Wednesday, March 27, 2013

Scientists propose alternative method for the study of ions

Mar. 25, 2013 ? Scientists at the Department of Physics of the University of Oulu have teamed up with scientists in France, Russia and Japan to propose a new experimental method for researching positively charged ions. The study, In the Finnish side carried out by postdoctoral researcher Saana-Maija Huttula and Professor Marko Huttula in Oulu, was published in Physical Review Letters on 12 March 2013. The study involved investigating the electronic structure of the argon ions using synchrotron radiation. The proposed theoretical simulations were done using methods developed by an electron spectroscopy research group based at the University of Oulu.

The study was co-financed by the Academy of Finland.

Studying the electronic properties of positively charged ions is very difficult using traditional methods, due to the very low density available in ionic beams. The alternative method proposed by the international research team is based on the single-photon multi-ionisation of the corresponding neutral atom and on coincidence techniques, which allows for the near-simultaneous detection of all the electrons scattered from a single atom.

According to Saana-Maija Huttula, the principal investigator of the present publication, the method has two advantages: the huge intensity generated and the accurate configuration of the electronic initial states of ions. The scientists expect the method to become a common tool that has the potential to lead to important new discoveries in the field of ion research. Coincidence techniques can also be applied directly in the study of the properties of molecular materials. In fact, researchers at the University of Oulu are already expanding their work to heavy-metal compounds and nanoparticles.

More recently, the research team has been studying, for example, the electronic structure and dynamics of mercury molecules and clusters. Mercury compounds, though environmentally hazardous, are an important raw material for the electronics industry, but they also play an important role in atmospheric chemistry, for instance. The team has focused its efforts on the investigation of metallic nanoparticles. In addition, the scientists are actively engaged in international cooperation at the interface of fundamental free-electron laser research and multinational corporate collaboration. At the national level, the team is an active promoter of using synchrotron radiation for research and analysis purposes.

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Story Source:

The above story is reprinted from materials provided by Suomen Akatemia (Academy of Finland).

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. S.-M. Huttula, P. Lablanquie, L. Andric, J. Palaudoux, M. Huttula, S. Sheinerman, E. Shigemasa, Y. Hikosaka, K. Ito, F. Penent. Decay of a 2p Inner-Shell Hole in an Ar^{ } Ion. Physical Review Letters, 2013; 110 (11) DOI: 10.1103/PhysRevLett.110.113002

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/matter_energy/electronics/~3/fj3T-z_J0tc/130325093524.htm

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Tuesday, March 26, 2013

Office of Congressional Ethics investigating Bachmann and short-lived presidential campaign (Star Tribune)

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Molecular ?signature? for rapidly increasing form of esophageal cancer discovered

Mar. 24, 2013 ? During the past 30 years, the number of patients with cancers that originate near the junction of the esophagus and stomach has increased approximately 600 percent in the United States. The first extensive probe of the DNA of these esophageal adenocarcinomas (EACs) has revealed that many share a distinctive mix-up of letters of the genetic code, and found more than 20 mutated genes that had not previously been linked to the disease.

The research, led by scientists at Dana-Farber Cancer Institute, the Broad Institute, and other research centers, may offer clues to why EAC rates have risen so sharply. The findings, which are being released as an advanced online publication by Nature Genetics, point to an array of abnormal genes and proteins that may be lynchpins of EAC cell growth and therefore serve as targets for new therapies, according to the study's authors.

"Adenocarcinomas of the esophagus, particularly those that arise at the gastroesophageal junction, were extremely uncommon 40 years ago and now account for approximately 15,000 new cases in the United States each year," said Adam Bass, MD, of Dana-Farber and the Broad Institute, who is co-senior author of the paper with Gad Getz, PhD, of the Broad Institute and Massachusetts General Hospital. "Unfortunately, it's also a disease with a generally poor prognosis: five years after diagnosis, only about 15 percent of patients are still alive."

Bass added that despite the increased incidence of EAC, there have been few new approaches to treatment. "The goal of our study was to identify abnormalities within the genome of EAC cells to develop a foundation to better understand these tumors, diagnose them earlier, and develop better treatments," explained Bass.

EAC is thought to be associated with chronic gastroesophageal reflux, which sends stomach acid gurgling into the esophagus. This produces a condition known as Barrett's esophagus, in which cells at the lower end of the esophagus change to resemble cells in the intestine. Patients with Barrett's esophagus often go on to develop EAC.

Researchers don't know why EAC rates are increasing, but they speculate that it may be due to a rise in obesity, particularly in men: A heavier abdomen puts increased pressure on the stomach, causing acid to back up into the esophagus.

In the new study, researchers "sequenced" specific sections of DNA in cells from 149 EAC tissue samples, reading the individual letters of the genetic code within those areas. They focused on the one percent of the genome that holds the codes for making cell proteins. They also sequenced the entire genome -- all the DNA within the cell nucleus -- of cells from 15 of these EAC samples. Prior to this study, the largest sequencing study of EAC involved only a dozen tumor samples.

"We discovered a pattern of DNA changes that had not been seen before in any other cancer type," Getz remarked. The pattern involved a subtle swap in one of the four "nucleobases" that form the rungs of the DNA double helix, often designated by the letters C, T, G, and A. The investigators found that in many places where an A nucleobase was followed by another A nucleobase, the second "A" was replaced by a "C," a process known as transversion.

"We found this type of transversion throughout the genomes of the EAC cells we analyzed," Bass stated. "Overall, about one-third of all the mutations we discovered within these cells involved this type of transversion. In some tumor samples, these transversions accounted for nearly half of all mutations," Getz added.

Although A-to-C changes are not commonly observed in cancer, there is some evidence that oxidative damage can produce these changes. (Oxidative damage occurs when cells cannot neutralize the potentially harmful products of oxygen's reactions with other molecules.) "Gastric reflux can produce this type of damage, suggesting that reflux may underlie this pattern of mutations," Bass commented.

In addition to the mutational "signature" of AA becoming AC, the research team identified 26 genes that were frequently mutated in the tumor samples. Five of these were "classic cancer genes" that had previously been implicated in EAC, Bass said, and the others were involved in a variety of cell processes.

Among the genes not previously linked to EAC were ELMO1 and DOCK2, mutations that can switch on a gene called RAC1, which can cause cancer cells to invade surrounding tissue. "The discovery of mutated ELMO1 and DOCK2 in many of these tumors may indicate that this invasive process is particularly active in EAC, promoting metastasis," Bass related. "We know that EAC tumors tend to spread at an earlier stage than many other cancers, which may help explain why survival rates for EAC patients tend to be low."

The RAC1 pathway -- the network of genes that control RAC1 activity -- is being pursued for pharmaceutical development. The discovery of ELMO1 and DOCK2 mutations in EAC samples may spur testing of new agents targeting this pathway in EAC, said Bass.

"Identifying the mutated genes within these tumors will help us understand the underlying biology of the disease," said Bass. "It also presents us with a slate of known genetic abnormalities that can someday be used to diagnose the disease at an early stage, classify tumors by the particular mutations within EAC cells, and ultimately develop treatment geared to precisely those mutations."

The lead authors of the study are Austin Dulak, PhD, and Petar Stojanov of Dana-Farber and the Broad Institute. Co-authors are: Shouyong Peng, PhD, Cameron Fox and Yu Imamura, MD, PhD, of Dana-Farber; Michael Lawrence, PhD, Chip Stewart, Erica Shefler, Aaron McKenna, Scott Carter, PhD, Kristian Cibulskis, Andrey Sivachenko, Gordon Saksena, Douglas Voet, Alex Ramos, PhD, Daniel Auclair, PhD, Kristin Thompson, PhD, Carrie Sougnez, Robert Onofrio, Stacey Gabriel, PhD, and Candace Guiducci, of the Broad Institute; Steven Schumacher, of Dana-Farber and the Broad; Rameen Beroukhim, MD, PhD, of Dana-Farber, the Broad Institute, and Brigham and Women's Hospital; Shuji Ogino, MD, PhD, of Dana-Farber, Brigham and Women's, and the Harvard School of Public Health; Todd Golub, MD, of Dana-Farber, the Broad Institute, and the Howard Hughes Medical Institute; Santhoshi Bandla, PhD, Tony Godfrey, PhD, and Zhongren Zhou, PhD, of the University of Rochester; Lin Lin, MD, PhD, Jules Lin, MD, Rishindra Reddy, MD, David Beer, PhD, and Andrew Chang, MD, of the University of Michigan; James Luketich, MD, Rodney Landrenau, MD, and Arjun Pennathur, MD, of the University of Pittsburgh Medical Center; and Eric Lander, DPhil, of the Broad Institute, and MIT.

The work was supported in part by grants from the U.S. National Human Genome Research Institute (U54 HG003067), the National Cancer Institute (K08 CA134931), the DeGregorio Family Foundation, the Karin Grunebaum Cancer Research Foundation, Target Cancer, and Connecticut Conquers Cancer.

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Story Source:

The above story is reprinted from materials provided by Dana-Farber Cancer Institute.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Austin M Dulak, Petar Stojanov, Shouyong Peng, Michael S Lawrence, Cameron Fox, Chip Stewart, Santhoshi Bandla, Yu Imamura, Steven E Schumacher, Erica Shefler, Aaron McKenna, Scott L Carter, Kristian Cibulskis, Andrey Sivachenko, Gordon Saksena, Douglas Voet, Alex H Ramos, Daniel Auclair, Kristin Thompson, Carrie Sougnez, Robert C Onofrio, Candace Guiducci, Rameen Beroukhim, Zhongren Zhou, Lin Lin, Jules Lin, Rishindra Reddy, Andrew Chang, Rodney Landrenau, Arjun Pennathur, Shuji Ogino, James D Luketich, Todd R Golub, Stacey B Gabriel, Eric S Lander, David G Beer, Tony E Godfrey, Gad Getz, Adam J Bass. Exome and whole-genome sequencing of esophageal adenocarcinoma identifies recurrent driver events and mutational complexity. Nature Genetics, 2013; DOI: 10.1038/ng.2591

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

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_health/~3/aKl5bC2JIwE/130324151834.htm

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Monday, March 25, 2013

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Scientists confirm first 2-headed bull shark

Scientists confirm first 2-headed bull shark [ Back to EurekAlert! ] Public release date: 25-Mar-2013
[ | E-mail | Share Share ]

Contact: Layne Cameron
layne.cameron@cabs.msu.edu
517-353-8819
Michigan State University

Scientists have confirmed the discovery of the first-ever, two-headed bull shark.

The study, led by Michigan State University and appearing in the Journal of Fish Biology, confirmed the specimen, found in the Gulf of Mexico April 7, 2011, was a single shark with two heads, rather than conjoined twins.

There have been other species of sharks, such as blue sharks and tope sharks, born with two heads. This is the first record of dicephalia in a bull shark, said Michael Wagner, MSU assistant professor of fisheries and wildlife, who confirmed the discovery with colleagues at the Florida Keys Community College.

"This is certainly one of those interesting and rarely detected phenomena," Wagner said. "It's good that we have this documented as part of the world's natural history, but we'd certainly have to find many more before we could draw any conclusions about what caused this."

The difficulty of finding such oddities is due, in part, to creatures with abnormalities dying shortly after birth. In this instance, a fisherman found the two-headed shark when he opened the uterus of an adult shark. The two-headed shark died shortly thereafter and had little, if any, chance to survive in the wild, Wagner added.

"You'll see many more cases of two-headed lizards and snakes," he said. "That's because those organisms are often bred in captivity, and the breeders are more likely to observe the anomalies."

The shark was brought to the marine science department at Florida Keys Community College. From there, it was transported to Michigan State's campus for further examination.

Wagner and his team were able to detail the discovery with magnetic resonance imaging. Without damaging the unique specimen, the MRIs revealed two distinct heads, hearts and stomachs with the remainder of the body joining together in back half of the animal to form a single tail.

As part of the published brief, Wagner noted that some may want to attribute the deformed shark to exposure to pollutants.

"Given the timing of the shark's discovery with the Deepwater Horizon oil spill, I could see how some people may want to jump to conclusions," Wagner said. "Making that leap is unwarranted. We simply have no evidence to support that cause or any other."

###


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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.


Scientists confirm first 2-headed bull shark [ Back to EurekAlert! ] Public release date: 25-Mar-2013
[ | E-mail | Share Share ]

Contact: Layne Cameron
layne.cameron@cabs.msu.edu
517-353-8819
Michigan State University

Scientists have confirmed the discovery of the first-ever, two-headed bull shark.

The study, led by Michigan State University and appearing in the Journal of Fish Biology, confirmed the specimen, found in the Gulf of Mexico April 7, 2011, was a single shark with two heads, rather than conjoined twins.

There have been other species of sharks, such as blue sharks and tope sharks, born with two heads. This is the first record of dicephalia in a bull shark, said Michael Wagner, MSU assistant professor of fisheries and wildlife, who confirmed the discovery with colleagues at the Florida Keys Community College.

"This is certainly one of those interesting and rarely detected phenomena," Wagner said. "It's good that we have this documented as part of the world's natural history, but we'd certainly have to find many more before we could draw any conclusions about what caused this."

The difficulty of finding such oddities is due, in part, to creatures with abnormalities dying shortly after birth. In this instance, a fisherman found the two-headed shark when he opened the uterus of an adult shark. The two-headed shark died shortly thereafter and had little, if any, chance to survive in the wild, Wagner added.

"You'll see many more cases of two-headed lizards and snakes," he said. "That's because those organisms are often bred in captivity, and the breeders are more likely to observe the anomalies."

The shark was brought to the marine science department at Florida Keys Community College. From there, it was transported to Michigan State's campus for further examination.

Wagner and his team were able to detail the discovery with magnetic resonance imaging. Without damaging the unique specimen, the MRIs revealed two distinct heads, hearts and stomachs with the remainder of the body joining together in back half of the animal to form a single tail.

As part of the published brief, Wagner noted that some may want to attribute the deformed shark to exposure to pollutants.

"Given the timing of the shark's discovery with the Deepwater Horizon oil spill, I could see how some people may want to jump to conclusions," Wagner said. "Making that leap is unwarranted. We simply have no evidence to support that cause or any other."

###


[ 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/2013-03/msu-scf032513.php

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Windy weather disappointing in New England?s home opener

Foxborough--Weather conditions were a big factor in a scoreless tie between Sporting Kansas City and the New England Revolution Saturday afternoon in Foxborough.

Chances were at a minimum in a game that only saw eight shots spread?among?both teams. With a strong wind gust at Gillette Stadium, moving the ball proved to be a difficult task for both sides, as there was no control of any ball played in the air.

Revolution head coach Jay Heaps found that tactics almost went out the window, given the conditions.

?I don?t want to make excuses but I will say this, the wind was definitely difficult to play in,? Heaps said. ?You can see the ball moving, you could feel it. I think if you go do heat maps, it?s going to be split down the middle and it?s going to be all away from where the benches were because the wind was just pulling everything over there.

"It was hard to switch fields when we needed to change the point of attack.?

Sporting Kansas City coach Peter Vermes had a gameplan heading into the weekend, but found out ahead of the game that his team would certainly be battling the elements.

?Coming in during the week we wanted to play,? Vermes said. ?When we saw the weather getting worse and yesterday having practiced here, it was pretty simple that it was going to be a difficult game based on which way the wind was going.?

The game was a homecoming of sorts for Sporting Kansas City midfielder Benny Feilhaber, who played two seasons with the Revolution before being traded. Feilhaber held possession positively for spells in the first half but still found that the weather made play difficult for both teams.

?The wind really made the game impossible to play,? Feilhaber said. ?I think both teams realized that, so it was more like a field possession game.

"You just booted it down to one end and kind of pressed them. It wasn?t a pretty game by any means, but I think 0-0 is a fair result?

The lack of ball movement was further compounded by the high physical play all over the field, with 30 total fouls committed. Heaps singled out the resilant play of the Revolution back four was a big positive on an otherwise negative day.

?I think that, for me, Kansas City is one of the best teams at grinding out a game like that and I think that it showed a lot of our guys coming out and fighting them and making it a difficult battle,? Heaps exclaimed. ?I think our back four played well, but not just our back four, our entire midfield defended well. It?s one of those games where you want the three points.?

Source: http://us.rd.yahoo.com/sports/rss/sow/SIG=12t5r52ib/*http%3A//sports.yahoo.com/news/windy-weather-disappointing-england-home-024400105--mls.html

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An animal to feed your eco-car

An animal to feed your eco-car [ Back to EurekAlert! ] Public release date: 25-Mar-2013
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Contact: Prof. Eric Thompson
Eric.Thompson@bio.uib.no
47-404-80441
The University of Bergen

The marine animal tunicate can be used both as biofuel and fish food, according to prize-winning Norwegian research

The marine animal tunicate can be used both as biofuel and fish food, according to prize-winning Norwegian research.

On the ocean floor, under the pier, and on ship ropes that's where the tunicates live. Tunicates are marine filter feeders that serve as bacteria eaters and as a foodstuff in Korea and Japan. But in the future they may become more prevalent.

Five researchers at the University of Bergen (UiB) and Uni Research have found that a certain type of tunicate ascidiacea can be used as a renewable source of biofuel and fish food. This is particularly good news for the growing aquaculture industry, which for years has struggled to find enough quality feed for its fish. There also is the prospect of reducing emissions from traffic.

Usable as fuel

It is the cellulose, the protein, and the Omega-3 fatty acids in the ascidiacea that is the cause for its many uses.

Its mantle consists of cellulose, which is a collection of sugars. When cellulose is cleaved, one can obtain ethanol. And ethanol can be used for biofuel in cars. The animal's body consists of large amounts of protein and Omega-3. This can be used for fish feed, says Professor Eric Thompson at UiB's Department of Biology.

Thompson and his colleagues have spent years looking into the many possible uses of the ascidiacea.

Commercial potential

At the innovation conference GROW in March 2013, arranged by Business Region Bergen, the researchers received a prize for innovative research and were awarded NOK 300,000 for their discoveries. Regional bank Sparebanken Vest and Bergen Teknologioverfring (BTO) sponsor the prize.

The researchers plan to use the prize money to create commercially viable products based on their research. They have already acquired a patent for biofuel and have a patent application pending for the cultivation of ascidiacea as fish feed.

Why are tunicates particularly suited for use as biofuel?

The bioethanol used today is unsustainable as it comes from foods already used for human consumption. That is why there has been a move towards using cellulose from the timber industry to produce bioethanol, says Dr. Sc. Christofer Troedsson of Uni Research's Molecular Ecology Group and head of the research at UiB's Marine Development Biology and the tunicate research project.

However, it is quite complicated to break down the cellulose in trees and convert it into ethanol. This is because the wood contains a substance called lignin, which is hard to separate from the cellulose. Tunicates contain no lignin. Their cellulose is also low in crystals and is more efficiently converted into ethanol.

More environmentally friendly

Troedsson also points out that using ascidiacea rather than trees is more environmentally friendly, because this does not occupy large tracts of land which could otherwise be used for other purposes, such as growing food.

Another important point is that the ascidiacea are not in the food chain, probably because of their protective mantle. So there are no creatures dependent on the ascidiacea to survive. They also grow very quickly. 4-6 months after birth they are ready for harvesting. Tunicates are also found in all oceans, with an enormous growth potential that exceeds most land-based feedstock.

We have spent years to arrive at these findings, so the prize is a nice recognition. Now we look forward to working on commercialising the results, says Thompson.

###

Additional links:

BTO: http://bergento.no/

University of Bergen: http://www.uib.no/en

Uni Research: http://uni.no/?&lang=en

Business Region Bergen: http://en.brb.no/

Sparebanken Vest: https://www.spv.no/en/english/



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An animal to feed your eco-car [ Back to EurekAlert! ] Public release date: 25-Mar-2013
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Contact: Prof. Eric Thompson
Eric.Thompson@bio.uib.no
47-404-80441
The University of Bergen

The marine animal tunicate can be used both as biofuel and fish food, according to prize-winning Norwegian research

The marine animal tunicate can be used both as biofuel and fish food, according to prize-winning Norwegian research.

On the ocean floor, under the pier, and on ship ropes that's where the tunicates live. Tunicates are marine filter feeders that serve as bacteria eaters and as a foodstuff in Korea and Japan. But in the future they may become more prevalent.

Five researchers at the University of Bergen (UiB) and Uni Research have found that a certain type of tunicate ascidiacea can be used as a renewable source of biofuel and fish food. This is particularly good news for the growing aquaculture industry, which for years has struggled to find enough quality feed for its fish. There also is the prospect of reducing emissions from traffic.

Usable as fuel

It is the cellulose, the protein, and the Omega-3 fatty acids in the ascidiacea that is the cause for its many uses.

Its mantle consists of cellulose, which is a collection of sugars. When cellulose is cleaved, one can obtain ethanol. And ethanol can be used for biofuel in cars. The animal's body consists of large amounts of protein and Omega-3. This can be used for fish feed, says Professor Eric Thompson at UiB's Department of Biology.

Thompson and his colleagues have spent years looking into the many possible uses of the ascidiacea.

Commercial potential

At the innovation conference GROW in March 2013, arranged by Business Region Bergen, the researchers received a prize for innovative research and were awarded NOK 300,000 for their discoveries. Regional bank Sparebanken Vest and Bergen Teknologioverfring (BTO) sponsor the prize.

The researchers plan to use the prize money to create commercially viable products based on their research. They have already acquired a patent for biofuel and have a patent application pending for the cultivation of ascidiacea as fish feed.

Why are tunicates particularly suited for use as biofuel?

The bioethanol used today is unsustainable as it comes from foods already used for human consumption. That is why there has been a move towards using cellulose from the timber industry to produce bioethanol, says Dr. Sc. Christofer Troedsson of Uni Research's Molecular Ecology Group and head of the research at UiB's Marine Development Biology and the tunicate research project.

However, it is quite complicated to break down the cellulose in trees and convert it into ethanol. This is because the wood contains a substance called lignin, which is hard to separate from the cellulose. Tunicates contain no lignin. Their cellulose is also low in crystals and is more efficiently converted into ethanol.

More environmentally friendly

Troedsson also points out that using ascidiacea rather than trees is more environmentally friendly, because this does not occupy large tracts of land which could otherwise be used for other purposes, such as growing food.

Another important point is that the ascidiacea are not in the food chain, probably because of their protective mantle. So there are no creatures dependent on the ascidiacea to survive. They also grow very quickly. 4-6 months after birth they are ready for harvesting. Tunicates are also found in all oceans, with an enormous growth potential that exceeds most land-based feedstock.

We have spent years to arrive at these findings, so the prize is a nice recognition. Now we look forward to working on commercialising the results, says Thompson.

###

Additional links:

BTO: http://bergento.no/

University of Bergen: http://www.uib.no/en

Uni Research: http://uni.no/?&lang=en

Business Region Bergen: http://en.brb.no/

Sparebanken Vest: https://www.spv.no/en/english/



[ 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/2013-03/tuob-aat032513.php

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