Emerg Infect Dis, 2014,20(5):850-853.
[43]Li Q, Zhou L, Zhou M, et al.Epidemiology of human infections with avian influenza A(H7N9) virus in China[J].N Engl J Med, 2014,370(6):520-532.
[44]He Y, Liu P, Tang S, et al.Live poultry market closure and control of avian influenza A(H7N9), Shanghai, China[J].Emerg Infect Dis, 2014,20(9):1565-1566.
[45]Qi X, Qian YH, Bao CJ, et al.Probable person to person transmission of novel avian influenza A (H7N9) virus in Eastern China, 2013: epidemiological investigation[J].BMJ, 2013,347:f4752.
[46]Xiao XC, Li KB, Chen ZQ, et al.Transmission of avian influenza A(H7N9) virus from father to child: a report of limited person-to-person transmission, Guangzhou, China, January 2014[J].Euro Surveill, 2014,19(25):20837.
[47]Nishiura H, Mizumoto K, Ejima K.How to interpret the transmissibility of novel influenza A(H7N9): an analysis of initial epidemiological data of human cases from China[J].Theor Biol Med Model, 2013,10:30.
[48]Wang C, Wang J, Su W, et al.Relationship between domestic and wild birds in live poultry market and a novel human H7N9 virus in China[J].J Infect Dis, 2014,209(1):34-37.
[49]Bai T, Zhou J, Shu Y.Serologic study for influenza A (H7N9) among high-risk groups in China[J].N Engl J Med, 2013,368(24):2339-2340.
[50]唐秀娟, 房师松, 吕星, 等.深圳市活禽市场活禽经营人员H7N9禽流感病毒抗体水平及感染危险因素调查[J].实用预防医学, 2015,22 (7):809-812.
[51]Xu C, Havers F, Wang L, et al.Monitoring avian influenza A(H7N9) virus through national influenza-like illness surveillance, China[J].Emerg Infect Dis, 2013,19(8):1289-1292.
[52]Ip DK, Liao Q, Wu P, et al.Detection of mild to moderate influenza A/H7N9 infection by China's national sentinel surveillance system for influenza-like illness: case series[J].BMJ, 2013,346:f3693.
[53]Yang P, Pang X, Deng Y, et al.Surveillance for avian influenza A(H7N9), Beijing, China, 2013[J].Emerg Infect Dis, 2013,19(12):2041-2043.
[54]Hvistendahl M, Normile D, Cohen J.Influenza.Despite large research effort, H7N9 continues to baffle[J].Science, 2013,340(6131):414-415.
[55]Lin PH, Chao TL, Kuo SW, et al.Virological, serological, and antiviral studies in an imported human case of avian influenza A(H7N9) virus in Taiwan[J].Clin Infect Dis, 2014,58(2):242-246.
[56]Hay AJ, Hayden FG.Oseltamivir resistance during treatment of H7N9 infection[J].Lancet, 2013,381(9885):2230-2232.
[57]Marjuki H, Mishin VP, Chesnokov AP, et al.Neuraminidase mutations conferring resistance to oseltamivir in influenza A(H7N9) viruses[J].J Virol, 2015,89(10):5419-5426.
[58]Song MS, Marathe BM, Kumar G, et al.Unique determinants of neuraminidase inhibitor resistance among N3, N7, and N9 avian influenza viruses[J].J Virol, 2015,89(21):10891-10900.
[59]Kang M, He J, Song T, et al.Environmental sampling for avian influenza A(H7N9) in live-poultry markets in Guangdong, China[J].PLoS One, 2015,10(5):e126335.
[60]Kung NY, Guan Y, Perkins NR, et al.The impact of a monthly rest day on avian influenza virus isolation rates in retail live poultry markets in Hong Kong[J].Avian Dis, 2003,47(3 Suppl):S1037-S1041.
[61]张海明, 彭聪, 段晓冬, 等.香港活禽市场的管理措施[J].中国动物检疫, 2013,30 (11):37-40.
[62]谢朝军, 苏文哲, 李魁彪, 等.禽类生鲜上市减少市场环境禽流感病毒污染的研究[J].中华流行病学杂志, 2016,37(3):353-357. |