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1.
Avian Dis ; 61(4): 520-525, 2017 12.
Artigo em Inglês | MEDLINE | ID: mdl-29337613

RESUMO

Avian influenza viruses (AIV) affect many species of birds including waterfowl and may persist in sediment in aquatic habitats. Sediment samples were collected from two areas representative of prime migration and overwintering waterfowl habitat in Dorchester County, Maryland in the fall and winter of 2013-2014. Samples were screened for the presence of AIV via reverse transcriptase-quantitative PCR targeting the matrix gene. Although 13.6% of sediment samples were positive for the AIV matrix gene across all collection dates and locations, differences in detection were noted with location and collection season. Percentage of AIV-positive sediment samples recovered corresponded to trends in waterfowl abundance at collection sites both temporally and spatially. These findings provide further support for the assertion that the presence of AIV in the aquatic environment is likely affected by the total number, site-specific density, and array of waterfowl species.


Assuntos
Monitoramento Ambiental , Sedimentos Geológicos/virologia , Vírus da Influenza A/isolamento & purificação , Animais , Anseriformes , Maryland , Reação em Cadeia da Polimerase Via Transcriptase Reversa/veterinária , Proteínas da Matriz Viral/análise
2.
Proc Biol Sci ; 280(1750): 20122114, 2013 Jan 07.
Artigo em Inglês | MEDLINE | ID: mdl-23118436

RESUMO

Bar-headed geese are renowned for migratory flights at extremely high altitudes over the world's tallest mountains, the Himalayas, where partial pressure of oxygen is dramatically reduced while flight costs, in terms of rate of oxygen consumption, are greatly increased. Such a mismatch is paradoxical, and it is not clear why geese might fly higher than is absolutely necessary. In addition, direct empirical measurements of high-altitude flight are lacking. We test whether migrating bar-headed geese actually minimize flight altitude and make use of favourable winds to reduce flight costs. By tracking 91 geese, we show that these birds typically travel through the valleys of the Himalayas and not over the summits. We report maximum flight altitudes of 7290 m and 6540 m for southbound and northbound geese, respectively, but with 95 per cent of locations received from less than 5489 m. Geese travelled along a route that was 112 km longer than the great circle (shortest distance) route, with transit ground speeds suggesting that they rarely profited from tailwinds. Bar-headed geese from these eastern populations generally travel only as high as the terrain beneath them dictates and rarely in profitable winds. Nevertheless, their migration represents an enormous challenge in conditions where humans and other mammals are only able to operate at levels well below their sea-level maxima.


Assuntos
Migração Animal , Voo Animal , Gansos/fisiologia , Altitude , Animais , Ásia , Tecnologia de Sensoriamento Remoto , Estações do Ano , Vento
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