Saturday, December 1, 2012

Video: 'Under A Killing Moon', Part 5

Dateline NBC

'Dateline NBC,' the signature broadcast for NBC News in primetime, premiered in 1992. Since then, it has been pioneering a new approach to primetime news programming. The multi-night franchise, supplemented by frequent specials, allows NBC to consistently and comprehensively present the highest-quality reporting, investigative features, breaking news coverage and newsmaker profiles.

Source: http://www.msnbc.msn.com/id/3032600/vp/50034940#50034940

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China's top daily tells U.S. to avoid fiscal cliff or lose clout

BEIJING (Reuters) - China's top newspaper scolded the United States on Friday for shirking responsibility as a superpower by prolonging uncertainty over how it will avoid a "fiscal cliff" that could put the world economy at risk.

"American politicians should understand that a 'self-created' recession will gravely erode both the soft and hard power of the United States," the People's Daily, a newspaper regarded as a mouthpiece of the ruling Communist Party, said.

"A country such as the United States that is accustomed to telling other nations to be responsible, should, on the one big problem concerning the future of the global economy, show itself to be a responsible power."

China's latest criticism of its major trade partner followed disappointment that talks between Democrats and Republicans in Washington on Thursday had failed to reach agreement over how to prevent the United States toppling off a fiscal cliff.

The U.S. economy may sink into recession unless it averts $600 billion of tax hikes and spending cuts due at the start of 2013 unless agreement is reached over how to shrink the U.S. fiscal deficit.

"Although the chance of the United States really falling over a 'fiscal cliff' is not big, frequent political bickering is disturbing the world," said the commentary, published under a pen name often used to give the newspaper's views on foreign policy issues, "Zhong Sheng", which means "Voice of China".

"This proves the U.S. political system has problems and lacks the responsibility that a big nation should have," it said, adding that the world is "no stranger to the negative impact on the global economy owing to U.S. policy mistakes."

The United States is the world's second-largest buyer of Chinese exports, after Europe which is mired in a debt crisis.

A U.S. economy in recession would be a blow to China, already trapped in its slowest annual growth in 13 years this year at around an estimated 7.5 percent as export growth crumbles and domestic demand slacken.

(Reporting by Aileen Wang and Koh Gui Qing; Editing by Simon Cameron-Moore)

Source: http://news.yahoo.com/chinas-top-daily-tells-u-avoid-fiscal-cliff-042050050--business.html

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A Skin Cancer Detection and Prevention Chart | PHILANTHROPY ...

Melanoma

A great chart, by Wendy Bryan of I Heart Guts, helping people detect and prevent skin cancer.

(via Laughing Squid)

Categories: Uncategorized | Tags: art, design, health |

Source: http://philanthropyfactory.com/2012/11/29/a-skin-cancer-detection-and-prevention-chart/

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Scientists identify key biological mechanism in multiple sclerosis

ScienceDaily (Nov. 29, 2012) ? Scientists at the Gladstone Institutes have defined for the first time a key underlying process implicated in multiple sclerosis (MS) -- a disease that causes progressive and irreversible damage to nerve cells in the brain and spinal cord. This discovery offers new hope for the millions who suffer from this debilitating disease for which there is no cure.

Researchers in the laboratory of Gladstone Investigator Katerina Akassoglou, PhD, have identified in animal models precisely how a protein that seeps from the blood into the brain sets off a response that, over time, causes the nerve cell damage that is a key indicator of MS. These findings, which are reported in the latest issue of Nature Communications, lay the groundwork for much-needed therapies to treat this disease.

MS, which afflicts more than two million people worldwide, develops when the body's immune system attacks the brain. This attack damages nerve cells, leading to a host of symptoms including numbness, fatigue, difficulty walking, paralysis and loss of vision. While some drugs can delay these symptoms, they do not treat the disease's underlying cause -- which researchers are only just beginning to understand.

"To successfully treat MS, we must first identify what triggers the disease and what enables its progression," said Dr. Akassoglou, who also directs the Gladstone Center for In Vivo Imaging Research and is a professor of neurology at the University of California, San Francisco, with which Gladstone is affiliated. "Here, we have shown that the leakage of blood in the brain acts as an early trigger that sets off the brain's inflammatory response -- creating a neurotoxic environment that damages nerve cells."

Dr. Akassoglou and her team reached this conclusion by using advanced imaging techniques to monitor the disease's progression in the brain and spinal cord of mice modified to mimic the signs of MS. Traditional techniques only show "snapshots" of the disease's pathology. However, this analysis allows researchers to study individual cells within the living brain -- and to monitor in real-time what happens to these cells as the disease worsens over time.

"In vivo imaging analysis let us observe in real-time which molecules crossed the blood-brain barrier," said Dimitrios Davalos, PhD, Gladstone staff research scientist, associate director of the imaging center and the paper's lead author. "Importantly, this analysis helped us identify the protein fibrinogen as the key culprit in MS, by demonstrating how its entry into the brain through leaky blood vessels impacted the health of individual nerve cells."

Fibrinogen, a blood protein that is involved in coagulation, is not found in the healthy brain. In vivo imaging over different stages of disease revealed, however, that a disruption in the blood-brain barrier allows blood proteins -- and specifically fibrinogen -- to seep into the brain. Microglia -- immune cells that act as the brain's first line of defense -- initiate a rapid response to fibrinogen's arrival. They release large amounts of chemically reactive molecules called 'reactive oxygen species.' This creates a toxic environment within the brain that damages nerve cells and eventually leads to the debilitating symptoms of MS.

Importantly, the team found a strategy to halt this process by genetically modifying fibrinogen in the animal models. This strategy disrupted the protein's interaction with the microglia without affecting fibrinogen's essential role as a blood coagulant. In these models, the microglia did not react to fibrinogen's arrival and did not create a toxic environment. As a result, the mice failed to show the type of progressive nerve cell damage seen in MS.

"Dr. Akassoglou's work reveals a novel target for treating MS -- which might protect nerve cells and allow early intervention in the disease process," said Ursula Utz, PhD, MBA, a program director at The National Institutes of Health's National Institute of Neurological Disorders and Stroke, which provided funding for this research.

"Indeed, targeting the fibrinogen-microglia interactions to halt nerve-cell damage could be a new therapeutic strategy," said Dr. Akassoglou. "At present we are working to develop new approaches that specifically target the damaging effects of fibrinogen in the brain. We also continue to use in vivo imaging techniques to further enhance our understanding of what triggers the initiation and progression of MS. "

Jae Kyu Ryu, PhD, Mario Merlini, PhD, Kim Baeten, PhD, Natacha Le Moan, PhD, Mark Petersen, MD, Dimitri Smirnoff, Catherine Bedard, MSc, Sara Gonias Murray, MD, and Jennie Ling also participated in this research at Gladstone. Funding came from a variety of sources, including the National Multiple Sclerosis Society, the American Heart Association, the Howard Hughes Medical Institute, the Nancy Davis Foundation for Multiple Sclerosis, the Dana Program in Brain and Immuno-Imaging, H. Lundbeck A/S and the National Institutes of Health.

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Story Source:

The above story is reprinted from materials provided by Gladstone Institutes.

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


Journal Reference:

  1. Dimitrios Davalos, Jae Kyu Ryu, Mario Merlini, Kim M. Baeten, Natacha Le Moan, Mark A. Petersen, Thomas J. Deerinck, Dimitri S. Smirnoff, Catherine Bedard, Hiroyuki Hakozaki, Sara Gonias Murray, Jennie B. Ling, Hans Lassmann, Jay L. Degen, Mark H. Ellisman, Katerina Akassoglou. Fibrinogen-induced perivascular microglial clustering is required for the development of axonal damage in neuroinflammation. Nature Communications, 2012; 3: 1227 DOI: 10.1038/ncomms2230

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/eTY-XRbwnTU/121129173952.htm

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Nick Gordon Arrested for Reckless Driving

Source: http://www.thehollywoodgossip.com/2012/11/nick-gordon-arrested-for-reckless-driving/

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Supreme Court delays decision on taking up gay marriage cases (Los Angeles Times)

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Robo-submarines learn to dive free

Will Ferguson, reporter

T7000119-Robot_submarine_ALIVE-SPL.jpg

(Image: Alexis Rosenfeld/Science Photo Library)

It's time to let the robo-subs off the leash.

Robot submarines are pretty good at finding their own way around but they still need a helpful human to guide them through twisting underwater ravines and channels, the poor things.

Not for much longer. A new guidance system will let autonomous underwater vehicles (AUVs) snap photos along even the most treacherous reaches of sea floor.

AUVs can already navigate in open water by matching their depth to an existing terrain map. Sarah Houts of the Aerospace Robotics Laboratory, at Stanford University, California, worked with researchers at the Monterey Bay Aquarium Research Institute in Moss Landing, also in California, to take the current technology one step further by computing flight paths around and through underwater obstacles.

The software tweak will allow underwater robots to autonomously take pictures of hazardous locations where only remote-controlled robots have gone before. The team ran a successful field test in Monterey Bay earlier this month and expects the system will be ready to be tried for real sometime next year.

Across the Pacific, Australian scientists are teaching their autonomous underwater robot Sirius a new trick as well.? Researchers at the University of Sydney have developed an system to tell the difference between kelp and other species of plant life on the ocean floor off the south-east coast of Tasmania. Their results mean that future AUVs trained on a number of dive missions could be used to document the variety and abundance of plant and animal life in the world's oceans - all without humans needing to be in the loop. The research will be presented at the Australian Conference on Robotics and Automation next month.

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