Influenza A virus infections in land birds, People's Republic of China
A.T. Peterson, S.E. Bush, Erica Spackman, D.E. Swayne, Hon S. Ip
2008, Emerging Infectious Diseases (14) 1644-1646
Water birds are considered the reservoir for avian influenza viruses. We examined this assumption by sampling and real-time reverse transcription-PCR testing of 939 Asian land birds of 153 species. Influenza A infection was found, particularly among migratory species. Surveillance programs for monitoring spread of these viruses need to be redesigned....
Prevalence of Influenza A viruses in wild migratory birds in Alaska: Patterns of variation in detection at a crossroads of intercontinental flyways
S. Ip, Paul L. Flint, J. Christian Franson, Robert J. Dusek, Dirk V. Derksen, Robert E. Gill Jr., Craig R. Ely, John M. Pearce, Richard B. Lanctot, Steven M. Matsuoka, D.B. Irons, J.B. Fischer, R.M. Oates, Margaret R. Petersen, T.F. Fondell, D.A. Rocque, J.C. Pedersen, T.C. Rothe
2008, Virology Journal (5)
Background. The global spread of the highly pathogenic avian influenza H5N1 virus has stimulated interest in a better understanding of the mechanisms of H5N1 dispersal, including the potential role of migratory birds as carriers. Although wild birds have been found dead during H5N1 outbreaks, evidence suggests that others have survived...
Genetic evidence of intercontinental movement of avian influenza in a migratory bird: The northern pintail (Anas acuta)
A.V. Koehler, John M. Pearce, Paul L. Flint, J. C. Franson, S. Ip
2008, Molecular Ecology (17) 4754-4762
The role of migratory birds in the movement of the highly pathogenic (HP) avian influenza H5N1 remains a subject of debate. Testing hypotheses regarding intercontinental movement of low pathogenic avian influenza (LPAI) viruses will help evaluate the potential that wild birds could carry Asian-origin strains of HP avian influenza to...
Applying the scientific method when assessing the influence of migratory birds on the dispersal of H5N1
Paul L. Flint
2007, Virology Journal (4)
Background The role of wild birds in the dispersal of highly pathogenic avian influenza virus H5N1 continues to be the subject of considerable debate. However, some researchers functionally examining the same question are applying opposing null hypotheses when examining this issue. Discussion I describe the...
Avian influenza surveillance of wild birds
Paul Slota
2007, Fact Sheet 2007-3094
The President's National Strategy for Pandemic Influenza directs federal agencies to expand the surveillance of United States domestic livestock and wildlife to ensure early warning of hightly pathogenic avian influenza (HPAI) in the U.S. The immediate concern is a potential introduction of HPAI H5N1 virus into the U.S. The presidential...
The cultural, socio-economic and ecological determinants of avian influenza and its spread
Leslie A. Dierauf, Lonnie J. King, Steven Salzberg, S. Ip, Marguerite Pappaioanou, Sharon Kemerer, Robert A. Cook, A. Townsend Peterson
David E. Blockstein, Kelly M. McManus, editor(s)
2007, Conference Paper, Integrating environment and human health: A report of the Seventh National Conference on Science, Policy and the Environment
No abstract available....
Use of rapid analysis technologies for the field identification and on-site confirmation of avian influenza
John Y. Takekawa
David Mello, editor(s)
2007, Book chapter, Biodetection technologies: technological responses to biological threats
No abstract available....
Characterization of low-pathogenicity H5N1 avian influenza viruses from North America
Erica Spackman, D. E. Swayne, D. L. Suarez, D. A. Senne, J. C. Pedersen, M. L. Killian, J. Pasick, K. Handel, S. P. S. Pillai, C. #NAME? Lee, D. Stallknecht, R. Slemons, Hon S. Ip, T. Deliberto
2007, Journal of Virology (81) 11612-11619
Wild-bird surveillance in North America for avian influenza (AI) viruses with a goal of early identification of the Asian H5N1 highly pathogenic AI virus has identified at least six low-pathogenicity H5N1 AI viruses between 2004 and 2006. The hemagglutinin (HA) and neuraminidase (NA) genes from all 6 H5N1 viruses and...
Highly Pathogenic Avian Influenza Early Detection Data System (HEDDS)
Robert Worrest, F. Joshua Dein
2006, Report
HEDDS offers a unique opportunity for multiagency cooperation for data sharing and visualization....
Surveillance for Asian H5N1 avian influenza in the United States
S. Ip, Paul G. Slota
2006, Fact Sheet 2006-3025
Increasing concern over the potential for migratory birds to introduce the Asian H5N1 strain of avian influenza to North America prompted the White House Policy Coordinating Committee for Pandemic Influenza Preparedness to request that the U.S. Departments of Agriculture (USDA) and Interior (DOI) develop a plan for the early detection...
Disease emergence and resurgence—the wildlife-human connection
Milton Friend, James W. Hurley, Pauline Nol, Katherine E. Wesenberg
2006, Circular 1285
In 2000, the Global Outbreak Alert and Response Network (GOARN) was organized as a global disease watchdog group to coordinate disease outbreak information and health crisis response. The World Health Organization (WHO) is the headquarters for this network. Understandably, the primary focus for WHO is human health. However, diseases such...
Avian influenza virus and free-ranging wild birds
Leslie A. Dierauf, W.B. Karesh, S. Ip, K.V. Gilardi, John R. Fischer
2006, Journal of the American Veterinary Medical Association (228) 1877-1882
Recent media and news reports and other information implicate wild birds in the spread of highly pathogenic avian influenza in Asia and Eastern Europe. Although there is little information concerning highly pathogenic avian influenza viruses in wild birds, scientists have amassed a large amount of data on low-pathogenicity avian influenza...
The avian influenza H5N1 threat
Hon S. Ip
2005, Fact Sheet 2005-3146
Type a influenza virus surveillance in free-flying, nonmigratory ducks residing on the eastern shore of Maryland
R.D. Slemons, W. R. Hansen, K. A. Converse, D.A. Senne
2003, Conference Paper, Avian Diseases
Virus surveillance in free-flying, nonmigratory ducks living on the eastern shore of Maryland indicated that influenza A viruses were introduced into the area or that the prevalence of endemic infections increased between July 15 and August 27, 1998. Cloacal swabs collected between May 28 and July 15, 1998, were negative...
Type A influenza virus surveillance in free-flying, nonmigratory ducks residing on the eastern shore of Maryland
R.D. Slemons, W. R. Hansen, K. A. Converse, D.A. Senne
2003, Avian Diseases (47) 1107-1110
Virus surveillance in free-flying, nonmigratory ducks living on the eastern shore of Maryland indicated that influenza A viruses were introduced into the area or that the prevalence of endemic infections increased between July 15 and August 27, 1998. Cloacal swabs collected between May 28 and July 15, 1998, were negative...
Avian influenza
W. Hansen
1999, Information and Technology Report 1999-0001
Wild birds, especially waterfowl and shorebirds, have long been a focus for concern by the poultry industry as a source for influenza infections in poultry. Human health concerns have also been raised. For these reasons, this chapter has been included to provide natural resource managers with basic information about avian...
Control of avian influenza: Philosophy and perspectives on behalf of migratory birds
Milton Friend
1992, Avian Diseases (47) 393-399
Aquatic birds are considered the primary reservoir for influenza A viruses (Nettles et al., 1987). However, there is little concern about avian influenza among conservation agencies responsible for the welfare of those species. IN contrast, the poultry industry has great concern about avian influenza and view aquatic birds as a...
Kidney lesions associated with mortality in chickens inoculated with waterfowl influenza viruses
R.D. Slemons, L. N. Locke, Martha G. Sheerar, R. M. Duncan, Virginia S. Hinshaw, B.C. Easterday
1990, Avian Diseases (34) 120-128
Seventy-six type A influenza viruses recovered from waterfowl in Wisconsin, California, South Dakota, Florida, Texas, Alabama, and Nebraska were tested for virulence in chickens. The challenge to chickens was intravenous inoculation of first-, second-, or third-egg-passage virus. Each of the virus strains was tested separately in three or four chickens....
Microbial infections in a declining wild turkey population in Texas
Tonie E. Rocke, Thomas M. Yuill
1987, Journal of Wildlife Management (51) 778-782
A survey was conducted at 5 locations in Texas for avian pathogens that might adversely affect wild turkey (Meleagris gallopavo) productivity and survival. At 1 site, the Rob and Bessie Welder Wildlife Refuge (WWR), turkeys have declined precipitously in recent years. During the winters of 1983-85, 442 wild turkeys were...
Characterizing the interface between wild ducks and poultry to evaluate the potential of transmission of avian pathogens
Julien Cappelle, Nicolas Gaidet, S. A. Iverson, John Y. Takekawa, Scott H. Newman, Bouba Fofana, Marius Gilbert
None, International Journal of Health Geographics (10)
BackgroundCharacterizing the interface between wild and domestic animal populations is increasingly recognized as essential in the context of emerging infectious diseases (EIDs) that are transmitted by wildlife. More specifically, the spatial and temporal distribution of contact rates between wild and domestic hosts is a key parameter for modeling...