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74   Influenza Aviaria


                               conserved sequences in the matrix gene. J Clin Microbiol 2000; 38: 4096-101. Abstract:
                               http://amedeo.com/lit.php?id=11060074
                           42.   Fouchier RA, Olsen B, Bestebroer TM, et al. Inßuenza A virus surveillance in wild birds
                               in Northern Europe in 1999 and 2000. Avian Dis 2003; 47: Suppl: 857-60. Abstract:
                               http://amedeo.com/lit.php?id=14575077
                           43.   Fouchier RA, Schneeberger PM, Rozendaal FW, Broekman JM, Kemink SA, Munster V,
                               Kuiken T, Rimmelzwaan GF, Schutten M, Van Doornum GJ, Koch G, Bosman A,
                               Koopmans M, Osterhaus AD. Avian inßuenza A virus (H7N7) associated with human
                               conjunctivitis and a fatal case of acute respiratory distress syndrome. Proc Natl Acad Sci
                               U S A 2004; 101: 1356-61. Abstract: http://amedeo.com/lit.php?id=14745020 - Full text
                               at http://www.pnas.org/cgi/content/full/101/5/1356
                           44.   Fouchier RA, Munster V, Wallensten A, et al. Characterization of a novel inßuenza A
                               virus hemagglutinin subtype (H16) obtained from black-headed gulls. J Virol 2005; 79:
                               2814-22. Abstract: http://amedeo.com/lit.php?id=15709000
                           45.   Gabriel G, Dauber B, Wolff T, Planz O, Klenk HD, Stech J. The viral polymerase
                               mediates adaptation of an avian inßuenza virus to a mammalian host. Proc Natl Acad Sci
                               U S A 2005; 102: 18590-5. Abstract: http://amedeo.com/lit.php?id=16339318
                           46.   Gambaryan AS, Tuzikov AB, Pazynina GV, Webster RG, Matrosovich MN, Bovin NV.
                               H5N1 chicken influenza viruses display a high binding affinity for Neu5Acalpha2-
                               3Galbeta1-4(6-HSO3)GlcNAc-containing receptors. Virology. 2004; 326: 310-6.
                           47.   Gambaryan A, Yamnikova S, Lvov D, et al. Receptor speciÞcity of inßuenza viruses from
                               birds and mammals: new data on involvement of the inner fragments of the carbohydrate
                               chain. Virology 2005; 334: 276-83. Abstract: http://amedeo.com/lit.php?id=15780877
                           48.   Gambaryan A, Tuzikov A, Pazynina G, Bovin N, Balish A, Klimov A. Evolution of the
                               receptor binding phenotype of inßuenza A (H5) viruses. Virology 2006; 344: 432-8.
                               Abstract: http://amedeo.com/lit.php?id=16226289
                           49.   Garcia M, Crawford JM, Latimer JW, Rivera-Cruz E, Perdue ML. Heterogeneity in the
                               hemagglutinin gene and emergence of the highly pathogenic phenotype among recent
                               H5N2 avian inßuenza viruses from Mexico. J Gen Virol 1996; 77: 1493-504. Abstract:
                               http://amedeo.com/lit.php?id=8757992
                           50.   Garcia A, Johnson H, Srivastava DK, Jayawardene DA, Wehr DR, Webster RG. EfÞcacy
                               of inactivated H5N2 inßuenza vaccines against lethal A/Chicken/Queretaro/19/95
                               infection. Avian Dis 1998; 42: 248-56. Abstract: http://amedeo.com/lit.php?id=9645315
                           51.   Garman E, Laver G. Controlling inßuenza by inhibiting the virus's neuraminidase. Curr
                               Drug Targets 2004; 5: 119-36. Abstract: http://amedeo.com/lit.php?id=15011946
                           52.   Giannecchini S, Campitelli L, Calzoletti L, De Marco MA, Azzi A, Donatelli I. Comparison
                               of in vitro replication features of H7N3 inßuenza viruses from wild ducks and turkeys:
                               potential implications for interspecies transmission. J Gen Virol 2006; 87: 171-5.
                               Abstract: http://amedeo.com/lit.php?id=16361429
                           53.   Gorman OT, Bean WJ, Webster RG. Evolutionary processes in inßuenza viruses:
                               divergence, rapid evolution, and stasis. Curr Top Microbiol Immunol 1992; 176: 75-97.
                               Abstract: http://amedeo.com/lit.php?id=1600756
                           54.   Govorkova EA, Rehg JE, Krauss S, Yen HL, Guan Y, Peiris M, Nguyen TM, Hanh TH,
                               Puthavathana P, Long HT, Buranathai C, Lim W, Webster RG, Hoffmann E. Lethality to
                               ferrets of H5N1 inßuenza viruses isolated from humans and poultry in 2004. J Virol 2005;
                               79: 2191-2198. Abstract: http://amedeo.com/lit.php?id=15681421
                           55.   Guan Y, Peiris JS, Lipatov AS, et al. Emergence of multiple genotypes of H5N1 avian
                               inßuenza viruses in Hong Kong SAR. Proc Natl Acad Sci U S A 2002a; 99: 8950-5..
                               Abstract: http://amedeo.com/lit.php?id=12077307 - Full text
                               http://www.pnas.org/cgi/content/full/99/13/8950
                           56.   Guan Y, Peiris JS, Poon LL, et al. Reassortants of H5N1 inßuenza viruses recently
                               isolated from aquatic poultry in Hong Kong SAR. Avian Dis 2003; 47: Suppl: 911-3.
                               Abstract: http://amedeo.com/lit.php?id=14575085
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