Sunday, June 16, 2013

Google, Twitter push to reveal number of national security related requests separately

While Microsoft and Facebook have both published information tonight about how many requests for customer info the government made over a six month period, Google and Twitter are apparently hoping to take a different route. As Google told AllThingsD and Twitter legal director Benjamin Lee tweeted, "it's important to be able to publish numbers of national security requests-including FISA disclosures-separately." Google went further, claiming that lumping the number of National Security Letters together with criminal requests would be a "step backwards." Clearly this post-PRISM revelations battle for more transparency on just what the government is doing behind the scenes isn't over, we'll let you know if any of the parties involved have more information to share.

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Source: AllThingsD, Benjamin Lee (Twitter)

Source: http://www.engadget.com/2013/06/15/google-twitter-push-to-reveal-number-of-secret-fisa-requests-se/?utm_medium=feed&utm_source=Feed_Classic&utm_campaign=Engadget

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Secrets of biological soil crusts uncovered

June 14, 2013 ? They lie dormant for years, but at the first sign of favorable conditions they awaken. This sounds like the tagline for a science fiction movie, but it describes the amazing life-cycles of microbial organisms that form the biological soil crusts (BSCs) of Earth's deserts. Now a research team with the U.S. Department of Energy (DOE)'s Lawrence Berkeley National Laboratory (Berkeley Lab) has reported a unique molecular-level analysis of a BSC cyanobacterium responding to the wetting and drying of its environment. The results hold implications for land management, improved climate change models, and a better understanding of carbon cycling in soil microbial communities and how changes in global temperatures impact Earth's deserts.

"We found a way to measure from start to finish in real unaltered samples the molecular events behind the response of cyanobacterium to wetting and drying in a desert BSC," says Aindrila Mukhopadhyay, a biologist with Berkeley Lab's Physical Biosciences Division. "Not only did we get a good view of the genetic machinery that wakes the microbes up, but we also got a good sense of what constitutes a healthy BSC."

Mukhopadhyay and Trent Northen, a chemist with Berkeley Lab's Life Sciences Division, are the corresponding authors of a paper describing this research in the journal of the International Society for Microbial Ecology. The paper is titled "Dynamic cyanobacterial response to hydration and dehydration in a desert biological soil crust."

Arid and semi-arid deserts make up about 40-percent of Earth's total land mass. Much of the undisturbed soil crust in these deserts is a living mantle of microbes and their by-products, with the predominant inhabitants being cyanobacteria, microorganisms that use photosynthesis for energy. To survive dry spells that can go on for years, BSC microorganisms must enter a dormant state but they must also be poised for rapid resuscitation to utilize short periods of precipitation. For a better understanding of how the microbes are able to do this, the Berkeley Lab research team studied the cyanobacterium Microcoleus vaginatus.

"M. vaginatus is the early BSC colonizer, an ecosystem pioneer that fixes carbon and binds the soil together allowing the community to develop while preventing wind erosion," says Northen. "It is globally distributed in regions where water is scarce, including not only hot deserts but the arctic as well."

Working with the research group of Ferran Garcia-Pichel at Arizona State University, the Berkeley Lab team collected pie-sized samples of soil crust from the cold desert area near Moab, Utah. These samples were subjected to in situ wetting and drying over a period of six days, including two diel (day/night) cycles. The wetting simulated conditions that would be brought about by the passage of a rain front. During the study, the researchers performed whole-genome transcriptional analysis and precise biochemical measurements.

"Simulated weather conditions and sampling in a temporal manner over the six day experimental period allowed us to track key transcriptional and metabolic responses as they occurred," says Mukhopadhyay. "We found that within three minutes after wetting began, metabolic processes in the dormant microbial cells came alive. Within one hour, photosynthesis began, accompanied by carbon dioxide up-take. During this time we saw specific genes get turned on/off and specific gene expressions be elevated or depressed."

The rain episode lasted three days. Although rare, such conditions do occur in the desert and enabled the researchers to differentiate between wetting-up and drying-down responses from diel cycle responses. They discovered that when dehydration of the soil resumed, the mechanisms triggered by wetting were mirrored in the reverse direction, suggesting that the M. vaginatus microbes were preparing themselves to re-enter desiccation-induced dormancy.

"These BSC microbes are highly attuned to their environment and they respond very quickly to changes," Mukhopadhyay says. "Their responses, however, are highly sensitive to physical disturbances and alterations in temperature."

In their paper, the Berkeley Lab researchers say that a better understanding of how environmental factors influence the growth and metabolism of M. vaginatus and other BSC microbes should improve our ability to predict the impacts of climate or land-use change on BSC systems. This knowledge should also help in the development of management strategies for restoring BSCs following large-scale disturbances.

"BSC systems represent the world's largest biofilms, and the demise of such systems could release carbon, and probably more importantly, dust into the atmosphere, changing the albedo of snow-packs," says Northen. "Restoring or protecting BSCs through changes in land-use could help pull carbon out of the atmosphere and reduce dust."

A better understanding of BSCs could also deepen our understanding of the carbon cycle, which could improve the accuracy of climate models, as Mukhopadhyay explains.

"In most climate models there is little or no accounting for the carbon fixed by soil microbes," she says. "BSC cyanobacteria are the photosynthetic organism for deserts and understanding their role in the carbon-cycle will help fill in current climate model gaps. This should help improve the accuracy of these models."

The Berkeley Lab team would like to expand their efforts to examine other BSC systems around the world. Among other issues, they would like to identify the signaling mechanisms that inform dormant BSC microbes that moisture is present or that the temperature is changing and it is time to respond.

"BSCs are sentinels for marking the health or decline of the world's deserts, one of Earth's major ecosystems," Mukhopadhyay says. "It is vital that we understand them."

Co-authoring the paper "Dynamic cyanobacterial response to hydration and dehydration in a desert biological soil crust" were Lara Rajeev, Ulisses Nunes da Rocha, Niels Klitgord, Eric Luning, Julian Fortney, Seth Axen, Patrick Shih, Nicholas Bouskill, Benjamin Bowen, Cheryl Kerfeld, Ferran Garcia-Pichel and Eoin Brodie.

This research was funded through Berkeley Lab's Laboratory Directed Research and Development program.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/~3/zGaRzU1RaaM/130614125642.htm

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Saturday, June 15, 2013

Signed ... but delivered?

KraftAP

The New England Patriots currently may employ up to 90 football players.? Eventually, 37 of them will be fired.? Owner Bob Kraft hopes quarterback Tim Tebow isn?t one of them.

Kraft, appearing Friday on CNBC, said that the organization wants to see Tebow stick around.

?We want high quality people who work hard, are team players,? Kraft said, via Mike Reiss of ESPN.com.? ?I don?t think there is a nicer person that I?ve ever met, and now he?ll get to compete with all the other people at the position, and our hope is that he?s on our 53-man roster.?

Kraft?s comments mesh with the notion that Tebow will be a quarterback and only a quarterback.? (Even though we still believe that, if Tebow makes the roster as a quarterback, they?ll find a way to use him as something other than a quarterback.)? Based on the team?s experience, he?s a quarterback they may eventually need.

?You never know what?s going [to happen]; Tom Brady missed the whole season a few years ago,? Kraft said.? ?You can?t enough quality people in any of your businesses.?

Kraft expanded on his belief that Tebow?s religious beliefs were an attraction ? even though that kind of talk has to make Kraft?s lawyers a little antsy.

?In this age of technology, where people are isolating themselves and going to their little instruments and spending hours of not interfacing with people; people who respect tradition, religion, spirituality, I think we need more of that in America today,? Kraft said.

Though Tebow ultimately has to be one of the best 53 players in order to make it to the 53-man roster, these intangibles could help him in a close case ? especially if Kraft is lobbying aggressively for Tebow to stick around.? As Tom Curran of CSN New England recently suggested on PFT Live, the goal could be to have Tebow?s passion influence others in the locker room.

That could end up being a bigger contribution than anything Tebow ever does on the field.

Source: http://profootballtalk.nbcsports.com/2013/06/14/source-cruz-training-camp-holdout-still-possible/related/

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World of weather opposites for Arkansas farmers

LITTLE ROCK, Ark. (AP) -- Arkansas farmers were expected to plant 1 million acres of corn this year but frequent heavy rains have knocked that estimate down by about 15 percent, state agriculture experts said Thursday.

Even though it is the middle of June, a small percentage of growers are still planting soybeans, rice and cotton. Planting corn this late is associated with diminished yields, but corn expert Jason Kelley of the University of Arkansas Division of Agriculture said irrigation can counter the effects of a normal late summer.

Growers have struggled to get their equipment into the fields this spring.

"It's been a struggle. Having to deal with the cold, the rainfall, the wet soils ? it really slowed things down this year," Kelley said.

Normally a wet spring will include a stretch of a week to 10 days in which growers can get their planting done.

"You hear 800,000 acres (of corn) and that seems like a lot. We can plant that in a week," Kelley said. "But it's hard to get that amount planted when you get a day here, a half day there. We couldn't get a string of seven or eight days in a row to get things done."

A year ago, producers in east Arkansas, where most of the state's row crops are grown, were harvesting corn in mid-July.

Farmers also caught a nice break last year. Since they planted early, growers missed the worst of a punishing drought in August and September.

Agricultural economist Scott Stiles of the University of Arkansas Division of Agriculture says even some rice is still going in the ground this late in June.

Some of the switch to rice is by corn growers who couldn't get their crops planted but some other growers decided to switch to rice because September futures contracts have been on a consistent rise for about a month.

Stiles said that corn prices could go up because about 5 percent of the nation's crop ? close to 5 million acres ? hasn't gone into the ground yet. And parts of the Midwest have gotten a lot of rain.

Regardless, Arkansas is still making a very large shift from cotton to corn. Last year state growers planted 700,000 acres of corn and, in 2011, it was 560,000 acres.

Arkansas producers haven't planted 1 million acres of corn since the post-World War II economy of the 1950s.

State growers planted 710 acres of winter wheat, which is now being harvested. Stiles said the crop appears to be above average, so far.

The U.S. Department of Agriculture in its March forecast projected 1.2 million acres of rice would be planted this year in Arkansas, down about 5 percent from a year ago. Some of that could be made up by growers changing their minds about planting other crops.

Arkansas produces about half of the nation's rice and it is the state's largest cash crop.

Growers are expected to have 3.3 million acres of soybeans planted, the state's largest crop geographically. That's about the same as last year.

Producers are planting only 270,000 acres of cotton, compared to 595,000 acres in 2012 and 680,000 acres in 2011.

The U.S. Drought Monitor shows almost all of Arkansas has passed out of the drought. Only a small area in parts of three counties in the state's southwest is in moderate drought, the least extreme categories of drought.

Source: http://news.yahoo.com/world-weather-opposites-arkansas-farmers-122233953.html

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Tuesday, June 11, 2013

New AirPort Extreme Base Station, Time Capsule supports Gigabit Wi-Fi

New AirPort Extreme Base Station, Time Capsule supports Gigabit Wi-Fi

Apple's revised its AirPort Extreme Base Station and Time Capsule to support 802.11ac, the latest and greatest Wi-Fi protocol to see adoption. Called "Gigabit Wi-Fi," 802.11ac offers performance greater than 1 gigabit per second. The AirPort Express was notably missing from any mention of update.

The AirPort Extreme has gotten a complete makeover - it's smaller than before, and features three-stream 802.11ac Wi-Fi. The Time Capsule will be available in 2TB and 3TB configurations. Users of the new versions of the devices will see improvements in video streaming and other bandwidth-intensive activities. Time Capsule backups will be faster, of course. The new devices incorporate a "beamforming antenna array."

Other networking hardware vendors have already beaten Apple to the punch with 802.11ac-equipped devices, but the changes are welcome and timed well with new MacBook Air systems that also support 802.11ac.

    


Source: http://feedproxy.google.com/~r/TheIphoneBlog/~3/axm9ulcUB9E/story01.htm

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Reduced brain volume in kids with low birth-weight tied to academic struggles

June 10, 2013 ? An analysis of recent data from magnetic resonance imaging (MRI) of 97 adolescents who were part of study begun with very low birth weight babies born in 1982-1986 in a Cleveland neonatal intensive care unit has tied smaller brain volumes to poor academic achievement.

More than half of the babies that weighed less than 1.66 pounds and more than 30 percent of those less than 3.31 pounds at birth later had academic deficits. (Less than 1.66 pounds is considered extremely low birth weight; less than 3.31 pounds is labeled very low birth weight.) Lower birth weight was associated to smaller brain volumes in some of these children, and smaller brain volume, in turn, was tied to academic deficits.

Researchers also found that 65.6 percent of very low birth weight and 41.2 percent of extremely preterm children had experienced academic achievement similar to normal weight peers.

The research team -- led by Caron A.C. Clark, a scientist in the Department of Psychology and Child and Family Center at the University of Oregon -- detected an overall reduced volume of mid-brain structures, the caudate and corpus callosum, which are involved in connectivity, executive attention and motor control.

The findings, based a logistic regression analyses of the MRIs done approximately five years ago, were published in the May issue of the journal Neuropsychology. The longitudinal study originally was launched in the 1980s with a grant from the National Institute of Child Health and Human Development (National Institutes of Health, grant HD 26554) to H. Gerry Taylor of Case Western University, who was the senior author and principal investigator on the new paper.

"Our new study shows that pre-term births do not necessarily mean academic difficulties are ahead," Clark said. "We had this group of children that did have academic difficulties, but there were a lot of kids in this data set who didn't and, in fact, displayed the same trajectories as their normal birth-weight peers."

Academic progress of the 201 original participants had been assessed early in their school years, again four years later and then annually until they were almost 17 years old. "We had the opportunity to explore this very rich data set," Clark said. "There are very few studies that follow this population of children over time, where their trajectories of growth at school are tracked. We were interested in seeing how development unfolds over time."

The findings, Clark added, provide new insights but also raise questions such as why some low-birth-weight babies develop normally and others do not? "It is very difficult to pick up which kids will need the most intensive interventions really early, which we know can be really important."

The findings also provide a snapshot of children of very low birth weights who were born in NICU 30 years ago. Since then, technologies and care have improved, she said, meaning that underweight babies born prematurely today might have an advantage over those followed in the study. However, she added, improving NICUs also are allowing yet smaller babies to survive.

Clark now is exploring these findings for early warning clues that might help drive informed interventions. "Pre-term birth does mean that you are much more likely to experience brain abnormalities that seem to put you at risk for these outcomes," she said. "They seem to be a pretty strong predictor of poor cognitive development as children age. We really need to find ways to prevent these brain abnormalities and subsequent academic difficulties in these kids who are born so small."

Co-authors were Kimberly Andrews Espy, professor of psychology and vice president for research and innovation, and dean of the graduate school at the UO; Hua Fang of the University of Massachusetts Medical School; Pauline A. Filipek and Jenifer Juranek, both of the University of Texas Health Sciences Center at Houston; and Barbara Bangert, Maureen Hack and Taylor, all of Case Western Reserve University and University Hospitals Case Medical Center, in Cleveland.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/~3/NNkuDjg3xs8/130610133543.htm

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Monday, June 10, 2013

There Was Drinkable Water On Mars According To Opportunity

There Was Drinkable Water On Mars According To Opportunity

Opportunity, aka The Little Rover That Could, is still making important discoveries 10 years into its Martian jaunt. After the devastating loss of twin rover Spirit in 2011, Opportunity rallied and kept trekking, only to recently discover a fascinating rock near Endurance Crater.

Read more...

    


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/D7NDDv9jigM/there-was-drinkable-water-on-mars-according-to-opportun-512200809

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