Sep 7, 2011

Meteorites Pummeled Earth, Delivering Gold

Your wedding ring, the gold chain around your neck… even the platinum in your catalytic converter. For all of these you can thank a slew of meteorites that pelted Earth around 3.9 billion years ago, says new research.

Certain metals like gold, platinum, nickel, tungsten and iridium are attracted to iron, which comprises the Earth's core. So when the Earth first formed as a molten mass, all of these elements should have migrated to the core, leaving the outer layers of Earth stripped of its precious metals.

Yet as hopeful '49-ers knew, Earth's crust is laced with these enticing elements. Geologists have posed several theories to explain this puzzle, but one suggests that Earth was bombarded with meteorites between 3.8 and 4 billion years ago, studding the early crust with our favorite shiny metals. These metals then became incorporated into the modern mantle over time.

This idea is supported by the presence of craters on the moon, which date back to the same time, suggesting that the moon was also hit. Now, research published today in Nature, provides further evidence in favor of this explanation.

A team led by Matthias Willbold of the University of Bristol, U.K., sampled ancient rocks from southwest Greenland that formed some of the Earth's earliest crust, predating the proposed bombardment, and compared those with newer rocks from other places representing the modern mantle.

The researchers found distinct differences in the concentrations of particular tungsten isotopes in each type.

"This is a sort of a time capsule that gave us the possibility to calculate how much material had to be added to the Earth to satisfy the tungsten isotopic composition that we find in the Earth today," Willbold said.

"It is so far the best isotopic or geochemical evidence that late bombardment ever happened," he added.

"Our ability to measure these (isotopes) precisely enough to see these differences is just opening a totally new window into early planet formation," said Richard Carlson of the Carnegie Institution of Washington who has also studied early Earth using isotopes.

Read more at Discovery News

Secrets of WTC Shipwreck Sleuthed Out

Unraveling the mystery surrounding the shipwreck found last year during excavations of the World Trade Center site has resulted in several facts as well as theories. The 18th century vessel, likely a single-masted sloop, measured approximately 50 feet long, and had a shallow, double-ended draft aided by a small, tapered keel built of squared-off hickory that that ran from stem-to-stern. The hull was built from Philadelphia oak trees -- one of which had lived for at least 111 years and was still growing in 1773, its youngest sapwood preserved in one of the boat's timbers.

Maritime historian Norman Brouwer had suggested that the unusually crafted sailboat was from a small rural shipyard and the trees for its timber from the same forest. "The data we see suggest something very similar," says Neil Pederson of the Lamont-Doherty Earth Observatory's Tree Ring Lab in Palisades, NY. "It's an interesting intersection in experts," he told Discovery News. He was part of a four-person dendrochronology team from the Tree Ring Lab working on samples of the vessel's white oak planks and its hickory keel. Other tree species used in the boat's construction included spruce and southern yellow pine, reported wood deterioration researcher Robert Blanchette of the University of Maine.

Looking up tree ring patterns for white oak timber samples is like hunting down a family's genealogy. To get the most accurate result, teams of people around the world need to have already done the manual labor of counting rings and entering forest timber chronologies into a database. Then it's a matter of sleuthing through generations of tree life-cycles to find a pattern that fits: where the timber samples and the trees share the same local climate of wet and dry years allowing them to make matching patterns of wide rings and skinny rings. So where to start?

An oak sailboat in New York could have originated anywhere in Europe or North America. Dutch ships original carried sloops across the Atlantic in the 1600s. Whose side was this sailboat on? Pederson said when they first heard of the find they weren't sure if they could track the soggy wood - when the team saw the keelson, the upper floor of the hull, the planks looked like white oak. When Blanchette confirmed their suspicions but added that they'd be getting a sample of hickory from the keel, the tree-ring team were relieved. The hickory keel sample was key - "it's been extinct in Europe for two million years or so," Pederson said.

So once the team did their own grueling process of slowly drying the timbers, waiting to see if the wood would decay, then sanding the samples, and counting the rings, sometimes as thin as one thousandth of a millimeter, and hoping each sample would provide at least 100 years of rings to make the sample comparable to other chronologies then the scientists got started looking for a match. They used a computer system to compare their samples with chronologies of forests from the New York State's Hudson Valley and then took a stab at a historical timber chronology they have from Philadelphia, "and that just about nailed it – really good," said Pederson.

When the wreck was first found the archeologists were confused as to whether they were looking at the front (stem) or back (stern) of the vessel. Turns out the sloop was rounded at both ends. Last month the Port Authority of New York and New Jersey excavated behind a concrete wall, where archeologists from the firm AKRF hoped to find remnants from the bow, where the figurehead and bowsprit thrust forward over the curving stem, the part of the sailboat that forms a bowshock of cresting waves and a good place to look for dolphins when under sail.

Eventually AKRF did recover a large portion of the structural part of the front of the boat. Now that material is with the Center for Maritime Archaeology and Conservation at Texas A&M University, where Director Kevin Crisman and his team are assisting the excavators with storage of the timbers. Alum and archeologist Carrie Fulton, now at Cornell University, spent a week cleaning, inspecting, and recording the new finds using stereophotography to generate 3D models.

One image shows part of the Roman numeral II, a draft mark carved into the lower stem indicating the point where the vessel was two feet from the bottom of the keel. With light loads this mark would likely hover just at the water line indicating to the crew that they would run aground if they traveled through water that was less than two feet deep, an event they likely did often.

Read more and see pictures at Discovery News

Ancient Acidic Ocean a Killer

Earth experienced its most dramatic extinction crisis of all time 250 million years ago when about 90 percent of ocean-dwelling species and 70 percent of land-dwellers disappeared. Exactly what caused the massive die-off, however, has long been a matter of debate.

Now, a new study offers new clues.

Ocean acidification caused by rising levels of carbon dioxide in the air, the study suggests, may have played a major role in the ancient extinction event, which was particularly hard on marine creatures that make calcium carbonate shells -- a process that's much harder for them to do in acidic conditions.

The findings have potentially major implications for what we can expect to happen on Earth in the near future. As atmospheric CO2 levels rise in the coming decades and the oceans absorb the gas, which ends up making the water more acidic, we might be headed for another round of serious extinction events.

"While it's hard to actually quantify the magnitude of the role played by ocean acidification compared to many other things going on, our results clearly show that ocean acidification played a role and maybe an important role in this extinction event," said Alvaro Montenegro, a physical oceanographer at St. Francis Xavier University in Nova Scotia.

"It is quite evident that we have pushed and continue to push the oceans toward more acidic conditions, and we already can foresee impacts on certain types of ocean organisms become significant quite soon," he added, with clams, mussels and other shellfish at biggest risk. "Our results are showing that organisms don't necessarily adapt quickly or quick enough to changes in ocean pH."

The history of life on Earth has been punctuated by a number of major extinction events, including the one that knocked off most of the dinosaurs about 65 million years ago. By far the most extreme sequence of events, though, struck just over 250 million years ago.

Now called the Permian-Triassic Boundary (PTB) extinction, it was unique in a few ways. Besides killing so many species both on land and in the water, for example, it was the only known extinction that wiped out a lot of insects, too. Unlike other extinction episodes, the cause of the PTB event is also surrounded by mystery. There is, for instance, not convincing evidence for a major meteor impact like the one that killed the dinosaurs.

Scientists do know that gigantic volcanic eruptions were spitting large amounts of methane and CO2 into the air at the time. Temperatures were very warm. And the geological record shows that parts of the seafloor were very low in oxygen. But it is still not clear what caused what.

To begin to untangle some of the mystery, Montenegro and colleagues created a computer model that simulated conditions before and during the extinction. The model included a historically accurate arrangement of continents. It also, for the first time, included a seafloor that was full of ridges and other sculpted features to create a realistic picture of water circulation patterns.

After setting temperatures and CO2 concentrations to the high levels that are thought to have existed at the time, the researchers ran experiments to see what would happen in the oceans.

Results, published in the journal Paleoceanography, showed that a warm climate couldn't explain documented changes in the oceans during the PTB extinction. Instead, high CO2 levels alone could have accounted for the serious drop in ocean pH.

Read more at Discovery News

Sep 6, 2011

Aging Eyes Linked to Sleepless Nights, New Study Shows

A natural yellowing of the eye lens that absorbs blue light has been linked to sleep disorders in a group of test volunteers, according to a study in the September 1 issue of the journal Sleep. As this type of lens discoloration worsened with age, so did the risk of insomnia.

"The strong link between lens yellowing and age could help explain why sleep disorders become more frequent with increasing age," said Line Kessel, M.D., Ph.D., the study's lead author.

In the Danish study, 970 volunteers had their eyes examined by lens autofluorometry, a non-invasive method for determining how much blue light is transmitted into the retina. Blue light is a portion of the visible-light spectrum that influences the normal sleep cycle by helping initiate the release of melatonin in the brain. Melatonin is a hormone that helps signal to the body when it is time to be sleepy or alert.

Volunteers were considered to have a sleep disorder if they confirmed that they "often suffer from insomnia" or if they purchased prescription sleeping pills within the last 12 months. Of those classified as having a sleep disturbance, 82.8 percent affirmed that they both suffered from insomnia and used sleep medication.

Using this data, researchers calculated an inverse relationship between blue light transmission and the risk of having sleep disturbances: the lower the blue light transmission into the retina due to a yellowing of the eye lens, the greater the risk of sleep disturbances.

"The results showed that while age-related lens yellowing is of relatively little importance for visual function, it may be responsible for insomnia in the elderly," said Kessel, a senior scientist in the Department of Opthalmology at Glostrup Hospital in Denmark.

Significantly higher rates of sleep disorders were reported by older participants, women, smokers and those with diabetes mellitus. Previous studies have shown that the rate of lens aging is accelerated in smokers, patients with diabetes mellitus and those at high risk for ischemic heart diseases. The Danish researchers addressed these factors in their statistical analyses.

"The association between blue light lens transmission and sleep disturbances remained significant even after we corrected for age, sex, diabetes mellitus, smoking and the risk of ischemic heart disease," Kessel said.

She said another important factor to consider is that sleep quality has been shown to improve after cataract surgery. "The transmission of blue light currently cannot be improved by any other method than cataract surgery. I´m involved with another research project where we try non-invasively to remove the yellow color of the lens using a laser, but the method is not yet developed for clinical use," Kessel said.

Read more at Science Daily

World’s Largest Fusion Experiment Back in Operation

After an 18-month shutdown to upgrade the machine and four months of commissioning, the Joint European Torus (JET), the world's largest magnetic fusion device, is ready to start new experiments. The inside of the vessel now has a completely new wall. JET is the first fusion machine to test the materials that will be used inside the next-generation international experiment, ITER.

Last Friday, scientists from throughout Europe started the first experimental campaign at JET after the installation of the "ITER-Like Wall." The upgrade comprises new materials inside the JET vessel, more heating power and additional diagnostic systems.

JET's researchers are investigating the potential of fusion power as a safe, clean, and virtually limitless energy source for future generations. The research is coordinated under the European Fusion Development Agreement (EFDA).

EFDA Leader Francesco Romanelli commented: "This is probably the largest effort that has been put into JET apart from the construction of the machine itself. With the expertise and contribution of many fusion laboratories, the JET team has succeeded in building a small ITER. We had a very good start with high purity plasmas readily established in ITER relevant conditions -- a promising sign for the use of these wall materials in ITER."

The inside of the JET vessel is now made of beryllium and tungsten tiles forming an 'ITER-Like Wall'. Between October 2009 and May 2011 engineers from Culham Centre for Fusion Energy removed and replaced approximately 86,000 components, largely using remote handling technology.

Lorne Horton, Head of EFDA's JET Department, explained: "The coming experiments will aim to verify that the wall materials chosen for ITER will behave as expected." Beryllium is being used in the main wall, whereas tungsten, with its high melting point, is the choice for the exhaust component known as 'divertor' that has to withstand high heat flux.

The other main enhancement is a 50% increase in the heating power. With the extra power, JET will achieve higher plasma temperatures and approach ITER conditions. New diagnostics and control systems, developed by the EFDA associate laboratories, will allow a deep investigation of the scientific challenges in preparing for ITER.

Maximos Tsalas is one of the visiting scientists in the control room. He has worked for many years at JET and has recently moved to FOM Rijnhuizen, in The Netherlands. He explained: "I left JET more than a year ago. Coming back, the developments I see are amazing. JET has become a brand new machine. I feel extremely privileged to take part in the first set of experiments. The coming campaign will be very challenging, and we are all eager to see how the new systems perform and to learn how to operate with the new wall."

Read more at Science Daily

Filmmakers Update 9/11 Documentary

Filmmakers Jules and Gedeon Naudet and were supposed to be making a documentary about New York City firefighters, following a probie named Tony Benetatos as he went from the academy to his assignment with Ladder 1.

Instead, on that September morning in 2001, they were witnesses to history.

Their documentary "9/11" aired on CBS in 2002. To mark the 10th anniversary of the terrorist attacks, the French-born brothers – along with co-director James Hanlon – have updated the film.

Titled "9/11: 10 Years Later," the filmmakers will look into the lives of the firefighters who appeared in the original documentary, as well as some of the ongoing health problems of the first responders. They will also tour the ongoing construction efforts at Ground Zero.

The Naudet footage is still some of the most comprehensive on-site coverage of the World Trade Center attacks and rescue attempt.

Jules Naudet was with the battalion on a routine call about a gas leak when American Airlines Flight 11 slammed into the North Tower of the World Trade Center. The sound of the incoming plane, as well as the collision, is caught on camera, as are the firefighters’ uncensored reactions.

As Jules headed with the unit to the North Tower, his brother Gedeon filmed reactions both back at the firehouse, and of the crowd on the street just below the World Trade Center. He also captured the impact of United Airlines Flight 175 as is crashed into the South Tower.

Read more at Discovery News

Search Is on for Lost Da Vinci

Nuclear physics might soon solve a longstanding Leonardo da Vinci mystery -- the fate of a lost masterpiece known as the "Battle of Anghiari."

The project, one of the most ambitious in art history, involves developing a unique camera that can take photographs through a 5-inch-thick wall.

The brick barrier is no ordinary wall. It stands in Palazzo Vecchio, Florence's 14th-century city hall, in the imposing Hall of Five Hundred, and houses a mural known as the "Battle of Marciano." It was painted by the renowned 15th-century painter, architect and writer Giorgio Vasari.

Leonardo's lost work could lie right behind that wall, according to art diagnostic expert Maurizio Seracini, director of the Center of Interdisciplinary Science for Art, Architecture and Archaeology at the University of California, San Diego.

The long-lost fresco, which Seracini has been searching for since the 1970s, has a mysterious history. It was conceived in 1503, when Leonardo and Michelangelo received twin commissions to paint historic Florentine victories on opposite walls of the Palazzo Vecchio in Florence.

While Michelangelo never got past a sketch of his "Battle of Cascina," Leonardo began to paint the centerpiece of the ''Battle of Anghiari," known as the ''Fight for the Standard," on June 6, 1505, when he was 53.

"Representing vividly the rage and fury both of the men and the horses," as Vasari wrote in his 1550 book "Lives of the Artists," the 12- by 15-foot mural would celebrate the Florentine's victory over Milanese troops in 1440.

Vasari (1511-1574) reported that Leonardo abandoned the project because of technical problems arising from his experimental mixing of oil paint and fresco.

Historians, however, have questioned Vasari's conclusion. Some speculated that he made up the story, and that the fresco actually was completed.

Hailed by Leonardo's contemporaries as his finest work, the "Battle of Anghiari" now survives in several preparatory drawings and sketches by the master himself and in a Rubens drawing which was inspired by an anonymous copy of the fresco.

Ten years after writing his account of the "Battle of Anghiari," Vasari was hired to modify the council room into the Hall of Five Hundred, a hall dedicated to the ruling Medici family.

In the course of this work, Leonardo's mural disappeared. The council room remodeling was part of a city-wide renovation plan devised by Duke Cosimo I to celebrate the Medici family.

As part of this project, Vasari also modified the church of Santa Maria Novella, covering up the 1428 Masaccio fresco "Trinità" with a wall on which he painted a panel of the "Madonna of the Rosary."

Masaccio's work remained obscured until 1861, when Vasari's wall was removed.

In 2000, at a Da Vinci conference, leading scholar Carlo Pedretti proposed that Vasari saved Leonardo's masterpiece just as he had Masaccio's.

The conference prompted Seracini to carry out sophisticated tests that used laser scanners, X-ray machines and thermographic and radar equipment.

First he reconstructed the plan of the hall before Vasari's remodeling by finding the original windows and doors, now covered by walls. Then he focused on Vasari's work.

Since the walls were raised by 21 feet, they had to be reinforced.

Read more at Discovery News

Sep 5, 2011

Anatomically Modern Humans Interbred With More Archaic Hominin Forms While in Africa

It is now widely accepted that the species Homo sapiens originated in Africa and eventually spread throughout the world. But did those early humans interbreed with more ancestral forms of the genus Homo, for example Homo erectus, the "upright walking man," Homo habilis, -- the "tool-using man" or Homo neanderthalensis, the first artists of cave-painting fame?

Direct studies of ancient DNA from Neanderthal bones suggest interbreeding did occur after anatomically modern humans had migrated from their evolutionary cradle in Africa to the cooler climates of Eurasia, but what had happened in Africa remained a mystery -- until now.

In a paper published in the Proceedings of the National Academy of Sciences (PNAS), a team led by Michael Hammer, an associate professor and research scientist with the the University of Arizona's Arizona Research Labs, provides evidence that anatomically modern humans were not so unique that they remained separate.

"We found evidence for hybridization between modern humans and archaic forms in Africa. It looks like our lineage has always exchanged genes with their more morphologically diverged neighbors," said Hammer, who also holds appointments in the UA's department ofecology and evolutionary biology, the school of anthropology, the BIO5 Institute and the Arizona Cancer Center.

Hammer added that recent advances in molecular biology have made it possible to extract DNA from fossils tens of thousands of years old and compare it to that of modern counterparts.

However, "We don't have fossil DNA from Africa to compare with ours," he said. "Neanderthals lived in colder climates, but the climate in more tropical areas make it very tough for DNA to survive that long, so recovering usable samples from fossil specimens is extremely difficult if not impossible."

"Our work is different from the research that led to the breakthroughs in Neanderthal genetics," he explained. "We couldn't look directly for ancient DNA that is 40,000 years old and make a direct comparison."

To get past this hindrance, Hammer's team followed a computational and statistical approach.

"Instead, we looked at DNA from modern humans belonging to African populations and searched for unusual regions in the genome."

Because nobody knows the DNA sequences of those now extinct archaic forms, Hammer's team first had to figure out what features of modern DNA might represent fragments that were brought in from archaic forms.

"What we do know is that the sequences of those forms, even the Neanderthals, are not that different from modern humans," he said. "They have certain characteristics that make them different from modern DNA."

The researchers used simulations to predict what ancient DNA sequences would look like had they survived within the DNA of our own cells.

"You could say we simulated interbreeding and exchange of genetic material in silico," Hammer said. "We can simulate a model of hybridization between anatomically modern humans and some archaic form. In that sense, we simulate history so that we can see what we would expect the pattern to look like if it did occur."

According to Hammer, the first signs of anatomically modern features appeared about 200,000 years ago.

First, the team sequenced vast regions of human genomes from samples taken from six different populations living in Africa today and tried to match up their sequences with what they expected those sequences to look like in archaic forms. The researchers focused on non-coding regions of the genome, stretches of DNA that do not contain genes, which serve as the blueprints for proteins.

"Then we asked ourselves what does the general pattern of variation look like in the DNA that we sequenced in those African populations, and we started to look at regions that looked unusual," Hammer said. "We discovered three different genetic regions fit the criteria for being archaic DNA still present in the genomes of sub-Saharan Africans. Interestingly, this signature was strongest in populations from central Africa."

The scientists applied several criteria to tag a DNA sequence as archaic. For example, if a DNA sequence differed radically from the ones found in a modern population, it was likely to be ancient in origin. Another telltale sign is how far it extends along a chromosome. If an unusual piece is found to stretch a long portion of a chromosome, it is an indication of being brought into the population relatively recently.

"We are talking about something that happened between 20,000 and 60,000 years ago -- not that long ago in the scheme of things," Hammer said. "If interbreeding occurs, it's going to bring in a whole chromosome, and over time, recombination events will chop the chromosome down to smaller pieces. And those pieces will now be found as short, unusual fragments. By looking at how long they are we can get an estimate of how far back the interbreeding event happened."

Read more at Science Daily

Quantum minds: Why we think like quarks

The fuzziness and weird logic of the way particles behave applies surprisingly well to how humans think

THE quantum world defies the rules of ordinary logic. Particles routinely occupy two or more places at the same time and don't even have well-defined properties until they are measured. It's all strange, yet true - quantum theory is the most accurate scientific theory ever tested and its mathematics is perfectly suited to the weirdness of the atomic world.

Yet that mathematics actually stands on its own, quite independent of the theory. Indeed, much of it was invented well before quantum theory even existed, notably by German mathematician David Hilbert. Now, it's beginning to look as if it might apply to a lot more than just quantum physics, and quite possibly even to the way people think.

Human thinking, as many of us know, often fails to respect the principles of classical logic. We make systematic errors when reasoning with probabilities, for example. Physicist Diederik Aerts of the Free University of Brussels, Belgium, has shown that these errors actually make sense within a wider logic based on quantum mathematics. The same logic also seems to fit naturally with how people link concepts together, often on the basis of loose associations and blurred boundaries. That means search algorithms based on quantum logic could uncover meanings in masses of text more efficiently than classical algorithms.

It may sound preposterous to imagine that the mathematics of quantum theory has something to say about the nature of human thinking. This is not to say there is anything quantum going on in the brain, only that "quantum" mathematics really isn't owned by physics at all, and turns out to be better than classical mathematics in capturing the fuzzy and flexible ways that humans use ideas. "People often follow a different way of thinking than the one dictated by classical logic," says Aerts. "The mathematics of quantum theory turns out to describe this quite well."

It's a finding that has kicked off a burgeoning field known as "quantum interaction", which explores how quantum theory can be useful in areas having nothing to do with physics, ranging from human language and cognition to biology and economics. And it's already drawing researchers to major conferences.

One thing that distinguishes quantum from classical physics is how probabilities work. Suppose, for example, that you spray some particles towards a screen with two slits in it, and study the results on the wall behind (see diagram). Close slit B, and particles going through A will make a pattern behind it. Close A instead, and a similar pattern will form behind slit B. Keep both A and B open and the pattern you should get - ordinary physics and logic would suggest - should be the sum of these two component patterns.

But the quantum world doesn't obey. When electrons or photons in a beam pass through the two slits, they act as waves and produce an interference pattern on the wall. The pattern with A and B open just isn't the sum of the two patterns with either A or B open alone, but something entirely different - one that varies as light and dark stripes.

Such interference effects lie at the heart of many quantum phenomena, and find a natural description in Hilbert's mathematics. But the phenomenon may go well beyond physics, and one example of this is the violation of what logicians call the "sure thing" principle. This is the idea that if you prefer one action over another in one situation - coffee over tea in situation A, say, when it's before noon - and you prefer the same thing in the opposite situation - coffee over tea in situation B, when it's after noon - then you should have the same preference when you don't know the situation: that is, coffee over tea when you don't know what time it is.

Read more at New Scientist

Gene therapy could reduce radiation sickness

RADIATION therapy to treat cancer is more effective in some people than others. A new discovery that reveals why could help to boost effectiveness of the therapy and reduce related radiation sickness.

Vivian Cheung at the University of Pennsylvania in Philadelphia and colleagues exposed cells from 99 healthy individuals to a dose of radiation that prompts a cellular response similar to what happens during therapy. Following the dose, the activity of caspase - an "executioner" enzyme that causes cells to self destruct - increased by between 120 and 720 per cent, confirming that people respond differently to treatment.

The team also looked at gene expression before and after exposure and identified 335 genes whose variation in expression correlated with caspase activity. Silencing five genes whose expression negatively correlated with caspase activity significantly increased cancer cells' sensitivity to radiation.

More at New Scientist