Saturday, 18 April 2015

Can Creativity Exist with Mental Disorders?

Human Brain 

With every hour passing, medicine and human sciences make fascinating steps that build up to extend the bridge between us and the secrets of the absolute wonder created by God which is our human brain.
Today, research in the field of mental illnesses is nonstop. People who suffer from mental sicknesses including Obsessive Compulsive Disorder, Schizophrenia, Autism, Bipolar Disorder and many others have been subject to neurologists’ and psychologists’ zealous studies.
Let’s take a moment to ask ourselves, are people who suffer from such diseases really underprivileged? Is it a completely dark state with no way out or a glimmer of hope? The answer is a definite negative.
Why, you ask? It’s because as much as these illnesses hold of pain and turmoil for the patients; it also holds a great, unmistakable deal of positive traits that can lead the patient to discover the genius within him/her.
In every culture, there exists a widespread stereotype known as “The Tortured Artist”. This kind of intellect, according to the stereotype, often feels alienated and misunderstood by the society which doesn’t appreciate him/her or what he/she does. The tortured artist is always ridden by inner conflicts and feelings of frustration and insufficiency.
However; the notion of a link between "madness" and "genius" goes way back as ancient as the time of Aristotle. During the Romantic era in Europe, toward the end of the 18th century, this idea of art and psychotic patients was reinforced. Individuals with mental issues were believed to have the capacity to see the world in a new, unusual and original way, in other words, to see things that normal humans cannot.
Geniuses with Neurological Disorders

Examples of intellects responsible for historic creative achievements, famous or not, are all around us. Ludwig van Beethoven, the famous German musician suffered from bipolar disorder, yet he possessed such creative power that allowed him to compose pieces that changed classical music forever. He was a child prodigy, although he had “manic” episodes that seemed to fuel his creativity.
During times of psychological torment and extreme suffering, he wrote fantastic pieces. It took him 12 years to finish his last 9th Symphony while he suffered from deafness!
Another example is John Forbes Nash, American Nobel Prize Winner in mathematics, who suffered from Schizophrenia. His life story and life-long battle was documented in the book "A Beautiful Mind," by Sylvia Nasar, which was later made into a movie of the same name.
British Autistic architectural artist, Stephen Wiltshire, was able to draw the Manhattan skyline only from his photographic memory after a helicopter flight over the city. He was diagnosed with autism at the age of three, and has an unusually powerful photographic memory that he has applied to rendering cityscapes, like London, Tokyo, Hong Kong, Rome, Madrid, Frankfurt, Dubai, and Jerusalem.
There are many other examples, like Isaac Newton, the English physicist who is considered to be one of the most influential scientists, suffered from Bipolar Disorder, Vincent Van Gogh, the famous Dutch painter had clinical depression, and Sylvia Plath, the great American writer, who also suffered from clinical depression and suicidal tendencies. And the list goes on.
Such numerous illustrations of the undeniable link between genius and madness lead us to think that there must be a biological connection between these tormented yet brilliant minds.
A study by Arnold Ludwig, a professor of Psychiatry at the University of Kentucky, explored how mental illness is linked with an individual’s influence on society.
Ludwig examined the lives of 1,004 well-known individuals through history, which confirmed that there was a noticeably higher existence of mental illness in individuals who were poets, fiction writers, visual artists, musicians and composers, and those involved in theatre, than in other professions, such as business, exploration, or the military. Many studies like this were conducted, however; they lacked evidence as to how creativity and mental illness are connected.
It is important to point out that while a connection exists between these two traits, it is not always present. Creativity can exist without mental illness, and vice versa.
Biological Story Behind it
frontal-lobe 
To be able to legitimately prove their findings, researchers started to identify the neurological similarities between mental illnesses and the creative thought process.
The frontal lobe of the brain, which is the main connection between the temporal and parietal lobes, is where knowledge and concepts are kept. Unnatural occurrences in the frontal lobe, the prefrontal cortex in particular, are characteristics of schizophrenia and depression.
Hyperactivity in this part causes the patient to initiate unusual connections between normally unrelated things or ideas, in turn simulating the delusions of the paranoid schizophrenic or maniac behavior. Schizophrenia is linked to high levels of dopamine in the prefrontal cortex, causing delusions, hallucinations, and chaotic thought processes.
Similarly, manic depression may involve varying levels of norepinephrine in the frontal lobe; high levels of which are responsible for depression symptoms, while low levels result in novel connectivity in the frontal lobe, and creative or unusual ideas.
According to numerous medical studies, creative thinking, like manic depression and schizophrenia, also involves unusual frontal lobe behavior. Frontal lobe deficiency may decrease idea production.
Similarly, another study supports the ones mentioned above and further proves that unusual activity in the frontal lobe could be responsible for interference of the information stored in the parietal and temporal lobes in innovative ways.
Mentally-disordered Minds Benefit their Societies
Even though, it’s philosophically and medically proven that a lot of individuals with psychological problems can develop or already have astonishing talents, the culture of trying to help those patients by uncovering their talents is scarcely spread in our world, and they’re automatically believed to be destined to be underprivileged – without a positive output of their illness.
There are many ways through which we can help lessen the amount of suffering these patients go through and help them find a bright side to their illness. Doctors need to focus more on developing the hidden talents inside those patients' brains instead of just relying on pills and medication that might hinder the creative thought process that could hold potential of lots of special things those patients can do.
The research in the field of neuropsychology never stops, in hopes that in the soon future, we will be 
able to give and receive more from the mentally-ill.
:The source

Tuesday, 14 April 2015

Breath test 'could give clues to stomach cancer risk'

 


A simple breath test could help predict whether people with gut problems are at high risk of developing stomach cancer, an early study shows.

It detects tiny chemical compounds in people's breath, in an attempt to distinguish unique "breath prints" in those with risky pre-cancerous changes.

Experts say if proven in large trials, it could spot patients on the brink of cancer so they can be treated earlier.

But more work is needed to validate the test, which appears in the journal Gut.
'Sniffing signals'

Stomach cancers affect about 7,300 people each year in the UK.

But in most Western countries it is diagnosed late when the chance of survival is poor. This is partly because symptoms - such as indigestion and pain - can be mistaken for other diseases.

Scientists believe earlier detection may help improve the prognosis.

The new "nanoarray" breath test builds on earlier work from researchers in Israel, Latvia and China.

It relies on the idea that people with cancer may have unique breath signatures - containing minute chemical compounds that are not found in the breath of people free from the illness.

Researchers studied breath samples from 145 patients. Around 30 of these were already known to have stomach cancer.

The rest had been referred for investigations because of concerning symptoms. They did not have full-blown cancer - but some had worrying changes that doctors call "pre-cancerous" that could develop into malignancies.

Scientists tried out the test on a number of different scenarios.

It was fairly good at spotting cancerous samples from non-cancerous ones.

And it showed some promise at identifying worrying pre-cancerous changes that were at high risk of developing into the disease.

But it was not accurate in every case - some patients were misdiagnosed as being at high risk.

Scientists say more work is needed before it is ready to use in clinics.

Dr Emma Smith of Cancer Research UK, said: "Diagnosing cancer in its early stages offers patients the best chance of successful treatment, so research like this has potential to help save lives.

"But we would need to be sure the test is sensitive and accurate enough to be used more widely."

Research involving thousands of European patients is now under way.

The source : http://www.bbc.co.uk 

Thursday, 2 April 2015

India's IT plans suffer from power cuts, congestion - and monkeys


 
As India launches an $18 billion plan to spread the information revolution to its provinces, the problems it faces are a holdover from the past - electricity shortages, badly planned, jam-packed cities, and monkeys.

The clash between the old world and the new is sharply in focus in the crowded 3,000-year-old holy city of Varanasi, where many devout Hindus come to die in the belief that doing so will give them salvation. Varanasi is also home to hundreds of macaque monkeys that live in its temples and are fed and venerated by devotees.

But the monkeys also feast on the fiber-optic cables that are strung along the banks of the Ganges river.

"We cannot move the temples from here. We cannot modify anything here, everything is built up. The monkeys, they destroy all the wires and eat all the wires," said communications engineer A.P. Srivastava.

Srivastava, who oversees the expansion of new connections in the local district, said his team had to replace the riverside cables when the monkeys chewed them up less than two months after they were installed.

He said his team is now looking for alternatives, but there are few to be found. The city of over 2 million people is impossibly crowded and laying underground cable is out of the question. Chasing away or trapping the monkeys will outrage residents and temple-goers.

Varanasi is part of the parliamentary constituency of Prime Minister Narendra Modi, a Hindu nationalist leader who came to power last May.

A shortage of electricity is further complicating efforts to set up stable Wi-Fi in public places - daily power cuts can last for hours during the sweltering summer in Varanasi and across much of India.

Modi's government has pledged to lay 700,000 kms (434,960 miles) of broadband cable to connect India's 250,000 village clusters within three years, build 100 new "Smart Cities" by 2020 and shift more public services like education and health to electronic platforms to improve access and accountability.

Varanasi was the first of an eventual 2,500 locations singled out for street-level Wi-Fi.

Industry experts predict that the broadband initiative, along with a surge in smartphone ownership, will mean about a third of Indians will have access to the internet by 2017, from about 20 percent, or 250 million people, now.

Expanding internet connectivity and making access cheaper could add up to 1.6 percentage points, or about $70 billion, to India's GDP over a four-year period, consultants at McKinsey have estimated.

GLOBAL INTEREST

Global technology companies see opportunity in Modi's commitment to a digital future and are adapting their products to India's varied climates and external threats.

IBM is in discussions to provide software to help several cities make the leap into the digital age.

Network provider Cisco Systems is working with the government in the eastern city of Visakhapatnam to bring more education and healthcare services online, and has developed a "ruggedised" Wi-Fi box to survive India's varied climates and cut down on the need for cables that will be at the mercy of the elements - or monkeys.

"We've built outdoor Wi-Fi-access routers specifically keeping in mind Indian environmental conditions," Dinesh Malkani, Cisco's India country head, said in an interview.

"You cannot predict what challenges you are going to come up against."

Bringing some order to India's chaotic cities with technology is a daunting task.

India's urban population is forecast to swell by an additional 220 million to 600 million by 2031, potentially overwhelming already inadequate infrastructure.

Many of the new digital projects are simply aimed at improving existing civic amenities: time traffic information to help people better plan their journey, or systems that allow individuals to monitor water leakages or waste management and then inform local authorities.

Vinod Kumar Tripathi, an urban planning expert in Varanasi, said Modi's initiatives needed to be coupled with huge investments in improving basic services like housing, roads and waste management.

"Everything here is old, outdated and the population pressure just makes it worse. This place was a small temple town and is now a commercial center," Tripathi said in his office overlooking the Banaras Hindu University.

The free Wi-Fi service that started in February is certainly stimulating the consumer economy. Boatman Sandeep Majhi makes a living ferrying pilgrims and bereaved families who scatter ashes in the river after performing cremations.

He recently purchased his first smartphone to download music and exchange videos with friends, and promote his boat business to tourists on Facebook.

But he said the government needed to pay equal attention to the municipal services in a city where cars, rickshaws and carts fight for space through narrow, potholed roads lined with litter. Varanasi remains dependent on a 500-year-old, leaky drainage system for its sewage.

"Free Wi-Fi is a good facility for tourists but I think the officials should think about cleaning the ghats," said the 20-year-old, referring to the steps down to the river, which are often caked with cow dung.

http://www.ahad-ahad.com

Wednesday, 1 April 2015

Poorer children 'have smaller brains', researchers say

 

Children with richer parents have bigger brains than their poorer counterparts, new research suggests.
Differences in regions of the brain that deal with language, reading, decision-making and memory were most marked, the study found.

But the scientists from California also found that community help and teaching can remedy the disparities.

The team concludes that factors such as better school lunches and motivated teachers can have a significant impact.

In what is claimed to be the biggest study of its kind, scientists from the University of Southern California tested 1,099 typically developing people - male and female - aged between three and 20.

They measured brain surface area by scans and conducted cognitive tests, and then compared the results with the income levels of the parents.

They corrected for other potential influences on brain structure, such as inherited characteristics.

Their research is published in the journal Nature Neuroscience.
Marked variations

The researchers found that in addition to differences between the brains of the richest and the poorest, there were also marked variations at the lower end of the scale.

There was a bigger difference, for example, between the results in children from families earning $30,000 and $50,000 per year than there was between those earning $90,000 and $110,000.

Report co-author Elizabeth Sowell said: "The most important point we want to convey is not, 'If you are poor, your brain will be smaller, and there is nothing that can be done about it' - that is absolutely not the message.

"It seems reasonable to speculate that resources afforded by the more affluent, such as nutrition, childcare, schools, help 'wire' the brain through development," she said.

"It is not too late to think about how to impact resources that enrich the developmental environment that in turn help the brain wire itself together
."
from:
http://www.ahad-ahad.com

Saturday, 28 March 2015

Ebola whole virus vaccine shown effective, safe in primates

 

An Ebola whole virus vaccine, constructed using a novel experimental platform, has been shown to effectively protect monkeys exposed to the often fatal virus.
The vaccine, described today (March 26, 2015) in the journal Science, was developed by a group led by Yoshihiro Kawaoka, a University of Wisconsin-Madison expert on avian influenza, Ebola and other viruses of medical importance. It differs from other Ebola vaccines because as an inactivated whole virus vaccine, it primes the host immune system with the full complement of Ebola viral proteins and genes, potentially conferring greater protection.
"In terms of efficacy, this affords excellent protection," explains Kawaoka, a professor of pathobiological sciences in the UW-Madison School of Veterinary Medicine and who also holds a faculty appointment at the University of Tokyo. "It is also a very safe vaccine."
The vaccine was constructed on an experimental platform first devised in 2008 by Peter Halfmann, a research scientist in Kawaoka's lab. The system allows researchers to safely work with the virus thanks to the deletion of a key gene known as VP30, which the Ebola virus uses to make a protein required for it to reproduce in host cells. Ebola virus has only eight genes and, like most viruses, depends on the molecular machinery of host cells to grow and become infectious.
By engineering monkey kidney cells to express the VP30 protein, the virus can be safely studied in the lab and be used as a basis for devising countermeasures like a whole virus vaccine. The vaccine reported by Kawaoka and his colleagues was additionally chemically inactivated using hydrogen peroxide, according to the new Science report.
Ebola first emerged in 1976 in Sudan and Zaire. The current outbreak in West Africa has so far claimed more than 10,000 lives. There are no proven treatments or vaccines, although several vaccine platforms have been devised in recent years, four of which recently advanced to the clinical trial stage in humans.
The new vaccine reported by Kawaoka has not been tested in people. However, the successful tests in nonhuman primates conducted at the National Institutes of Health (NIH) Rocky Mountain Laboratories, a biosafety level 4 facility in Hamilton, Montana, may prompt further tests and possibly clinical trials of the new vaccine. The work at Rocky Mountain Laboratories was conducted in collaboration with a group led by Heinz Feldmann of NIH.
Those studies were conducted with cynomolgus macaques, which are very susceptible to Ebola. "It's the best model," Kawaoka says. "If you get protection with this model, it's working."
Ebola vaccines currently in trials include:
-- A DNA-based plasmid vaccine that primes host cells with some of the Ebola proteins.
-- A vaccine based on a replication incompetent chimpanzee respiratory virus engineered to express a key Ebola protein.
-- A live attenuated virus from the same family of viruses that causes rabies, also engineered to express a critical Ebola protein.
-- A vaccine based on a vaccinia virus and engineered to express a critical Ebola protein.
Each of those strategies, Kawaoka notes, has drawbacks in terms of safety and delivery.
Whole virus vaccines have long been used to successfully prevent serious human diseases, including polio, influenza, hepatitis and human papillomavirus-mediated cervical cancer.
The advantage conferred by inactivated whole virus vaccines such as the one devised by Halfmann, Kawaoka and their colleagues is that they present the complete range of proteins and genetic material to the host immune system, which is then more likely to trigger a broader and more robust immune response.
Early attempts to devise an inactivated whole virus Ebola vaccine through irradiation and the preservative formalin failed to protect monkeys exposed to the Ebola virus and were abandoned.
Although the new vaccine has surpassed that hurdle, human trials are expensive and complex, costing millions of dollars.
The Ebola vaccine study conducted by Kawaoka was supported by the National Institutes of Health and by the Japanese Health and Labour Sciences Research Grants.
:The Source
http://www.sciencedaily.com 

Two degree Celsius climate change target 'utterly inadequate', expert argues

 

The official global target of a 2°C temperature rise is 'utterly inadequate' for protecting those at most risk from climate change, says a lead author on the Intergovernmental Panel on Climate Change (IPCC), writing a commentary in the open access journal Climate Change Responses.
The commentary presents a rare inside-view of a two-day discussion at the Lima Conference of the Parties (COP) on the likely consequences of accepting an average global warming target of 2°C versus 1.5°C (measured from pre-industrial times until 2100).
The discussions were part of the United Nations Framework Convention on Climate Change (UNFCCC) 'structured expert dialogue' in December 2014. They reveal unevenly distributed risks and political power differentials between high-income countries insisting on a 2°C target and low- and many middle-income countries pushing for 1.5°C or lower.
The 2°C target has been said to carry an increased risk of sea level rise, shifting rainfall patters and extreme weather events such as floods, droughts, and heat waves, particularly targeting the Polar Regions, high mountain areas, and the Tropics.
The author Petra Tschakert from The Pennsylvania State University and a coordinating lead author of the IPCC's Fifth Assessment Report says: "The consensus that transpired during this session was that a 2°C danger level seemed utterly inadequate given the already observed impacts on ecosystems, food, livelihoods, and sustainable development.
"A low temperature target is the best bet to prevent severe, pervasive, and potentially irreversible impacts while allowing ecosystems to adapt naturally, ensuring food production and security, and enabling economic development to proceed in a sustainable manner."
In her commentary, Tschakert explains that the target of keeping the global average temperature rise to below 2°C originates from early studies in the 1970s. This target became anchored in policy debates over the decades, and was officially sanctioned as the long-term global goal for greenhouse gas emission reductions at the COP15 in Copenhagen in 2009.
Despite support from high and upper middle-income countries with high emissions, the 2°C target has been subject to repeated criticism from climate scientists, economists, and political and social scientists.
Alliances representing over 70% of the parties around the table, including over 100 low- and middle-income countries and small island states, have repeatedly said that a 2°C rise is unsafe for their communities, and insist on a long-term goal to keep global average temperatures below 1.5°C. These states include the Pacific nation of Tuvalu that was recently hit by Cyclone Pam.
While the 2°C target is now being re-evaluated, no reference to an explicit 1.5°C target is included in the 2014 Lima Call for Climate Action, despite specific remarks on the lower temperature limit being made throughout the negotiations.
Having taken part in the latest structured expert dialogue in Lima, Peru, with country delegates to the COP, fellow IPCC authors and representatives from UN agencies and intergovernmental organizations, Tschakert now shares new insights into the ongoing debate on the adequacy of the long-term goal.
A representative of the World Health Organization at the session stressed that there was no 'safe limit' for health, as current impacts and risks from climate change were already unacceptable, impacting people's health significantly and inequitably. This includes a rise in undernutrition, food- and water-borne infections, and excess deaths during heat waves, of which 10,000 have already been attributed to the 2010 Russian heat wave.
In addition to heat waves, science participants in the dialogue said that extreme events such as floods and hurricanes were expected to cause high risk in a 2°C warmer world. These events would put at significant danger disadvantaged populations in megacities like Lagos, Mexico City or Shanghai, people whose livelihoods are dependent on natural resources, and those at risk from conflicts over scarce resources.
Tschakert says: "Using a figure for average global warming may indeed be the most convenient and compelling means to discuss the severity of climate change impacts, but not only does it inadequately capture the complexity of the climate system, it poorly reflects locally experienced temperature increases and the extreme and large variation across regions -- no single person or any species faces a global average."
Singapore highlighted that certain risks were already catastrophic for people and ecosystems in their region while only moderate in the aggregate. Along the same lines, Ethiopia re-emphasized the uneven distribution of risks for the African continent. Trinidad and St. Lucia stressed regional differences in risk from ice sheet loss and coral bleaching. Botswana raised the subject of costs for mitigation, adaptation, 'loss and damage' and technology transfer associated with both temperature targets.
In terms of ecosystems, it was said that limiting warming at 1.5°C could keep sea level rise below 1m, saving half of the world's corals, and leave some of the Arctic summer ice intact.
Tschakert says: "These implications emphasize what is truly at stake -- not a scientific bickering of what the most appropriate temperature target ought to be, but a commitment to protect the most vulnerable and at risk populations and ecosystems, as well as the willingness to pay for abatement and compensation. This should happen now, and not only when climate change hits the rich world."
The findings are timely as the long-term goal to stay below 2°C warming is currently undergoing a 2013-15 Review, the results of which are expected this June and could be adopted in Paris at COP21 in December 2015.
Tschakert concludes in her commentary: "The crux of the matter is no longer about the scientific validity of one temperature target over another... It is first and foremost about overcoming deeply entrenched divisions on value judgments, responsibility, and finance... It is about acknowledging that negative impacts of climate change under a 0.8°C temperature increase are already widespread, across the globe, and that danger, risk, and harm would be utterly unacceptable in a 2°C warmer world, largely for 'them' -- the mollusks, and coral reefs, and the poor and marginalized populations... even if this danger hasn't quite hit home yet for 'us'."

 :Story Source
http://www.sciencedaily.com

Sexual selection isn't the last word on bird plumage

 

In the world of bird fashion, the guys seem to have all the fun: brighter feathers, sharper accessories, more pizzazz.
Researchers going back to Charles Darwin have focused on the contrast between the sexes, attributing the males' brighter colors to their need to attract mates.
A group of researchers at University of Wisconsin-Milwaukee took a different approach, testing a hypothesis that evolution has actually resulted in similarities among the sexes as much as differences.
Looking at nearly 1,000 species of birds, they found that while males often have brighter feathers than females, the two sexes have come closer together in color over time to blend into their surroundings and hide from predators. Natural selection -- during migration, breeding in subtropical locales and care of young -- is as powerful as sexual selection.
"Although most studies of bird plumage focus on dichromatism, evolutionary change has most often led to similar, rather than different, plumage in males and females," the authors write.
Peter Dunn and Linda Whittingham, professors of behavioral ecology at UW-Milwaukee, wrote the paper with Jessica Armenta, a former UW-Milwaukee graduate student who now teaches at Austin Community College in Texas.
"Our study shows that ecology and behavior are driving the color of both sexes, and it is not due to sexual selection," they write.
The paper, "Natural and sexual selection act on different axes of variation in avian plumage color," is being published in Science Advances.
Armenta spent four years collecting data from 977 species of birds from six museums in the U.S. and Australia. She looked at six birds of each species, three males and three females.
Dunn and Whittingham analyzed the data, assigning each bird a color score based on scales of brightness and hue. They examined plumage color in relation to 10 measures of natural and sexual selection.
"Researchers have called for separate analyses of each sex for over a decade, but this is the first large-scale study to examine the color of each sex in relation to indices of both natural and sexual selection," they write.
When the sexes became more similar in color, they did so for reasons of natural selection. When the color gap increased, it had more to do with sexual selection, they found.
Dunn hopes the findings will send future research in new directions.
"A lot of research has focused on how plumage color is related to mating success, especially in males," he says, "so this should hopefully get researchers to think more about how color affects survival, especially predation and foraging success, in both sexes."
Within the larger findings is another surprise: male birds with multiple mates actually tend to be duller in color than their female counterparts.
Male red-winged blackbirds, for example, can have up to a dozen mates but are less colorful than their consorts.
"The reason for this is that males in these species often have a lot of black plumage," Dunn says.
 
:Story Source
 http://www.sciencedaily.com

Friday, 27 March 2015

High-fat diet alters behavior and produces signs of brain inflammation


High-fat diets have long been known to increase the risk for medical problems, including heart disease and stroke, but there is growing concern that diets high in fat might also increase the risk for depression and other psychiatric disorders.
A new study published in the current issue ofBiological Psychiatry raises the possibility that a high-fat diet produces changes in health and behavior, in part, by changing the mix of bacteria in the gut, also known as the gut microbiome.
The human microbiome consists of trillions of microorganisms, many of which reside in the intestinal tract. These microbiota are essential for normal physiological functioning. However, research has suggested that alterations in the microbiome may underlie the host's susceptibility to illness, including neuropsychiatric impairment.
This led researchers at Louisiana State University to test whether an obesity-related microbiome alters behavior and cognition even in the absence of obesity.
Non-obese adult mice were conventionally housed and maintained on a normal diet, but received a transplant of gut microbiota from donor mice that had been fed either a high-fat diet or control diet. The recipient mice were then evaluated for changes in behavior and cognition.
The animals who received the microbiota shaped by a high-fat diet showed multiple disruptions in behavior, including increased anxiety, impaired memory, and repetitive behaviors. Further, they showed many detrimental effects in the body, including increased intestinal permeability and markers of inflammation. Signs of inflammation in the brain were also evident and may have contributed to the behavioral changes.
"This paper suggests that high-fat diets impair brain health, in part, by disrupting the symbiotic relationship between humans and the microorganisms that occupy our gastrointestinal tracks," commented Dr. John Krystal, Editor of Biological Psychiatry.
Indeed, these findings provide evidence that diet-induced changes to the gut microbiome are sufficient to alter brain function even in the absence of obesity. This is consistent with prior research, which has established an association between numerous psychiatric conditions and gastrointestinal symptoms, but unfortunately, the mechanisms by which gut microbiota affect behavior are still not well understood.
Further research is necessary, but these findings suggest that the gut microbiome has the eventual potential to serve as a therapeutic target for neuropsychiatric disorders.

Story Source:
http://www.sciencedaily.com

Dark matter even darker than once thought



Astronomers using observations from the NASA/ESA Hubble Space Telescope and NASA's Chandra X-ray Observatory have studied how dark matter in clusters of galaxies behaves when the clusters collide. The results, published in the journal Science on 27 March 2015, show that dark matter interacts with itself even less than previously thought, and narrows down the options for what this mysterious substance might be.

Dark matter is a giant question mark looming over our knowledge of the Universe. There is more dark matter in the Universe than visible matter, but it is extremely elusive; it does not reflect, absorb or emit light, making it invisible. Because of this, it is only known to exist via its gravitational effects on the visible Universe (see e.g. heic1215a).
To learn more about this mysterious substance, researchers can study it in a way similar to experiments on visible matter -- by watching what happens when it bumps into things [1]. For this reason, researchers look at vast collections of galaxies, called galaxy clusters, where collisions involving dark matter happen naturally and where it exists in vast enough quantities to see the effects of collisions [2].
Galaxies are made of three main ingredients: stars, clouds of gas and dark matter. During collisions, the clouds of gas spread throughout the galaxies crash into each other and slow down or stop. The stars are much less affected by the drag from the gas [3] and, because of the huge gaps between them, do not have a slowing effect on each other -- though if two stars did collide the frictional forces would be huge.
"We know how gas and stars react to these cosmic crashes and where they emerge from the wreckage. Comparing how dark matter behaves can help us to narrow down what it actually is," explains David Harvey of the École Polytechnique Fédérale de Lausanne (EPFL) in Switzerland, lead author of a new study.
Harvey and his team used data from the NASA/ESA Hubble Space Telescope and NASA's Chandra X-ray Observatory to study 72 large cluster collisions. The collisions happened at different times, and are seen from different angles -- some from the side, and others head-on [4].
The team found that, like the stars, the dark matter continued straight through the violent collisions without slowing down. However, unlike in the case of the stars, this is not because the dark matter is far away from other dark matter during the collisions. The leading theory is that dark matter is spread evenly throughout the galaxy clusters so dark matter particles frequently get very close to each other. The reason the dark matter doesn't slow down is because not only does it not interact with visible particles, it also interacts even less with other dark matter than previously thought.
"A previous study had seen similar behaviour in the Bullet Cluster," says team member Richard Massey of Durham University, UK. "But it's difficult to interpret what you're seeing if you have just one example. Each collision takes hundreds of millions of years, so in a human lifetime we only get to see one freeze-frame from a single camera angle. Now that we have studied so many more collisions, we can start to piece together the full movie and better understand what is going on."
By finding that dark matter interacts with itself even less than previously thought, the team have successfully narrowed down the properties of dark matter. Particle physics theorists have to keep looking, but they now have a smaller set of unknowns to work with when building their models[5].
Dark matter could potentially have rich and complex properties, and there are still several other types of interaction to study. These latest results rule out interactions that create a strong frictional force, causing dark matter to slow down during collisions. Other possible interactions could make dark matter particles bounce off each other like billiard balls, causing dark matter to be thrown out of collisions or for dark matter blobs to change shape. The team will be studying these next.
To further increase the number of collisions that can be studied, the team are also looking to study collisions involving individual galaxies, which are much more common.
"There are still several viable candidates for dark matter, so the game is not over, but we are getting nearer to an answer," concludes Harvey. "These 'Astronomically Large' particle colliders are finally letting us glimpse the dark world all around us but just out of reach."
Notes
[1] On Earth scientists use particle accelerators to find out more about the properties of different particles. Physicists can investigate what substances are made of by accelerating particles into a collision, and examining the properties and trajectory of the resulting debris.
[2] Clusters of galaxies are a swarm of galaxies permeated by a sea of hot X-ray emitting ionised hydrogen gas that is all embedded in a massive cloud of dark matter. It is the interactions of these, the most massive structures in the Universe that are observed to test dark matter's properties.
[3] The gas-gas interaction in cluster collisions is very strong, while the gas-star drag is weak. In a similar way to a soap bubble and a bullet in the wind where the bubble would interact a great deal more with the wind than the bullet.
[4] To find out where the dark matter was located in the cluster the researchers studied the light from galaxies behind the cluster whose light had been magnified and distorted by the mass in the cluster. Because they have a good idea of the visible mass in the cluster, the amount the light is distorted tells them how much dark matter there is in a region.
[5] A favoured theory is that dark matter might be constituted of "supersymmetric" particles. Supersymmetry is a theory in which all particles in our Standard Model -- electrons, protons, neutrons, and so on -- have a more massive "supersymmetric" partner. While there has been no experimental confirmation for supersymmetry as yet, the theory would solve a few of the gaps in our current thinking. One of supersymmetry's proposed particles would be stable, electrically neutral, and only interact weakly with the common particles of the Standard Model -- all the properties required to explain dark matter.

Story Source:
http://www.sciencedaily.com/

Wednesday, 4 February 2015

Discovering your inner GPS

Compass and map


The ability of birds to navigate their way back to their nests, often more than thousands of miles each year, is fascinating. Arctic terns, which have the longest migration distance known, travel from their Arctic breeding grounds to overwinter on the Antarctic coast: an annual roundtrip of over 40,000 miles (>64,000 km).
Arctic tern 8664.jpg
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An Arctic tern protecting its nest near Markarfljot river in south Iceland. Photograph: OddurBen/Wikimedia
Homing pigeons are of course famous for their extraordinary navigation abilities. They can find their way home from new locations up to 1100 miles (1800 km) from their nests. There are several theories that attempt to explain the navigational and migratory skills of birds, and homing pigeons are a useful model to help us understand these extraordinary abilities.
The olfactory navigation hypothesis suggests that homing pigeons use an olfactory map to orient themselves. This is based on a study led by Silvano Benvenuti in 1972, which showed that pigeons who had their olfactory nerves sectioned could not find their way home when released from unfamiliar locations.
The magnetic map theory poses that birds get their sense of direction from the Earth’s magnetic field. The Earth’s magnetic field becomes stronger the further you get from the equator, and homing pigeons may be sensitive to these minute changes in the magnetic field strength.
The use of the sun as a compass, a bird’s circadian rhythm and the possession of an internal map are other theories that try to explain bird navigation. However, at the moment there is no clear evidence that supports any of these theories over the others, and how these internal cues might work together is also poorly understood. Sadly, the mapping skills of birds remain largely unexplained.

How do we find our way home?

Although we still don’t know the complete story, there are some very strong clues to how birds navigate. But how mammals (including humans) navigate is relatively unexplored. Recent research is however giving some very interesting insights.
Medial surface of cerebral cortex - gyri.png
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Medial surface of cerebral cortex. Photograph: Patric Hagmann et al./Wikimedia
The hippocampus is a sea horse-shaped structure located in the centre of the brain. It is well known for its role in memory formation, but also is important to our sense of direction and navigation. In 1971, John O’Keefe discovered the first element of a mammalian “inner-GPS” when he observed a subtype of neurons in the hippocampus that became active whenever a rat moved to a particular area of a room. These neurons, now known as “place cells” are thought to help rats – and us – build a picture of where we are in our environment.
In 1984, James Ranck made another step in explaining spatial representation in our brains. He found that mammals have “head-direction cells”: cells that fire in response to the specific angle and direction of your head’s orientation in space.

Has our sense of direction been found?

These findings have been important for starting to uncover the neural basis of human navigation (O’Keefe won a Nobel Prize for his research), and a study published just after Christmas has continued to help unravel the mystery of how we navigate.
Martin Chadwick and his colleagues at UCL asked participants to navigate around a simple virtual environment on a computer and gave them target destinations to move towards.
Map from the paper
It only looks like Minecraft. Photograph: Chadwick et al/10.1016/j.cub.2014.11.001
Using functional magnetic resonance imaging, the researchers were able to pinpoint a population of neurons that signalled the direction in which participants needed to go to their target destinations – and, the varying strengths of brain signals from these cells were able to predict subjects’ navigational ability.

Does this explain why some people have a better sense of direction than others?

These specialised neurons were found in the enterohinal cortex, a region next to the hippocampus. But although the study shows that the enterohinal cortex has greater activity in those better at navigating, the results do not really explain why this may be.
In other words:
Are you a better navigator because you have higher activity in your enterohinal cortex?
OR
Is the activity in your enterohinal cortex higher because you are a better navigator?
What is really driving this relationship? When we misinterpret correlation, we can find ourselves, just for example, assuming that chocolate consumption might improve cognitive function in entire populations.

Use it or lose it: why iPhones may be disrupting your navigation skills

When people use GPS-like instructions to reach a destination rather than navigating on their own, their brains in general are found to be much less active. Perhaps the less you use your phone’s GPS to help you navigate, and the more often you learn to make it on your own, the stronger the activity in your hippocampal region – and so the better a navigator you become. In Chadwick’s study, the stronger neural activity amongst the better navigators may have been a result of them having better developed their navigation skills throughout their lives.
Chadwick explains that future research will be needed to support the case for a causal relationship between neural activity and our mapping skills. He would like to see similar studies carried out in real life environments to demonstrate that these neurons extend their functions beyond those described in the virtual environment simulated for his study.
If you feel lost after reading this post, perhaps eat some chocolate – it might improve your brain power. Or, if you will, take a stroll somewhere new and try to find your way back home – without your GPS app!
Chadwick MJ et al. A Goal Direction Signal in the Human Entorhinal/Subicular Region. Curr Biol 2015;25:87–92.

Source: http://www.theguardian.com

Thursday, 29 January 2015

The dream of invisibility

The Invisible Man Returns

HG Wells claimed in his autobiography that he and Joseph Conrad had "never really 'got on'", but you wouldn't suspect that from the gushing fan letter Conrad sent to Wells, eight years his junior but far more established as a writer, in 1897. Before their friendship soured, Conrad idolised him, and he wrote to rhapsodise the author of scientific romances as a "Realist of the Fantastic". It's a perceptive formula, capturing Wells's blend of wild invention and social realism: tea and cakes and time machines. That attitude is nowhere more evident than in the book that elicited Conrad's letter: The Invisible Man.
To judge from Wells's own account of his objectives, Conrad had divined them perfectly. "For the writer of fantastic stories to help the reader to play the game properly," Wells wrote in 1934, "he must help him in every possible unobtrusive way to domesticate the impossible hypothesis … instead of the usual interview with the devil or a magician, an ingenious use of scientific patter might with advantage be substituted. I simply brought the fetish stuff up to date, and made it as near actual theory as possible."
In other words, Wells wanted to turn myth into science, or at least something that would pass for it. This is why The Invisible Man is so useful for interpreting the claims of modern physicists and engineers to be making what they call "invisibility cloaks": physical structures that try to hide from sight both themselves and what lies behind them. It's tempting to suggest that, as with atomic bombs, Wells's imagination was anticipating what science would later realise. But the light that his invisible man casts on today's technological magic is much more revealing.
Wells may well have set out explicitly to update a myth. One of the earliest stories about invisibility appears near the start of Plato's Republic, a book that had impressed Wells in his youth. Plato's narrator, Glaucon, tells of a Lydian shepherd named Gyges who discovered a ring of invisibility in the bowels of the Earth. Without further ado, Gyges used this power to seduce the queen, kill the king and establish a new dynasty of Lydian rulers. In a single sentence Plato tells us what many subsequent stories of invisibility would reiterate at length about the desires that the dream of invisibility feeds: they are about sex, wealth and death.
Evidently this power corrupts – which is one reason why Tolkien's use of invisibility magic is much more mythically valid than JK Rowling's. But Glaucon's point has nothing to do with invisibility itself. It is about moral responsibility. Given this power to pass unseen, he says, no one "would be so incorruptible that he would stay on the path of justice, when he could with impunity take whatever he wanted from the market, go into houses and have sexual relations with anyone he wanted, kill anyone, and do the other things that would make him like a god among men". The challenge is how to keep rulers just if they can keep their injustices hidden.
We don't need an explanation of where Gyges's ring comes from or how it works, because its function is metaphorical. The same is true of magic in fairytales: it just happens, because it is not about the doing but the consequences. Fairytale invisibility is often an agency of seduction and voyeurism (see the Grimms' The Twelve Dancing Princesses), or a gateway to Faerie and other liminal realms. It's precisely because children don't ask "How is that possible?" that we shouldn't fret about filling their heads with such allegedly irrational ideas.
But it is a peculiarity of our age that we focus on the means of making magic and not on the motive. The value of The Invisible Man is that it highlights the messy outcome of this collision between science and myth. True, Wells makes some attempt to convince us that his antihero, Griffin, is corrupted by discovering the "secret of invisibility" – but it is a weakness of the novel that Griffin scarcely has any distance to fall, since he is thoroughly obnoxious from the outset, driving his poor father to suicide by swindling him out of money he doesn't possess in order to fund his lone research. If we are meant to laugh at the superstitions of the bucolic villages of Iping as the unseen Griffin rains blows on them, I for one root for the bumpkins.
No, where the book both impresses and exposes is in its description of how Griffin becomes invisible. A plausible account of that trick had been attempted before, for example in Edward Page Mitchell's 1881 short story "The Crystal Man", but Wells had enough scientific nous to make it convincing. While Mitchell's scientist simply makes his body transparent, Wells knew that it was necessary not just to eliminate pigmentation (which Griffin achieves chemically), but to eliminate refraction, too: the bending of light that we see through glass or water. There was no known way of doing that, and Wells was forced to resort to the kind of "jiggery-pokery magic" he had criticised in Mary Shelley's Frankenstein. He exploited the very recent discovery of x-rays by saying that Griffin had discovered a related form of "ethereal vibration" that gives materials the same refractive strength as air.
Despite this, Griffin finds that invisibility is more a burden than a liberation. He dreams of world domination but, forgetting to vanish his clothes too, has to wander naked in the winter streets of London, bruised by unseeing crowds and frightened that he will be revealed by the snow that threatens to settle on his body and record his footsteps. His eventual demise has no real tragedy in it, but is like the lynching of a common criminal, betrayed by sneezes, sore feet and his digestive tract (in which food visibly lingers for a time). Thus Wells shows us what it means to domesticate the impossible, and what we should expect when science tries to do magic.
That same gap between principle and practice hangs over today's "invisibility cloaks". They work in a different, and technologically marvelous, way: not by transparency, but by guiding light around the object they hide. But when the first was unveiled in 2006, it was perplexing: for there it sat, several concentric rings of printed circuit boards, as visible as you or me. It was, the scientists explained, invisible to microwaves, not to visible light. What had this to do with Gyges, or even with Griffin?
Some scientists say that, for all their technical brilliance (which is considerable, and improving steadily), these constructs should be regarded as clever optical devices, not invisibility cloaks. It's hard to imagine how they could ever conceal a person walking around in daylight. This "magic" is cumbersome and compromised: it is not the way to seduce the queen, kill the king and become a tyrant.
This isn't to disparage the invention and imagination that today's "invisibility cloaks" embody. But it's a reminder that myth is not a technical challenge, not a blueprint for the engineer. It's about us, and 
all our desires, flaws and dreams.

:The Source
http://www.theguardian.com

Vanishing point: five ways to become invisible

A demonstration of optical camouflage

Here's how you could become invisible in the middle ages: grind up an owl's eye with a ball of beetle dung and some olive oil, and rub it all over your body. There's no record that this method was ever tried, so I guess we don't actually know if it works. But it's a relief that modern science and technology now supply some choices, even if none are perfect. Here are five of them.
Is this a case of science achieving what magic couldn't? We should be cautious about that sort of claim. Invisibility has been a coveted power since antiquity, but the stories we tell about it are fables of power and corruption, irresponsibility and voyeurism. If we ever seem likely to make Harry Potter's cloak of invisibility or Frodo Baggins's ring for real, we might want to ask who wants it, and why. Remember that when Christopher Marlowe's Dr Faustus says "charm me, that I may be invisible, to do what I please, unseen of any", he's asking Mephistopheles.
1 | THE REFLECTION CLOAK
The robotics and computer engineer Susumu Tachi of Keio University has been making people vanish into the urban landscapes of Japan. These ghostly figures stand shrouded in a cloak through which you can see buses and pedestrians passing behind. The scene isn't quite crisp, it's a bit off-colour, and the hooded face and folds of the garment slightly give the game away – but the effect is still uncanny.
Tachi is using much the same illusion that can make a person look transparent if they stand in front of an image projected on to a screen. The difference is that Tachi's cloak is not reflecting some random image, but the real scene behind it. A camera placed just behind the cloaked figure records the view and relays it to a projector in front. The cloak itself is made from a material Tachi calls "retro-reflectum": it is covered with tiny light-reflecting beads, so the projected image bouncing back to our 
eyes is as bright as daylight.
The catch is that the "invisible" person has to stay put, since the camera and projector are fixed in place. And the cloak only works well if you're looking at it face on – from the side or behind, it's not invisible at all.
That's not such a drawback if you're making static surfaces "invisible" – or rather, apparently transparent. A wall painted with retro-reflectum could be turned into a window without having to knock a hole in it – handy for protected buildings, say. And a car interior you can "see through" could help prevent accidents caused by blind spots. Quite how drivers would feel driving what seems like a glass car is another matter.
2 | THE PROJECTION CLOAK
The immobilising demands of Tachi's cloak might be avoided by placing the cameras and the projector on the cloak itself. In other words, rather than casting an image on to a screen-like cloak, the cloak itself would project the image directly to our eyes – like a wrap-around LED television screen. This trick could work from any viewing direction, provided there are cameras pointing that way to record the scene. The idea, then, is a cloak covered with LED display units that, via fisheye lenses, can send light rays in every direction tailored to create exactly the image that a viewer would see from that direction if the cloak and wearer weren't there at all.
In practice this presents a phenomenal engineering challenge. It's not so hard to make the full-colour light emitters and cameras that would cover the cloak like tiny sequins; the real difficulty comes from all the computing needed to turn the information from the array of micro-cameras into instructions for what to project at every angle, especially since this would constantly change as the wearer moves. Italian computer scientists Franco Zambonelli and Marco Mamei have worked out all the technological and computational requirements and estimate that such a cloak, giving a reasonable semblance of invisibility, could be made for €500,000. Other computer experts are sceptical – for one thing, because of parallax effects (the distance sense we get from binocular vision), no camera could record exactly what we would see unless it were situated right where we were standing.
All the same, this vanishing trick is already being planned. The American architectural company GDS Architects has designed a 1,500ft skyscraper called Tower Infinity for the Seoul suburb of Incheon in South Korea that would be covered with banks of cameras and LEDs on the glass facade so that it could project itself into invisibility – albeit only "perfectly" from a few select viewing locations. The artists' impressions show the tower perhaps rather optimistically fading from view in the dusk sky. Construction has been granted approval, so maybe we'll get to see if it works.
Tower Infinity

3 | PERFECT TRANSPARENCY
In The Invisible Man (1897), HG Wells wanted his anti-hero Griffin to be made invisible by a scientifically plausible method rather than mere "jiggery-pokery magic". A more naive writer would have suggested (and some did) that all you needed was to make a person totally transparent, like glass. True, that doesn't sound easy, but Wells pointed out – with only a little bit of artistic licence – that apart from our blood and the pigment in hair, our body tissues are transparent. (Bone scatters light rather as milk does, but never mind.) Griffin gets rid of this pigmentation with a chemical drug he devises – as he's an albino, he doesn't have far to go anyway. Wells realised that this would make a person blind, because the retina has to absorb light to work at all – but he felt he could ignore that.
The bigger problem is that – as we can see with a glass beaker – transparency alone doesn't guarantee invisibility. One problem is that the smooth glass surface reflects light, although our rougher skin might not. But glass also refracts light: it bends the rays that pass through, distorting the image behind it. This is because light travels more slowly in glass than in air, and so to take the quickest possible route from an object to our eye, the light takes a crooked path to reduce the time it spends in the "slow" substance. The amount by which a material slows light is called its refractive index: air has a refractive index of one, and the index of all ordinary transparent materials, like glass and water, is greater than one.
To eliminate refraction, Wells realised that he had to somehow reduce the refractive index of Griffin's tissues to one. There was no known way to do that, and there still isn't, so Wells had to resort to a bit of magic after all: Griffin uses electrical gadgets to produce a kind of invisible ray, similar to the X-rays discovered only two years earlier, that induces this transformation.
All the same, the principle of matching the refractive index of an object and its surrounding medium is sound, and transparent things really can be hidden that way. Place a glass rod (refractive index of around 1.5) into clear baby oil or benzene, which has essentially the same refractive index, and it seems to disappear entirely.
4 | METAMATERIALS
Some researchers believe the real future of invisibility lies with a new science, transformation optics. This is all about controlling the paths of light rays, and it is analogous to the way that light curves when space itself is curved: something caused by strong gravitational fields, as predicted by Einstein's theory of general relativity.
Transformation optics is so called because it is rather like transforming the co-ordinate grid of space. But it doesn't literally do that. Instead, light rays are passed step by step between tiny receivers and transmitters – the "meta-atoms" of the material – in a way that traces out paths rays could never follow in an ordinary transparent material. The theory was developed in the late 1990s by John Pendry at Imperial College London, and later he and Ulf Leonhardt at the University of St Andrews independently figured out how to use it to make metamaterial "invisibility shields". The idea is that light rays are bent smoothly around an object placed in the centre of a metamaterial shell, and recombined on the other side like water flowing around a rock in a stream. To a viewer on the far side, it's as if nothing has happened to the light during its passage: both shield and internal object are invisible.
Electrical engineer David Smith and his team at Duke University in North Carolina worked out how to make a real metamaterial in the late 1990s, using slotted arrays of printed circuit boards on which the metal loops and rings are etched. Because the "meta-atoms" have to be about the same size as the wavelength of the light they are manipulating, this design works for microwaves, not for visible light (which has wavelengths of just a few tenths of a micrometre). In 2006 Smith's group, working with Pendry, unveiled the first microwave invisibility shield: a set of 10 concentric, cylindrical rings of meta-atoms, which could more or less hide an object inside from microwaves.
Shrinking the metamaterial to the size needed for visible light is hard. But Pendry and his student Jensen Li proposed a simpler design in 2008: a "carpet cloak" that sits on a surface and hides an object under a bump. Here the light can be bent simply by arrays of tiny holes, and researchers at the University of California at Berkeley carved such a microscopic structure out of a silicon chip in 2009.
5 | ILLUSION OPTICS AND WAVE CLOAKS
The control of light rays offered by transformation optics can be used to alter appearances beyond making objects invisible. In principle, one can design a metamaterial shield that will twist and bend light so any object inside can be made to look like any other object. It's a fearsome task to figure out what kind of meta-atoms you need, let alone to make them, but the idea is clear enough in theory. Che Ting Chan of the Hong Kong University of Science and Technology and his co-workers have proposed a new field called illusion optics, which enables this more or less infinitely protean shape-shifting.
One simple variant of the idea is to make an object look bigger than it really is. Pendry compares this to the way the scattering of light rays passing through a milk bottle make it seem as though the milk goes all the way to the edge: you can't see the thickness of the glass walls at all. With a metamaterial, you could make the light seem to extend beyond the physical edge of the structure, into empty space. Then you could make a hidden portal, concealed because the metamaterial walls on each side appear to extend across the open space.
The principles behind transformation optics apply to all kinds of wave, not just to light. Researchers have proposed and constructed acoustic versions of invisibility shields and other structures: devices that seem invisible to sound waves as they pass through, so that for example a submarine might be made invisible to sonar. Using large arrays of holes in the ground, perhaps filled with softer material, it might even be possible to create seismic shields that make buildings or even cities invisible to earthquakes. And researchers at the Karlsruhe Institute of Technology in Germany have used the same ideas developed for acoustic cloaking – where the aim is to shield an object from the mechanical vibrations of sound waves – to create an "unfeelability cloak", a delicately structured polymer foam that, when squeezed, deforms in a way that smoothes away any bumps created by objects hidden beneath them.
Perhaps the most remarkable cloak demonstrated so far hides objects from light not just in space but in time: it's a "spacetime cloak". The researchers who devised it, physicists Martin McCall and Paul Kinsler of Imperial College London, illustrate the idea by imagining a thief breaking into a safe that is watched by a security video camera. The act could be hidden by editing out that part of the video, but you'd notice the jump and the missing time. But with spacetime cloaking, it's as if the time before and after the edit is stretched so that the two segments are joined seamlessly with no obvious jump at all. That's not just some trick of editing software: the spacetime itself is deformed this way.
The trick depends on manipulating the speed of light, which is a kind of universal gauge of the rate of time passing. Metamaterials could do it, but a simpler (slightly imperfect) way is to vary the refractive index of the material the light passes through. This can be done in optical fibres: an intense laser "control beam" can manipulate the refractive index of the glass fibre so the light from a signal beam seems to slow down and speed up. In 2011 a team at Cornell University demonstrated the idea
in effect hiding a light beam in a spacetime hole for 15 trillionths of a second.


:The Source
http://www.theguardian.com

Tuesday, 27 January 2015

Mercedes-Benz TV: A vision became reality: The Mercedes-Benz F 015 Luxury in Motion.


With the concept Mercedes F 015 Luxury in Motion shows Mercedes-Benz how cars in the luxury segment will look in the future. At the Detroit Auto Show, Steffen Koehl, the Head of Advanced Interior Design at Mercedes-Benz gives a detail tour of the car 
of the future.

  The Source :http://www.youtube.com 

Tuesday, 20 January 2015

Watch octopus making escape from fishing boat by squeezing itself through the tiniest of gaps


Watch octopus making escape from fishing boat by squeezing itself through the tiniest of gaps
The sea creature is shown slithering towards the side of the vessel before disappearing through the narrowest of spaces

"Sizi zırh gibi koruyan" yaşlanma karşıtı 5 yiyecek

  "Sizi zırh gibi koruyan" yaşlanma karşıtı 5 yiyecek Pek çok insan mümkün olduğu kadar sağlıklı beslenmeye çabalıyor, besin değer...