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禽流感在公共卫生上的意义和对国际贸易的影响 被引量:3

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出处 《上海畜牧兽医通讯》 2001年第4期15-16,共2页 Shanghai Journal of Animal Husbandry and Veterinary Medicine
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  • 1Shan S H. Ko L S, Collins R A. et al. Comparison of different methods for avian influenza subtype H5N1 detection[J].Biochem Biophys Res Commun. 2003,302:377-383.
  • 2Highly pathogenic avian influenza (fowl plague). In:OIE Manual of Standards for Diagnostic Tests and Vaccines[M].2001: 123-129.
  • 3Munch M. Nielsen L P, Handberg K J, et al, Detection and subtyping (H5and H7)of avian type A influenza virus by reverse transcription-PCR and PCR-ELISAI[J].Arch Virol ,2001,146,87-97.
  • 4Spackman E, Senne D A, Meyers T J, et al. Development of a real-time Reverse Transcriptase PCR Assay for type A Influenza Virus and the Avian H5 and H7 haemagglutinin subtypes[J]. J Clin Microbiol,2002, 40(9):3256-3260.
  • 5Compton J. Nucleic acid sequence-based amplification[J].Nature, 1991, 350:91-92.
  • 6Romano J W. van Gemen B. Kievits T. NASBA:a novel, isothermal detection technology for qualitative and quantitative HIV-RNA measurements[J]. Clin Lab Med, 1996,16(1):89-103.
  • 7Damen M. Sillekens P. Cuypers T H M, et al. Characterization of the quantitative HCV NASBA assay[J]. J Virol Methods, 1999,82 (1): 45-54.
  • 8Wacharapluesadee S, Krug R M. Nucleic-acid sequence based amplification in the rapid diagnosis of rabies[J]. Lancet ,2001,15 358(9285):892-893.
  • 9Collins R A. Ko L S. Fung K Y. et al. A method to detect major serotypes of foot mouth disease virus[J]. Biochem Biophys Res Commun. 2002, 297:267-274.
  • 10Uyttendaele M, Schukkink R , Gemen B, et al. Development of NASBA, a nucleic acid amplification system, for identification of Listeria monocytogenes and comparison to ELISA and a modified FDA method[J].Int J Food Microbiol, 1995, 27(1):77-89.

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