Wednesday, April 3, 2013

Puzzle of how spiral galaxies set their arms comes into focus

Puzzle of how spiral galaxies set their arms comes into focus [ Back to EurekAlert! ] Public release date: 2-Apr-2013
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Contact: Elena D'Onghia
edonghia@astro.wisc.edu
608-263-4622
University of Wisconsin-Madison

MADISON As the shapes of galaxies go, the spiral disk with its characteristic pinwheel profile is by far the most pedestrian.

Our own Milky Way, astronomers believe, is a spiral. Our solar system and Earth reside somewhere near one of its filamentous, swept-back arms. And nearly 70 percent of the galaxies closest to the Milky Way are spirals, suggesting they have taken the most ordinary of galactic forms in a universe with billions of galaxies.

But despite their common morphology, how galaxies like ours get and maintain their characteristic arms has proved to be an enduring puzzle in astrophysics. How do the arms of spiral galaxies arise? Do they change or come and go over time?

The answers to these and other questions are now coming into focus as researchers capitalize on powerful new computer simulations to follow the motions of as many as 100 million "stellar particles" as gravity and other astrophysical forces sculpt them into familiar galactic shapes. Writing April 1 in the Astrophysical Journal, a team of researchers from the University of Wisconsin-Madison and Harvard-Smithsonian Center for Astrophysics report simulations that seem to resolve longstanding questions about the origin and life history of spiral arms in disk galaxies.

"We show for the first time that stellar spiral arms are not transient features, as claimed for several decades," says UW-Madison astrophysicist Elena D'Onghia, who led the new research along with Harvard-Smithsonian Center for Astrophysics colleagues Mark Vogelsberger and Lars Hernquist. "They are self-perpetuating, persistent and surprisingly long lived."

The origin and fate of the emblematic spiral arms in disk galaxies have been debated by astrophysicists for decades, with two theories predominating: One holds that the arms come and go over time. A second and widely held theory is that the material that makes up the arms stars, gas and dust is affected by differences in gravity and jams up, like cars at rush hour, sustaining the arms for long periods.

The new results fall somewhere in between the two theories and suggest that the arms arise in the first place as a result of the influence of giant molecular clouds, star forming regions or nurseries common in galaxies. Introduced into the simulation, the clouds, says D'Onghia, a UW-Madison professor of astronomy, act as "perturbers" and are enough to not only initiate the formation of spiral arms but to sustain them indefinitely.

"We find they are forming spiral arms," explains D'Onghia. "Past theory held the arms would go away with the perturbations removed, but we see that (once formed) the arms self-perpetuate, even when the perturbations are removed. It proves that once the arms are generated through these clouds, they can exist on their own through (the influence of) gravity, even in the extreme when the perturbations are no longer there."

The new study modeled stand-alone disk galaxies, those not influenced by another nearby galaxy or object. Some recent studies have explored the likelihood that spiral galaxies with a close neighbor a nearby dwarf galaxy, for example get their arms as gravity from the satellite galaxy pulls on the disk of its neighbor.

According to Vogelsberger and Hernquist, the new simulations can be used to reinterpret observational data, looking at both the high-density molecular clouds as well as gravitationally induced holes in space as the mechanisms that drive the formation of the characteristic arms of spiral galaxies.

###

Terry Devitt
608-262-8282
trdevitt@wisc.edu

EDITORS: Images are available to accompany this story: High-resolution still image at http://www.news.wisc.edu/newsphotos/galaxies13.html; video at https://www.youtube.com/watch?v=-ii0nksV2lY.

Puzzle of how spiral galaxies set their arms comes into focus.


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


Puzzle of how spiral galaxies set their arms comes into focus [ Back to EurekAlert! ] Public release date: 2-Apr-2013
[ | E-mail | Share Share ]

Contact: Elena D'Onghia
edonghia@astro.wisc.edu
608-263-4622
University of Wisconsin-Madison

MADISON As the shapes of galaxies go, the spiral disk with its characteristic pinwheel profile is by far the most pedestrian.

Our own Milky Way, astronomers believe, is a spiral. Our solar system and Earth reside somewhere near one of its filamentous, swept-back arms. And nearly 70 percent of the galaxies closest to the Milky Way are spirals, suggesting they have taken the most ordinary of galactic forms in a universe with billions of galaxies.

But despite their common morphology, how galaxies like ours get and maintain their characteristic arms has proved to be an enduring puzzle in astrophysics. How do the arms of spiral galaxies arise? Do they change or come and go over time?

The answers to these and other questions are now coming into focus as researchers capitalize on powerful new computer simulations to follow the motions of as many as 100 million "stellar particles" as gravity and other astrophysical forces sculpt them into familiar galactic shapes. Writing April 1 in the Astrophysical Journal, a team of researchers from the University of Wisconsin-Madison and Harvard-Smithsonian Center for Astrophysics report simulations that seem to resolve longstanding questions about the origin and life history of spiral arms in disk galaxies.

"We show for the first time that stellar spiral arms are not transient features, as claimed for several decades," says UW-Madison astrophysicist Elena D'Onghia, who led the new research along with Harvard-Smithsonian Center for Astrophysics colleagues Mark Vogelsberger and Lars Hernquist. "They are self-perpetuating, persistent and surprisingly long lived."

The origin and fate of the emblematic spiral arms in disk galaxies have been debated by astrophysicists for decades, with two theories predominating: One holds that the arms come and go over time. A second and widely held theory is that the material that makes up the arms stars, gas and dust is affected by differences in gravity and jams up, like cars at rush hour, sustaining the arms for long periods.

The new results fall somewhere in between the two theories and suggest that the arms arise in the first place as a result of the influence of giant molecular clouds, star forming regions or nurseries common in galaxies. Introduced into the simulation, the clouds, says D'Onghia, a UW-Madison professor of astronomy, act as "perturbers" and are enough to not only initiate the formation of spiral arms but to sustain them indefinitely.

"We find they are forming spiral arms," explains D'Onghia. "Past theory held the arms would go away with the perturbations removed, but we see that (once formed) the arms self-perpetuate, even when the perturbations are removed. It proves that once the arms are generated through these clouds, they can exist on their own through (the influence of) gravity, even in the extreme when the perturbations are no longer there."

The new study modeled stand-alone disk galaxies, those not influenced by another nearby galaxy or object. Some recent studies have explored the likelihood that spiral galaxies with a close neighbor a nearby dwarf galaxy, for example get their arms as gravity from the satellite galaxy pulls on the disk of its neighbor.

According to Vogelsberger and Hernquist, the new simulations can be used to reinterpret observational data, looking at both the high-density molecular clouds as well as gravitationally induced holes in space as the mechanisms that drive the formation of the characteristic arms of spiral galaxies.

###

Terry Devitt
608-262-8282
trdevitt@wisc.edu

EDITORS: Images are available to accompany this story: High-resolution still image at http://www.news.wisc.edu/newsphotos/galaxies13.html; video at https://www.youtube.com/watch?v=-ii0nksV2lY.

Puzzle of how spiral galaxies set their arms comes into focus.


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

?


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


Source: http://www.eurekalert.org/pub_releases/2013-04/uow-poh040213.php

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Mali: 3rd day of fighting extremists in Timbuktu

BAMAKO, Mali (AP) ? Shooting continued for a third day in the Malian city of Timbuktu, as the army went house to house searching for the Islamic extremists who infiltrated the town over the weekend.

Capt. Samba Coulibaly, spokesman for the Malian military in Timbuktu, said the jihadists had taken cover behind the military camp in the town center and in the alleyways next to the 14th century Dinjareyber mosque, a UNESCO Wold Heritage site. He said a total of 11 jihadists had been killed since the attack started late Saturday night.

The French Defense Ministry said in a statement that Mirage and Rafalle jets flew over the city to hunt down the fighters, who attempted to flee in the northwest direction. One French soldier was injured during the fighting, the statement said.

Source: http://news.yahoo.com/mali-3rd-day-fighting-extremists-timbuktu-145836912.html

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Tuesday, April 2, 2013

Psy to turn "Gentleman" in new song, rapper says

SEOUL (Reuters) - South Korean rapper Psy plans to follow his "Gangnam Style" YouTube megahit with a single called "Gentleman" and a new dance, but is playing coy about everything else ahead of the song's release, which was moved up a day to April 12.

The song will be available for Korean fans then, but Psy will perform it in public for the first time at an April 13 concert.

"The new song is extremely fun and ... what I can tell you is the song title is 'Gentleman'", Psy told local television late on Monday.

"I can't tell you about the dance but all Koreans know this dance - but (those in) other countries haven't seen it", Psy added, hinting at a takeoff on a traditional dance.

The music video for "Gangnam Style", which featured the chubby Psy doing what has become his trademark 'invisible horse' dance in a succession of garish jackets, is now YouTube's most-watched clip, and has made the 35-year-old a global celebrity.

Both the singer and his manager said plans remained fluid.

"There is still more than a week left before the concert so we can't say (the title) will be unchanged," manager Hwang Kyu-wan told Reuters.

Psy has told his fans to turn up sporting white clothes at the upcoming concert, and posed in a variety of white garb himself, including a spacesuit and a bridal gown.

But the singer also said that stardom has taken a toll. In late March he tweeted a photo of himself covering his face at a recording studio, calling it the "pain of creation".

(Reporting by Ju-min Park; Editing by Elaine Lies)

Source: http://news.yahoo.com/psy-turn-gentleman-song-rapper-says-063218072.html

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Avinger Lane mansion and estate up for sale for $6.5M | Real Estate

Posted on 01 April 2013.

Chartwell is on 31 acres off Avinger Lane in Davidson. (David Boraks/DavidsonNews.net)

Chartwell is on 31 acres off Avinger Lane in Davidson. (David Boraks/DavidsonNews.net)

Chartwell, a massive home on 31 acres off Avinger Lane in Davidson, is up for sale. Completed in 1992, the house is one of the largest to come on the Lake Norman area market recently, and experts say it could sell to a single owner or to a developer who might subdivide the property for more homes.

Nason and Margie Fishback

Nason and Margie Fishback (David Boraks/DavidsonNews.net)

Owners Nason and Margie Fishback are asking $6.5 million for the house, which he helped design. The building is modeled after his family home in Brookings, South Dakota, with interior elements borrowed from the governor?s mansion in West Virginia.

The house totals about 8,440 square feet, while a mostly unfinished basement has another 3,000 square feet. Attached by a covered walkway is a guest apartment, with about 1,200 square feet. The surrounding property is wooded, with a pond and tennis courts.

Realtor Julie Lopez said she expects one of two scenarios. ?It?s either somebody who wants to be in town, with privacy and acreage, or it could be developed, and the property subdivided,? said Lopez, of Ivester Jackson Distinctive Properties, who is helping to market the property.

?It?s a one of a kind home,? she added.

The Fishbacks have been the sole owners. Nason Fishback, who is an investor, and his wife came to Davidson a few years before building the house, and formerly lived in homes on South Thompson Street and Woodland Street. They raised four kids in the home, which has four bedrooms and 4 full and 2 half baths.

Front entry hall (David Boraks/DavidsonNews.net)

Front entry hall (David Boraks/DavidsonNews.net)

Fishback said he had three goals when building the house. He wanted it to be ?good sized,? ?handsome and stately,? and ?lonely.? It certainly fits the latter description: It?s surrounded by trees and is not visible from either Avinger Lane, where it can be reached by a long gravel drive, or from nearby Pine Road.

The house also has plenty of light. ?We deliberately faced exactly south, and deliberately put the living room on the west side. We spend much more time there than any other room,? Nason Fishback said.

The master bedroom on the second floor also faces south, and has windows on three sides. The house also has a broad entry hall with two staircases (an idea borrowed from governor?s mansion), a wood-paneled library, a parlor, office, dining room, breakfast room, pantry and mud room.

Nason Fishback said that at age 81, and with the kids moved away, ?It?s time to sell. ? I?m 81 and it?s time to get my affairs in order.?

MORE ABOUT CHARTWELL

Chartwell is at 200 Avinger Lane in Davidson. Find out more on the CarolinaMLS.com website.

RELATED COVERAGE

Feb. 28, 2013, ?New neighbor in the Peninsula: Michael Jordan.?

Oct. 8, 2012, ?Lake Norman home sells for record $7.5 million?

Nov. 14, 2011, ?Outside reading: Homes with unbelievable garages.?

A view from the rear of Chartwell. (David Boraks/DavidsonNews.net)

A view from the rear of Chartwell. (David Boraks/DavidsonNews.net)

Aerial view of the property, which includes 31 acres and a pond. (Ivester Jackson Distinctive Properties)

Aerial view of the property, which includes 31 acres and a pond. (Ivester Jackson Distinctive Properties)

Living Room

Living Room (David Boraks/DavidsonNews.net)

Source: http://davidsonnews.net/realestate/2013/04/01/avinger-lane-mansion-and-estate-up-for-sale-for-6-5m/

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Tunable app shows musicians what pitch-perfect means as they play (video)

Tunable for Android and iOS shows musicians what it takes to be pitchperfect video

Musicians who've had some degree of practice will know the lack of sophistication involved in getting an instrument in tune and on time: a light-up tuning box and a swinging metronome may be their only real resources. Affinity Blue knows that mobile apps allow better, and recently unveiled Tunable as a one-stop shop for more exacting performers. The Android and iOS release provides a live graph that shows where the sweet spot is for pitch, and how closely the music has followed along for the past few seconds -- a boon for brass players, vocalists and others who need to sustain a note for more than a moment. There's also a simple tone generator and a customizable metronome that's easily seen from a distance. While it's $1 to try Tunable, that might be a pittance for anyone who'd rather spend time mastering a riff than rehashing the basics.

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Comments

Via: Fast Company

Source: Affinity Blue

Source: http://www.engadget.com/2013/03/31/tunable-app-shows-musicians-what-pitch-perfect-means/

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Monday, April 1, 2013

Insert Coin: Dash charts your car data live, with gauges and a dashcam (video)

In Insert Coin, we look at an exciting new tech project that requires funding before it can hit production. If you'd like to pitch a project, please send us a tip with "Insert Coin" as the subject line.

Insert Coin Drive with Dash charts car data live, with gauges and dashcams video

We've seen a few stabs at smartphone-enhanced car diagnostics as of late, but many good solutions like Automatic Link and Delphi's Vehicle Diagnostics are primarily useful after you've parked. The upcoming Dash OBD-II adapter is certainly up to that side of the job, telling a Bluetooth-connected iOS device (and eventually, Android) about your car's problems and estimating fuel costs based on the gas tank's levels. Where it stands out is its usefulness while on the road: the custom app offers custom live gauges, including a Green-Meter for ideal fuel economy that you won't usually find in a real instrument cluster. There's even a dashcam mode that overlays travel details on captured video, whether it's to support insurance claims or just to immortalize a drive through the back country.

Filed under: , ,

Comments

Source: Kickstarter

Source: http://www.engadget.com/2013/03/31/insert-coin-dash-charts-your-car-data-live-with-gauges-and-dashcam/

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Personalized brain mapping technique preserves function following brain tumor surgery

Apr. 1, 2013 ? Neurosurgeons can visualize important pathways in the brain using an imaging technique called diffusion tensor imaging (DTI), to better adapt brain tumor surgeries and preserve language, visual and motor function while removing cancerous tissue. In the latest issue of Neurosurgical Focus, researchers from the Perelman School of Medicine at the University of Pennsylvania review research showing that this ability to visualize relevant white matter tracts during glioma resection surgeries can improve accuracy and, in some groups, significantly extend survival (median survival of 21.2 months) compared to cases where DTI was not used (median survival of 14 months).

"We can view the brain from the inside out now, with 3D images detailing connectivity within the brain, making a virtual intraoperative map," said senior author Steven Brem, MD, professor of Neurosurgery, chief of the Division of Neurosurgical Oncology and co-director of the Penn Brain Tumor Center. "Penn is at the forefront of a major shift in the field -- we now have such detail about each individual's brain tumor -- combining diffusion tensor imaging and advanced imaging with the entire personalized diagnostics analysis available for all brain tumor patients at Penn Medicine."

Diffusion tensor imaging (DTI) provides a rendering of axon pathways, by tracking water molecules in the brain as they travel in a direction parallel to axonal fibers, in a 3D model known as "the diffusion tensor." The diffusion tensor directly represents the direction of water and indirectly represents the orientation of white matter fibers. The colorful images, captured as part of an 8 minute sequence during an MRI, show representations of clusters of axon fibers, where each color indicates a direction of travel, and offer a glimpse of the interwoven communication superhighways of the brain.

"The DTI images can be overlaid with structural and functional MRI images, providing a hybrid map showing topography layered with a road map," said Neurosurgery resident Kalil Abdullah, MD, lead author of the paper. "This rendering gives us increased clarity to visualize important white matter tracts in the brain and adapt our surgical approaches to each person's case. Rather than focusing on solely taking the tumor out, we can avoid damage to healthy tissue and preserve important pathways responsible for speech, vision and motor function. "

Relying heavily on the expertise of radiologists who process and analyze the DTI images, including Ronald L. Wolf, MD, PhD, associate professor of Radiology at Penn, the research on DTI is being translated into clinical practice to guide surgical procedures. Further research efforts are targeted at defining language deficits before surgery and following-up post-operatively to determine any changes or improvements following treatment based on the use of DTI.

Working collaboratively with colleagues in Penn's departments of Neurosurgery, Neurology, Radiology, Radiation Oncology, Nursing, Pathology and Laboratory Medicine and the Abramson Cancer Center, the Penn Brain Tumor Center combines the latest imaging, biomarker and genetic tumor testing to provide a personalized treatment plan for all types of brain cancers. Brain tumors are among the first areas of interest for Penn's Center for Personalized Diagnostics (CPD), a joint initiative by Penn Medicine's Department of Pathology and Laboratory Medicine and the Abramson Cancer Center, which integrates Molecular Genetics, Pathology Informatics, and Genomic Pathology for individualized patient diagnoses and to elucidate cancer treatment options for physicians.

Additional co-authors on the Neurosurgical Focus article include Paolo Nucifora, MD, PhD, from Penn's Department of Radiology and Daniel Lubelski, BA, with the Cleveland Clinic Lerner College of Medicine. The study was funded by the Departments of Neurosurgery and Radiology at the University of Pennsylvania.

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The above story is reprinted from materials provided by Perelman School of Medicine at the University of Pennsylvania.

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


Journal Reference:

  1. Kalil G. Abdullah, Daniel Lubelski, Paolo G. P. Nucifora, Steven Brem. Use of diffusion tensor imaging in glioma resection. Neurosurgical Focus, 2013; 34 (4): E1 DOI: 10.3171/2013.1.FOCUS12412

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/most_popular/~3/qvdGazilS6Y/130401120915.htm

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