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Page 7, results 151 - 175

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Not all publications have extents, not all extents are completely accurate
Respiratory transmission of an avian H3N8 influenza virus isolated from a harbour seal
Erik A. Karlsson, S. Ip, Jeffrey S. Hall, Sun W. Yoon, Jordan Johnson, Melinda A. Beck, Richard J. Webby, Stacey Schultz-Cherry
2014, Nature Communications (5)
The ongoing human H7N9 influenza infections highlight the threat of emerging avian influenza viruses. In 2011, an avian H3N8 influenza virus isolated from moribund New England harbour seals was shown to have naturally acquired mutations known to increase the transmissibility of highly pathogenic H5N1 influenza viruses. To elucidate the potential...
Avian influenza virus antibodies in Pacific Coast Red Knots (Calidris canutus rufa)
James A. Johnson, Lucas H. DeCicco, Daniel R. Ruthrauff, Scott Krauss, Jeffrey S. Hall
2014, Journal of Wildlife Diseases (50) 671-675
Prevalence of avian influenza virus (AIV) antibodies in the western Atlantic subspecies of Red Knot (Calidris canutus rufa) is among the highest for any shorebird. To assess whether the frequency of detection of AIV antibodies is high for the species in general or restricted only to C. c. rufa, we...
North Atlantic migratory bird flyways provide routes for intercontinental movement of avian influenza viruses
Robert J. Dusek, Gunnar T. Hallgrimsson, S. Ip, Jón E. Jónsson, Srinand Sreevatsan, Sean W. Nashold, Joshua L. TeSlaa, Shinichiro Enomoto, Rebecca A. Halpin, Xudong Lin, Nadia Federova, Timothy B. Stockwell, Vivien G. Dugan, David E. Wentworth, Jeffrey S. Hall
2014, PLoS ONE (9)
Avian influenza virus (AIV) in wild birds has been of increasing interest over the last decade due to the emergence of AIVs that cause significant disease and mortality in both poultry and humans. While research clearly demonstrates that AIVs can move across the Pacific or Atlantic Ocean, there has been...
Sampling strategies and biodiversity of influenza A subtypes in wild birds
Sarah H. Olson, Jane Parmley, Catherine Soos, Martin Gilbert, Neus Latore-Margalef, Jeffrey S. Hall, Phillip M. Hansbro, Frank Leighton, Vincent Munster, Damien Joly
2014, PLoS ONE (9)
Wild aquatic birds are recognized as the natural reservoir of avian influenza A viruses (AIV), but across high and low pathogenic AIV strains, scientists have yet to rigorously identify most competent hosts for the various subtypes. We examined 11,870 GenBank records to provide a baseline inventory and insight into patterns...
Risks of avian influenza transmission in areas of intensive free-ranging duck production with wild waterfowl
Julien Cappelle, Delong Zhao, Marius Gilbert, Scott H. Newman, John Y. Takekawa, Nicolas Gaidet, Diann J. Prosser, Ying Liu, Peng Li, Yuelong Shu, Xiangming Xiao
2014, EcoHealth (11) 109-119
For decades, southern China has been considered to be an important source for emerging influenza viruses since key hosts live together in high densities in areas with intensive agriculture. However, the underlying conditions of emergence and spread of avian influenza viruses (AIV) have not been studied in detail, particularly the...
Movements of wild ruddy shelducks in the Central Asian Flyway and their spatial relationship to outbreaks of highly pathogenic avian influenza H5N1
John Y. Takekawa, Diann J. Prosser, Bridget M. Collins, David C. Douglas, William M. Perry, Yan Baoping, Ze Luo, Yuansheng Hou, Fumin Lei, Tianxian Li, Yongdong Li, Scott H. Newman
2013, Viruses (5) 2129-2152
Highly pathogenic avian influenza H5N1 remains a serious concern for both poultry and human health. Wild waterfowl are considered to be the reservoir for low pathogenic avian influenza viruses; however, relatively little is known about their movement ecology in regions where HPAI H5N1 outbreaks regularly occur. We studied movements of...
Mapping risk of avian influenza transmission at the interface of domestic poultry and wild birds
Diann J. Prosser, Laura L. Hungerford, R. Michael Erwin, Mary Ann Ottinger, John Y. Takekawa, Erle C. Ellis
2013, Frontiers in Public Health (1)
Emergence of avian influenza viruses with high lethality to humans, such as the currently circulating highly pathogenic A(H5N1) (emerged in 1996) and A(H7N9) cause serious concern for the global economic and public health sectors. Understanding the spatial and temporal interface between wild and domestic populations, from which these viruses emerge,...
Antibodies to H5 subtype avian influenza virus and Japanese encephalitis virus in northern pintails (Anas acuta) sampled in Japan
Andrew M. Ramey, Erica Spackman, Jung-Yong Yeh, Go Fujita, Kan Konishi, Kiyoshi Uchida, John A. Reed, Benjamin R. Wilcox, Justin D. Brown, David E. Stallknecht
2013, Japanese Journal of Veterinary Research (61) 117-123
Blood samples from 105 northern pintails (Anas acuta) captured on Hokkaido, Japan were tested for antibodies to avian influenza virus (AIV), Japanese encephalitis virus (JEV), and West Nile virus (WNV) to assess possible involvement of this species in the spread of economically important and potentially zoonotic pathogens. Antibodies to AIV...
Genomic analysis of avian influenza viruses from waterfowl in Western Alaska, USA
Andrew B. Reeves, John M. Pearce, Andrew M. Ramey, Craig R. Ely, Joel A. Schmutz, Paul L. Flint, Dirk V. Derksen, S. Ip, Kimberly A. Trust
2013, Journal of Wildlife Diseases (49) 600-610
The Yukon-Kuskokwim Delta (Y-K Delta) in western Alaska is an immense and important breeding ground for waterfowl. Migratory birds from the Pacific Americas, Central Pacific, and East Asian-Australasian flyways converge in this region, providing opportunities for intermixing of North American- and Eurasian-origin hosts and infectious agents, such as avian influenza...
Evolution of a reassortant North American gull influenza virus lineage: drift, shift and stability
Jeffrey S. Hall, Joshua L. TeSlaa, Sean W. Nashold, Rebecca A. Halpin, Timothy Stockwell, David E. Wentworth, Vivien Dugan, S. Ip
2013, Virology Journal (10)
Background: The role of gulls in the ecology of avian influenza (AI) is different than that of waterfowl. Different constellations of subtypes circulate within the two groups of birds and AI viruses isolated from North American gulls frequently possess reassortant genomes with genetic elements from both North America and Eurasian...
Emerging and reemerging diseases of avian wildlife
Susan J. Pello, Glenn H. Olsen
2013, Veterinary Clinics of North America: Exotic Animal Practice (16) 357-381
Of the many important avian wildlife diseases, aspergillosis, West Nile virus, avipoxvirus, Wellfleet Bay virus, avian influenza, and inclusion body disease of cranes are covered in this article. Wellfleet Bay virus, first identified in 2010, is considered an emerging disease. Avian influenza and West Nile virus have recently been in...
Avian influenza in shorebirds: experimental infection of ruddy turnstones (Arenaria interpres) with avian influenza virus
Jeffrey S. Hall, Scott Krauss, J. Christian Franson, Joshua L. TeSlaa, Sean W. Nashold, David E. Stallknecht, Richard J. Webby, Robert G. Webster
2013, Influenza and Other Respiratory Viruses (7) 85-92
Background: Low pathogenic avian influenza viruses (LPAIV) have been reported in shorebirds, especially at Delaware Bay, USA, during spring migration. However, data on patterns of virus excretion, minimal infectious doses, and clinical outcome are lacking. The ruddy turnstone (Arenaria interpres) is the shorebird species with the highest prevalence of influenza...
Evidence that life history characteristics of wild birds influence infection rates and exposure to influenza A viruses
Craig R. Ely, Jeffrey S. Hall, Joel A. Schmutz, John M. Pearce, John Terenzi, James S. Sedinger, S. Ip
2013, PLoS ONE (8)
We report on life history characteristics, temporal, and age-related effects influencing the frequency of occurrence of avian influenza (AI) viruses in four species of migratory geese breeding on the Yukon-Kuskokwim Delta, Alaska. Emperor geese (Chen canagica), cackling geese (Branta hutchinsii), greater white-fronted geese (Anser albifrons), and black brant (Branta bernicla),...
High seroprevalence of antibodies to avian influenza viruses among wild waterfowl in Alaska: implications for surveillance
Heather M. Wilson, Jeffery S. Hall, Paul L. Flint, J. Christian Franson, Craig R. Ely, Joel A. Schmutz, Michael D. Samuel
2013, PLoS ONE (8)
We examined seroprevalence (presence of detectable antibodies in serum) for avian influenza viruses (AIV) among 4,485 birds, from 11 species of wild waterfowl in Alaska (1998–2010), sampled during breeding/molting periods. Seroprevalence varied among species (highest in eiders (Somateria and Polysticta species), and emperor geese (Chen canagica)), ages (adults higher than...
Comparison of filters for concentrating microbial indicators and pathogens in lake-water samples
Donna S. Francy, Erin A. Stelzer, Amie M. G. Brady, Carrie Huitger, Rebecca N. Bushon, S. Ip, Michael W. Ware, Eric N. Villegas, Vincent Gallardo, H.D. Alan Lindquist
2013, Applied and Environmental Microbiology (79) 1342-1352
Bacterial indicators are used to indicate increased health risk from pathogens and to make beach closure and advisory decisions; however, beaches are seldom monitored for the pathogens themselves. Studies of sources and types of pathogens at beaches are needed to improve estimates of swimming-associated health risks. It would be advantageous...
Estimating transmission of avian influenza in wild birds from incomplete epizootic data: implications for surveillance and disease spreac
Viviane Henaux, Jane Parmley, Catherine Soos, Michael D. Samuel
2013, Journal of Applied Ecology (50) 223-231
Estimating disease transmission in wildlife populations is critical to understand host–pathogen dynamics, predict disease risks and prioritize surveillance activities. However, obtaining reliable estimates for free-ranging populations is extremely challenging. In particular, disease surveillance programs may routinely miss the onset or end of epizootics and peak prevalence, limiting...
Glass wool filters for concentrating waterborne viruses and agricultural zoonotic pathogens
Hana T. Millen, Jordan C. Gonnering, Ryan K. Berg, Susan K. Spencer, William E. Jokela, John M. Pearce, Jackson S. Borchardt, Mark A. Borchardt
2012, Journal of Visualized Experiments (61)
The key first step in evaluating pathogen levels in suspected contaminated water is concentration. Concentration methods tend to be specific for a particular pathogen group, for example US Environmental Protection Agency Method 1623 for Giardia and Cryptosporidium1, which means multiple methods are required if the sampling program is targeting more...
Migratory flyway and geographical distance are barriers to the gene flow of influenza virus among North American birds
Tommy Tsan-Yuk Lam, S. Ip, E. Ghedin, David E. Wentworth, Rebecca A. Halpin, T. B. Stockwell, Robert J. Dusek, James B. Bortner, Jenny Hoskins, Bradley D. Bales, Daniel R. Yparraguirre, E. C. Holmes
2012, Ecology Letters (15) 24-33
Despite the importance of migratory birds in the ecology and evolution of avian influenza virus (AIV), there is a lack of information on the patterns of AIV spread at the intra‐continental scale. We applied a variety of statistical phylogeographic techniques to a plethora of viral genome sequence data to determine...
Emergence of fatal avian influenza in New England harbor seals
S.J. Anthony, J. A. St. Leger, K. Pugliares, Hon S. Ip, J.M. Chan, Z.W. Carpenter, I. Navarrete-Macias, M. Sanchez-Leon, J.T. Saliki, J. Pedersen, W. Karesh, P. Daszak, R. Rabadan, T. Rowles, W.I. Lipkin
2012, mBio (3)
From September to December 2011, 162 New England harbor seals died in an outbreak of pneumonia. Sequence analysis of postmortem samples revealed the presence of an avian H3N8 influenza A virus, similar to a virus circulating in North American waterfowl since at least 2002 but with mutations that indicate recent...
Role of bird movements in the epidemiology of West Nile and avian influenza virus
Sabir Bin Muzaffar, Nichola J. Hill, John Y. Takekawa, William M. Perry, Lacy M. Smith, Walter M. Boyce
2012, Human-Wildlife Interactions (6) 72-88
Avian influenza virus (AIV) is influenced by site fidelity and movements of bird hosts. We examined the movement ecology of American crows (Corvus brachyrhynchos) as potential hosts for West Nile virus (WNV) and greater white-fronted geese (Anser albifrons frontalis) as potential hosts for AIVs. Research was based on radio-telemetry studies...
The effect of swab sample choice on the detection of avian influenza in apparently healthy wild ducks
S. Ip, Robert J. Dusek, Dennis M. Heisey
2012, Avian Diseases (56) 114-119
Historically, avian influenza viruses have been isolated from cloacal swab specimens, but recent data suggest that the highly pathogenic avian influenza (HPAI) H5N1 virus can be better detected from respiratory tract specimens. To better understand how swab sample type affects the detection ability of low pathogenic avian influenza (LPAI) viruses...
Cross-seasonal patterns of avian influenza virus in breeding and wintering migratory birds: a flyway perspective
Nichola J. Hill, John Y. Takekawa, Carol J. Cardona, Brandt W. Meixell, Joshua T. Ackerman, Jonathan A. Runstadler, Walter M. Boyce
2012, Vector-Borne and Zoonotic Diseases (12) 243-253
The spread of avian influenza viruses (AIV) in nature is intrinsically linked with the movements of wild birds. Wild birds are the reservoirs for the virus and their migration may facilitate the circulation of AIV between breeding and wintering areas. This cycle of dispersal has become widely accepted; however, there...
Eco-virological approach for assessing the role of wild birds in the spread of avian influenza H5N1 along the central Asian flyway
Scott H. Newman, Nichola J. Hill, Kyle A. Spragens, Daniel Janies, Igor O. Voronkin, Diann J. Prosser, Baoping Yan, Fumin Lei, Nyambayar Batbayar, Tseveenmyadag Natsagdorj, Charles M. Bishop, Patrick J. Butler, Martin Wikelski, Sivananinthaperumal Balachandran, Taej Mundkur, David C. Douglas, John Y. Takekawa
2012, PLoS ONE (7)
A unique pattern of highly pathogenic avian influenza (HPAI) H5N1 outbreaks has emerged along the Central Asia Flyway, where infection of wild birds has been reported with steady frequency since 2005. We assessed the potential for two hosts of HPAI H5N1, the bar-headed goose (Anser indicus) and ruddy shelduck (Tadorna...
SYBR green-based real-time reverse transcription-PCR for typing and subtyping of all hemagglutinin and neuraminidase genes of avian influenza viruses and comparison to standard serological subtyping tests
K. Tsukamoto, P.C. Javier, M. Shishido, D. Noguchi, John M. Pearce, H.-M. Kang, O.M. Jeong, Y.-J. Lee, K. Nakanishi, T. Ashizawa
2012, Journal of Clinical Microbiology (50) 37-45
Continuing outbreaks of H5N1 highly pathogenic (HP) avian influenza virus (AIV) infections of wild birds and poultry worldwide emphasize the need for global surveillance of wild birds. To support the future surveillance activities, we developed a SYBR green-based, real-time reverse transcriptase PCR (rRT-PCR) for detecting nucleoprotein (NP) genes and subtyping...
Presence of avian influenza viruses in waterfowl and wetlands during summer 2010 in California: Are resident birds a potential reservoir?
V. Henaux, M.D. Samuel, Robert J. Dusek, J. P. Fleskes, Hon S. Ip
2012, PLoS ONE (7)
Although wild waterfowl are the main reservoir for low pathogenic avian influenza viruses (LPAIv), the environment plays a critical role for the circulation and persistence of AIv. LPAIv may persist for extended periods in cold environments, suggesting that waterfowl breeding areas in the northern hemisphere may be an important reservoir...