Page 76 - Influenza Report
P. 76
76 Influenza Aviaria
74. Ito T, Couceiro JN, Kelm S, et al. Molecular basis for the generation in pigs of inßuenza
A viruses with pandemic potential. J Virol 1998; 72: 7367-73. Abstract:
http://amedeo.com/lit.php?id=9696833 - Full text at
http://jvi.asm.org/cgi/content/full/72/9/7367
75. Jin M, Wang G, Zhang R, Zhao S, Li H, Tan Y, Chen H. Development of enzyme-linked
immunosorbent assay with nucleoprotein as antigen for detection of antibodies to avian
inßuenza virus. Avian Dis 2004; 48: 870-8. Abstract:
http://amedeo.com/lit.php?id=15666868
76. Jones YL, Swayne DE. Comparative pathobiology of low and high pathogenicity H7N3
Chilean avian inßuenza viruses in chicken. Avian Dis 2004; 48: 119-28. Abstract:
http://amedeo.com/lit.php?id=15077805
77. Karasin AI, Brown IH, Carman S, Olsen CW. Isolation and characterization of H4N6
avian inßuenza viruses from pigs with pneumonia in Canada. J Virol 2000; 74: 9322-7.
Abstract: http://amedeo.com/lit.php?id=10982381
78. Katz JM, Lim W, Bridges CB, et al. Antibody response in individuals infected with avian
inßuenza A (H5N1) viruses and detection of anti-H5 antibody among household and
social contacts. J Infect Dis 1999; 180: 1763-70. Abstract:
http://amedeo.com/lit.php?id=10558929 - Full text at
http://www.journals.uchicago.edu/JID/journal/issues/v180n6/990415/990415.html
79. Kawaoka Y, Naeve CW, Webster RG. Is virulence of H5N2 inßuenza viruses in chicken
associated with loss of carbohydrate from the hemagglutinin? Virology 1984; 139: 303-
16. Abstract: http://amedeo.com/lit.php?id=6516214
80. Kaye D, Pringle CR. Avian inßuenza viruses and their implication for human health. Clin
Infect Dis 2005; 40: 108-12. Epub 2004 Dec 7. Abstract:
http://amedeo.com/lit.php?id=15614699
81. Keawcharoen J, Oraveerakul K, Kuiken T, et al. Avian inßuenza H5N1 in tigers and
leopards. Emerg Infect Dis 2004; 10: 2189-91. Abstract:
http://amedeo.com/lit.php?id=15663858 - Full text at
http://www.cdc.gov/ncidod/EID/vol10no12/04-0759.htm
82. Kessler N, Ferraris O, Palmer K, Marsh W, Steel A. Use of the DNA ßow-thru chip, a
three-dimensional biochip, for typing and subtyping of inßuenza viruses. J Clin Microbiol.
2004; 42: 2173-85. Abstract: http://amedeo.com/lit.php?id=15131186
83. Kida H, Ito T, Yasuda J, et al. Potential for transmission of avian inßuenza viruses to
pigs. J Gen Virol 1994; 75: 2183-8. Abstract: http://amedeo.com/lit.php?id=8077918
84. Kim JA, Ryu SY, Seo SH. Cells in the respiratory and intestinal tracts of chicken have
different proportions of both human and avian inßuenza virus receptors. J Microbiol
2005; 43: 366-9. Abstract: http://amedeo.com/lit.php?id=16145552
85. Klenk HD. Infection of the endothelium by inßuenza viruses. Thromb Haemost 2005 ; 94:
262-5. Abstract: http://amedeo.com/lit.php?id=16113814
86. Klempner MS, Shapiro DS. Crossing the species barrier - one small step to man, one
giant leap to mankind. N Engl J Med 2004; 350: 1171-2. Epub 2004 Feb 25.
http://amedeo.com/lit.php?id=14985471
87. Klopßeisch R, Werner O, Mundt E, Harder T, Teifke JP. Neurotropism of highly
pathogenic avian inßuenza virus A/chicken/Indonesia/2003 (H5N1) in experimentally
infected pigeons (Columbia livia f. domestica). Vet Pathol 2006; in press
88. Kodihalli S, Haynes JR, Robinson HL, Webster RG. Cross-protection among lethal H5N2
inßuenza viruses induced by DNA vaccine to the hemagglutinin. J Virol 1997; 71: 3391-
6. Abstract: http://amedeo.com/lit.php?id=9094608 - Full text at
http://jvi.asm.org/cgi/reprint/71/5/3391
89. Koopmans M, Wilbrink B, Conyn M, et al. Transmission of H7N7 avian inßuenza A virus
to human beings during a large outbreak in commercial poultry farms in the Netherlands.
Lancet 2004; 363: 587-93. Abstract: http://amedeo.com/lit.php?id=14987882
90. Krauss S, Walker D, Pryor SP, Niles L, Chenghong L, Hinshaw VS, Webster RG.
Inßuenza A viruses of migrating wild aquatic birds in North America. Vector Borne
Zoonotic Dis 2004; 4: 177-89. Abstract: http://amedeo.com/lit.php?id=15631061