Wednesday, 24 February 2010

Johnald's Fantastical Daily Link Splurge

Johnald's Fantastical Daily Link Splurge


New Images of Enceladus Show More Plumes and Heat

Posted: 23 Feb 2010 05:06 PM PST

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The Cassini spacecraft's November flyby of Saturn's moon Enceladus has revealed new features including at least 20 more icy plumes spewing from the moon's southern pole.

New infrared data gives scientists the highest resolution temperature map of one particular warm fissure called a "tiger stripe." The moon's four tiger stripes arefractures that spew a mix of ice particles, water vapor and organic compounds into space. They are a key clue for scientists trying to figure out if small moon harbors a liquid water ocean under its frosty surface. Now, scientists know that their temperatures can exceed 180 Kelvin (minus 135 degrees Fahrenheit).

"The fractures are chilly by Earth standards, but they're a cozy oasis compared to the numbing 50 Kelvin (-370 Fahrenheit) of their surroundings," said John Spencer, a composite infrared spectrometer team member based at Southwest Research Institute in Boulder, Colorado.

"The huge amount of heat pouring out of the tiger stripe fractures may be enough to melt the ice underground," Spencer said."Results like this make Enceladus one of the most exciting places we've found in the solar system."

Enceladus is obviously too distant for the sun heat the moon to temperatures that could keep water in its freely flowing phase. Instead, the planet'swarmth appears to result from "tidal heating." Saturn's gravitational force deforms the satellite as it rotates. The back-and-forth pull heats up the satellite like a human repeatedly bending a spoon.

The new detailed temperature map of the tiger stripe, "Baghdad Sulcus," shows that the temperature varies along the length of the fracture. The warm spots are confined to an area just half a mile across. For those hoping to find simple extraterrestrial life within our solar system, those might be the most interesting canyons outside planet Earth.

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More images of this remarkable celestial object below.

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The area that was examined in detail in the image aboveis highlighted here.

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Enceladus is just 310 miles in diameter, but may have the most easily accessible liquid ocean beyond Earth.

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This close-up 3-D view of the Baghdad Sulcus shows 10 miles of the fracture in dramatic relief.

Images: 1) NASA/JPL/Space Science Institute. 2) NASA/JPL/GSFC/SWRI/SSI. 3-5) NASA/JPL/SSI

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WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

Sperm Whales Use Team Work to Hunt Prey

Posted: 23 Feb 2010 03:09 PM PST

whales

PORTLAND — Sperm whales sometimes collaborate when they forage the depths, new tracking data suggest, with some individuals herding prey into dense schools while others lunge into the fray and feed.

sciencenewsScientists have long known that sperm whales, like many other toothed whales, form long-lasting social groups that typically consist of females and their young. While some researchers have suggested that the females in such groups collaboratively raise their young, the new data are the first to hint that the whales may engage in tag-team hunting. Bruce Mate, director of Oregon State University's Marine Mammal Institute in Newport reported February 22 at the American Geophysical Union's Ocean Sciences meeting.

In 2007 and 2008, Mate and his colleagues tagged sperm whales in the Gulf of California with a new type of data-gathering sensor. These hockey-puck-size instruments included a Global Positioning System receiver, which gathered data when the creatures were at the ocean's surface, and other sensors that recorded water depth. In essence, Mate said, the instruments are flight data recorders for whales.

After taking data once every two seconds for as long as 28 days the instruments broke free and floated to the ocean surface, where they could be recovered by the researchers.

One of the whale groups the team studied consisted of between 10 and 15 individuals, three of which were tagged with recorders. Data showed that during some deep dives, whales zigzagged back and forth or suddenly surged forward, probably when they foraged on the Humboldt squid prevalent in the area. Sometimes the three tagged whales, presumably accompanied by others in the group, dove to great depths at the same time.

"We expected their dives to be similar, but often one of the three whales went deeper than the other two," Mate said. This behavior is similar to that of sea lions and dolphins, which sometimes collaboratively prey upon fish by herding them into tight groups known as "bait balls."

Mate and his colleagues speculate that the whale that dove deepest during each coordinated excursion helped prevent squid from escaping downward.

Sperm whales engaging in such behavior apparently share deep-diving patrol duty, Mate said, probably because the forays — which sometimes extend to depths of 1,500 meters — are physiologically stressful.

The new findings suggest but don't prove collaborative foraging among sperm whales, comments Kelly Benoit-Bird, a biological oceanographer at Oregon State's main campus in Corvallis. For one thing, she notes, the team's data reveal the behavior of the whales but not their prey, and it's not clear that squid respond to groups of predators by forming concentrated "bait balls" the same way that fish sometimes do.

Mate and his colleagues are now working to address that issue. Developing a technique to observe squid at depth is a somewhat difficult task, he notes, because unlike fish squid don't have air-filled bladders that show up well on sonar images.

Meanwhile, the new data recorders deployed by Mate and his colleagues can also be used for other behavioral research in whales. For instance, Mate suggests, the instruments could reveal how whales respond to various sources of aquatic noise such as sonar or the often intense pressure pulses generated during submarine seismic surveys used in research or oil and gas exploration.

Image: A sperm whale calf only hours old, swims next to its mother and a pod of sperm whales./ AP Photo/Guam Variety News, Chris Bangs.

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Virulent Bird-Human Flu Hybrid Made in Lab

Posted: 23 Feb 2010 01:38 PM PST

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Engineered hybrids of bird and human flu strains have proven virulent in mice, raising the disturbing possibility that a natural recombination could be deadly to humans.

For years, researchers have worried that H5N1 avian influenza would mix with human flu viruses, evolving into a form that keeps its current lethality but is far more contagious. That hasn't happened — but the latest findings, publishedFeb. 22in the Proceedings of the National Academy of Sciences, show how easily it might.

"Fortunately, the H5N1 viruses still lack the ability to transmit efficiently among humans." However, this obstacle may be overcome by mixing with flu strains common in people, wrote researchers led by University of Wisconsin virologist Yoshihiro Kawaoka. "The next pandemic then will be inevitable."

Current strains of H5N1 have infected 478 people since 2003, and killed 286 of them. It's difficult to transmit in humans, requiring close contact with an infected person or animal. In birds, however, H5N1 is far more contagious, and his killed tens of millions of fowl. Cases have been concentrated in Africa and Eurasia, but as the swine flu pandemic demonstrated, any flu contagious to humans will likely go global, fast.

Influenza viruses swap genes easily, with co-infections turning animals into mobile petri dishes. In 2008, hoping to learn more about how H5N1 might evolve, researchers from the Centers for Disease Control and Prevention combined it with a common human flu strain. The hybrids proved less virulent than the original bird flu strain. Researchers wondered whether more contagious bird flu would necessarily alwaysbe less deadly in humans.

The PNAS findings suggest this may not be so.The researchers engineeredall 254 possible variants of hybridization between a deadly bird flu strain found in Borneo, and a human flu virus from Tokyo. They identified three strains that, at least in mice,were both contagious and deadly.

A flu virus that kills mice won't necessarily kill humans, but the results are suggestive. All three killer hybrid strains possessed a protein taken from the human strain. Called PB2,the proteinappeared to help the virus survive in the mice's upper respiratory tract. As of now, bird flu stays in the lower respiratory tract, where it's less likely to be casually transmitted.

The findings come as the World Health Organization meets to decide whether the swine flu pandemic has abated. Though the pandemic has not proved as lethal as originally feared, it exposed how unprepared the world is for new influenza strains.

In May, Hong Kong University virologist Yi Guan, best known for finding the animal origin of SARS, was asked by Science Insider about the possibility of H5N1 and swine flu mixing.

"If that happens, I will retire immediately and lock myself" in a sealed laboratory, said Guan.

Photo: A person feeds northern pintail ducks and whooper swans in Northern Honshu, Japan; in spring 2008, highly pathogenic H5N1 was found there in both bird species./USGS

See Also:

Citation: "Reassortment between avian H5N1 and human H3N2 influenza viruses creates hybrid viruses with substantial virulence." By Chengjun Li, Masato Hatta, Chairul A. Nidom, Yukiko Muramoto, Shinji Watanabe, Gabriele Neumann, and Yoshihiro Kawaoka. Proceedings of the National Academy of Sciences, Vol. 107 No. 8, February 23, 2010.

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.

DOE Ponies Up $10 Billion in Financing for Solar, Nuclear Plants

Posted: 23 Feb 2010 11:41 AM PST

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The Department of Energy has provided almost $10 billion in loan guarantees for two nuclear and three solar power plants in just the past week.

The moves mark a new DOE strategy to finance the large-scale deployment of low-carbon technologies in the United States.

The Oakland-based company BrightSource will conditionally receive $1.4 billion in loans for a solar complex in the Mojave Desert, while a consortium led by the Southern Company will get a whopping $8.33 billion to build two new nuclear reactors in the city of Burke, Georgia.

The dual moves would have been almost unthinkablefor allthe administrations since Reagan took office in 1981. Traditionally, promoting nuclear power has been seen as a right-wing issue, while the left has preferred solar.

"What I hope this announcement underscores is both our commitment to meeting the energy challenge– and our willingness to look at this challenge not as a partisan issue, but as a matter far more important than politics," Barack Obama said in a release Feb. 16 announcing the nuclear power plant funding.

Loan guarantees are one of a series of indirect financial incentives that could accelerate the introduction of new energy technology. The 2005 Energy Act gave the DOE authorization to make such moves. By making the loan guarantees, the government ensures the projects will get money through the Federal Financing Bank at a below-market rate.

Some policy wonks argue that providing loans to private companies to build innovative new plants is essential for commercializing technologies that are trying to make the jump from small demonstration plant to full-scale facility.

It's a risky step, so such subsidies may be necessary to deploy new types of plants. Most of our electrical infrastructure depends on technologies developed before 1970. Seventy percent of electricity in the United States is generated by burning fossil fuels to create heat which can be converted into electricity. The fundamentals haven't changed for a century.

The Obama Administration has made it clear that technologies with substantially lower carbon-intensity are a major priority. Both nuclear and renewable technologies fit the bill, although both types of power have their detractors. BrightSource has encountered opposition from environmentalists concerned with the impact the solar plant may have on the desert tortoise. Organized opposition to nuclear power generally focuses on the plants' radioactive waste issues or fears of catastrophic plant failure or terrorist attack.

Energy Secretary Steve Chu recognized that the Democratic administration's support for the new nuclear plants was particularly controversial and responded on his Facebook page with his rationale for supporting a form of energy that has not been popular on the American political left.

"The sun isn't always shining, and the wind isn't always blowing. Without technological breakthroughs in efficient, large-scale energy storage, it will be difficult to rely on intermittent renewables for much more than 20 to 30 percent of our electricity," Chu wrote in a post entitled Why We Need More Nuclear Power.

"To overcome this problem, we are pursuing breakthrough approaches to grid-scale energy storage as well as stimulating the widespread adoption of known technologies such as pumped hydro energy storage," he wrote. "But nuclear power can provide large amounts of carbon-free power that is always available."

The two new nuclear plants would be the first reactors built in the United States in almost 30 years. In the intervening decades, the performance record of nuclear power plants has improved a lot. In the late '70s, the average plant was out of operation four out of every 10 days. Now, the plants are online 90 percent of the time.

Nuclear advocates celebrated the new guarantees as a sign the long-awaited "nuclear renaissance" might begin under Obama. His new budget proposes more than $54 billion in funding for nuclear loan guarantees.

Wall Street banks have been loathe to invest in nuclear power plants since the industry's grisly collapse in the '70s and '80swhen about 100 projects were abandoned during construction. Plant designers say they've eliminated many of the problems that plagued the first nuclear era, but the perceived high risk involved in plant construction makes borrowing the money to build new reactors expensive or impossible. Government financing doesn't eliminate the risk of construction issues; it shifts the burden onto taxpayers if anything goes wrong.

A 2006 paper in Environmental Science and Technology authored by Dan Kammen, an energy specialist at UC Berkeley, and two colleagues, looked at the costs of almost all the reactors built in the United States. Many plants were actually completed within a reasonable time frame, but there was a troubling clump of very overbudget projects. Kammen argued that new plants may be subject to cost "surprises."

But until new plants get built, optimistic or pessimistic speculations about their costs and build times will remain just that.

Luz Redux
BrightSource is the descendant of the most successful solar thermal company of all time. Luz International built 354 megawatts of solar thermal plants in the Mojave Desert in the late 1980s. They continue to generate power today for Southern California Edison. At the time they were built, they represented more than 90 percent of the solar electricity capacity in the world. Luz itself went bankrupt in 1992 because of a combination of low fossil fuel prices and a quiver-full of regulatory changes that hurt the company's bottom line. Still, the company's achievements were impressive: It brought the cost of the power from its plants down from 24 cents per kilowatt hour to 8 cents per kilowatt hour, nearly competitive with fossil fuels.

After years working on other projects, Luz's founder, Arnold Goldman, got together a new company earlier this decade, which was eventually christened BrightSource. Goldman is the chairman of the board and his very first engineering hire, Israel Kroizer, is the company's Chief Operating Officer.

The company's technology in this go-round is not exactly the same as it was. Luz employed parabolic trough technology in which curved mirrors focus the sun's rays on a special liquid-filled tube running their length. That liquid is run to a heat exchanger which turns water into steam and drives a traditional generator. Eight of Luz's nine plants could also run on natural gas, which allowed the plant's operators to generate electricity under any weather conditions.

The DOE's other big loan guarantee, for the solar company BrightSource, had long been expected by the outfit's management. With the guarantees in hand, the company wants to begin construction on the first of three plants near Ivanpah, California later this year, with commercial operation beginning in 2012. First, they have to finish the extensive environmental permitting process and secure hundreds of millions of dollars in private financing. If all goes as planned, the project's lead contractor, Bechtel will complete all three plants by the end of 2013. They'll have a peak capacity of about 400 megawatts.

BrightSource is using a "power tower" design for its new plants. A field of mirrors surround a tower with a water-filled boiler sitting on top of it. The mirrors focus the sun's rays onto the boiler, which heats up the water and transforms it into steam. That steam can be used to impart mechanical energy to a generator and create electricity. The company's demonstration tower has been producing steam in Israel's Negev Desert has been operating for the past year.

Taken together, the DOE announcements signal a return of solar and nuclear energy to the prominence they once enjoyed in the 1970s. Back then, Alvin Weinberg, who headed Oak Ridge National Laboratory, wrote a paper about the nation's post-fossil energy future asking the question, "Can the sun replace uranium?"

From the recent funding announcements, theDOE still doesn't know the answer to that question, but the push to find out is finally taking shape.

Photo: theta444/Flickr

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

Math Shows Some Crime Hot Spots Can Be Cooled, Others Only Relocated

Posted: 23 Feb 2010 10:13 AM PST

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SAN DIEGO — Not all crime hot spots are created equal, a new mathematical model suggests. For some areas repeatedly hit hard with crime, police intervention can shut down lawlessness and keep it down. But for others, police involvement just shifts the trouble around.

sciencenews"If you see a hot area of crime, you want to know: If you send the police in, will that displace the crime or get rid of the crime altogether?" said Andrea Bertozzi, a mathematician at UCLA who presented the new model Feb. 20 at the annual meeting of the American Association for the Advancement of Science. "We were able to predict the ability to suppress or otherwise displace hot spots." The results will also appear Feb. 22 in the Proceedings of the National Academy of Sciences.

The study "makes a major contribution to the theory of hot spots of crime," comments John Eck, a criminologist at the University of Cincinnati.

Working with anthropologists, criminologists and the Los Angeles Police Department, Bertozzi built a mathematical representation of how areas with frequent, repeated crimes form within a city and change over time.

The team modeled a city as a two-dimensional grid populated with burglars and houses to rob. The researchers used previous studies to add a mathematical description of how attractive a region is to a burglar. Data has shown, for example, that the house next door to a house with a broken window is more likely to be robbed.

Bertozzi and colleagues ran simulations that led to the formation of crime hot spots and then simulated police intervention. Two sharply distinct outcomes emerged. Certain kinds of hot spots just moved around in response to police efforts to quash them. "It's impossible," Bertozzi said. "You hit one and it pops up somewhere else."

But for others, suppressing the hot spot once erased it forever.

The difference comes from how the hot spot forms in the first place. The model shows that a high-risk zone forms around every break-in. If the boundaries of risk zones overlap, then a persistent hot spot forms. "The diffusion of risk basically binds together local crimes, which then will seed more crimes," Bertozzi said.

But suppressible hot spots can form from one large crime spike, in which a single event draws in more criminals. A good example of this might be the formation of a drug market, said UCLA anthropologist Jeffrey Brantingham, a co-author of the paper.

"You wouldn't suspect this was the case from just mapping the hot spots," Brantingham said. "Empirically they look very much the same." The math was able to show that there may be two different types of hot spots when the data alone could not, he said.

"This is something that would be important for us in real life," Bertozzi said, "to be able to go and tell the police, in this situation you're going to be able to get rid of the crimes, and in this other situation you're only going to displace them."

Though the researchers compared the model's predictions of where and when burglaries would happen with real data from a region of the San Fernando Valley, Eck says he would want to test the model's police intervention predictions. Still, he says, it makes "a really elegant start."

Image: invisible city photography/Flickr

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Tuesday, 23 February 2010

Johnald's Fantastical Daily Link Splurge

Johnald's Fantastical Daily Link Splurge


Why Ladies-Only Species Don’t Need Men

Posted: 22 Feb 2010 12:42 PM PST

whiptails

How all-female species avoid the shrinkage of their gene pool is among the animal kingdom's great mysteries. Now biologists think they've discovered the trick.

According to a study published Sunday in Nature, egg-producing cells in a ladies-only species of whiptail lizard contain double the standard genetic complement. They pick the healthiest set of chromosomes, preventing the loss of vital variation.

In asexually reproducing species, "there's an absence of sperm, and genetic information is never provided by another source. Anything that's lost is lost for good," said Peter Baumann, a University of Kansas cell biologist. "If there's a way to prevent the loss, then how is that accomplished? That's what our paper explains."

In all animal cells, genes are contained in DNA packages called chromosomes. Cells have two copies of each chromosome: in sexually reproducing species, one copy comes from mom, and the other from dad.

During reproduction, germ cells duplicate their chromosome set, then go through two rounds of cell division. The result is a sperm or egg cell with one copy of each chromosome. Some genetic material is lost in the process, but it doesn't matter, since sperm and egg soon fuse. Any gaps are filled during their union.

But in asexual reproducers — the whiptail species studied by Baumann, formally known as Aspidoscelis tellesata, plus about 70 other fish, reptile and bird species — both chromosome copies come from mom. Genetic gaps ought to ensue, and to accumulate in subsequent generations, eventually producing an animal unable to survive.

But as Baumann's group shows, A. tesselata germ cells start with four sets of chromosome copies, not two. When the cells finish dividing, the resulting eggs contain a standard set —one that's assembled, they found, from two loss-free copies.

whiptail_gametes

"This is an elegant mechanism," said Baumann. And though they don't yet know how A. tesselata's germ cells evolved this trick, "you can imagine that it happens by a relatively simple change." That could explain why asexual reproduction has emerged in so many species.

As for whether asexual reproduction in vertebrates is an evolutionary aberration or viable strategy remains debated. Even if these species maintain their gene pool, they still lack the genetic mixing that gives sexual reproducers a steady flow of new adaptations.

According to Baumann, A. tesselata is lucky: it appears to be descended from a union of two related species, giving it a hybrid vigor. As for populations lacking built-in durability, he said that asexual reproduction may be a useful short-term strategy. It could maintain lineages through periods of isolation, with species reverting to sexual reproduction when suitable partners were available.

However, Baumann cautioned against assuming that all asexually reproducing species used the mechanisms seen in A. tesselata.

"I think it's going to be widespread, but nature often surprises us. We think we know how something works, then find out that nature came up with many ways of doing it," he said.

Images: 1. Whiptail lizards/Peter Baumann 2. A comparison of chromosomes in the gametes of a related, sexually-producing lizard species (above) and the whiptail (below).

See Also:

Citation: "Sister chromosome pairing maintains heterozygosity in parthenogenetic lizards." By Aracely A. Lutes, William B. Neaves, Diana P. Baumann, Winfried Wiegraebe & Peter Baumann. Nature, Advance Online Publication, February 21, 2010.

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.

NASA Releases Lunar Rover iPhone Game

Posted: 22 Feb 2010 12:27 PM PST

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NASA has released its first iPhone game as the agency continues its relentless conquest of new media

Starting Monday, you can virtually drive a fictional Lunar Electric Rover on a future lunar outpost. The game is free and available through the iTunes store.

Noted for its use of Twitter and educational iPhone apps, NASA has been at the forefront of government engagement with new media of all types. This one grew out of the agency's video podcast show, NASA Edge.

"We wanted to make this a cool game instead of an app where you just retrieve information," said Chris Giersch, the host of NASA EDGE.

The game is very simple. As the game review site Krapps notes, the gameplay is a bit "Pacmanish." Beyond driving around the rover, you can also see images from the proposed lunar outpost and learn more about what life on the Moon might be like.

For the first iteration, NASA decided not to go too extravagant. "We thought about going high-tech and going really jazzy, but for this first version, let's just keep it basic," Giersch said.

The Lunar Electric Rover in the game is based on a prototype tested at the Black Point Lava Flow in Arizona. It would have been part of a planned lunar outpost under the old NASA Constellation solar system exploration plan.

The game was developed by Analytical Mechanics Association, Inc, at the NASA Langley Research Center in Hampton, Virginia.

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Image: NASA.

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

Monday, 22 February 2010

Johnald's Fantastical Daily Link Splurge

Johnald's Fantastical Daily Link Splurge


Olympic Venues Past, Present and Future as Seen From Space

Posted: 21 Feb 2010 09:00 PM PST

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The Olympics have been held in some of the most scenic locations on Earth, and this year is no exception. Some of the most breathtaking moments of the games involve details captured in photo finishes in cross country skiing and hooked ski tips leading to crashes in the slalom seen in slow-motion video. All that aside, Vancouver is equally breathtaking from above.

Vancouver beat out Pyeongchang, South Korea, and Salzburg, Austria, to host Canada's third Olympics. The city has delivered beautiful, sunny weather that is unfortunately too warm for ideal snow conditions, giving the grounds crews some major challenges. Snow has been trucked in for some of the events.

This gallery collects images taken from space by astronauts and satellite of a few of the more interesting and attractive Olympic host cities from 1900 to 2016.

Vancouver, British Columbia

The image above, taken by the Landsat-7 satellite in December, shows the entire Vancouver-Whistler area. The ski resort can be seen in the upper left corner of the image and in the closeup below. The next image below is an even closer look at Whistler taken by DigitalGlobe's WorldView-2 satellite. The next images are of Cypress Mountain, where the freestyle skiing and snowboarding events are being held, the first from Digital Globe and the last image from Landsat-7.

Click any image in this gallery for a higher-resolution version.

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Images: 1) NASA. 2) NASA. 3) DigitalGlobe. 4) DigitalGlobe. 5) NASA.

Friday, 19 February 2010

Johnald's Fantastical Daily Link Splurge

Johnald's Fantastical Daily Link Splurge


America’s Wind Energy Potential Triples in New Estimate

Posted: 19 Feb 2010 10:31 AM PST

windmap

The amount of wind power that theoretically could be generated in the United States tripled in the newest assessment of the nation's wind resources.

Current wind technology deployed in nonenvironmentally protected areas could generate 37,000,000 gigawatt-hours of electricity per year, according to the new analysis conducted by the National Renewable Energy Laboratory and consulting firm AWS Truewind. The last comprehensive estimate came out in 1993, when Pacific Northwest National Laboratory pegged the wind energy potential of the U.S. at 10,777,000 gigawatt-hours.

Both numbers are greater than the 3,00,000 gigawatt-hours of electricity currently consumed by Americans each year. Wind turbines generated just 52,000 gigawatt-hours in 2008, the last year for which annual statistics are available.

Though new and better data was used to create the assessment, the big jump in potential generation reflects technological change in wind machines more than fundamental new knowledge about our nation's windscape.

Wind speed generally increases with height, and most wind turbines are taller than they used to be, standing at about 250 feet (80 meters) instead of 165 feet (50 meters). Turbines are now larger, more powerful, and better than the old designs that were used to calculate previous estimates.

"Now we can develop areas that in [previous decades] wouldn't have been deemed developable," said Michael Brower, chief technology offier with AWS Truewind, which carried out the assessment. "It's like oil reserves. They tend to go up not because there is more oil in the ground but because the technology for accessing the oil gets better."

The new maps, above, are useful for would-be wind farm developers who need to find promising sites on which to place their turbines. They want locations with high wind speeds, access to transmission lines, cheap land, and a host of other smaller logistical concerns. If you purchase the best versions, the Truewind maps have a resolution of 650 feet (200 meters), which is less than the spacing between modern machines. That means they can be used to provisionally site individual machines on the ground.

old-wind-maps

Many estimates have been made of the wind energy potential of the United States and the Earth. John Etzler made one of the first way back in the 1830s. He used loose numerical analogies to sailing ships to calculate that "the whole extent of the wind's power over the globe amounts to about… 40,000,000,000,000 men's power."

The water-pumping windmill industry flourished in latter half of the 19th century, but wind energy potential calculations did not advance past the back-of-the-envelope until after World War II. When Palmer Putnam attempted to find the best site in Vermont for the first-megawatt sized wind turbine in the early 1940s, his first line of analysis was to look at how bent the trees were.

The 1980s saw a boom in wind energy in the state of California, driven by a number of Federal and state incentives as well as an active environmental culture. Back then, the only way to really know how hard and often the wind blew was to put up a tower covered in sensors and measure. So, wind farm developers concentrated their efforts on three areas — Tehachapi, Altamont Pass, and San Gorgonio — and covered the places with towers to measure the wind.

"I still have some databases from back then and you look at them and say, 'Oh my, they had 120 towers up,' or something crazy," Brower said. "That's not how it's done anymore."

Even low-resolution regional maps did not exist until the early 1980s and the first national map was only published by the National Renewable Energy Laboratory (née Solar Energy Research Institute) in 1986. As you can see from the map above, it was more of a general guide than a series of detailed local estimates.

The real boom in wind data came with the availability of cheap computational power in the late 1990s. It was then that Brower's company began being able to marry large-scale weather models with small-scale topographic models. They created a parallel process for crunching wind data and ran it on small, fast PCs to get supercomputer level power at low cost. Then, they refined their estimates with data from 1,600 wind measurement towers.

The result is a much more accurate forecast. Truewind's estimates of wind speed at a location have an uncertainty margin of 0.35 meters a second. Good wind sites have average wind speeds of between 6.5 and 10 m/s, though most onshore areas don't get above 9. Perhaps more importantly, their estimates for how many kilowatt-hours a turbine in a location will produce are accurate to within 10 percent, Brower stated.

The newest models are now sufficiently good that developers don't need as much on-site data. They do still use towers to check the maps and models produced by companies like Truewind, but not nearly as many, which reduces the expense and time that it takes to execute a project.

"You might see 10 or 15 towers over an area that would have had 50 or 100 towers before," he said.

The new data, including these maps and forecasting models, may not directly make wind farms cheaper, but the advances certainly makes them easier to plan for, develop, and operate.

"I think of it more as greasing the wheels of the process more than producing a really big cost savings," Brower said. "You reduce the friction, the transaction costs, and that enables you to get where you're going faster."

The better processes, along with state renewable energy mandates, seem to be helping. In 2009, 10 gigawatts of wind capacity was installed in the United States to bring the nation's total to 35 gigawatts.

The data plays a more subtle role, too. In helping make the case that wind energy can play a very substantial role in supply electricity, the new maps and estimates could help convince industrial and political leaders to support renewable energy, particularly in windy heartland states like Kansas, Montana, and Nebraska.

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1. Images: NREL/Truewind. 2. NREL. 3. Chart background: flickr/Wayfinder_73

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

New Giant Prehistoric Fish Species Found Gathering Dust in Museums

Posted: 18 Feb 2010 12:05 PM PST

bonnerichthys-painting

A fresh look at forgotten fossils has revealed two new species of giant, filter-feeding fish that swam Earth's oceans for 100 million years, occupying the ecological niche now filled by whales and whale sharks.

Until now, that ancient niche was thought to be empty, and such fish to be a short-lived evolutionary bust.

"We knew these animals existed, but thought they were only around for 20 million years," said Matt Friedman, a University of Oxford paleobiologist."People assumed they weren't important, that they were an evolutionary failure that was around for a brief time and winked out. Now we realize that they had a long and illustrious evolutionary history."

bonnerichthys_fossilsIn a paper Feb. 18 in Science, Friedman and five other paleobiologists describe Bonnerichthys gladius and Rhinconichthys taylori. They belong to the pachycormid genus, an extinct group of immense fishes that ate by drifting slowly, mouth agape, sucking down plankton and other tiny aquatic life.

Prior to the paper's publication, pachycormids were known from fossils of a single species, Leedsichthys problematicus. (The species name derives from the fragmented remains of its first fossils.) Leedsichthys was an impressive creature, reaching lengths of 30 and perhaps even 50 feet, but its fossils have only been found in western Europe and are between 160 and 145 million years old — a brief, relatively unexceptional footnote to animal history.

However, during a chance visit by Friedman to the University of Kansas, researchers from their Natural History Museum told him of odd recoveries from a newly-prepared fossil deposit: delicate plates and long rods of bone, jumbled beyond recognition. As Friedman put the pieces together, he realized that the plates were part of a jaw, and the rods were gills. That configuration was known from Leedsichthys, but this clearly belonged to a new species.

Working with other museums, Friedman found more examples of the species, which he dubbed B. gladius. They had been collected in the 19th century and mistakenly classified as Leedsichthys, or dismissed as uninteresting. By the time he was finished, Friedman found B. gladius fossils as old as 172 million years, and as young as 66 million years. In the dusty recesses of London's Natural History Museum, He also found another pachycormid species, R. taylori; it had been mischaracterized and forgotten by Gideon Mantell, the English paleontologist credited with starting the scientific study of dinosaurs.

Altogether, the fossils showed that pachycormids were not a footnote, but an evolutionary chapter that spanned more than 100 million years.

"That's longer than the duration of any living groups of feeders," said Friedman. "That's longer than the Cenozoic, when mammals ascended to ecological dominance."

The disappearance of B. gladius from the fossil record coincides with the Cretaceous-Paleogene mass extinction, which wiped out the dinosaurs and bequeathed terrestrial Earth to birds, mammals and insects. Then, extinction was likely caused by an asteroid strike or period of prolonged volcanic activity that shrouded the planet in dust, or both, causing massive die-offs in bottom-of-the-food-chain plants.

With a diet based on photosynthesizing algae, the pachycormids "had the perfect profile of a victim and became extinct," wrote Lionel Cavin, a paleontologist at Geneva's Natural History Museum, in an accompanying commentary.

Ten million years after B. gladius disappeared, sharks and rays rose to prominence. Twenty-five million years after that, modern whales evolved. As described in another Science paper, the whales' evolution coincided with a rebirth of the photosynthetic algae that had once fed B. gladius and the other pachycormids.

Friedman plans to continue studying the pachycormids, and hopes his story will inspire other researchers.

"We've just flagged off a couple examples of these animals," he said. "We know there must be others in the fossil record. Often, when people are collecting fossils in the field, they leave behind the fish, because they're not thought to be important. We hope they keep them."

Images: 1) Robert Nicholls. 2) Bonnerichthys forefin/Matt Friedman. 3) Bonnerichthys jawbones and forefin/Matt Friedman.

See Also:

Citations: "100-Million-Year Dynasty of Giant Planktivorous Bony Fishes in the Mesozoic Seas." By Matt Friedman, Kenshu Shimada, Larry D. Martin, Michael J. Everhart, Jeff Liston, Anthony Maltese, Michael Triebold. By Felix G. Marx and Mark D. Uhen. Science, Vol. 327 No. 5968, Feb. 18, 2010.

"On Giant Filter Feedes." By Lionel Cavin. Science, Vol. 327 No. 5968, Feb. 18, 2010.

"Climate, Critters, and Cetaceans: Cenozoic Drivers of the Evolution of Modern Whales." By Felix G. Marx and Mark D. Uhen. Science, Vol. 327 No. 5968, Feb. 18, 2010.

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.

Winner (and Losers) of NASA’s Final Shuttle Patch Contest

Posted: 18 Feb 2010 11:44 AM PST

patches_8a

The final patch design for the Space Shuttle Program has been selected by a NASA committee from a pool of entriesby NASA employees and contractors.

It beat out 84 other prospective patches to be the final commemorative token of the program that definedthis generation of space travel.

"As the Space Shuttle Program has been an innovative, iconic gem in the history of American spaceflight, the overall shape of the patch and its faceted panels are reminiscent of a diamond or other fine jewel," wrote the winning artist, Blake Dumesnil a Hamilton Sundstrand employee, who works at Johnson Space Center.

The tradition of creating NASA program and mission patcheswas borrowed from the military. It began with the Gemini program of the 1960s.

"There's a long history of patches, so there's a very rich tradition of when someone says 'a mission patch' or 'a shuttle patch,' there's an idea that comes to mind," said Robert Pearlman, a space historian and creator of collectSPACE.com.

spaceshuttle

NASA selected 15 patches as finalists, which were then voted on by NASA employees and winnowed down by a committee. The People's Choice winner above was also the judge's selection.

Like the other finalists, it hewed very closely to the visual tradition established by NASA's original Shuttle patch (right) and the more than 130 that have come since. But, outside the top 15 selected by NASA, some would-be patch designers broke the mold and tried to create some innovative and, um … different, patches. Below,are some of our favorite patches that didn't win. We present the work with the original descriptions by the artists (unnamed by NASA), along with awards for the grooviest, and the most macho and most Soviet patches, among others.

11
Wired Science Award: Grooviest
"This was a Journey that will be remember for a life time. The goals that was accomplish and the lost of brave people dedicate there lives with the shuttle program. For years of training putting together this greatest technology of wonder. The ISS and Hubble, both fine work. With these's they will have more great discovery out there more far beyond the universe. With is picture is the memories of our lost and hard work."

18
Wired Science Award: Machoest
"The patch depicts a strong American arm with American flag sleeve, placing a Space Shuttle into orbit. In the background is the Earth and the SRBs and External Tank. The International Space Station is also in the background. The patch is a simple depiction of America's might provided by the most sophisticated spacecraft system built by man … yet!"

20
Wired Science Award: Abstractest
"The design is to have all five shuttles launching (triangles) with exhaust flames billowing in red/white covering the left side of the patch under the shuttles. Showing the Space telescope (rectangle) and Space Station (the other object) against a blue sky. If there is enough room on the patch a part of the earth could be added to the right side. The astronauts' names can be added to the outside of the circle. But as this is the last fight you may not want to add the names."

66
Wired Science Award: Lovingest
"The dove represents peace.
The nucleus symbol represents science.
The stars represent the 5 shuttles.
The shuttle with wings represents the fallen astronauts.
The purple heart represents the astronaut's bravery."

46
Wired Science Award: Microsoft Paintbrushiest
"• Major successes for Space Shuttle
• 3 symbols represent Spacelab science
• Hubble Telescope
• International Space Station
• Number of Flights – 139
• Name of all shuttles (test & operational)
• 1 star for each lost crew member
• History of shuttle 1977 – 2010
• Main Shuttle launch/landing point marked (KSC)
• Shuttle flying-off into history"

85
Wired Science Award: Sovietest
No description given.

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Google Reader feed, and green tech history research site; Wired Science on Twitter and Facebook.

The First and Last Meeting of Everyone with a Fully Sequenced Genome

Posted: 18 Feb 2010 02:00 AM PST

lavaamp

Nearlyevery person who has had their entire genome sequenced willgather ina single room near Boston on April 27. It's the last time this will ever happen.

Within a year, the dozens of people in this elite group will have been joined bya thousandor more people. Soon after that, hobbyists may be roaming the streets with handheld DNA analyzers, high school athletes may experiment with gene therapy to enhance their performance and pharmacists might check our genetic records before filling prescriptions.

"There was a time that only guys in white labcoats had the credentials and training to operate computers," said Jason Bobe, co-organizer of the GET conference, where the fully sequenced group will meet."Nowadays, we're all experts to some degree. This is happening in genetics too."

Bobe hopes torecruit 100,000 peopleto donate their genetic information to create a public database for medical research.

knomeThe next five years will bring massive genetics experiments and breakthroughs in personalized cancer treatment, according toHarvard University geneticist George Church. Doctors will test medications on stem cells derived from their patients to check whether they will work.

The first human genome sequence, finished in 2003,cost an estimated $2.7 billion. Today, the price has dropped below $1,500 for a complete sequence, and it'son the way to becomingsoinexpensive that most everyone will be able to afford it.

But it's not clear how we will use all of that information.Personalized medicine may be the most important use of DNA analysis, but many industries will be affected by the plummeting costs of gene reading equipment.

"Lets not overlook the ways that genomics will be incorporated into other aspects of our lives," Bobe said, "like our foods, our households, our backyards, consumer goods, our identities and social interactions."

The shelves of most big grocery stores are already lined with products that contain genetically modified vegetables. Students have used DNA bar code analysis to identify fake tuna in fancy sushi restaurants. And anyone can sign up for a dating website that matches people based on their genetic traits.

"Genetics know-how will have spread even faster than the rise of computers from obscurity in 1980 to access for everyone today, even in developing nations," Church said.

Access to the event, however, will be limited. Only two-hundred people can attend, and tickets will cost $999. Butanyone will be able to watch video clips of the best discussions for free.

Images: 1) The LavaAmp is an experimental DNA copying machine that could cost less than $100 and allow hobbyists to do genetic tests at home./Aaron Rowe. 2)A $68,500 genome sequence from Knomecomes on one of these fancy flash drives./Knome

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NASA Brings the Dark Side of the Sun to Your iPhone

Posted: 17 Feb 2010 06:28 PM PST

3d-sun-screens

As the sun reawakens from an anomalously quiet period, keep track of solar flares, sunspots and coronal mass ejections witha new iPhone app that puts the real-time status of the sun in your hand.

"This is more than cool," Dick Fisher, director of NASA's Heliophysics Division, said in a press release. "It's transformative. For the first time ever, we can monitor the sun as a living, breathing 3-dimensional sphere."

With the free 3D Sun app, you can set your phone to alert you when a new solar flare erupts, watch video of a solar prominence or a comet heading into the sun. You can manipulate an image of the sun in three-dimensions with your finger.

The data is streamed to Earth by NASA'stwin STEREO spacecraft which monitor the sun from two different spots, one ahead of Earth in its orbit and one behind, giving stereoscopic images to give a sort of three-dimensional view, similar to the way our two eyes do.

3d-sun4The pair cover 87 percent of the sun's surface, effectively giving us a view of the "dark side" of the sun. This means anyone can see on their phone parts of the sun that even the most powerful telescopes on Earth can't see.

The STEREO spacecraft watch the extreme untraviolet portion of the electromagnetic spectrum because the most exciting solar phenomena show up best at these wavelengths.

"That's why the 3D sun looks false-color green,"said STEREO program scientist Lika Guhathakurta in a press release. "These are not white-light images."

The app was built by a team of programmers led by Tony Phillips, editor of http://science.nasa.gov/. The team plans to release 3D Sun 2.0 which will have higher-res images and data from more wavelengths.

This is the second free iPhone app NASA has released recently.NASA's first app brings you loads of space photos from the Hubble Space Telescope and other NASA missions, videos from NASA TV of science updates, mission activity, rocket launches and other events, mission status updates and live countdowns clocks. And you can track the International Space Station as well.

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How to Do the Ultimate Aging Study

Posted: 17 Feb 2010 01:27 PM PST

grandparents

Longevity is one of the hottest areas of science, but there's a curious hole in the research: Scientifically speaking, nobody knows how to measure aging, much less predict reliably how people will respond to time's ravages.

After all, aging isn't just chronological. Some people are spry and nimble in their elder years. Others are afflicted by the diseases of aging — heart disease, diabetes, cancer, Parkinson's, Alzheimer's, dementia and stroke —by middle age.

Many researchers think those diseases are manifestations of a common underlying cause, known conversationally as aging but as yet undefined by science. They call for studies that would gather exhaustive clinical and genetic data from thousands of people over many years, hopefully identifying the biological mechanisms of growing both older and unhealthier.

"Unlike models of drug development for the diseases of aging, which have consensus endpoints to evaluate, we have not reached a consensus in aging," said gerontologist Don Ingram of the Pennington Biomedical Reseach Center. "We don't know how to predict how someone will function later in life, and we need to."

That such a basic gap exists seems counterintuitive. After all, longevity-enhancing research has never been so prominent. Following leads revealed by animals on calorically restricted diets —they tend to live longer, apparently because dietary stress triggers cell-protecting routines that prevent aging diseases — scientists have found genes and pathways that can be targeted by drugs.

Resveratrol, a natural compound that affects mitochondrial function and DNA repair, and its pharmaceutical derivatives have been used to prevent diabetes in obese mice. Now they're being tested in humans. Manipulations of the growth-regulating IGF-1 pathway have extended lifespans in lab animals. Rapamycin, used to suppress autoimmune responses in people receiving organ transplants, has extended the lives of elderly mice. It's now being tested in mice against specific diseases.

All these findings hint at a universal aging process, and the concept has finally gone mainstream. Longevity research earned a December U.S. News and World Report cover story, and a Time cover package this month. But these experimental results are preliminary, and only tweak pieces of a larger puzzle. Gerontologists say that to develop drugs that slow the aging process, they need to know far more about aging's biology.

"We need to have a set of thousands of people, representing all groups, that are closely followed on health measures. They'd be tested three or four times a year, for five or 10 years. Then you'd have a good sense of the trajectory of aging," said David Harrison, a Jackson Laboratory gerontologist who co-authored the landmark paper on rapamycin's life-extending potential.

According to Harrison, people enrolled in the proposed study could, after several years, opt to take rapamycin. That would let researchers see whether it works in people as it does in mice. If so, they'd also have a detailed account of resulting gene and protein changes, and insight into whether rapamycin works better in some people than others.

Rapamycin does have toxic side effects. Though treatment could be stopped immediately, safety couldn't be guaranteed. But as Harrison noted, "There are hundreds of clinics for rich people to take anti-aging treatments that are at best placebos, and they pay ungodly amounts of money. Wouldn't some people, at least, like to participate in a science-based study where they have their trajectory of aging measured and monitored?"

For now, such a study wouldn't be run by the Jackson Laboratory or a governmental funding agency, like the National Institutes of Health. It would likely take place under the auspices of a private foundation, with study participants footing much of the bill.

But take rapamycin out of the equation, and a long-term study of aging biomarkers would be suitable for institutional funding. Of course, it would still be expensive. But even a long-term study of aging in rodents would be useful, and it would also be more affordable, said Felipe Sierra, director of the National Institute on Aging's Division of Aging Biology.

"If we had a set of biomarkers that at 12 months of age predicted which mice would die younger or older, then we could shorten mouse studies to 12 months," said Sierra.

To get funding, such a study would have to overcome the mixed legacy of a decade-long project launched by the NIA in the late 1980s. Researchers looked for biological markers in rodents, but had neither the technology nor the understanding necessary to find them.

"We spent a lot of money and got nothing. Now it's taboo in our field," said Sierra. "But we weren't ready. Each one of us was looking for a single biomarker of aging. It turns out that there's no such thing. But with the advent of modern metabolomics and proteomics, it might be possible to do this."

Sierra noted that — at a moment of cheap gene sequencing and high-powered genome association studies, when desktop computers crunch terabytes of gene and protein data — the most reliable indicator of aging is still whether people look old. It's hardly scientific.

"The technology has advanced to the point where we should be able to try," said Sierra.

Image:Lynn Lin/Flickr

See Also:

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.

Wednesday, 17 February 2010

Johnald's Fantastical Daily Link Splurge

Johnald's Fantastical Daily Link Splurge


Comet’s 10 Million-Mile Tail Lights Up in Infrared

Posted: 17 Feb 2010 11:17 AM PST

WISE Infrared View of Comet Siding Spring

NASA's new infrared telescope has released its first images.

The Wide-Field Infrared Survey Explorer has returned more than 250,000 raw images. To celebrate its performance thus far, NASA selected four of them for processing and publication.

Above, you can see the comet, Siding Spring, which was discovered in 2007 by Australian observers. Its 10-million-mile long tail is made of glowing dust pushed away from its nucleus by the solar wind.

WISE launched on Dec. 14, 2009 and took in its first starlight at the end of the month. The telescope is intended to survey the entire sky looking for cosmic oddities. The mission will also provide better data on the average size of asteroids in the solar system, which will refine scientists' estimates of how often a dangerous near-earth object hits the Earth.

WISE is one of three space-based telescopes that observe in the infrared. NASA's Spitzer Space Telescope and the Herschel Space Observatory also look at the longer wavelength side of the electromagnetic spectrum. Because the longer light waves travel more effectively through fine particles, the infrared is best for observing dusty regions.

In the image below, we see the Andromeda galaxy's dusty spiral arms. WISE has four detectors in the infrared spectrum, which measure light with wavelengths of 3.4, 4.6, 12, and 22 microns. By using only the detectors that can measure the longest wavelengths, scientists can generate images like the one below, which shows just the dusty arms of the galaxy, which are heated by young stars.

WISE Infrared View of Dust in the Andromeda Galaxy

Images: NASA/JPL-Caltech/UCLA

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

Fasting Might Make Chemotherapy More Effective

Posted: 17 Feb 2010 10:32 AM PST

chemo

Ashort period of fasting prior to chemotherapy may protect healthy cells but leave cancer cells vulnerable to drugs, according toa new study.

The results are very preliminary, based on animal research and a case study of just 10 people. But if they hold up, doctors could have a new tool for reducing chemotherapy's side effects and safely administering larger doses.

"Side effects aren't just, 'Will I lose my hair or not?'" said Valter Longo, a University of Southern California gerontologist. "It's, 'Will I be able to receive a high dose or not?'"

For the last decade, Longo has studied the effects of caloric restriction on cell function. In lab animals, diets with 25% fewer calories than normal are linked to extended, healthy lifespans. The mechanisms are poorly understood, but it seems that dietary stress activates cell-protecting mechanisms.

Longo's specialty is insulin-like growth factor 1, or IGF-1, a protein that regulates cell growth. Its production is limited during fasting. In yeast and roundworms, inhibiting IGF-1 has produced record lifespans. According to Longo, people who read about his work elected on their own to try fasting before chemotherapy. "We told them not to, their oncologists told them not to, but the patients went ahead and did it," he said.

Their accounts were gathered in a case report published in December in the journal Aging. Of10 patients, six reported fewer side effects when they received chemotherapy while fasting, rather than while consuming food normally. Four received chemotherapy only while fasting, and reported fewer side effects than is typical. The effects of treatment did not appear to be altered at all.

In a paper published Monday in Cancer Research, Longo's team followed the human findings with a study of mice with cancer. Fasting reduced their IGF-1 levels. When given chemotherapy, none of the normal-diet control group survived, while 60 percentof fasting mice lived.

The findings are subject to many caveats. A mouse study is only a mouse study, few people were involved in the human study, and negative results may not have been reported. Still, the results have sparked further interest. In addition to his own ongoing clinical study at USC, Longo said the Mayo Clinic and Children's Hospital of Los Angeles are also planning tests.

Longo also started a company, L-Nutra, to develop a line of chemotherapy-tailored meals.

"I'd never tell patients to keep this in mind, but I'd tell the oncologists," said Longo. "If someone is out of options and suffering terribly, you have to keep in mind things that could make a difference, though there isn't a clinical trial with 2,000 people finished."

Image: Nic McPhee/Flickr

See Also:

Citations: "Fastingandcancer treatment in humans: Acaseseries report." By Fernando M. Safdie, Tanya Dorff, David Quinn, Luigi Fontana, Min Wei, Changhan Lee, Pinchas Cohen, and Valter D. Longo. Aging, Vol. 1 No. 12, December 31, 2009.

"Reduced Levels of IGF-I Mediate Differential Protection of Normal and Cancer Cells in Response to Fasting and Improve Chemotherapeutic Index." By Changhan Lee, Fernando M. Safdie, Lizzia Raffaghello, Min Wei, Federica Madia, Edoardo Parrella, David Hwang, Pinchas Cohen, Giovanna Bianchi, and Valter D. Longo. Cancer Research, Vol. 70 No. 4, February 15, 2010.

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.

Driving Distracts Cellphone Users

Posted: 16 Feb 2010 04:28 PM PST

cell-phone_driving

Cellphone conversations don't just interfere with driving. Driving dents the capacity to describe and remember cellphone messages, at least for some of the youngest and oldest drivers, a new study finds.

sciencenewsRoutine driving impedes a person's ability to relay information from a cellphone call accurately to a conversation partner and to remember key elements of that information, say psychologist Gary Dell of the University of Illinois at Urbana-Champaign and his colleagues. Although many drivers regard talking while cruising a straightaway as no harder than walking while chewing gum, "that intuition is incorrect," Dell says.

Both older and younger drivers seated next to a passenger and operating a vehicle in a simulator had more difficulty correctly retelling brief stories, versus retelling stories while sitting in an unmoving "car," the researchers report in the February Psychonomic Bulletin & Review. Participants, especially those over age 60, remembered less about stories after simulated driving than after sitting in the unmoving car. That might reflect a greater emphasis on defensive driving among older drivers.

Driving skills, such as rapid reactions to approaching vehicles in intersections, also took a hit while retelling the stories, the investigators say. Earlier studies have reported that driving worsens while talking on cellphones or sending text messages.

These new findings challenge the belief that work productivity benefits by conducting important conversations, such as business negotiations, while commuting.

"Safety concerns aside, if the quality of a conversation matters to your business, then it is best to reserve your conversation for times when you are not operating a motor vehicle," remarks psychologist David Strayer of the University of Utah in Salt Lake City. Strayer studies the impact of cellphone use on driving skills.

Dell's team studied 96 pairs of adults, each consisting of a driver and a partner. Half the volunteers ranged in age from 18 to 21; the rest were in their 60s and 70s. Drivers sat in a car facing a projection screen that allowed them to navigate through a virtual city. They were told to drive down a city street and through several busy intersections while obeying a speed limit of 30 miles per hour, staying in the center of the lane and stopping at stop signs.

After an initial trip without talking, drivers on subsequent trips listened to and then retold a series of 10- to 20-second stories heard over a hands-free headphone. Partners did the same during other trips.

In another condition, drivers and passengers listened to and retold stories in an unmoving car. Drivers but not passengers in a "moving" simulator retold a smaller number of central story elements, such as the nature of a robbery. They described nearly 70 percent of story elements correctly in an unmoving car, as did passengers. That figure fell to 60 percent while driving on straightaways and to 50 percent while going through intersections. Passengers' accuracy at retelling stories remained the same regardless of condition.

Story retelling in the new study roughly corresponds to a driver or passenger listening to a half-minute podcast or cellphone message and then relaying that information along, Dell says. Actual driving presents dangers that divert attention from what's said more than virtual driving does, he adds.

Image: Indiana_Stan/Flickr

New Lasers Fight Crime, Martians

Posted: 16 Feb 2010 03:26 PM PST

n_chemcam-art-cover1

A new technique that uses a laser to vaporize materials like rocks and steel to analyze their chemical composition is finding new applications from Mars to forensics.

Thanks to its relatively small size and low cost, laser-induced breakdown spectroscopy is emerging from the laboratory and turning into a precise tool for figuring out what something is made of. What had been a technique largely for scientists now can be transformed into a tough, small system that can be operated by a technician instead of a PhD.

"The same things that make it amenable to go to Mars also make it amenable to go out in the field," said Jose Almirall, a chemist at Florida International University who has a grant from the Department of Justice to explore how crime labs can use the technology.

NASA will be deploying a LIBS system called the "ChemCam" on its new Mars rover, now named Curiosity and scheduled to launch next year.

LIBS works by blasting a material with a high-energy laser pulses. The Mars Curiosity rover will send an average of three pulses a second, each one 5 nanoseconds long. The power during that pulse is in the range of 10 megawatts.

That's not enough to shoot a hole in your hand, but it'll leave a mark.

"I've shot myself and you might see a little spot where you shot yourself, if it's just one laser shot," said Roger Wiens, a space scientist at Los Alamos National Laboratory, who developed the ChemCam for the Mars Curiosity mission.

In some cases, the ChemCam will be focused on rocks for more than 15 seconds. If you were to do that to your arm, "You'd be in pain," Wiens said.

There are no plans to use the laser for anything but science, but there's something science-fictionally satisfying about the next Mars rover coming equipped with a laser "gun."

The laser shots vaporize a crater less than a millimeter across, turning its molecules into a 14,000-degree plasma. The atoms are shorn of their electrons, but as the plasma ball cools down, they return to a more normal state. The electrons drop into their orbits around the nucleus and as they do so, the little plasma ball emits light.

"You can see it with your eyes and it makes a little zapping sound when you do it," said Wiens.

The specific color of the light tells scientists exactly what element they are looking at if they pass it through a spectrometer, which can precisely measure the wavelength of light.

Lasers have been used to create small clouds of atoms for spectral analysis in the past, but those systems require a separate torch that heats the atoms into a plasma. With LIBS, the same laser blast does both jobs. It's this simplicity that could aid the technology's spread. A 2004 Cambridge University Press book on LIBS declared the technique "perhaps the most versatile method yet developed for elemental analysis."

On Earth, there are plenty of times when one might want to know the very precise composition of a substance. In late 2009, for the first time, a LIBS analysis was used in a court. It helped identify a would-be bank robber by the glass on his clothing in Maryland. After being locked in a vestibule by secret alarms, he shot his way out and sped away. After being apprehended, some pieces of glass were found on his clothes. When Almirall's team compared the precise composition of that glass with the stuff from the bank, they came back with a probable match.

Glass made in different places and at different times is quite distinctive at the molecular level, Almirall said. In modern manufacturing processes, sodium carbonate and calcium oxide are usually added to the base silica. But tiny amounts of other elements such as strontium can act as a particular type of glass' signature. The older a glass-manufacturing plant is, for example, the more zirconium leaches into the glass melt.
libs
"The glass manufacturers don't care if they have 10 or 20 or 30 parts per million of strontium," said Almirall. "We'll look at seven, eight, nine different elements in the raw material to detect differences."

The level of precision that LIBS can offer may eventually help manufacturers do quality control on their products. Almirall is even thinking about how to use a briefcase LIBS system to test products for U.S. Customs to ensure their safety and provenance.

"If you were receiving some toys and want to immediately know if you have lead in these toys, LIBS could do that very quickly," Almirall said. "Green light, no lead. Red light, there is lead."

Several companies are trying to commercialize LIBS systems including Applied Spectra of Fremont, California, and Stellar Net of Tampa, Florida. Stellar Net's PortaLibs is shown above. Clearly, the technology has gone a long way toward fulfilling the promise Wiens first saw in it 13 years ago.

"I was looking for other technologies to put into space and a colleague here [at Los Alamos Lab] took me to his laboratory and showed me a little laser the size of a cigar and a rock across the room and a little transistor battery," Wiens recalled. "He had the laser hooked up to the 9-volt battery, charged up some capacitors for a few seconds, and then zap, across the room, there was a spark."

See Also:

WiSci 2.0: Alexis Madrigal's Twitter, Tumblr, and green tech history research site; Wired Science on Twitter and Facebook.

New Chemical Diversity Discovered in Old Meteorite

Posted: 16 Feb 2010 10:04 AM PST

murchison

A new analysis of an ancient meteorite that fell to Earth in 1969 reveals millions of complex compounds, underscoring the richness of our galaxy's primordial soup.

More than 200 pounds of the meteorite were recovered from its crash site in Murchison, Australia in 1969. Subsequent analysis classified it as a carbonaceous chondrite: a rock that formed in the early solar system's mix of gas and dust, floating for billions of years until finding our planet.

Researchers found hundreds of molecules in the carbon-rich rock, including amino acids produced in the famous Miller-Urey experiments, thought to simulate the conditions that spawned life. But those scientists were limited by their era's relatively rough methods, and tended to look for what they expected to find.

In a study published Monday in the Proceedings of the National Academy of Sciences, researchers turned the latest chemical analysis tools to a piece of the Murchison meteorite. Using techniques that measure mass down toa single electron, they found more than 14,000 different molecules.

These can be combined in millions of different configurations, hinting at a wealth of molecular possibilities on early Earth and elsewhere in the solar system.

"Extraterrestrial chemodiversity is high compared to terrestrial relevant biogeological and biogeochemical-driven chemical space," write the authors.

In other words, there's far more out there than we've found down here.

Image: A piece of the Murchison meteorite/©Meteorites Australia

See Also:

Citation: "High molecular diversity of extraterrestrial organic matter in Murchison meteorite revealed 40 years after its fall." By Philippe Schmitt-Kopplin, Zelimir Gabelica, Régis D. Gougeon, Agnes Fekete, Basem Kanawati, Mourad Harir, Istvan Gebefuegi, Gerhard Eckel, and Norbert Hertkorn. Proceedings of the National Academy of Sciences, Vol. 107 No. 7.

Brandon Keim's Twitter stream and reportorial outtakes; Wired Science on Twitter. Brandon is currently working on a book about ecological tipping points.