Thursday, April 25, 2013

Blood Test May Catch Deadly Fungal Infection Quickly - Health ...

blood MIC023ML Blood Test May Catch Deadly Fungal Infection Quickly

By Amy Norton
HealthDay Reporter

WEDNESDAY, April 24 (HealthDay News) ? An experimental test could help doctors catch a deadly type of fungal infection in the blood within a few hours, rather than the few days it currently takes, a new study suggests.

The test, which is not yet on the market, looks for Candida infection in the blood. The fungus is best known for causing common vaginal yeast infections, but when it gets into the bloodstream it can cause serious infections of organs and tissue throughout the body.

Candida blood infections ? known as candidemia ? are very rare in healthy people, but they are the fourth most common type of blood infection among U.S. hospital patients, according to the U.S. Centers for Disease Control and Prevention.

The infection is typically transmitted through contaminated catheters, and seen in seriously ill patients ? such as those in the intensive care unit, or with weakened immune systems.

The symptoms of candidemia are vague, and include fever and chills, so doctors use blood cultures to diagnose it. That means putting a blood sample in a special broth that feeds the yeast organism until it grows enough to be detected.

But Candida ?is a slow grower,? and it takes a few days to get blood culture results back, said Thomas Lowery of T2 Biosystems, the Lexington, Mass.-based company developing the new test.

By that time, it may be too late for the patient. About 40 percent of people with Candida blood infections die, and delayed diagnosis bears part of the blame, Lowery and his colleagues write in the April 24 issue of the journal Science Translational Medicine.

Getting a precise diagnosis is vital, Lowery said, both to confirm that it?s Candida, and to pinpoint which type it is. ?You need to know the specific Candida so you can use the right antifungal drug,? he said.

In the new study, Lowery?s team found that the test they?ve developed can reliably detect the five most common species of Candida within about three hours.

The researchers used blood samples from healthy people and ?spiked? them with Candida yeast. They then analyzed the samples with the new test and with standard blood cultures. The two tests were in agreement on ?positives? 98 percent of the time.

An expert not involved in the research said the test?s sensitivity is ?very, very good.?

?This is preliminary, but the technology looks extremely promising,? said Christine Ginocchio, chief of infectious disease diagnostics at North Shore-LIJ Health System in Lake Success, N.Y.

What?s particularly ?exciting? is that the technology could potentially be used to test for other pathogens that cause serious bloodstream infections, according to Ginocchio, who is also a member of the Infectious Diseases Society of America?s Diagnostics Task Force.

Ideally, Ginocchio explained, when doctors suspect a patient has a bloodstream infection, they would be able to take a blood sample, directly test it, then have a result in a few hours. The problem right now is that a blood sample would normally not contain enough of the culprit bug ? be it a fungus or bacterium ? to detect.

Plus, Ginocchio noted, the blood contains a lot of other genetic material that gets in the way of spotting that bit of foreign-invader DNA. That?s why blood cultures are done.

The new test, which is based on so-called magnetic resonance technology, essentially removes the ?noise? coming from other material in the blood sample, allowing it to zero in on the pathogen.

There is still more work to be done. ?Now you?d like to see this tested in a larger, multicenter trial,? Ginocchio said.

The process would also need to be automated, she noted, to be feasible for smaller community hospitals. T2 Biosystems? Lowery said the researchers are working on making the method ?fully automated.?

Exactly what it would all cost is not known. But both Ginocchio and Lowery said that if the test gets more patients on the right drug quickly, the cost would likely be worth it.

According to Lowery?s team, research suggests that with Candida infections, starting the right antifungal drug within 12 hours can cut the death rate from 40 percent to 11 percent.

More information

Learn more about Candida blood infections from the U.S. Centers for Disease Control and Prevention.

HEALTHDAY Web XSmall Blood Test May Catch Deadly Fungal Infection Quickly

Source: http://news.health.com/2013/04/24/blood-test-may-catch-deadly-fungal-infection-quickly/

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Ice tubes in polar seas -- 'brinicles' or 'sea stalactites' -- provide clues to origin of life

Apr. 24, 2013 ? Life on Earth may have originated not in warm tropical seas, but with weird tubes of ice -- sometimes called "sea stalactites" -- that grow downward into cold seawater near Earth's poles, scientists are reporting.

Their article on these "brinicles" appears in ACS' journal Langmuir.

Bruno Escribano and colleagues explain that scientists know surprisingly little about brinicles, which are hollow tubes of ice that can grow to several yards in length around streamers of cold seawater under pack ice. That's because brinicles are difficult to study. The scientists set out to gather more information on the topic with an analysis of the growth process of brinicles.

They are shown to be analogous to a "chemical garden," a standby demonstration in chemistry classes and children's chemistry sets, in which tubes grow upward from metal salts dropped into silicate solution. But brinicles grow downward from the bottom of the ice pack.

The analysis concluded that brinicles provide an environment that could well have fostered the emergence of life on Earth billions of years ago, and could have done so on other planets. "Beyond Earth, the brinicle formation mechanism may be important in the context of planets and moons with ice-covered oceans," the report states, citing in particular two moons of Jupiter named Ganymede and Callisto.

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The above story is reprinted from materials provided by American Chemical Society.

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Journal Reference:

  1. Julyan Cartwright, Bruno Escribano, Diego L. Gonz?lez, Claro Ignacio Sainz-Diaz, idan tuval. Brinicles as a case of inverse chemical gardens. Langmuir, 2013; : 130403173604005 DOI: 10.1021/la4009703

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_science/~3/DaSQJwKHSz4/130424112316.htm

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Presidents converge to salute one of their own

Participants look at a LED display before a signing ceremony for the joint use agreement between the National Archive and the George W. Bush Presidential Center Wednesday, April 24, 2013, in Dallas. Bush and his wife, Laura, attended Wednesday's ceremony in Dallas the day before the official dedication of the George W. Bush Presidential Center. The George W. Bush Foundation raised the money to build the center. The foundation donated the library and museum portion of the center to the National Archives, which provides access to presidential records, documents, historical materials and artifacts over time.(AP Photo/David J. Phillip)

Participants look at a LED display before a signing ceremony for the joint use agreement between the National Archive and the George W. Bush Presidential Center Wednesday, April 24, 2013, in Dallas. Bush and his wife, Laura, attended Wednesday's ceremony in Dallas the day before the official dedication of the George W. Bush Presidential Center. The George W. Bush Foundation raised the money to build the center. The foundation donated the library and museum portion of the center to the National Archives, which provides access to presidential records, documents, historical materials and artifacts over time.(AP Photo/David J. Phillip)

Former President George W. Bush participates in a signing ceremony for the joint use agreement between the National Archive and the George W. Bush Presidential Center Wednesday, April 24, 2013, in Dallas. Bush and his wife, Laura, attended Wednesday's ceremony in Dallas the day before the official dedication of the George W. Bush Presidential Center. The George W. Bush Foundation raised the money to build the center. The foundation donated the library and museum portion of the center to the National Archives, which provides access to presidential records, documents, historical materials and artifacts over time. (AP Photo/David J. Phillip)

President Barack Obama and first lady Michelle Obama walk over to greet guests who awaited for them to arrive at Love Field Wednesday, April 24, 2013, in Dallas. The President will be in attendance Thursday at the George W. Bush presidential library dedication. (AP Photo/Tony Gutierrez)

Bush Center president Mark Langdale, front left and national archivist David Ferriero, right, sign a joint use agreement for the George W. Bush Presidential Center Wednesday, April 24, 2013, in Dallas. At rear from left are board chairman of the George W. Bush Foundation Don Evans, former first lady Laura Bush, former president George W. Bush, and Bush Center Director Alan Lowe. Bush and his wife, Laura, attended Wednesday's ceremony in Dallas the day before the official dedication of the George W. Bush Presidential Center. The George W. Bush Foundation raised the money to build the center. The foundation donated the library and museum portion of the center to the National Archives, which provides access to presidential records, documents, historical materials and artifacts over time. (AP Photo/David J. Phillip)

(AP) ? All the living American presidents past and present are gathering in Dallas, a rare reunion to salute one of their own at the dedication of the George W. Bush Presidential Center.

Profound ideological differences and a bitter history of blaming each other for the nation's woes will give way ? if just for a day ? to pomp and pleasantries Thursday as the five members of the most exclusive club in the world appear publicly together for the first time in years. For Bush, 66, the ceremony also marks his unofficial return to the public eye four years after the end of his deeply polarizing presidency.

On the sprawling, 23-acre university campus north of downtown Dallas housing his presidential library, museum and policy institute, Bush will be feted by his father, George H.W. Bush, and the two surviving Democrats, Bill Clinton and Jimmy Carter. President Barack Obama, fresh off a fundraiser for Democrats the night before, will also speak.

In a reminder of his duties as the current Oval Office inhabitant, Obama will travel to Waco in the afternoon for a memorial for victims of last week's deadly fertilizer plant explosion.

Key moments and themes from Bush's presidency ? the harrowing, the controversial and the inspiring ? won't be far removed from the minds of the presidents and guests assembled to dedicate the center, where interactive exhibits invite scrutiny of Bush's major choices as president, such as the financial bailout, the Iraq War and the international focus on HIV and AIDS.

On display is the bullhorn that Bush, near the start of his presidency, used to punctuate the chaos at ground zero three days after 9/11. Addressing a crowd of rescue workers amid the ruins of the World Trade Center, Bush said: "I can hear you. The rest of the world hears you. And the people who knocked these buildings down will hear all of us soon."

"Memories are fading rapidly, and the profound impact of that attack is becoming dim with time," Bush told The Associated Press earlier this month. "We want to make sure people remember not only the lives lost and the courage shown, but the lesson that the human condition overseas matters to the national security of our country."

More than 70 million pages of paper records. Two hundred million emails. Four million digital photos. About 43,000 artifacts. Bush's library will feature the largest digital holdings of any of the 13 presidential libraries under the auspices of the National Archives and Records Administration, officials said. Situated in a 15-acre urban park at Southern Methodist University, the center includes 226,000 square feet of indoor space.

A full-scale replica of the Oval Office as it looked during Bush's tenure sits on the campus, as does a piece of steel from the World Trade Center. In the museum, visitors can gaze at a container of chads ? the remnants of the famous Florida punch card ballots that played a pivotal role in the contested 2000 election that sent Bush to Washington.

Former first lady Laura Bush led the design committee, officials said, with a keen eye toward ensuring that her family's Texas roots were conspicuously reflected. Architects used local materials, including Texas Cordova cream limestone and trees from the central part of the state, in its construction.

The public look back on the tenure of the nation's 43rd president comes as Bush is undergoing a coming-out of sorts after years spent in relative seclusion, away from the prying eyes of cameras and reporters that characterized his two terms in the White House and his years in the Texas governor's mansion before that. As the library's opening approached, Bush and his wife embarked on a round-robin of interviews with all the major television networks, likely aware that history's appraisal of his legacy and years in office will soon be solidifying.

An erroneous conclusion that Iraq had weapons of mass destruction, a bungling of the federal government's response to Hurricane Katrina and a national debt that grew much larger under his watch stain the memory of his presidency for many, including Obama, who won two terms in the White House after lambasting the choices of its previous resident. But on Wednesday, Obama staunchly defended Bush's commitment to the America's well-being while addressing Democratic donors.

"Whatever our political differences, President Bush loves this country and loves his people and shared that same concern, and is concerned about all people in America," Obama said. "Not just some. Not just those who voted Republican."

There's at least some evidence that Americans are warming to Bush's presidency four years after he returned to his ranch in Crawford, even if they still question his judgment on Iraq and other issues. While Bush left office with an approval rating of 33 percent, that figure has climbed to 47 percent ? about equal to Obama's own approval rating, according to a Washington Post-ABC News poll released ahead of the library opening.

Bush pushed forcefully but unsuccessfully for the type of sweeping immigration overhaul that Congress, with Obama's blessing, is now pursuing. And his aggressive approach to counterterrorism may be viewed with different eyes as the U.S. continues to be touched by acts of terrorism.

Although museums and libraries, by their nature, look back on history, the dedication of Bush's library also offers a few hints about the future, with much of the nation's top political brass gathered in the same state. Clinton's wife, Hillary Rodham Clinton, stoked speculation about her own political future Wednesday in a Dallas suburb when she delivered her first paid speech since stepping down as secretary of state earlier this year. And Bush talked up the presidential prospects of his brother, former Florida Gov. Jeb Bush, in an interview that aired Wednesday on ABC.

"He doesn't need my counsel, because he knows what it is, which is, 'Run,'" Bush said.

Obama, too, may have his own legacy in mind. He's just a few years out from making his own decision about where to house his presidential library and the monument to his legacy.

___

Follow Josh Lederman on Twitter: http://twitter.com/joshledermanAP

Associated Press

Source: http://hosted2.ap.org/APDEFAULT/89ae8247abe8493fae24405546e9a1aa/Article_2013-04-25-Bush%20Library/id-7618fae012874747bb6cdd3ed72a709d

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Sunlit snow triggers atmospheric cleaning, ozone depletion in the Arctic

Sunlit snow triggers atmospheric cleaning, ozone depletion in the Arctic [ Back to EurekAlert! ] Public release date: 24-Apr-2013
[ | E-mail | Share Share ]

Contact: Peter West
pwest@nsf.gov
703-292-7530
National Science Foundation

Finding is related to snow atop sea ice, adding a new dimension to scientific concerns about loss of Arctic ice

National Science Foundation-funded researchers at Purdue University have discovered that sunlit snow is the major source of atmospheric bromine in the Arctic, the key to unique chemical reactions that purge pollutants and destroy ozone.

The new research also indicates that the surface snowpack above Arctic sea ice plays a previously unappreciated role in the bromine cycle and that loss of sea ice, which been occurring at an increasingly rapid pace in recent years, could have extremely disruptive effects in the balance of atmospheric chemistry in high latitudes.

The team's findings suggest the rapidly changing Arctic climate--where surface temperatures are rising three times faster than the global average--could dramatically change its atmospheric chemistry, said Paul Shepson, an NSF-funded researcher who led the research team. The experiments were conducted by Kerri Pratt, a postdoctoral researcher funded by the Division of Polar Programs in NSF's Geosciences Directorate.

"We are racing to understand exactly what happens in the Arctic and how it affects the planet because it is a delicate balance when it comes to an atmosphere that is hospitable to human life," said Shepson, who also is a founding member of the Purdue Climate Change Research Center. "The composition of the atmosphere determines air temperatures, weather patterns and is responsible for chemical reactions that clean the air of pollutants."

A paper detailing the results of the research, some of which was funded by NSF and some by the National Aeronautics and Space Administration, was recently published online at Nature Geoscience.

Ozone in the lower atmosphere behaves differently from the stratospheric ozone involved in the planet's protective ozone layer. This lower atmosphere ozone is a greenhouse gas that is toxic to humans and plants, but it also is an essential cleaning agent of the atmosphere.

Interactions between sunlight, ozone and water vapor create an "oxidizing agent" that scrubs the atmosphere of most of the pollutants human activity releases into it, Shepson said.

Temperatures at the poles are too cold for the existence of much water vapor and in the Arctic this cleaning process appears instead to rely on reactions on frozen surfaces involving molecular bromine, a halogen gas derived from sea salt.

This gaseous bromine reacts with and destroys atmospheric ozone. This aspect of the bromine chemistry works so efficiently in the Arctic that ozone is often entirely depleted from the atmosphere above sea ice in the spring, Shepson noted.

"This is just a part of atmospheric ozone chemistry that we don't understand very well, and this unique Arctic chemistry teaches us about the potential role of bromine in other parts of the planet," he said. "Bromine chemistry mediates the amount of ozone, but it is dependent on snow and sea ice, which means climate change may have important feedbacks with ozone chemistry."

While it was known that there is more atmospheric bromine in polar regions, the specific source of the natural gaseous bromine has remained in question for several decades, said Pratt, a Polar Programs-funded postdoctoral fellow and lead author of the paper.

"We thought that the fastest and best way to understand what is happening in the Arctic was to go there and do the experiments right where the chemistry is happening," Pratt said.

She and Purdue graduate student Kyle Custard performed the experiments in -45 to -34 Celsius (-50 to -30 Fahrenheit) wind chills near Barrow, Alaska. The team examined first-year sea ice, salty icicles and snow and found that the source of the bromine gas was the top surface snow above both sea ice and tundra.

"Sea ice had been thought to be the source of the gaseous bromine," she said. "We had an 'of course!' moment when we realized it was the snow on top of the sea ice. The snow is what is in direct contact with the atmosphere. Sea ice is critical to the process, though. Without it, the snow would fall into the ocean, and this chemistry wouldn't take place. This is among the reasons why the loss of sea ice in the Arctic will directly impact atmospheric chemistry."

The team also discovered that sunlight triggered the release of bromine gas from the snow and the presence of ozone increased the production of bromine gas.

"Salts from the ocean and acids from a layer of smog called Arctic haze meet on the frozen surface of the snow, and this unique chemistry occurs," Pratt said. "It is the interface of the snow and atmosphere that is the key."

A series of chemical reactions that quickly multiplies the amount of bromine gas present, called the "bromine explosion," is known to occur in the atmosphere. The team suggests this also occurs in the spaces between the snow crystals and wind then releases the bromine gas up into the air above the snow.

The team performed 10 experiments with snow and ice samples contained in a "snow chamber," a box constructed of aluminum with a special coating to prevent surface reactions and a clear acrylic top. Clean air with and without ozone was allowed to flow through the chamber and experiments were performed in darkness and in natural sunlight.

The team also measured the levels of bromine monoxide, a compound formed from the reaction of bromine atoms with ozone, through flights of the Purdue Airborne Laboratory for Atmospheric Research.

Shepson is the pilot of this specially equipped aircraft, which he and air operations technical specialist Brian Stirm flew from Indiana to Barrow for these experiments. They found the compound was most prevalent over snow-covered first-year sea ice and tundra, consistent with their snow chamber experiments.

The experiments were performed from March to April 2012 and were part of NASA's Bromine, Ozone and Mercury Experiment, or BROMEX. The goal of the study is to understand the implications of Arctic sea ice reduction on tropospheric chemistry.

Shepson's group next plans to perform laboratory studies to test the proposed reaction mechanisms and to return to Barrow to perform more snow chamber experiments.

In addition, Shepson is co-leading a team using ice-tethered buoys to measure carbon dioxide, ozone and bromine monoxide across the Arctic Ocean, and Pratt is working with scientists from the University of Washington to examine the chemistry of snow from across the Arctic Ocean.

"In the Arctic, climate change is happening at an accelerated pace," Pratt said. "A big question is what will happen to atmospheric composition in the Arctic as the temperatures rise and snow and ice decline even further?"

###


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?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Sunlit snow triggers atmospheric cleaning, ozone depletion in the Arctic [ Back to EurekAlert! ] Public release date: 24-Apr-2013
[ | E-mail | Share Share ]

Contact: Peter West
pwest@nsf.gov
703-292-7530
National Science Foundation

Finding is related to snow atop sea ice, adding a new dimension to scientific concerns about loss of Arctic ice

National Science Foundation-funded researchers at Purdue University have discovered that sunlit snow is the major source of atmospheric bromine in the Arctic, the key to unique chemical reactions that purge pollutants and destroy ozone.

The new research also indicates that the surface snowpack above Arctic sea ice plays a previously unappreciated role in the bromine cycle and that loss of sea ice, which been occurring at an increasingly rapid pace in recent years, could have extremely disruptive effects in the balance of atmospheric chemistry in high latitudes.

The team's findings suggest the rapidly changing Arctic climate--where surface temperatures are rising three times faster than the global average--could dramatically change its atmospheric chemistry, said Paul Shepson, an NSF-funded researcher who led the research team. The experiments were conducted by Kerri Pratt, a postdoctoral researcher funded by the Division of Polar Programs in NSF's Geosciences Directorate.

"We are racing to understand exactly what happens in the Arctic and how it affects the planet because it is a delicate balance when it comes to an atmosphere that is hospitable to human life," said Shepson, who also is a founding member of the Purdue Climate Change Research Center. "The composition of the atmosphere determines air temperatures, weather patterns and is responsible for chemical reactions that clean the air of pollutants."

A paper detailing the results of the research, some of which was funded by NSF and some by the National Aeronautics and Space Administration, was recently published online at Nature Geoscience.

Ozone in the lower atmosphere behaves differently from the stratospheric ozone involved in the planet's protective ozone layer. This lower atmosphere ozone is a greenhouse gas that is toxic to humans and plants, but it also is an essential cleaning agent of the atmosphere.

Interactions between sunlight, ozone and water vapor create an "oxidizing agent" that scrubs the atmosphere of most of the pollutants human activity releases into it, Shepson said.

Temperatures at the poles are too cold for the existence of much water vapor and in the Arctic this cleaning process appears instead to rely on reactions on frozen surfaces involving molecular bromine, a halogen gas derived from sea salt.

This gaseous bromine reacts with and destroys atmospheric ozone. This aspect of the bromine chemistry works so efficiently in the Arctic that ozone is often entirely depleted from the atmosphere above sea ice in the spring, Shepson noted.

"This is just a part of atmospheric ozone chemistry that we don't understand very well, and this unique Arctic chemistry teaches us about the potential role of bromine in other parts of the planet," he said. "Bromine chemistry mediates the amount of ozone, but it is dependent on snow and sea ice, which means climate change may have important feedbacks with ozone chemistry."

While it was known that there is more atmospheric bromine in polar regions, the specific source of the natural gaseous bromine has remained in question for several decades, said Pratt, a Polar Programs-funded postdoctoral fellow and lead author of the paper.

"We thought that the fastest and best way to understand what is happening in the Arctic was to go there and do the experiments right where the chemistry is happening," Pratt said.

She and Purdue graduate student Kyle Custard performed the experiments in -45 to -34 Celsius (-50 to -30 Fahrenheit) wind chills near Barrow, Alaska. The team examined first-year sea ice, salty icicles and snow and found that the source of the bromine gas was the top surface snow above both sea ice and tundra.

"Sea ice had been thought to be the source of the gaseous bromine," she said. "We had an 'of course!' moment when we realized it was the snow on top of the sea ice. The snow is what is in direct contact with the atmosphere. Sea ice is critical to the process, though. Without it, the snow would fall into the ocean, and this chemistry wouldn't take place. This is among the reasons why the loss of sea ice in the Arctic will directly impact atmospheric chemistry."

The team also discovered that sunlight triggered the release of bromine gas from the snow and the presence of ozone increased the production of bromine gas.

"Salts from the ocean and acids from a layer of smog called Arctic haze meet on the frozen surface of the snow, and this unique chemistry occurs," Pratt said. "It is the interface of the snow and atmosphere that is the key."

A series of chemical reactions that quickly multiplies the amount of bromine gas present, called the "bromine explosion," is known to occur in the atmosphere. The team suggests this also occurs in the spaces between the snow crystals and wind then releases the bromine gas up into the air above the snow.

The team performed 10 experiments with snow and ice samples contained in a "snow chamber," a box constructed of aluminum with a special coating to prevent surface reactions and a clear acrylic top. Clean air with and without ozone was allowed to flow through the chamber and experiments were performed in darkness and in natural sunlight.

The team also measured the levels of bromine monoxide, a compound formed from the reaction of bromine atoms with ozone, through flights of the Purdue Airborne Laboratory for Atmospheric Research.

Shepson is the pilot of this specially equipped aircraft, which he and air operations technical specialist Brian Stirm flew from Indiana to Barrow for these experiments. They found the compound was most prevalent over snow-covered first-year sea ice and tundra, consistent with their snow chamber experiments.

The experiments were performed from March to April 2012 and were part of NASA's Bromine, Ozone and Mercury Experiment, or BROMEX. The goal of the study is to understand the implications of Arctic sea ice reduction on tropospheric chemistry.

Shepson's group next plans to perform laboratory studies to test the proposed reaction mechanisms and to return to Barrow to perform more snow chamber experiments.

In addition, Shepson is co-leading a team using ice-tethered buoys to measure carbon dioxide, ozone and bromine monoxide across the Arctic Ocean, and Pratt is working with scientists from the University of Washington to examine the chemistry of snow from across the Arctic Ocean.

"In the Arctic, climate change is happening at an accelerated pace," Pratt said. "A big question is what will happen to atmospheric composition in the Arctic as the temperatures rise and snow and ice decline even further?"

###


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2013-04/nsf-sst042413.php

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Deadly Strain Of Bird Flu Is 'Most Lethal' Flu Virus Yet

Copyright ? 2013 NPR. For personal, noncommercial use only. See Terms of Use. For other uses, prior permission required.

NEAL CONAN, HOST:

At a briefing in Beijing today, World Health Organization officials describe the bird flu that's emerged over the past few weeks in China as one of the most lethal of its kind. The H7N9 strain is blamed for the deaths of more than 20 people, mostly in eastern China. But after a five-day investigation, officials say the source of the virus remains elusive. What have you heard about H7N9? What do you want to know? Give us a call: 800-989-8255. Email: talk@npr.org. You can also join the conversation on our website. That's at npr.org. Click on TALK OF THE NATION. Joining us now from his office in Boston is NPR's science correspondent, Richard Knox. Always good to have you with us.

RICHARD KNOX, BYLINE: Good to be here. Thank you.

CONAN: And in previous cases of bird flu, generally, the villains are livestock - chickens.

KNOX: Yeah. One of the disturbing things about this to people who are, you know, follow the flu is that this virus doesn't makes or other birds sick - or at least not very often or not very noticeably. So it's been very hard to track in the environment, and it just kind of popped up when we first found these - when they first found these human cases about a month ago.

CONAN: And so we believe that the disease goes from birds, livestock, to people. But what was bout from person to person?

KNOX: Not so far. There are three clusters of cases in families where more than one family member has gotten sick. And so that might mean that in those cases, the virus from person to person, but not necessarily. It just might mean that the same person - I mean, you know, more than one person in the family got exposed to the infected chicken, or environmental contamination.

CONAN: Yet the fear, of cause, is these things evolve.

KNOX: Oh, yes. I think that's really the big fear on the part of the flu experts that I've been talking to. They, you know, this virus is clearly, genetically partially evolved to infect humans. That's why we're seeing these cases. So there has been genetic change so far - excuse me - that allows that, but not the genetic changes they would need in order to pass easily from human to human. And it could acquire that. But on the other hand, the H5N1 virus that flu experts have been following for 10 years has not yet learned how to do that, thankfully.

CONAN: And the scary part is if this new one does, it's particularly lethal.

KNOX: Yeah. And just to put it in a little bit context, as Keiji Fukuda - who's the WHO's top flu expert and who led this team to China that, over past five days, has tried to get a ground's eye view of what's going on there - he notes that this is one of the most lethal flu viruses known. So far, it has killed about 20 percent of the known cases. We might want to come back to that, because there may be others we don't know about. And comparably - compared to the H5N1 virus, that's deadlier. It's killed about 60 percent - triple that rate - over the last the last 10 years.

CONAN: But with such a small sample, do we really have a good idea of its nature?

KNOX: Yeah. That's one of the big unknowns. There's been at least one case in China involving a four-year-old boy in Beijing who seemed to have gotten the virus - or they're pretty sure he got the virus - without showing any symptoms. So that suggests that can happen. How often it happens is a total unknown, because there's no good quick antibody test yet to go around testing people who have been close to the known cases. So we don't know how big the iceberg is. We certainly know the tip of the iceberg are these 120 - excuse me - 108 cases who've gotten generally pretty sick so far. But that - you can't really calculate a death rate till you know the denominator, the whole iceberg.

CONAN: And in terms of response to this, yes, you start taking tests. Yes, you start to develop a genetic signature for it. But also, a lot of the time people start, well, killing the bird population.

KNOX: Yeah. Well, in fact that is a known proven way of limiting the spread of a disease that's spread by poultry and livestock, is to stamp it out or cull the infected herds. You can't really do too much of that in this case because, as I said, the chickens, the ducks, the poultry pigeons - you know, pigeons are a poultry item in China - don't get sick. So you can't really tell when a flock is infected.

One thing that seems to been effective, and they said that today in the conference in Beijing, is that closure of the live poultry markets in Shanghai, which is where this first appeared, seems to have slowed the number of cases emerging in that city.

CONAN: In Shanghai and - we're talking about Eastern China then.

KNOX: Yes. There are two municipalities and five provinces where this is - where the cases have come up so far, except for one in Taiwan today. We should come back to that. The - Shanghai seems to be the epicenter and the five provinces surrounding Shanghai. That's a really big area. That's like...

CONAN: And a lot of people.

KNOX: And a lot of people and, you know, hundreds of miles spread. So that's not a small area. There have been two reported cases in Beijing, one an eight-year-old girl who got sick and recovered, and the other her neighbor across the street, who is the case I mentioned who got the virus but didn't get sick.

CONAN: Yet you mentioned A) Beijing, a pretty fair distance from Shanghai, and Taiwan?

KNOX: Yes. Just today the Taiwanese reported an imported case. Not something that sprang up spontaneously there, but a man - 53-year-old businessman who traveled back and forth between Taiwan and a city called Suzhou - I'm not sure I pronounced it correctly. It's near Shanghai. And he got sick after he returned from Suzhou around April 12. So he clearly was infected there and brought it to Taiwan, which shows, not for the first time, that one of the issues with flu is that it can travel very easily in an age of air travel. He's in pretty rocky condition with respiratory failure in an intensive care unit in Taiwan.

CONAN: And that's one of the things that really does scare people, is getting on a plane with somebody else who's got it and then, well, the fear is everybody else on the plane gets it and they take off to all sorts of different points, and at that point it's hard to contain it. The important point to re-emphasize, though: so far no spread of this virus - this strain of the virus from one person to another person.

KNOX: That's right. They've been monitoring in China more than - well, more than 1,000 people, I think, by now who have been close contacts with the known cases. And they have not been finding spread from the cases to other people, except possibly in these, you know, like, three families and that's iffy. So I think right now we're not going to see an explosion. It would require something else, some unknown genetic factor that you can bet scientists are looking for, what that might be, in order to enable the virus to do that.

CONAN: Well, we'd like to hear what you've heard about this new strain of flu, what questions you have about it: 800-989-8255. Email us: talk@npr.org. And we'll start with Dave. And Dave is with us from Eagle in Idaho.

DAVE: Yes. I was wondering about the local population, if they're building up antibodies that would just maybe help protect them, whereas those of us who don't have chickens in the backyard aren't going to build that immunity.

KNOX: That's a very good question. Actually, it's a couple of points that are worth making there. One is that this - one of the things that's disturbing to flu experts about H7N9 is that never before have humans been known to get this virus, so there's presumably no pre-existing immunity out there in the population, unlike with H1N1 that caused a pandemic in 2009, as you remember. That's an H1 virus, and lots of, you know, practically the whole world has some level of protection against H1 viruses, which is why it didn't - wasn't as bad as people feared.

With this virus there is that danger. But the problem is we don't yet know how to test widely for antibodies against this virus. That's certainly something they're working on pretty frantically now so that we would get a sense of whether people out there who've been exposed developed antibodies and that might be protective. That's going to be a very important question regarding a vaccine if it's decided down the road that a vaccine is a good idea to make one, because we need to know what a vaccine would have to do in order to raise those protective antibodies.

CONAN: Thanks very much for the call.

DAVE: I have - can I follow up with...

CONAN: Sure.

DAVE: ...a question about - wasn't there like 1,000 or 1,500 dead pigs floating down a river? Where was that? Is there any connection?

KNOX: That was the river that goes through Shanghai. Yeah, there was a lot of worry about that. The best information I've seen is that there was no connection. They've discovered a pig virus in a lot of those dead pigs and they haven't - importantly, they have not discovered H7N9 flu virus in either those dead pigs or in livestock that are in slaughterhouses or farms.

DAVE: Thank you very much.

KNOX: Sure.

CONAN: Thanks very much for the call. We're talking with NPR's Richard Knox, and you're listening to TALK OF THE NATION from NPR News. And let's get Mary on the line, Mary calling us from St. Louis.

MARY: Hi. I have a question about this. I was wondering if a person or an animal that consumed poultry that was infected with the virus could get the virus.

CONAN: Yeah. Richard, if they don't know which animals have it and which don't, couldn't they end up in one of those slaughterhouses?

KNOX: Yes. (Technical difficulty) that's certainly a matter of concern. As I mentioned earlier, they've have been testing tens and tens of thousands of poultry around China and have found mysteriously few that are positive for this virus. So it's not at all clear how widespread it is in poultry or where.

The Chinese and the World Health Organization are saying that there's no evidence that people who eat poultry are at risk. You know, the usual precautions are certainly important, which is it needs to be cooked well. You don't want to eat chicken that's rare or pink.

And that, you know, people who prepare poultry should be, you know, wash their hands, wash the utensils that they use, wash the cutting boards and so on, because an uncooked infected chicken presumably could contaminate environmental services and get to humans.

CONAN: But again, no reason to believe this has left China or Taiwan?

KNOX: No. And also if, you know, if eating chicken were a big risk factor, we'd certainly have seen a lot more cases than we have.

CONAN: Mary, thanks very much. Let's go next to - this is Lisa. And Lisa is on line with us from Jonesboro in Arkansas.

LISA: Hi there.

CONAN: Hi.

LISA: It's delightful to hear that it's at this point not much of the concern that it's going to come stateside. But if it does, we do have backyard chickens and I have young boys. And I'm just wondering if there are things that can be done to make sure that we are able to protect ourselves and our family and our chickens.

KNOX: Well, first of all, I think you should stay tuned. We're trying to cover it and another media organizations are. And so I think you should watch what's happening in China to get some sense of whether it's becoming a bigger problem A) within China, or B) outside of China. I think there - certainly the surrounding countries such as Vietnam are extremely vigilant about exports of poultry from China right now. And I think that's going to be true here.

You know, I don't think there's much reason to worry right now about people bringing the H9 - excuse me - H7N9 virus from China to the United States and thereafter passing it to poultry. You know, that doesn't seem to be in the picture.

You know, downstream, you know, I think nobody really knows how this might evolve. I can bet that - pretty safely - that poultry experts in this, the Department of Agriculture and academic institutions, are watching carefully and probably starting to think about developing a poultry - a vaccine. But I don't know much more about that right now.

LISA: OK.

CONAN: Thanks very much.

LISA: Thank you so much. I will appreciate it.

CONAN: Thank you.

KNOX: Sure.

CONAN: And in the past, Chinese officials have either not been forthcoming in some cases, or in other cases may not have been aware of everything that's going on. Is there more confidence we're - this is under control in China?

KNOX: The World Health Organization has said today and frequently over the past month that they're very pleased with the way that Chinese have been conveying information to the World Health Organization and to the academic authorities who are following this. They have - they were very fast in sequencing the virus and publishing the sequence of several of the viruses that they recovered from patients in China, which really enables researchers everywhere to try to puzzle this thing out.

They invited this international team of flu experts - including Nancy Cox, who's the chief flu expert at the CDC in Atlanta - into China to look at the situation. I think the indications are that they're really doing everything they can, not to do - not to be charged of the same thing they were 10 years ago when SARS emerged and they really did try to cover it up for a critical period of time.

CONAN: And if the decision is made that a vaccine does need to be developed, we keep hearing about new technology that would make that faster. Is it here in time?

KNOX: Yes, it is, fortunately. There are ways of - so-called reverse engineering, where you start with the genes rather than with the virus and you make a synthetic virus that can be the basis for a vaccine. Basically what a vaccine is is a particular strain of virus that - then you can disable, make not infectious, inject into people safely and they will make antibodies to it.

The old way of making flu vaccines, which involves growing up the virus in millions and millions of eggs and then extracting the virus from the eggs and, you know, disabling it and then injecting it, is still around and that's the way we get most of our seasonal flu vaccine these days. They are pursuing vaccine on both fronts. You know, both the new kind of cell, so-called cell-cultured way, and the old-fangled egg way, because they want to be ready to make vaccine in a big hurry if they need to.

CONAN: And what is the next step?

KNOX: In vaccine production?

CONAN: No, no. What's the next step in monitoring the expansion or the spread of this particular strain, the H7N9?

KNOX: The next step is to - is for China to continue to test widely in animal populations, to try to figure out where this is coming from and whether it's regional and whether it's spreading. That's one of them. I think another next step, which has begun, is to study this virus really intensively. For instance, one of the things that scientists several labs around the country, around the world, are now doing, is to infect ferrets, these little weasel-like creatures which respond to flu the way humans do see if it spreads easily from ferret to ferret.

CONAN: Richard, thanks as always.

KNOX: Any time.

CONAN: Richard Knox, science correspondent for NPR News, joined us today from his office in Boston.

Tomorrow, states working to sign eligible Americans up for food stamps and what it's like to take SNAP for the first time. Join us for that. It's the TALK OF THE NATION from NPR News. I'm Neal Conan in Washington.

Copyright ? 2013 NPR. All rights reserved. No quotes from the materials contained herein may be used in any media without attribution to NPR. This transcript is provided for personal, noncommercial use only, pursuant to our Terms of Use. Any other use requires NPR's prior permission. Visit our permissions page for further information.

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Source: http://www.npr.org/2013/04/24/178827847/deadly-strain-of-bird-flu-is-most-lethal-flu-virus-yet?ft=1&f=1007

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Loveflutter Is A Google Freebase-Powered Dating Site

logo_400x105The idea of matching prospective dates based on shared interests is about as old as dating itself. But understanding how one set of interests relate to another, certainly at scale, is arguably something that machines can do a lot more efficiently than humans, so why not harness that capability for match-making purposes. Loveflutter, which soft-launched in New York last month, and gets a UK push today, aims to do just that.

Source: http://feedproxy.google.com/~r/Techcrunch/~3/64DX0vDClW4/

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'Fitness for All' is an exercise in inclusion

BERKELEY ?

Students Judith Lung, Alec Sundly and Erik Elvebak take their positions on the hardwood court as the referee shouts, ?Eyeshades down! Quiet, please! Center! Play!?

A shrill whistle pierces the air and the three teammates ? a blind undergrad who ?never did exercise? as a kid, a 6-foot?varsity soccer player and a 43-year-old who lost most of his vision while playing ice hockey ? begin an intense match.

The sport is goalball. Every Friday for the past semester, a dozen or so people have come to the Recreational Sports Facility to learn and practice the game.

A team sport similar to soccer and originally created for blind war veterans, its ball is equipped with bells, while blindfolds level the playing field for sighted and sight-impaired players.? Without vision to rely on, players must tap into other senses to locate the ball and position themselves in space.

?The sighted have to come into the blind world,? says disability health and fitness analyst Matt Grigorieff, a 2011 Berkeley grad and the driving force behind a new campus program called Fitness for All, of which the goalball class is one part.

There, blind players get a rare opportunity to learn a demanding sport and enhance their health, both physical and mental ? the latter being one of the biggest benefits of exercise, in Grigorieff?s view. ?The brain can recall facts faster if you?re working out. The data is overwhelming,? he says.

Grigorieff has long been keenly interested in health and fitness for people with disabilities, having a chronic hip condition himself. In community college he helped build an inclusive fitness program, to give students and community members with disabilities an affordable means to stay active.

Golf Fore Veterans

golf ballSpring semester saw the launch of Golf Fore Veterans, a program for student veterans with disabilities. Undergrad Jessica Adams joined with a number of campus and community partners ? among them Fitness for All, the National Alliance for Accessible Golf,? the U.S. Golf Association and Cal Athletics? women?s golf team ? to create the class, held weekly on the Tilden Golf Course.

In that peaceful environment, 18 young veterans are learning the game, along with stress-reduction techniques. The goal is to help them better cope with disabilities stemming from military service, both the physical variety one can often see and hidden disabilities like post-traumatic stress.

After transferring to Berkeley in 2009, he was surprised to discover that many students with disabilities were seeing their health decline, because they didn?t have access to fitness resources that met their special needs. Eventually, after writing a number of research papers on disability and fitness, he won a Haas Scholars grant, which allowed him to survey fitness offerings on campuses across California.

Today, in his newly created staff position, Grigorieff is using all he?s learned, in and out of class, to work for change at Berkeley. He dreams big ? of everything from new disability-studies courses to universal-access fitness equipment in the Recreational Sports Facility (a dozen such machines were recently installed) and trained professionals to help people with disabilities exercise safely. At RSF, he?d also like to see a small cadre of students with disabilities get jobs (to influence the culture), as well as awareness training for everyone on staff.

The list of campus entities he?s working with is long:?It includes, among others, the RSF, the Disabled Students Program and the Division of Equity and Inclusion.??

?We want to be the leader in the UC system, to really build these types of programs? at Berkeley, he says.

Goalball instruction at RSF?s? ?blue gym? is an optional supplement to Derek Van Rheenen?s academic course ?Education, Sports and Culture,? which looks at sport as a cultural practice that influences how we think about the world. The two-unit goalball class was developed in collaboration with the campus?s American Cultures Engaged Scholarship program and the Bay Area Outreach and Recreation Program, which provides coaching and referees.

Matt Grigorieff

Matt Grigorieff, disability health and fitness advocate

Van Rheenen, who directs the campus?s Athletic Study Center, has taught the course for 15 years, but this is the first time he?s included ?the continuum and distinctions around ability and disability within physical education and sports,? he says. Examining ?body privilege? has been both educational and deeply rewarding, he says. ?I don?t think I could ever go back. It?s been a void in my syllabus up to now.?

This semester, for example, his students discussed ?the very intentional and controversial classification system around disability? used in the Paralympic Games. Later in the week, many of them regrouped in the blue gym for coaching, hard play and informal discussion of how theories covered in class relate to their experience playing goalball and navigating the world.

For the sighted, especially, learnings have been impressive. Intercollegiate football, soccer and water polo players, for instance, described a new appreciation for their own position as sighted and exceptionally able-bodied people, as well as the skills needed to navigate without vision. Communication with teammates is ?huge? in goalball, Sundly noted one Friday as the group debriefed between games. ?I?m starting to bring what I?m learning here onto the soccer field,? he said.

The speed with which friendships developed, through goalball, came as a surprise, even to Grigorieff. ?It?s great to see people with different physical abilities and disabilities all getting lunch ? lowering those assumptions and barriers that often surround people with disabilities,? he said. ?With goalball, you?re all equals.?

Related information:
?? With a foothold a Berkeley, ?engaged scholarship? goes where it?s needed (NewsCenter, 2012)

Source: http://newscenter.berkeley.edu/2013/04/24/fitness-for-all-is-an-exercise-in-inclusion/

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