Monday, April 8, 2013

How our bodies interact with our minds in response to fear and other emotions

Apr. 7, 2013 ? New research has shown that the way our minds react to and process emotions such as fear can vary according to what is happening in other parts of our bodies.

In two different presentations on April 8 at the British Neuroscience Association Festival of Neuroscience (BNA2013) in London, researchers have shown for the first time that the heart's cycle affects the way we process fear, and that a part of the brain that responds to stimuli, such as touch, felt by other parts of the body also plays a role.

Dr Sarah Garfinkel, a postdoctoral fellow at the Brighton and Sussex Medical School (Brighton, UK), told a news briefing: "Cognitive neuroscience strives to understand how biological processes interact to create and influence the conscious mind. While neural activity in the brain is typically the focus of research, there is a growing appreciation that other bodily organs interact with brain function to shape and influence our perceptions, cognitions and emotions.

"We demonstrate for the first time that the way in which we process fear is different dependent on when we see fearful images in relation to our heart."

Dr Garfinkel and her colleagues hooked up 20 healthy volunteers to heart monitors, which were linked to computers. Images of fearful faces were shown on the computers and the electrocardiography (ECG) monitors were able to communicate with the computers in order to time the presentation of the faces with specific points in the heart's cycle.

"Our results show that if we see a fearful face during systole (when the heart is pumping) then we judge this fearful face as more intense than if we see the very same fearful face during diastole (when the heart is relaxed). To look at neural activity underlying this effect, we performed this experiment in an MRI [magnetic resonance imaging] scanner and demonstrated that a part of the brain called the amygdala influences how our heart changes our perception of fear.

"From previous research, we know that if we present images very fast then we have trouble detecting them, but if an image is particularly emotional then it can 'pop' out and be seen. In a second experiment, we exploited our cardiac effect on emotion to show that our conscious experience is affected by our heart. We demonstrated that fearful faces are better detected at systole (when they are perceived as more fearful), relative to diastole. Thus our hearts can also affect what we see and what we don't see -- and can guide whether we see fear.

"Lastly, we have demonstrated that the degree to which our hearts can change the way we see and process fear is influenced by how anxious we are. The anxiety level of our individual subjects altered the extent their hearts could change the way they perceived emotional faces and also altered neural circuitry underlying heart modulation of emotion."

Dr Garfinkel says that her findings might have the potential to help people who suffer from anxiety or other conditions such as post traumatic stress disorder (PTSD).

"We have identified an important mechanism by which the heart and brain 'speak' to each other to change our emotions and reduce fear. We hope to explore the therapeutic implications in people with high anxiety. Anxiety disorders can be debilitating and are very prevalent in the UK and elsewhere. We hope that by increasing our understanding about how fear is processed and ways that it could be reduced, we may be able to develop more successful treatments for these people, and also for those, such as war veterans, who may be suffering from PTSD.

"In addition, there is a growing appreciation about how different forms of meditation can have therapeutic consequences. Work that integrates body, brain and mind to understand changes in emotion can help us understand how meditation and mindfulness practices can have calming effects."

In a second presentation, Dr Alejandra Sel, a postdoctoral researcher in the Department of Psychology at City University (London, UK), investigated a part of the brain called the somatosensory cortex -- the area that perceives bodily sensations, such as touch, pain, body temperature and the perception of the body's place in space, and which is activated when we observe emotional expressions in the faces of other people.

"In order to understand other's people emotions we need to experience the same observed emotions in our body. Specifically, observing an emotional face, as opposed to a neutral face, is associated with an increased activity in the somatosensory cortex as if we were expressing and experiencing our own emotions. It is also known that people with damage to the somatosensory cortex find it difficult to recognise emotion in other people's faces," Dr Sel told the news briefing.

However, until now, it has not been clear whether activity in the somatosensory cortex was simply a by-product of the way we process visual information, or whether it reacts independently to emotions expressed in other people's faces, actively contributing to how we perceive emotions in others.

In order to discover whether the somatosensory cortex contributes to the processing of emotion independently of any visual processes, Dr Sel and her colleagues tested two situations on volunteers. Using electroencephalography (EEG) to measure the brain response to images, they showed participants either a face showing fear (emotional) or a neutral face. Secondly, they combined the showing of the face with a small tap to an index finger or the left cheek immediately afterwards.

Dr Sel said: "By tapping someone's cheek or finger you can modify the 'resting state' of the somatosensory cortex inducing changes in brain electrical activity in this area. These changes are measureable and observable with EEG and this enables us to pinpoint the brain activity that is specifically related to the somatosensory cortex and its reaction to external stimuli.

"If the 'resting state' of the somatosensory cortex when a fearful face is shown has greater electrical activity than when a neutral face is shown, the changes in the activity of the somatosensory cortex induced by the taps and measured by EEG also will be greater when observing fearful as opposed to neutral faces.

"We subtracted results of the first situation (face only) from the second situation (face and tap), and compared changes in the activity related with the tap in the somatosensory cortex when seeing emotional faces versus neutral faces. This way, we could observe responses of the somatosensory cortex to emotional faces independently of visual processes," she explained.

The researchers found that there was enhanced activity in the somatosensory cortex in response to fearful faces in comparison to neutral faces, independent of any visual processes. Importantly, this activity was focused in the primary and secondary somatosensory areas; the primary area receives sensory information directly from the body, while the secondary area combines sensory information from the body with information related to body movement and other information, such as memories of previous, sensitive experiences.

"Our experimental approach allows us to isolate and show for the first time (as far as we are aware) changes in somatosensory activity when seeing emotional faces after taking away all visual information in the brain. We have shown the crucial role of the somatosensory cortex in the way our minds and bodies perceive human emotions. These findings can serve as starting point for developing interventions tailored for people with problems in recognising other's emotions, such as autistic children," said Dr Sel.

The researchers now plan to investigate whether they get similar results when people are shown faces with other expressions such as happy or angry, and whether the timing of the physical stimulus, the tap to the finger or cheek, makes any difference. In this experiment, the tap occurred 105 milliseconds after a face was shown, and Dr Sel wonders about the effect of a longer time interval.

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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/~3/9QgQ9vrQ8g0/130407211558.htm

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PFT: Raiders have $45 million in dead money

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As thousands of Davids prepare to take on the sports world?s Goliath in the NFL concussion lawsuits, Goliath has a fairly large stone that he?s about to drop on all of them.

Lost in the sympathy and intrigue generated by 4,200 former pro football players suing the caretakers of the game they played is the fact that the NFL, as it usually does, has some strong legal arguments.? The first one makes its way to Judge Anita Brody?s court in Philadelphia on Tuesday, after the submission of extensive written materials by the lawyers.

The NFL?s threshold position comes from the labor deal.? The league believes that the various Collective Bargaining Agreements negotiated by the players and the league control the situation, and that any claims for failure to protect players from concussions or to disclose to them the risks of concussions should be pursued via the dispute-resolution system created by the CBAs.

?Although the CBAs have changed over time pursuant to the collective bargaining process, every CBA expressly addresses player health and safety and provides grievance procedures for the resolution of disputes,? the league explained in a submission to the court, via the Philadelphia Inquirer.

The former players obviously disagree, but it?s common in situations like this for the employer to argue aggressively and loudly that workers who have banded together to form a union must rely on the less formal system of dispensing justice that the labor agreement creates.? The workers don?t prefer that approach because it removes from the process a jury of lay persons who could be inclined to decide the case based on dynamics other than the law and the facts.

A jury is far more likely to feel sorry for the former players than an arbitrator would.? Likewise, a jury would be much more inclined to resolve doubt in favor of the players, given the perception that the league has more than enough money to pay a verdict.? Throw in the idea that the men who made the game what is it today earned peanuts in comparison to the amounts paid to today?s players and coaches and executives and owners, and it becomes very easy for a jury to sidestep a morass of conflicting scientific contentions and legal arguments and decide to redistribute the wealth based on a visceral notion of fairness.

That?s why the NFL is fighting so hard to push the case from a court of law to arbitration.? And that?s why this initial skirmish in the concussion litigation will have a dramatic impact on the ultimate outcome of the case.

Source: http://profootballtalk.nbcsports.com/2013/04/06/mckenzies-still-a-year-away-from-rebuilding-raiders/related/

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Saturday, April 6, 2013

You Can Sit in This Pond Without Getting Wet

This picture was taken in a park in V?cklabruck, Austria that you might want to go to right now. You can actually sit in the middle of the pond, thanks to a sunken spot where you can hang out without getting soaked. More »


Source: http://feeds.gawker.com/~r/gizmodo/full/~3/-lBDmXqelLg/you-can-sit-in-this-pond-without-getting-wet

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New camera system creates high-resolution 3-D images from up to a kilometer away

Apr. 4, 2013 ? A standard camera takes flat, 2-D pictures. To get 3-D information, such as the distance to a far-away object, scientists can bounce a laser beam off the object and measure how long it takes the light to travel back to a detector. The technique, called time-of-flight (ToF), is already used in machine vision, navigation systems for autonomous vehicles, and other applications, but many current ToF systems have a relatively short range and struggle to image objects that do not reflect laser light well.

A team of Scotland-based physicists has recently tackled these limitations and reported their findings today in the Optical Society's (OSA) open-access journal Optics Express.

The research team, led by Gerald Buller, a professor at Heriot-Watt University in Edinburgh, Scotland, describes a ToF imaging system that can gather high-resolution, 3-D information about objects that are typically very difficult to image, from up to a kilometer away.

The new system works by sweeping a low-power infrared laser beam rapidly over an object. It then records, pixel-by-pixel, the round-trip flight time of the photons in the beam as they bounce off the object and arrive back at the source. The system can resolve depth on the millimeter scale over long distances using a detector that can "count" individual photons.

Although other approaches can have exceptional depth resolution, the ability of the new system to image objects like items of clothing that do not easily reflect laser pulses makes it useful in a wider variety of field situations, says Heriot-Watt University Research Fellow Aongus McCarthy, the first author of the Optics Express paper.

"Our approach gives a low-power route to the depth imaging of ordinary, small targets at very long range," McCarthy says. "Whilst it is possible that other depth-ranging techniques will match or out-perform some characteristics of these measurements, this single-photon counting approach gives a unique trade-off between depth resolution, range, data-acquisition time, and laser-power levels."

The primary use of the system is likely to be scanning static, human-made targets, such as vehicles. With some modifications to the image-processing software, it could also determine their speed and direction.

One of the key characteristics of the system is the long wavelength of laser light the researchers chose. The light has a wavelength of 1,560 nanometers, meaning it is longer, or "redder," than visible light, which is only about 380-750 nanometers in wavelength. This long-wavelength light travels more easily through the atmosphere, is not drowned out by sunlight, and is safe for eyes at low power. Many previous ToF systems could not detect the extra-long wavelengths that the Scottish team's device is specially designed to sense.

The scanner is particularly good at identifying objects hidden behind clutter, such as foliage. However, it cannot render human faces, instead drawing them as dark, featureless areas. This is because at the long wavelength used by the system, human skin does not reflect back a large enough number of photons to obtain a depth measurement. However, the reflectivity of skin can change under different circumstances. "Some reports indicate that humans under duress -- for example, with perspiring skin -- will have significantly greater return signals," and thus should produce better images, McCarthy says.

Outside of target identification, photon-counting depth imaging could be used for a number of scientific purposes, including the remote examination of the health and volume of vegetation and the movement of rock faces, to assess potential hazards. Ultimately, McCarthy says, it could scan and image objects located as far as 10 kilometers away. "It is clear that the system would have to be miniaturized and ruggedized, but we believe that a lightweight, fully portable scanning depth imager is possible and could be a product in less than five years."

Next steps for the team include making the scanner work faster. Although the data for the high-resolution depth images can be acquired in a matter of seconds, currently it takes about five to six minutes from the onset of scanning until a depth image is created by the system. Most of that lag, McCarthy says, is due to the relatively slow processing time of the team's available computer resources. "We are working on reducing this time by using a solid-state drive and a higher specification computer, which could reduce the total time to well under a minute. In the longer term, the use of more dedicated processors will further reduce this time."

The research was funded by the United Kingdom's Engineering and Physical Sciences Research Council.

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The above story is reprinted from materials provided by The Optical Society.

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Journal Reference:

  1. Aongus McCarthy, Nils J. Krichel, Nathan R. Gemmell, Ximing Ren, Michael G. Tanner, Sander N. Dorenbos, Val Zwiller, Robert H. Hadfield, Gerald S. Buller. Kilometer-range, high resolution depth imaging via 1560 nm wavelength single-photon detection. Optics Express, 2013; 21 (7): 8904 DOI: 10.1364/OE.21.008904

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/matter_energy/physics/~3/xdqDcmM-BD8/130404122238.htm

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Friday, March 29, 2013

Heresy! Five things 'The Bible' got wrong

Joe Alblas / AP

"The Bible" didn't always stick to its inspiration.

By Randee Dawn, TODAY contributor

?The Bible? miniseries has truly brought in divine ratings for The History Channel these past few weeks. Despite at least one major road bump (Satan appeared in a black hooded robe and was promptly compared to President Barack Obama), the episodes -- which selectively feature certain stories in both the Old and New Testaments -- have been well received by millions of viewers every week. But as the series comes to a close Sunday, it?s worth asking ? just how accurate was the series, in the end?

Telling the story of The Bible is a tricky business, said biblical scholar Dr. Peter E. Enns, who teaches Bible Studies at Pennsylvania?s Eastern University. But it was clear, he notes, that series creators Mark Burnett and Roma Downey had an agenda ? and that every episode they told had one goal: To get to the climax of Jesus?s life and death.

??They were focusing on the final stage of the Bible story, which is Christ?s appearance,? he said. ?It?s all a buildup to that. They take a celebrity approach to The Bible, and highlight the figures people know and present them in ways that make it seem that when you get to Jesus, you?ll feel that this was how it was meant to be all along.?

That can lead to some problems with the series; for Enns, there were some clear issues with ?The Bible."

Telling Samson?s story
Samson is a ?minor character in the Bible,? said Enns, but gets a lot of screen time in the series. Why? He?s a precursor to Christ, said Enns: He gave his life for the community, is unjustly treated, chained and blinded. ?We?re seeing Jesus in preview form,? he said.

Joe Albas / A&E Television Network

Samson's major role in the series is probably because of his similarities to Christ.

Ninja angels
Jesus again got a preview in the scene where three visitors meet Abraham on their way to destroying the cities of Sodom and Gomorrah. ?In the Bible, these three figures are clearly angelic divine figures, but it?s ambiguous,? said Enns. Instead, since one is referred to as ?Lord,? the miniseries transformed him into a proto-Jesus, never clearly seen in the show, but highlighted as Christ. ?In the Old Testament, that?s completely out of bounds,? said Enns. The other two angels are also problematic: ?When the two angels in true ninja fashion take out swords and start swing-kicking, that?s a gratuitous moment.?

Joe Albas / A&E Television Network

The Warrior Angel could have doubled as a ninja.

Sarah wants to save her son
Sarah running after her husband Abraham and son Isaac as Abraham takes him to be sacrificed to God was ?stupid,? said Enns. ?It?s what a mother would do, but Sarah is nowhere to be found in that sequence. They turn the scene into an ?I want to save my boy!? moment rather than a test of faith.?

Joe Alblas / A&E Television Network

Sarah's role in Abraham's aborted sacrifice of Isaac is extended in the miniseries.

Too many Caucasians
Arguably, ?The Bible? was more multicultural than many versions have been in the past. But in 2013, the portrayal of characters with Scottish and British accents and clear European looks was just wrong, said Enns. ?You have Mary who looks like someone you?d bump into at the water cooler and she speaks wonderful American English," he said. "It does not do justice to the foreignness of the story.?

Joe Alblas / A&E Television Network

Mary, seen here with Joseph, looked too all-American, said a biblical scholar.

Sympathy for the Devil
While not precisely an inaccuracy, Enns gave a thumbs-down to the image of Satan and the resemblance to the president ? a comparison he made after watching the episode. ?What I thought was if the resemblance was not intentional, someone should have pointed it out,? he said. ?It was a very unwise decision to leave it there like that. So many people noticed it immediately that it makes it hard to imagine no one on set did.?

All of that said Enns knows that retelling The Bible is a tricky business. ?It?s impossible to please everybody with a show like this,? he said. ?You talk about God, you?re going to make enemies, especially with the sacred book.?

The series finale of "The Bible" airs Sunday at 8 p.m. on The History Channel.

Related content:

Source: http://theclicker.today.com/_news/2013/03/27/17492225-heresy-five-things-the-bible-got-wrong?lite

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Link between faster 'biological' aging and risk of developing age-related diseases

Mar. 27, 2013 ? An international team of scientists led by the University of Leicester has found new evidence that links faster 'biological' ageing to the risk of developing several age-related diseases -- including heart disease, multiple sclerosis and various cancers.

The study involved scientists in 14 centres across 8 countries, working as part of the ENGAGE Consortium (list of research teams is give below). The research is published online today (27th March) in the journal Nature Genetics.

The project studied a feature of chromosomes called telomeres. Telomeres sit on the end of our chromosomes -- the strands of DNA stored in the nucleus of cells. The telomeres shorten each time a cell divides to make new cells, until they reach a critical short length and the cells enter an inactive state and then die. Therefore telomeres shorten as an individual gets older. But, individuals are born with different telomere lengths and the rate at which they subsequently shorten can also vary. The speed with which telomeres wear down is a measure of 'biological ageing'.

Professor Nilesh Samani, British Heart Foundation Professor of Cardiology at the University of Leicester and Director of the National Institute for Health Research (NIHR) Leicester Cardiovascular Biomedical Research Unit, who led the project said: "Although heart disease and cancers are more common as one gets older, not everyone gets them -- and some people get them at an earlier age. It has been suspected that the occurrence of these diseases may in part be related to some people "biologically" ageing more quickly than others."

The research team measured telomere lengths in over 48,000 individuals and looked at their DNA and identified seven genetic variants that were associated with telomere length. They then asked the question whether these genetic variants also affected risk of various diseases. As DNA cannot be changed by lifestyle or environmental factors, an association of these genetic variants which affect telomere length with a disease also would suggest a causal link between telomere length and that disease.

The scientists found that the variants were indeed linked to risk of several types of cancers including colorectal cancer as well as diseases like multiple sclerosis and celiac disease. Most interestingly, the authors found that in aggregate the seven variants also associated with risk of coronary artery disease which can lead to heart attacks.

Professor Samani added: "These are really exciting findings. We had previous evidence that shorter telomere lengths are associated with increased risk of coronary artery disease but were not sure whether this association was causal or not. This research strongly suggests that biological ageing plays an important role in causing coronary artery disease, the commonest cause of death in the world. This provides a novel way of looking at the disease and at least partly explains why some patients develop it early and others don't develop it at all even if they carry other risk factors."

Dr Veryan Codd, Senior Research Associate at the University of Leicester who co-ordinated the study and carried out the majority of the telomere length measurements said: "The findings open of the possibility that manipulating telomere length could have health benefits. While there is a long way to go before any clinical application, there are data in experimental models where lengthening telomere length has been shown to retard and in some situations reverse age-related changes in several organs."

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

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Journal Reference:

  1. Veryan Codd, Christopher P Nelson, Eva Albrecht, Massimo Mangino, Joris Deelen, Jessica L Buxton, Jouke Jan Hottenga, Krista Fischer, T?nu Esko, Ida Surakka, Linda Broer, Dale R Nyholt, Irene Mateo Leach, Perttu Salo, Sara H?gg, Mary K Matthews, Jutta Palmen, Giuseppe D Norata, Paul F O'Reilly, Danish Saleheen, Najaf Amin, Anthony J Balmforth, Marian Beekman, Rudolf A de Boer, Stefan B?hringer, Peter S Braund, Paul R Burton, Anton J Mde Craen, Matthew Denniff, Yanbin Dong, Konstantinos Douroudis, Elena Dubinina, Johan G Eriksson, Katia Garlaschelli, Dehuang Guo, Anna-Liisa Hartikainen, Anjali K Henders, Jeanine J Houwing-Duistermaat, Laura Kananen, Lennart C Karssen, Johannes Kettunen, Norman Klopp, Vasiliki Lagou, Elisabeth M van Leeuwen, Pamela A Madden, Reedik M?gi, Patrik K E Magnusson, Satu M?nnist?, Mark I McCarthy, Sarah E Medland, Evelin Mihailov, Grant W Montgomery, Ben A Oostra, Aarno Palotie, Annette Peters, Helen Pollard, Anneli Pouta, Inga Prokopenko, Samuli Ripatti, Veikko Salomaa, H Eka D Suchiman, Ana M Valdes, Niek Verweij, Ana Vi?uela, Xiaoling Wang, H-Erich Wichmann, Elisabeth Widen, Gonneke Willemsen, Margaret J Wright, Kai Xia, Xiangjun Xiao, Dirk J van Veldhuisen, Alberico L Catapano, Martin D Tobin, Alistair S Hall, Alexandra I F Blakemore, Wiek H van Gilst, Haidong Zhu, CARDIoGRAM consortium, Jeanette Erdmann, Muredach P Reilly, Sekar Kathiresan, Heribert Schunkert, Philippa J Talmud, Nancy L Pedersen, Markus Perola, Willem Ouwehand, Jaakko Kaprio, Nicholas G Martin, Cornelia M van Duijn, Iiris Hovatta, Christian Gieger, Andres Metspalu, Dorret I Boomsma, Marjo-Riitta Jarvelin, P Eline Slagboom, John R Thompson, Tim D Spector, Pim van der Harst, Nilesh J Samani. Identification of seven loci affecting mean telomere length and their association with disease. Nature Genetics, 2013; 45 (4): 422 DOI: 10.1038/ng.2528

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/i6UmrgokBGg/130327133339.htm

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