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Satellites Help Scientists Track Migratory Birds

sharon sanders

Editor-in-Chief & President
Satellites Help Scientists Track Migratory Birds
GPS the Latest Tool in Fight Against Avian Influenza



6 September 2006, Rome/New York ? Wearing light solar-powered global positioning system (GPS) satellite transmitters, wild swans from Mongolia are winging their way across Eurasia, while land-bound scientists tracking the birds? journeys on computers say that these unique studies will shed light on how wild birds may be involved in the spread of avian influenza.

In August, a team of international scientists from FAO and the U.S. Geological Survey (USGS) joined the Wildlife Conservation Society (WCS) and Mongolian Academy of Sciences (MAS) in the surveillance project, which is part of the Wild Bird Global Avian Influenza Network for Surveillance (GAINS) programme funded by USAID. The team attached the GPS transmitters to wild whooper swans in an effort to track the birds to their wintering grounds.

Such research is providing information on migration routes and informs governments about potential threats from diseases such as highly pathogenic avian influenza (HPAI). The HPAI strain known as H5N1 is highly lethal for a variety of species, especially poultry and some waterfowl species. When transmitted to people through close contact with infected birds, the virus can be deadly. Leaders across the world are concerned about a potential pandemic threat should the virus become transmissible among humans.

?We are working to understand the role wild birds may play in the spread of H5N1,? said Dr Scott Newman, International Wildlife Coordinator for Avian Influenza for FAO, seconded from Wildlife Conservation Society, and based in Rome, Italy. ?Although poultry and bird trade are probably the primary routes of movement, migratory birds are likely involved in some areas.?

The whooper swans drew increased attention after large numbers perished in Mongolia in 2005 and in western China in 2005 and 2006 in areas where few poultry are present. Subsequent sampling of the dead swans by WCS scientists Drs Martin Gilbert and William Karesh, verified that some of the swans were infected with HPAI. This discovery suggested that HPAI may be moving through the region and potentially spreads from it, prompting the study to identify where these migratory bird populations fly in the winter.

?Although we are sampling wild birds for avian influenza in the field, we will not be able to fully understand their role in this disease unless we better understand their movements,? said Dr Karesh, who is WCS?s director of the Field Veterinary Program in New York and coordinator of the GAINS system. ?WCS samples birds in East Asia under the GAINS program, but when we find infected birds, we need to know where they are going.?

Many migratory species nest thousands of miles from where they spend the winter, and it is difficult to determine which groups come from which areas, said Dr John Takekawa, one of the wild swan study scientists, who is with the USGS Western Ecological Research Center in California. ?We are marking swans with very small GPS transmitters that are similar to navigation systems on cars, but that also transmit the data through weather satellites so we can track their movements.?

The whooper swan locations are being updated twice weekly on a project webpage that also includes access to the data in Google Earth format. A comprehensive database of information on international wild bird avian influenza surveillance and migratory bird activity is available on the WCS website at http://www.gains.org.

Whooper swans were captured by the international team in early August on the grassland steppe of far eastern Mongolia, near the borders of Russian and China. Each year, swans molt their feathers after the breeding season, and during that flightless period, the birds were captured by biologists in boats and on foot. Small, 70-gram solar-powered transmitters were affixed on 10 of the 8-kilogram large swans with backpack harnesses. The harnesses are made of Teflon ribbon that deteriorates and falls off of the birds within a few years.

Takekawa noted that satellite tracking data will provide information that will not only help scientists better understand and document links between wild birds and the spread of avian influenza, but that will also help enhance conservation efforts through determining the non-breeding ranges of birds and the mechanisms involved in long-distance migration.

The GPS transmitters are made by a wildlife specialty company; it is only in the last five years that they were reduced to a size suitable for migratory birds. Their accurate locations, often better than 30 feet, provide a wealth of information on migrating birds and use of their habitats that was not available before. The locations are recorded every two hours and stored in the transmitter memory before being sent to the research team by email through weather satellites every two days.

Recommendations from the FAO-OIE International Scientific Conference on Avian Influenza and Wild Birds in Rome include improving our understanding of wild bird behavior, precise migratory strategies, locations of aggregation and convergence, and interactions between wildlife and domestic species.

?The whooper swan project in Mongolia demonstrates the importance that FAO places on understanding the relationship between agricultural, wildlife, and human health,? Newman said.

http://www.fao.org/newsroom/en/news/2006/1000388/index.html
 
Re: Satellites Help Scientists Track Migratory Birds

can't they somehow also monitor the contacts with other animals ?
Maybe some mini-IR-sensor with mini-computer submitting a simple
signal about a contact and the size.
I remember, how they wondered in February how/whether
that Baltic Whooper Swan (cygnus cygnus) brought H5N1 to Germany
infecting the (cygnus olor) s


here is a webpage to follow the migration
without having to install "google earth"


http://www.werc.usgs.gov/sattrack/whooperswan/overall.html
 
Re: Satellites Help Scientists Track Migratory Birds

Probing the Mysterious Migration of Swans Suspected in Spread of Avian Flu


http://www.nytimes.com/2006/09/12/science/12bird.html?ex=1315713600&en=7e54137609ea6e46&ei=5088&partner=rssnyt&emc=rss



Tracking avian flu sometimes comes down to moves that have a lot of slapstick potential, like sprinting down a muddy Mongolian beach trying to tackle a scared but temporarily flightless swan.


?They?re pretty fast, even when they can?t fly, and the 100-yard dash is not my specialty,? said John Takekawa, a research wildlife biologist with the United States Geological Survey.


Dr. Takekawa was part of an international team that spent part of August on the shores of Lake Khorin Tsagaan in Mongolia catching whooper swans and strapping tiny transmitters to their backs. If all goes well, the transmitters will help unveil an ornithological mystery: which way whoopers migrate.
The issue became more important last year when field veterinarians from the Wildlife Conservation Society who were investigating the deaths of hundreds of migratory birds on remote lakes in China and Mongolia found that whoopers were among those infected with A(H5N1) influenza. Their migration patterns are poorly understood, but they may have played a role in the brief appearance of the disease all across Europe early this year.
Some scientists think whooper swans only circle Asia, Dr. Takekawa said, but others believe they cross Siberia into Europe. A dead infected bird found on the Scottish coast in March, originally identified as a local mute swan, was actually a whooper, he said.


Catching the birds was possible only in late summer and only in Mongolia, because they molt, losing their flight feathers. For about two weeks, they can be corralled by a combination of kayaks, trucks and fleet-footed young scientists.


The solar-powered transmitters weigh only 2.3 ounces, ?which is nothing to a 20-pound bird,? Dr. Takekawa said. The Teflon straps are designed to fall apart in a few years.


?You have to put them on loosely so they have room to grow for the migration,? said Dr. Kristine Smith, a Wildlife Conservation Society veterinarian who was also on the team. ?But not so loosely that they can slip.?


Wild animals and birds have been tracked by satellite since the 1980?s, but transmitters have steadily shrunk in size and now include global-positioning satellite technology accurate to 30 feet.


They have also become very expensive, leading to the study?s major limitation: the team could afford to tag only 10 of the 600 swans they saw.
?We would have loved to do more, but those radios cost $4,000 apiece,? Dr. Takekawa said.


The birds? migratory paths can be followed on www.werc.usgs.gov/sattrack/.

As of this writing, six were still at the lake, three had slipped north over the Russian border and one seemed to be moving off into the dry Mongolian southwest.
 
Re: Satellites Help Scientists Track Migratory Birds

so, when was it written ?
I see most of them migrating to South Korea, almost the same
time when they had the recent outbreak.
 
Re: Satellites Help Scientists Track Migratory Birds

the first outbreak was confirmed Nov.25th following a drop
in temperature on Nov.5th and conform with start of long range
migration of some of the marked whooper swans
 
Re: Satellites Help Scientists Track Migratory Birds

Is there information on the drop of temperture.

Can you post the data please and show links?

Is this the type of temperature drop that triggers migration?
 
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