Thursday, January 31, 2013

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Source: http://hingham.patch.com/events/download-zero-dark-thirty-dvd-quality-movie-now

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Tuesday, January 29, 2013

Intuit Acquires Facebook Ecommerce Platform Payvment?s Team, Tech, And Patents While Ecwid Takes Its 200K Merchants

payvmentEarlier today Facebook ecommerce platform Payvment announced it was shutting down and transitioning its 200,000 merchants to competitor Ecwid, but we've just discovered that's because Intuit is acquiring Payvment's team, technology, and patents. Several Payvment employees have already changed their LinkedIn profiles to show Intuit as their new home.

Source: http://feedproxy.google.com/~r/Techcrunch/~3/2wAy1GR6Gao/

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TaxACT Deluxe Online

By Kathy Yakal

2nd Story Software has had the distinction over the last several years of being the only personal income tax-prep provider that offers a free version that is the same as its paid version in terms of actual tax preparation tools. The free version of TaxACT Deluxe Online only lacks some found extras found in the paid version, such as an import tool, donation tracker, and calculators (none of which I even used in my evaluation). But if you don't need to file a state return, you can prepare and print or e-file your IRS 1040 forms and schedules absolutely free.

It's for this reason that I said last year and will say again this year: The TaxACT site should be your first stop when you're getting ready to endure your annual tax ordeal. Jump to the topics that you think are the most complex in your return and see how the site handles them. If the forms you need are supported?TaxACT includes all of the most common and many that are used less frequently?and the depth of guidance is acceptable, you don't have to look any further.

Lest you think this is a gimmick designed to market a lot of other products and services to you, or that TaxACT is a second-rate site published by a fly-by-night company, know that it's neither. TaxACT has been around for as long as its competitors, though in its earlier years it was known as Personal TaxEdge and published by a different company (some of the principals moved forward with the product and kept it going under a new name). There's no catch. TaxACT Deluxe Online is a solid rival for the other sites reviewed here. It just happens to be free.

Almost a Carbon Copy
Like its competitors, TaxACT looks and works much like the 2011 version did, with one big difference: TaxTutor Guidance, which comes from renowned tax resource J.K. Lasser, has been rewritten to be clearer and simpler. This was one of TaxACT's weaknesses, so the change was welcome. Beyond that, the company is now offering an audit insurance plan ? similar to competitors' ? for $39.95. And 2nd Story Software is branching out a bit; it will produce an inexpensive service for creating your own will.

TaxACT Deluxe Online does practically everything TurboTax Deluxe Online?and H&R Block At Home Deluxe Online?do. Besides supporting a comparable number of forms and schedules and incorporating new tax laws since last year, it walks you through an interview-like process ("Q&A") rather than making you enter data on IRS documents. It asks you simple, clear questions about everything that needs to be on those official forms. There are often several questions on each screen, and you simply enter information in fields or select options from lists or check boxes to answer them.

You advance forward and backward by clicking buttons. TaxACT doesn't force you to complete the screens in order like H&R Block At Home Deluxe Online does. And when you come across particularly complex topics, all of these sites offer the option of taking a more directed, simplified route.

In the background, TaxACT transfers those responses to the correct lines on the 1040 and its assorted forms and schedules. When you're done, TaxACT combs through your return and alerts you to anything that's missing or seems incorrect. After you've fixed anything necessary, what comes out when you click "Print" is the actual IRS forms filled out with the information you provided. You can also file your return electronically at no cost.

Source: http://feedproxy.google.com/~r/ziffdavis/pcmag/~3/AEsUWegQR40/0,2817,2414608,00.asp

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Neuroscientists pinpoint location of fear memory in amygdala

Jan. 27, 2013 ? A rustle of undergrowth in the outback: it's a sound that might make an animal or person stop sharply and be still, in the anticipation of a predator. That "freezing" is part of the fear response, a reaction to a stimulus in the environment and part of the brain's determination of whether to be afraid of it.

A neuroscience group at Cold Spring Harbor Laboratory (CSHL) led by Assistant Professor Bo Li Ph.D., together with collaborator Professor Z. Josh Huang Ph.D., have just released the results of a new study that examines the how fear responses are learned, controlled, and memorized. They show that a particular class of neurons in a subdivision of the amygdala plays an active role in these processes.

Locating fear memory in the amygdala

Previous research had indicated that structures inside the amygdalae, a pair of almond-shaped formations that sit deep within the brain and are known to be involved in emotion and reward-based behavior, may be part of the circuit that controls fear learning and memory. In particular, a region called the central amygdala, or CeA, was thought to be a passive relay for the signals relayed within this circuit.

Li's lab became interested when they observed that neurons in a region of the central amygdala called the lateral subdivision, or CeL, "lit up" in a particular strain of mice while studying this circuit.

"Neuroscientists believed that changes in the strength of the connections onto neurons in the central amygdala must occur for fear memory to be encoded," Li says, "but nobody had been able to actually show this."

This led the team to further probe into the role of these neurons in fear responses and furthermore to ask the question: If the central amygdala stores fear memory, how is that memory trace read out and translated into fear responses?

To examine the behavior of mice undergoing a fear test the team first trained them to respond in a Pavlovian manner to an auditory cue. The mice began to "freeze," a very common fear response, whenever they heard one of the sounds they had been trained to fear.

To study the particular neurons involved, and to understand them in relation to the fear-inducing auditory cue, the CSHL team used a variety of methods. One of these involved delivering a gene that encodes for a light-sensitive protein into the particular neurons Li's group wanted to look at.

By implanting a very thin fiber-optic cable directly into the area containing the photosensitive neurons, the team was able to shine colored laser light with pinpoint accuracy onto the cells, and in this manner activate them. This is a technique known as optogenetics. Any changes in the behavior of the mice in response to the laser were then monitored.

A subset of neurons in the central amygdala controls fear expression

The ability to probe genetically defined groups of neurons was vital because there are two sets of neurons important in fear-learning and memory processes. The difference between them, the team learned, was in their release of message-carrying neurotransmitters into the spaces called synapses between neurons. In one subset of neurons, neurotransmitter release was enhanced; in another it was diminished. If measurements had been taken across the total cell population in the central amygdala, neurotransmitter levels from these two distinct sets of neurons would have been averaged out, and thus would not have been detected.

Li's group found that fear conditioning induced experience-dependent changes in the release of neurotransmitters in excitatory synapses that connect with inhibitory neurons -- neurons that suppress the activity of other neurons -- in the central amygdala. These changes in the strength of neuronal connections are known as synaptic plasticity.

Particularly important in this process, the team discovered, were somatostatin-positive (SOM+) neurons. Somatostatin is a hormone that affects neurotransmitter release. Li and colleagues found that fear-memory formation was impaired when they prevent the activation of SOM+ neurons.

SOM+ neurons are necessary for recall of fear memories, the team also found. Indeed, the activity of these neurons alone proved sufficient to drive fear responses. Thus, instead of being a passive relay for the signals driving fear learning and responses in mice, the team's work demonstrates that the central amygdala is an active component, and is driven by input from the lateral amygdala, to which it is connected.

"We find that the fear memory in the central amygdala can modify the circuit in a way that translates into action -- or what we call the fear response," explains Li.

In the future Li's group will try to obtain a better understanding of how these processes may be altered in post-traumatic stress disorder (PTSD) and other disorders involving abnormal fear learning. One important goal is to develop pharmacological interventions for such disorders.

Li says more research is needed, but is hopeful that with the discovery of specific cellular markers and techniques such as optogenetics, a breakthrough can be made.

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The above story is reprinted from materials provided by Cold Spring Harbor Laboratory.

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


Journal Reference:

  1. Haohong Li, Mario A Penzo, Hiroki Taniguchi, Charles D Kopec, Z Josh Huang, Bo Li. Experience-dependent modification of a central amygdala fear circuit. Nature Neuroscience, 2013; DOI: 10.1038/nn.3322

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_science/~3/lxzF37HaE7w/130128104739.htm

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New insights into conquering influenza

Jan. 29, 2013 ? Researchers from the University of Melbourne and The Walter and Eliza Hall Institute (WEHI) have discovered a new protein that protects against viral infections such as influenza.

As influenza spreads through the northern hemisphere winter, Dr Linda Wakim and her colleagues in the Laboratory of Professor Jose Villadangos from the Department of Biochemistry and Molecular Biology, and the Department of Microbiology and Immunology, believe they have a new clue to why some people fight infections better than others.

The lab has been investigating the 'defensive devices' contained within the T-cells that are located on exposed body surfaces such as skin and mucosal surfaces to ward off infection. T-cells detect cells infected with viruses and kill them before the virus can reproduce within the infected cell and spread to other cells.

Researchers found these cells contain the protein IFITM3 and this makes them more resistant to viral infections such as Influenza. The findings have been published in Nature Immunology.

"If we learn how to increase the number and longevity of T-cells expressing IFITM3, this could lead to improved vaccines that promote the generation of more resistant T-cells able to provide the greatest protection, for longer." Professor Villadangos said.

Dr Wakim said "We are currently trying to understand why some T-cells and not others express this protective molecule. Probably they encounter some form of chemical signal (a cytokine, or a surface molecule) in the tissues where they lodge, which induces the expression of IFITM3. If we identify these chemical cues, we may be able to include them in future vaccines."

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The above story is reprinted from materials provided by University of Melbourne.

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


Journal Reference:

  1. Linda M Wakim, Nishma Gupta, Justine D Mintern, Jose A Villadangos. Enhanced survival of lung tissue-resident memory CD8 T cells during infection with influenza virus due to selective expression of IFITM3. Nature Immunology, 2013; DOI: 10.1038/ni.2525

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/~3/0aZepGhSp2s/130129100243.htm

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Best friends influence when teenagers have first drink

Jan. 28, 2013 ? Chances are the only thing you remember about your first swig of alcohol is how bad the stuff tasted. What you didn't know is the person who gave you that first drink and when you had it says a lot about your predisposition to imbibe later in life.

A national study by a University of Iowa-led team has found that adolescents who get their first drink from a friend are more likely to drink sooner in life, which past studies show makes them more prone to abusing alcohol when they get older. The finding is intended to help specialists predict when adolescents are likely to first consume alcohol, with the aim of heading off problem drinking at the pass.

"When you start drinking, even with kids who come from alcoholic families, they don't get their first drinks from their family," says Samuel Kuperman, a child and adolescent psychiatrist at the UI. "They get their first drinks from their friends. They have to be able to get it. If they have friends who have alcohol, then it's easier for them to have that first drink."

The basis for the study, published this month in the journal Pediatrics, is compelling: One-third of eighth graders in the United States report they've tried alcohol, according to a 2011 study of 20,000 teenagers conducted by the University of Michigan and funded by the National Institutes of Health. By 10th grade, more than half say they've had a first drink, and that percentage shoots to 70 percent by their senior year.

"There's something driving kids to drink," explains Kuperman, corresponding author on the paper. "Maybe it's the coolness factor or some mystique about it. So, we're trying to educate kids about the risks associated with drinking and give them alternatives."

Kuperman and his team built their formula from two longstanding measures of adolescent drinking behavior -- the Semi-Structured Assessment for the Genetics and Alcoholism and the Achenbach Youth Self Report. From those measures of nearly two-dozen variables and a review of the literature, the UI-led team found five to be the most important predictors: two separate measures of disruptive behavior, a family history of alcohol dependence, a measure of poor social skills, and whether most best friends drink alcohol.

The researchers then looked at how the five variables worked in concert. Surprisingly, a best friend who drank and had access to alcohol was the most important predictor. In fact, adolescents whose best friend used alcohol were twice as likely to have a first drink, the researchers found. Moreover, if considered independently of the other variables, teenagers whose best friends drank are three times as likely to begin drinking themselves, the study found, underscoring the sway that friends have in adolescents' drinking behavior.

"Family history doesn't necessarily drive the age of first drink," notes Kuperman, who has studied teen drinking for more than a decade. "It's access. At that age (14 or 15), access trumps all. As they get older, then family history plays a larger role."

The current study drew from a pool of 820 adolescents at six sites across the country. The participants were 14 to 17 years old, with a median age of 15.5, nearly identical to the typical age of an adolescent's first drink found in previous studies. More than eight in 10 respondents came from what the researchers deemed high-risk families, but more than half of the teenagers had no alcohol-dependent parents. Tellingly, among those adolescents who reported having had drunk alcohol, nearly four in ten said their best friends also drank.

The result underscores previous findings that teenagers who have their first drink before 15 years of age are more likely to abuse alcohol or become dependent. It also supports the screening questions selected in the National Institute on Alcohol Abuse and Alcoholism and the American Academy of Pediatrics initiative to identify and help youth at risk for alcohol use, the researchers write.

Kuperman, whose faculty appointment is in the Carver College of Medicine, says he hopes to use the study to delve into the genetics underpinning alcoholism, chiefly tracking adolescents who use alcohol and see whether they have genes that match up with their parents if they also are problem drinkers.

"We're trying to separate out those who experiment with alcohol to those who go on to problematic drinking," he says.

Contributing authors include John Kramer from the UI; Grace Chan and Victor Hesselbrock, University of Connecticut Health Center; Leah Wetherill, Indiana University School of Medicine; Kathleen Bucholz, Washington University School of Medicine in St. Louis; Danielle Dick, Virginia Commonwealth University; Bernice Porjesz and Madhavi Rangaswamy, State University of New York Downstate Medical Center, Brooklyn; and Marc Schuckit (principal investigator on the grant), University of California San Diego School of Medicine.

The National Institutes of Health (grant number: 5 U10 AA008401), the National Institute on Alcohol Abuse and Alcoholism and the National Institute on Drug Abuse funded the study.

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Story Source:

The above story is reprinted from materials provided by University of Iowa. The original article was written by Richard C. Lewis.

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


Journal Reference:

  1. S. Kuperman, G. Chan, J. R. Kramer, L. Wetherill, K. K. Bucholz, D. Dick, V. Hesselbrock, B. Porjesz, M. Rangaswamy, M. Schuckit. A Model to Determine the Likely Age of an Adolescent's First Drink of Alcohol. PEDIATRICS, 2013; DOI: 10.1542/peds.2012-0880

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/~3/BlqvBqU0MNw/130128133136.htm

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