Monday, April 14, 2008

What Came Before the Big Bang Might Have Been Eerily Similar

By Joshua Hill Monday, April 14, 2008

The Big Bang has long been the realm of religious contention. However of late, there has been a rising group of Christian’s (amongst others) who have allowed for the possibility that God used the Big Bang as his creation tool.

However, with that being said, there is still another contention about what came before.

Science has long failed to provide anything stable that could suggest what came before the Big Bang. General Relativity curls up in to the fetal position and demands to be left alone whenever anyone brings the idea of “what came before” to it.

However, physicists Alejandro Corichi from Universidad Nacional Autónoma de México and Parampreet Singh from the Perimeter Institute for Theoretical Physics in Ontario, may have created an answer.

In fact, they haven’t created anything, but only built upon previous work. A new theory called Loop Quantum Gravity (LQG) has cropped up in recent years, and while there is a lot of math and science to this theory, one of its assumptions is that instead of a Big Bang spacetime singularity, there was a Big Bounce.

“The significance of this concept is that it answers what happened to the universe before the Big Bang,” Singh told PhysOrg.com. “It has remained a mystery, for models that could resolve the Big Bang singularity, whether it is a quantum foam or a classical space-time on the other side. For instance, if it were a quantum foam, we could not speak about a space-time, a notion of time, etc. Our study shows that the universe on the other side is very classical as ours.”

Previous work on the LQG showed that there had been a universe on the other side, but while it showed valid math, there was no chance to observe in our current universe the state of the pre-bounce universe. This is because, under the previous theory – worked upon by Penn State physicist Martin Bojowald – there was nothing preserved across the bounce. Bojowald described this as a sort of “cosmic amnesia.”

However Corichi and Singh have modified the LQG by approximating a key equation called the quantum constraint. Their version is called the sLQG, and it shows that the relative fluctuations of volume and momentum in the pre-bounce universe are conserved across the bounce.

“This means that the twin universe will have the same laws of physics and, in particular, the same notion of time as in ours,” Singh said. “The laws of physics will not change because the evolution is always unitary, which is the nicest way a quantum system can evolve. In our analogy, it will look identical to its twin when seen from afar; one could not distinguish them.”

“In the universe before the bounce, all the general features will be the same,” said Singh. “It will follow the same dynamical equations, the Einstein’s equations when the universe is large. Our model predicts that this happens when the universe becomes of the order 100 times larger than the Planck size. Further, the matter content will be the same, and it will have the same evolution. Since the pre-bounce universe is contracting, it will look as if we were looking at ours backward in time.”

But the researchers are quick to point out that this second universe is not full of duplicates of us. It does not suggest that every particle on the other side is exactly the same, and that there is someone who has lived your life. It is pretty much as if the “evil Spock” from the old Star Trek episodes had been from the previous world, not a parallel dimension.

A non-Star Trek description would be; “If one were able to look at certain microscopic properties with a very strong microscope – a very high-energy experiment probing the Planck scale – one might see differences in some quantities, just as one might see that twins have different fingerprints or one has a mole and the other does not, or a different DNA,” Singh said.

In the end, Corichi and Singh’s model may even be able to show us what our own future universe will look like. Depending on how fast our own universe is accelerating, there’s a possibility that – through generalizing their model – a re-collapse of our own universe is possible.

Tuesday, April 8, 2008

Friday, April 4, 2008

Quasars Quash Star Formation In Active Galactic Nuclei

ScienceDaily (Apr. 4, 2008) — An ambitious study of active and inactive galaxies has given new insights into the complex interaction between super-massive black holes at the heart of Active Galactic Nuclei (AGN) and star formation in the surrounding galaxy. Results will be presented in a talk by Paul Westoby on 4th April at the RAS National Astronomy Meeting in Belfast.

Along with colleagues, Carole Mundell and Ivan Baldry from the Astrophysics Research Institute of Liverpool John Moores University, Westoby studied the properties of light from 360,000 galaxies in the local Universe to understand the relationship between accreting black holes, the birth of stars in galaxy centres and the evolution of the galaxies as a whole.

The study finds that gas ejected during the quasar stage of AGN snuffs out star formation, leaving the host galaxies to evolve passively. The study also reveals a strong link between galaxy mergers and the formation of super-massive black holes in AGN, but shows that if the environment becomes too crowded with galaxies, then the likelihood of firing up a supermassive black hole becomes suppressed.

Scientists believe that all AGN go through a quasar phase, where the radiation emitted from the growing accretion disc around the central black hole becomes so bright that it outshines its entire host galaxy. Today, most massive galaxies are thought to contain a dormant super-massive black hole at their heart, a legacy of this earlier phase of powerful quasar activity, but for reasons unknown, some of these local black holes have been reignited.

The Liverpool team concentrated on these local AGN, which can be studied in more detail than their more distant quasar cousins, and, by comparing the properties of a large number of galaxies, the team addressed a key question – do galaxies that host AGN represent an adolescent or transition phase of galaxy evolution?

“The starlight from the host galaxy can tell us much about how the galaxy has evolved,” said Westoby. “Galaxies can be grouped into two simple colour families: the blue sequence, which are young, hotbeds of star-formation and the red sequence, which are massive, cool and passively evolving.” Westoby continued “Scientists have thought for some time that AGN host galaxies might be a stepping stone between the two families and therefore represent a critical point in the lifetime of a galaxy, but our study has been able to rule this out.”

Instead the AGNs identified by the team lay in galaxies that showed a clear overlap with red sequence galaxies. This suggests that the star-forming days for AGN host galaxies have a distinct cut-off point and that the post-quasar local AGNs are no longer generating new stars. This conclusion is reinforced by the team’s findings that the majority of local AGNs are linked with “classical bulges”, round balls of stars formed during violent mergers of gas-rich galaxies early on in the Universe’s history, rather than “pseudo bulges”, disc-only galaxies that have not undergone a major merger since their formation. This implies that the formation of the super-massive black hole that drives the AGN is linked to the evolution of the bulge, rather than the galaxy as a whole.

Finally, the team identified an intriguing population of galaxies that have an active population of young stars together with an actively accreting black hole, so-called composite galaxies. These masquerade as a transition population, and lie in the region predicted for galaxies experiencing AGN feedback – the process by which material ejected by the AGN has a direct impact on the evolution of the surrounding galaxy. However, Westoby and colleagues find feedback an unlikely explanation for the observed properties of these galaxies and suggest that feedback may only be important during the quasar phase and not in weaker, nearby AGN.

Adapted from materials provided by Royal Astronomical Society.

Tuesday, March 25, 2008

Mathematicians Find New Solutions To An Ancient Puzzle

ScienceDaily (Mar. 18, 2008) — Many people find complex math puzzling, including some mathematicians. Recently, mathematician Daniel J. Madden and retired physicist, Lee W. Jacobi, found solutions to a puzzle that has been around for centuries.


Jacobi and Madden have found a way to generate an infinite number of solutions for a puzzle known as 'Euler's Equation of degree four.'

The equation is part of a branch of mathematics called number theory. Number theory deals with the properties of numbers and the way they relate to each other. It is filled with problems that can be likened to numerical puzzles.

"It's like a puzzle: can you find four fourth powers that add up to another fourth power" Trying to answer that question is difficult because it is highly unlikely that someone would sit down and accidentally stumble upon something like that," said Madden, an associate professor of mathematics at The University of Arizona in Tucson.

Equations are puzzles that need certain solutions "plugged into them" in order to create a statement that obeys the rules of logic.

For example, think of the equation x + 2 = 4. Plugging "3" into the equation doesn't work, but if x = 2, then the equation is correct.

In the mathematical puzzle that Jacobi and Madden worked on, the problem was finding variables that satisfy a Diophantine equation of order four. These equations are so named because they were first studied by the ancient Greek mathematician Diophantus, known as 'the father of algebra.'

In its most simple version, the puzzle they were trying to solve is the equation: (a)(to the fourth power) + (b)(to the fourth power) + (c)(to the fourth power) + (d)(to the fourth power) = (a + b + c + d)(to the fourth power)

That equation, expressed mathematically, is: a4 + b4 +c4 +d4 = (a + b + c + d)4.

Madden and Jacobi found a way to find the numbers to substitute, or plug in, for the a's, b's, c's and d's in the equation. All the solutions they have found so far are very large numbers.

In 1772, Euler, one of the greatest mathematicians of all time, hypothesized that to satisfy equations with higher powers, there would need to be as many variables as that power. For example, a fourth order equation would need four different variables, like the equation above.

Euler's hypothesis was disproved in 1987 by a Harvard graduate student named Noam Elkies. He found a case where only three variables were needed. Elkies solved the equation: (a)(to the fourth power) + (b)(to the fourth power) + (c)(to the fourth power) = e(to the fourth power), which shows only three variables are needed to create a variable that is a fourth power.

Inspired by the accomplishments of the 22-year-old graduate student, Jacobi began working on mathematics as a hobby after he retired from the defense industry in 1989.

Fortunately, this was not the first time he had dealt with Diophantine equations. He was familiar with them because they are commonly used in physics for calculations relating to string theory.

Jacobi started searching for new solutions to the puzzle using methods he found in some number theory texts and academic papers.

He used those resources and Mathematica, a computer program used for mathematical manipulations.

Jacobi initially found a solution for which each of the variables was 200 digits long. This solution was different from the other 88 previously known solutions to this puzzle, so he knew he had found something important.

Jacobi then showed the results to Madden. But Jacobi initially miscopied a variable from his Mathematica computer program, and so the results he showed Madden were incorrect.

"The solution was wrong, but in an interesting way. It was close enough to make me want to see where the error occurred," Madden said.

When they discovered that the solution was invalid only because of Jacobi's transcription error, they began collaborating to find more solutions.

Madden and Jacobi used elliptic curves to generate new solutions. Each solution contains a seed for creating more solutions, which is much more efficient than previous methods used.

In the past, people found new solutions by using computers to analyze huge amounts of data. That required a lot of computing time and power as the magnitude of the numbers soared.

Now people can generate as many solutions as they wish. There are an infinite number of solutions to this problem, and Madden and Jacobi have found a way to find them all.

"Modern number theory allowed me to see with more clarity the implications of his (Jacobi's) calculations," Madden said.

"It was a nice collaboration," Jacobi said. "I have learned a certain amount of new things about number theory; how to think in terms of number theory, although sometimes I can be stubbornly algebraic."

The article, ""On a4 + b4 +c4 +d4 = (a + b + c + d)4" is published in the March issue of The American Mathematical Monthly.

Tuesday, March 18, 2008

Infringement!

By PETER LAURIA of the New York Post

Artist managers are girding for battle with their music overlords over when their clients are going to see some of the dough negotiated last year in copyright-infringement settlements with a host of Web sites.

Universal Music, Warner Music and EMI - either collectively or individually - settled claims with Napster, Kazaa and Bolt.com. Napster alone had to cough up $270 million.

The fourth major label, SonyBMG, was not part of the suit because Napster was owned by BMG parent company Bertelsmann.

All four struck separate deals with YouTube that included revenue participation.

A contingent of prominent artist managers claims that little to none of that money has trickled down to their clients. They are now considering legal action.

"Artist managers and lawyers have been wondering for months when their artists will see money from the copyright settlements and how it will be accounted for," said lawyer John Branca, who has represented Korn, Don Henley, and The Rolling Stones, among others.

"Some of them are even talking about filing lawsuits if they don't get paid soon."

Record label sources said corporate bosses are still deciding on how best to split the money. In determining the payout, they said not every artist is owed money and it must be calculated with regard to the level of copyright infringement for each artist.

What's more, these sources said that after the labels recouped their legal expenses, there wasn't much left to pass along to the artists.

But a source on the artists' side said that is an argument heard all too often in the music business.

Getting money out of the major labels is never easy, but given the industry's downward financial spiral it is exponentially more difficult now, the source said.

"The record labels are experts at transferring money around and putting the onus on artists managers to find it."

Irving Azoff, the legendary talent manager for The Eagles and Jewel, among others, echoed that sentiment.

"They will play hide and seek, but eventually will be forced to pay something," Azoff said. "The record companies have even tried to credit unrecouped accounts. It's never easy for an artist to get paid their fair share."

Reps for the three labels dispute the notion that they are withholding settlement money.

A spokeswoman for EMI said the label has started the process of "sharing proceeds from the Napster and Kazaa settlements with artists and writers whose work was infringed upon."

Warner Music's representative said the label "is sharing the Napster settlement with its recording artists and songwriters and at this stage nearly all settlement monies have been disbursed."

A Universal Music spokesman said the label's policy "is to share its portion of various settlements with its artists, regardless of whether their contracts require it."

Friday, March 14, 2008

Is there another planet in the solar system?

Found at Bad Astronomy.

Could there be another planet lurking in the dark, frigid outskirts of the solar system?

This isn’t as silly as it seems at first. No, I’m not talking Nibiru or any of that other nonsense (and it is nonsense), I’m talking about an actual planet, Earth-sized or so, that could be orbiting the Sun well beyond Pluto Neptune.

Why would we think there might be one out there?

Hubble image of HD 141569, a star with a gapped diskWe see some stars in the midst of forming planets. The stars are surrounded by thick disks of material, and in some we can actually see gaps in the disk, dark rings like the gaps in Saturn’s rings, that we think are due to forming planets gobbling up material in the ring. You’d think the disk would fade away with distance form the star, like our air gets thinner with altitude. But some disks appear to have sharp outer edges. This can be caused by a planet orbiting outside the disk; its gravity sweeps up the material and over time cleans up everything farther out. In one disk, this sharp boundary indicates a planet 200 AU out (an AU is the distance of the Earth to the Sun, about 150 million kilometers or 93 million miles).

Neptune orbits at 30 AU from the Sun, so 200 AU is a long way out. Could a planet like that have formed in our solar system? Maybe. Thing is, while our proto-planetary disk has been gone for billions of years, we do have lots of objects out past Neptune: the Trans-Neptunian Objects (they have lots of names, including Kuiper Belt Objects). These are basically giant balls of ice, some hundreds of miles across. As a group they form a puffy disk of objects stretching from Neptune’s orbit outward… but they seem to abruptly stop past about 50 AU out from the Sun. That’s called the Kuiper Cliff, the cause of which is unknown. Incidentally, it’s not because they’re too faint to see (that is, they’re there but we can’t spot them); at that distance we should have spotted lots of them by now.

Not only that, but a lot of these objects have orbits that are tilted more and are more elliptical than you’d expect if they just formed a long time ago and were left alone. Theyir orbits don’t bring them in very close — they tend to stay outside of Neptune’s orbit — but again, this is something that needs to be explained.

Could it be that there is another massive planet orbiting the Sun, way out there, which has swept up the objects gravitationally, creating the Kuiper Cliff and tossing the iceballs into tilted, oval orbits?

A newly released paper shows that may very well be the case. A team of scientists ran a whole mess of simulations, and found that a small planet (in this case, around half the size of the Earth) could have formed inside Neptune’s orbit (where there was plenty of material in the early solar system), gotten tossed into a bigger orbit by Neptune, and then knocked around the orbits of the iceballs, distorting their orbits and creating the Kuiper Cliff.

This idea is not new, but this new research is a provocative indicator of such a planet’s likelihood of existence. I’m not saying it’s out there, but it’s worth looking for. In fact, I’ve been saying that since about 1998 or so, when I worked on Hubble and was involved with a project that found a truncated disk around another star. I even worked with another astronomer on the team to investigate whether the robotic telescopes used to look for Near Earth Asteroids could spot such a planet.

It’s not all that easy. It wouldn’t be too faint to see, necessarily, but it’s a big sky. At that distance, the planet would move slowly, and the orbital motion would be hard to distinguish given the procedures used by NEA searches. We tried to convince some of them to modify their software to look for Planet X (yes, why not, though now it would be Planet IX), but we were met with mixed success. The fact that no one has discovered this planet shows you that this is still hard to do.

But maybe, just maybe, with this new research we’ll get people looking more seriously. It’s amazing to me that we can understand so much about galaxies and hugely distant objects, but find that there may be surprises waiting for us in our own back yard.

Wednesday, March 12, 2008

Fortune Cookies Help Cops Nab Suspect

(03-07) 19:35 PST Tulsa, Okla. (AP) --

Two fortune cookies helped Tulsa police make an arrest after a pair of break-ins Chinese restaurants. Terrence Middleton, 30, was booked Friday on charges of second-degree burglary and attempted second-degree burglary after police responded to a burglar alarm to find him with more than $20 in coins and the cookies in his pockets, Officer Leland Ashley said.

Middleton was being held on $15,000 bond.

Ashley said police were able to link Middleton to the Asian Express that was robbed because he had possession of the same type of fortune cookies that were at the restaurant.

The alarm went off at the Asian Express about 14 minutes after one sounded at the Chinese Chef Restaurant down the street Thursday night, Ashley said.

When officers arrived, both restaurants had their front doors broken. At the second restaurant, the cash register had been pulled open.

Minutes later, officers stopped Middleton, who was walking down the street, and he dropped various coins and a prison identification card, Ashley said.

Ashley said it appeared there was nothing stolen from the first restaurant, and all that was missing from the second restaurant was $20 in change — and the fortune cookies.

Monday, March 10, 2008

AP Probe Finds Drugs in Drinking Water








Related stories
AP Probe Finds Drugs in Drinking Water

Drugs Found in Watersheds of 28 Areas

NYC: Traces of Sedatives in NYC Water

Smaller Burgs Don't Test Water for Drugs

Drus in Water Could Affect Human Cells

A vast array of pharmaceuticals (AP) -- including antibiotics, anti-convulsants, mood stabilizers and sex hormones - have been found in the drinking water supplies of at least 41 million Americans, an Associated Press investigation shows.

To be sure, the concentrations of these pharmaceuticals are tiny, measured in quantities of parts per billion or trillion, far below the levels of a medical dose. Also, utilities insist their water is safe.

But the presence of so many prescription drugs - and over-the-counter medicines like acetaminophen and ibuprofen - in so much of our drinking water is heightening worries among scientists of long-term consequences to human health.

In the course of a five-month inquiry, the AP discovered that drugs have been detected in the drinking water supplies of 24 major metropolitan areas - from Southern California to Northern New Jersey, from Detroit to Louisville, Ky.

Water providers rarely disclose results of pharmaceutical screenings, unless pressed, the AP found. For example, the head of a group representing major California suppliers said the public "doesn't know how to interpret the information" and might be unduly alarmed.

How do the drugs get into the water?

People take pills. Their bodies absorb some of the medication, but the rest of it passes through and is flushed down the toilet. The wastewater is treated before it is discharged into reservoirs, rivers or lakes. Then, some of the water is cleansed again at drinking water treatment plants and piped to consumers. But most treatments do not remove all drug residue.

And while researchers do not yet understand the exact risks from decades of persistent exposure to random combinations of low levels of pharmaceuticals, recent studies - which have gone virtually unnoticed by the general public - have found alarming effects on human cells and wildlife.

"We recognize it is a growing concern and we're taking it very seriously," said Benjamin H. Grumbles, assistant administrator for water at the U.S. Environmental Protection Agency.

Members of the AP National Investigative Team reviewed hundreds of scientific reports, analyzed federal drinking water databases, visited environmental study sites and treatment plants and interviewed more than 230 officials, academics and scientists. They also surveyed the nation's 50 largest cities and a dozen other major water providers, as well as smaller community water providers in all 50 states.

Here are some of the key test results obtained by the AP:

-Officials in Philadelphia said testing there discovered 56 pharmaceuticals or byproducts in treated drinking water, including medicines for pain, infection, high cholesterol, asthma, epilepsy, mental illness and heart problems. Sixty-three pharmaceuticals or byproducts were found in the city's watersheds.

-Anti-epileptic and anti-anxiety medications were detected in a portion of the treated drinking water for 18.5 million people in Southern California.

-Researchers at the U.S. Geological Survey analyzed a Passaic Valley Water Commission drinking water treatment plant, which serves 850,000 people in Northern New Jersey, and found a metabolized angina medicine and the mood-stabilizing carbamazepine in drinking water.

-A sex hormone was detected in San Francisco's drinking water.

-The drinking water for Washington, D.C., and surrounding areas tested positive for six pharmaceuticals.

-Three medications, including an antibiotic, were found in drinking water supplied to Tucson, Ariz.

The situation is undoubtedly worse than suggested by the positive test results in the major population centers documented by the AP.

The federal government doesn't require any testing and hasn't set safety limits for drugs in water. Of the 62 major water providers contacted, the drinking water for only 28 was tested. Among the 34 that haven't: Houston, Chicago, Miami, Baltimore, Phoenix, Boston and New York City's Department of Environmental Protection, which delivers water to 9 million people.

Some providers screen only for one or two pharmaceuticals, leaving open the possibility that others are present.

The AP's investigation also indicates that watersheds, the natural sources of most of the nation's water supply, also are contaminated. Tests were conducted in the watersheds of 35 of the 62 major providers surveyed by the AP, and pharmaceuticals were detected in 28.

Yet officials in six of those 28 metropolitan areas said they did not go on to test their drinking water - Fairfax, Va.; Montgomery County in Maryland; Omaha, Neb.; Oklahoma City; Santa Clara, Calif., and New York City.

The New York state health department and the USGS tested the source of the city's water, upstate. They found trace concentrations of heart medicine, infection fighters, estrogen, anti-convulsants, a mood stabilizer and a tranquilizer.

City water officials declined repeated requests for an interview. In a statement, they insisted that "New York City's drinking water continues to meet all federal and state regulations regarding drinking water quality in the watershed and the distribution system" - regulations that do not address trace pharmaceuticals.

In several cases, officials at municipal or regional water providers told the AP that pharmaceuticals had not been detected, but the AP obtained the results of tests conducted by independent researchers that showed otherwise. For example, water department officials in New Orleans said their water had not been tested for pharmaceuticals, but a Tulane University researcher and his students have published a study that found the pain reliever naproxen, the sex hormone estrone and the anti-cholesterol drug byproduct clofibric acid in treated drinking water.

Of the 28 major metropolitan areas where tests were performed on drinking water supplies, only Albuquerque; Austin, Texas; and Virginia Beach, Va.; said tests were negative. The drinking water in Dallas has been tested, but officials are awaiting results. Arlington, Texas, acknowledged that traces of a pharmaceutical were detected in its drinking water but cited post-9/11 security concerns in refusing to identify the drug.

The AP also contacted 52 small water providers - one in each state, and two each in Missouri and Texas - that serve communities with populations around 25,000. All but one said their drinking water had not been screened for pharmaceuticals; officials in Emporia, Kan., refused to answer AP's questions, also citing post-9/11 issues.

Rural consumers who draw water from their own wells aren't in the clear either, experts say.

The Stroud Water Research Center, in Avondale, Pa., has measured water samples from New York City's upstate watershed for caffeine, a common contaminant that scientists often look for as a possible signal for the presence of other pharmaceuticals. Though more caffeine was detected at suburban sites, researcher Anthony Aufdenkampe was struck by the relatively high levels even in less populated areas.

He suspects it escapes from failed septic tanks, maybe with other drugs. "Septic systems are essentially small treatment plants that are essentially unmanaged and therefore tend to fail," Aufdenkampe said.

Even users of bottled water and home filtration systems don't necessarily avoid exposure. Bottlers, some of which simply repackage tap water, do not typically treat or test for pharmaceuticals, according to the industry's main trade group. The same goes for the makers of home filtration systems.

Contamination is not confined to the United States. More than 100 different pharmaceuticals have been detected in lakes, rivers, reservoirs and streams throughout the world. Studies have detected pharmaceuticals in waters throughout Asia, Australia, Canada and Europe - even in Swiss lakes and the North Sea.

For example, in Canada, a study of 20 Ontario drinking water treatment plants by a national research institute found nine different drugs in water samples. Japanese health officials in December called for human health impact studies after detecting prescription drugs in drinking water at seven different sites.

In the United States, the problem isn't confined to surface waters. Pharmaceuticals also permeate aquifers deep underground, source of 40 percent of the nation's water supply. Federal scientists who drew water in 24 states from aquifers near contaminant sources such as landfills and animal feed lots found minuscule levels of hormones, antibiotics and other drugs.

Perhaps it's because Americans have been taking drugs - and flushing them unmetabolized or unused - in growing amounts. Over the past five years, the number of U.S. prescriptions rose 12 percent to a record 3.7 billion, while nonprescription drug purchases held steady around 3.3 billion, according to IMS Health and The Nielsen Co.

"People think that if they take a medication, their body absorbs it and it disappears, but of course that's not the case," said EPA scientist Christian Daughton, one of the first to draw attention to the issue of pharmaceuticals in water in the United States.

Some drugs, including widely used cholesterol fighters, tranquilizers and anti-epileptic medications, resist modern drinking water and wastewater treatment processes. Plus, the EPA says there are no sewage treatment systems specifically engineered to remove pharmaceuticals.

One technology, reverse osmosis, removes virtually all pharmaceutical contaminants but is very expensive for large-scale use and leaves several gallons of polluted water for every one that is made drinkable.

Another issue: There's evidence that adding chlorine, a common process in conventional drinking water treatment plants, makes some pharmaceuticals more toxic.

Human waste isn't the only source of contamination. Cattle, for example, are given ear implants that provide a slow release of trenbolone, an anabolic steroid used by some bodybuilders, which causes cattle to bulk up. But not all the trenbolone circulating in a steer is metabolized. A German study showed 10 percent of the steroid passed right through the animals.

Water sampled downstream of a Nebraska feedlot had steroid levels four times as high as the water taken upstream. Male fathead minnows living in that downstream area had low testosterone levels and small heads.

Other veterinary drugs also play a role. Pets are now treated for arthritis, cancer, heart disease, diabetes, allergies, dementia, and even obesity - sometimes with the same drugs as humans. The inflation-adjusted value of veterinary drugs rose by 8 percent, to $5.2 billion, over the past five years, according to an analysis of data from the Animal Health Institute.

Ask the pharmaceutical industry whether the contamination of water supplies is a problem, and officials will tell you no. "Based on what we now know, I would say we find there's little or no risk from pharmaceuticals in the environment to human health," said microbiologist Thomas White, a consultant for the Pharmaceutical Research and Manufacturers of America.

But at a conference last summer, Mary Buzby - director of environmental technology for drug maker Merck & Co. Inc. - said: "There's no doubt about it, pharmaceuticals are being detected in the environment and there is genuine concern that these compounds, in the small concentrations that they're at, could be causing impacts to human health or to aquatic organisms."

Recent laboratory research has found that small amounts of medication have affected human embryonic kidney cells, human blood cells and human breast cancer cells. The cancer cells proliferated too quickly; the kidney cells grew too slowly; and the blood cells showed biological activity associated with inflammation.

Also, pharmaceuticals in waterways are damaging wildlife across the nation and around the globe, research shows. Notably, male fish are being feminized, creating egg yolk proteins, a process usually restricted to females. Pharmaceuticals also are affecting sentinel species at the foundation of the pyramid of life - such as earth worms in the wild and zooplankton in the laboratory, studies show.

Some scientists stress that the research is extremely limited, and there are too many unknowns. They say, though, that the documented health problems in wildlife are disconcerting.

"It brings a question to people's minds that if the fish were affected ... might there be a potential problem for humans?" EPA research biologist Vickie Wilson told the AP. "It could be that the fish are just exquisitely sensitive because of their physiology or something. We haven't gotten far enough along."

With limited research funds, said Shane Snyder, research and development project manager at the Southern Nevada Water Authority, a greater emphasis should be put on studying the effects of drugs in water.

"I think it's a shame that so much money is going into monitoring to figure out if these things are out there, and so little is being spent on human health," said Snyder. "They need to just accept that these things are everywhere - every chemical and pharmaceutical could be there. It's time for the EPA to step up to the plate and make a statement about the need to study effects, both human and environmental."

To the degree that the EPA is focused on the issue, it appears to be looking at detection. Grumbles acknowledged that just late last year the agency developed three new methods to "detect and quantify pharmaceuticals" in wastewater. "We realize that we have a limited amount of data on the concentrations," he said. "We're going to be able to learn a lot more."

While Grumbles said the EPA had analyzed 287 pharmaceuticals for possible inclusion on a draft list of candidates for regulation under the Safe Drinking Water Act, he said only one, nitroglycerin, was on the list. Nitroglycerin can be used as a drug for heart problems, but the key reason it's being considered is its widespread use in making explosives.

So much is unknown. Many independent scientists are skeptical that trace concentrations will ultimately prove to be harmful to humans. Confidence about human safety is based largely on studies that poison lab animals with much higher amounts.

There's growing concern in the scientific community, meanwhile, that certain drugs - or combinations of drugs - may harm humans over decades because water, unlike most specific foods, is consumed in sizable amounts every day.

Our bodies may shrug off a relatively big one-time dose, yet suffer from a smaller amount delivered continuously over a half century, perhaps subtly stirring allergies or nerve damage. Pregnant women, the elderly and the very ill might be more sensitive.

Many concerns about chronic low-level exposure focus on certain drug classes: chemotherapy that can act as a powerful poison; hormones that can hamper reproduction or development; medicines for depression and epilepsy that can damage the brain or change behavior; antibiotics that can allow human germs to mutate into more dangerous forms; pain relievers and blood-pressure diuretics.

For several decades, federal environmental officials and nonprofit watchdog environmental groups have focused on regulated contaminants - pesticides, lead, PCBs - which are present in higher concentrations and clearly pose a health risk.

However, some experts say medications may pose a unique danger because, unlike most pollutants, they were crafted to act on the human body.

"These are chemicals that are designed to have very specific effects at very low concentrations. That's what pharmaceuticals do. So when they get out to the environment, it should not be a shock to people that they have effects," says zoologist John Sumpter at Brunel University in London, who has studied trace hormones, heart medicine and other drugs.

And while drugs are tested to be safe for humans, the timeframe is usually over a matter of months, not a lifetime. Pharmaceuticals also can produce side effects and interact with other drugs at normal medical doses. That's why - aside from therapeutic doses of fluoride injected into potable water supplies - pharmaceuticals are prescribed to people who need them, not delivered to everyone in their drinking water.

"We know we are being exposed to other people's drugs through our drinking water, and that can't be good," says Dr. David Carpenter, who directs the Institute for Health and the Environment of the State University of New York at Albany.

Wednesday, March 5, 2008

The $2 Trillion Nightmare

By BOB HERBERT

New York Times

We’ve been hearing a lot about “Saturday Night Live” and the fun it has been having with the presidential race. But hardly a whisper has been heard about a Congressional hearing in Washington last week on a topic that could have been drawn, in all its tragic monstrosity, from the theater of the absurd.


The war in Iraq will ultimately cost U.S. taxpayers not hundreds of billions of dollars, but an astonishing $2 trillion, and perhaps more. There has been very little in the way of public conversation, even in the presidential campaigns, about the consequences of these costs, which are like a cancer inside the American economy.

On Thursday, the Joint Economic Committee, chaired by Senator Chuck Schumer, conducted a public examination of the costs of the war. The witnesses included the Nobel Prize-winning economist, Joseph Stiglitz (who believes the overall costs of the war — not just the cost to taxpayers — will reach $3 trillion), and Robert Hormats, vice chairman of Goldman Sachs International.

Both men talked about large opportunities lost because of the money poured into the war. “For a fraction of the cost of this war,” said Mr. Stiglitz, “we could have put Social Security on a sound footing for the next half-century or more.”

Mr. Hormats mentioned Social Security and Medicare, saying that both could have been put “on a more sustainable basis.” And he cited the committee’s own calculations from last fall that showed that the money spent on the war each day is enough to enroll an additional 58,000 children in Head Start for a year, or make a year of college affordable for 160,000 low-income students through Pell Grants, or pay the annual salaries of nearly 11,000 additional border patrol agents or 14,000 more police officers.

What we’re getting instead is the stuff of nightmares. Mr. Stiglitz, a professor at Columbia, has been working with a colleague at Harvard, Linda Bilmes, to document, among other things, some of the less obvious costs of the war. These include the obligation to provide health care and disability benefits for returning veterans. Those costs will be with us for decades.

Mr. Stiglitz noted that nearly 40 percent of the 700,000 troops from the first gulf war, which lasted just a month, have become eligible for disability benefits. The current war is approaching five years in duration.

“Imagine then,” said Mr. Stiglitz, “what a war — that will almost surely involve more than 2 million troops and will almost surely last more than six or seven years — will cost. Already we are seeing large numbers of returning veterans showing up at V.A. hospitals for treatment, large numbers applying for disability and large numbers with severe psychological problems.”

The Bush administration has tried its best to conceal the horrendous costs of the war. It has bypassed the normal budgetary process, financing the war almost entirely through “emergency” appropriations that get far less scrutiny.

Even the most basic wartime information is difficult to come by. Mr. Stiglitz, who has written a new book with Ms. Bilmes called “The Three Trillion Dollar War,” said they had to go to veterans’ groups, who in turn had to resort to the Freedom of Information Act, just to find out how many Americans had been injured in Iraq.

Mr. Stiglitz and Mr. Hormats both addressed the foolhardiness of waging war at the same time that the government is cutting taxes and sharply increasing non-war-related expenditures.

Mr. Hormats told the committee:

“Normally, when America goes to war, nonessential spending programs are reduced to make room in the budget for the higher costs of the war. Individual programs that benefit specific constituencies are sacrificed for the common good ... And taxes have never been cut during a major American war. For example, President Eisenhower adamantly resisted pressure from Senate Republicans for a tax cut during the Korean War.”

Said Mr. Stiglitz: “Because the administration actually cut taxes as we went to war, when we were already running huge deficits, this war has, effectively, been entirely financed by deficits. The national debt has increased by some $2.5 trillion since the beginning of the war, and of this, almost $1 trillion is due directly to the war itself ... By 2017, we estimate that the national debt will have increased, just because of the war, by some $2 trillion.”

Some former presidents — Washington, Franklin Roosevelt, Truman, Eisenhower — were quoted at the hearing on the need for accountability and shared sacrifice during wartime. But this is the 21st century. That ancient rhetoric can hardly be expected to compete for media attention, even in a time of war, with the giddy fun of S.N.L.

It’s a new era.

Monday, March 3, 2008

Black Fungus Found in Chernobyl Eats Harmful Radiation

Found at Foxnews

Fungi could eat dangerous radiation to survive, an unexpected finding that could one day help feed astronauts in space — at least those willing to eat a crawling fungus.

The research began with the discovery of black fungus growing on the walls of the damaged, highly radioactive Chernobyl nuclear reactor and collected by robots.

The fungus was rich with melanin, the same pigment that gives human skin its color, protecting the skin from solar and ultraviolet radiation. Melanin is found in many, if not most, fungal species.


"The fungal kingdom comprises more species than any other plant or animal kingdom," said researcher Arturo Casadevall, an immunologist at Albert Einstein College of Medicine in New York.

Nuclear and other high-energy reactions give off ionizing radiation — dangerous rays and particles that can damage genes and thus cause mutations, and eventually cancer.

"Just as the pigment chlorophyll converts sunlight into chemical energy that allows green plants to live and grow," so might melanin help fungi make use of ionizing radiation, said nuclear medicine specialist Ekaterina Dadachova at the Albert Einstein College of Medicine.

The scientists experimented on three species of fungi. They consistently found that ionizing radiation significantly boosted the growth of fungi that contained melanin.

"In general we think of radiation as something bad or harmful. Here we have a situation where these fungi appear to benefit, which is unexpected," Casadevall told LiveScience.

For example, the researchers exposed two kinds of fungi — one that naturally contained melanin (Wangiella dermatitidis) and another that scientists induced to make the pigment (Crytococcus neoformans) — to levels of ionizing radiation about 500 times higher than normal, the doses one might see at high altitudes where atmospheric shielding from cosmic rays is lessened.

Both species grew significantly faster, as detailed in the May 23 issue of the journal PLoS ONE.

The researchers stressed these findings do not mean fungi can eat radioactive matter and somehow cleanse it. Rather, the fungi can simply harness the energy that radioactive materials give off.

The ability of fungi to live off ionizing radiation could prove useful to people.

"Since ionizing radiation is prevalent in outer space, astronauts might be able to rely on fungi as an inexhaustible food source on long missions or for colonizing other planets," Dadachova said.

Casadevall also noted that the melanin in fungi is no different chemically from the melanin in human skin.

"It's pure speculation — but not outside the realm of possibility — that melanin could be providing energy to skin cells," he said. "While it wouldn't be enough energy to fuel a run on the beach, maybe it could help you to open an eyelid."

Monday, February 25, 2008

Man dies in cake-eating contest

Found at BBC News

An inquest is to be held on a man who died during a contest to see who could eat the most fairy cakes.

The man, thought to be from Birmingham, collapsed at a Swansea nightclub during the event at the end of a party to raise funds for an art exhibition.

Police say there are no suspicious circumstances following the incident at the city's Monkey Cafe and Bar early on Friday.

The coroner has been informed and the family have been told.

It is believed attempts were made by staff and customers at the nightclub to revive the man.

In a statement, club owners Amanda Davey and Paul Dyke said: "We are all devastated by this tragic accident.

"We are all in shock.

"It was a tragic accident and very sad and should serve as a cautionary tale.

"Our deepest sympathy goes out to his family."

A South Wales Police spokesman said: "There are no suspicious circumstances and a file is being prepared for the coroner."

Monday, February 18, 2008

Cancer and the bacterial connection

By Brendan Borrell, Special to The Times

IN the 1890s, a New York surgeon named William Coley tested a radical cancer treatment. He took a hypodermic needle teeming with bacteria and plunged it into the flesh of patients.

After suffering through weeks of chills and fevers, many showed significant regression of their tumors, but even Coley himself could not explain the phenomenon.

His experiments were sparked by the observation that certain cancer patients improved after contracting infections. One patient experienced regression in a tumor in her arm after developing Saint Anthony's fire, a streptococcus skin infection.

Doctors at the time considered Coley's bacterial mixtures to be more black magic than medicine, and with the advent of radiation therapy, the well-meaning doctor was soon consigned to the annals of quackery.

But today, some scientists think Coley had it right: Germs can teach our bodies how to fight back against tumors. Dr. John Timmerman, a cancer immunotherapy expert at UCLA's Jonsson Cancer Center, says this revolution has produced "the most exciting sets of compounds in cancer immunology."

These scientists have not yet proved their case. But new studies are revealing that certain cancers may be reduced by exposure to disease-causing bacteria and viruses, and pharmaceutical companies are testing anticancer treatments that capitalize on the concept by using bacterial elements to boost the body's natural immunity.

The studies also imply that our cleaner, infection-free lifestyles may be contributing to the rise in certain cancers over the last 50 years, scientists say, because they make the immune system weaker or less mature. Germs cause disease but may also fortify the body, a notion summed up in a 2006 report by a team of Canadian researchers as "whatever does not kill me makes me stronger."

Almost a century after Coley, in the 1980s, dermatologists began noticing that patients with severe acne, which is caused by another type of bacterium, have reduced rates of skin cancer, lymphoma and leukemia. According to a paper by Dr. Mohammad Namazi at the Shiraz University of Medical Sciences in Iran, studies showed that these bacteria, when injected into animals, appear to stimulate the immune system and shrink tumors.

More recent evidence for this phenomenon comes from studies on cotton and livestock workers, who are constantly breathing endotoxins, a component of bacterial cell walls that causes swelling of lung tissue.

In reports published in the last two years, Harvey Checkoway, a University of Washington epidemiologist, has found that female cotton workers in Shanghai have a 40% to 60% lower risk of lung, breast, and pancreas cancer than other factory workers.

Other recent studies by Giuseppe Mastrangelo at the University of Padua in Italy found that dairy farmers exposed to high levels of manure dust are up to five times less likely to develop lung cancer than their colleagues who work in open fields.

For the dairy farmers and cotton workers, "it's good news and bad news," Checkoway says. They have lower rates of cancer but tend to have higher rates of other respiratory problems. Sniffing cotton dust or inducing pimples is never going to be a therapy, he says, but studying the body's reactions to bacteria could explain why cancer rates go down upon endotoxin exposure. And that might help in developing anticancer drugs.

Dr. Arthur Krieg, chief scientific officer of the Boston-based Coley Pharmaceutical Group, thinks the success of Coley's toxins comes largely from a difference between DNA of humans and bacteria and viruses.

In 1995, Krieg was at the University of Iowa working with strands of DNA created in the lab, hoping to find a way to turn off genes involved in the autoimmune disease lupus. To his surprise, this DNA stimulated the immune cells he was studying in lab dishes. "I got interested, and I got puzzled," he says.

His synthetic DNA contained several regions called CpGs. In humans, that region has a kind of chemical "cap" on it, but bacteria -- and Krieg's synthetic DNA -- lack that cap. Thus, in effect, exposure to that CpG makes the body "think" it's being assaulted by pathogens, and triggers the immune system to shift into attack mode -- and, in doing so, more effectively battle cancer cells.

Krieg saw medical potential: Maybe one could design small drugs with CpGs in them and use them as immunity boosters. After patenting the method, he left his university job and founded Coley Pharmaceutical Group, which was acquired by the New York-based drug company Pfizer in January.

Five years after his discovery, Krieg's first compound has proved safe in early trials but has not yet been proved effective. Last year, the injected compound failed to increase survival time in a trial of 1,600 lung cancer patients also undergoing chemotherapy. But Krieg thinks it will prove effective in other patients: "It's just a matter of finding the right way to use it," he says.

Timmerman is a strong believer in CpGs, and has been using them with the antibody drug Rituximab in his lab research on mice. Finding the right drug combination is key, he says: "It's very naive to think that a single off-the-shelf immune stimulant is going to magically treat cancer."

Krieg's CpG-based chemicals have proved useful in another arena. Because CpGs boost the immune system, they also can enhance certain vaccines. In a trial sponsored by the U.S. Defense Advanced Research Projects Agency, one of Krieg's chemicals, VaxImmune, accelerated the body's response to anthrax vaccine by a factor of two -- from 40 days to 20. Other collaborations are exploring using CpG-containing DNA to develop hepatitis B vaccines and anti-asthmatic drugs. (The company has many CpG compounds, four in clinical trials.)

But Don MacAdam, chief executive of MBVax Bioscience in Ancaster, Canada, is not sure that the healing properties of Coley's fluids are due to a short strand of DNA. "The immune system is very complicated," he says, "Any of these therapies that are doing one little thing are very likely to fail."

And so MacAdam wants to revive the formulation that Coley himself found most effective -- a mixture of two kinds of bacteria, Streptococcus and Serratia. Such an extract would contain naturally occurring CpGs, endotoxins and other bacterial components that may have therapeutic potential.

MacAdam has solved Coley's major difficulty: maintaining consistency of the brew from batch to batch. His preparation has been tested on terminal cancer patients outside the U.S. and Canada, and he contends that 24 in 38 patients have shown signs of tumor regression, although nothing is published yet. Dr. Vikas Sukhatme, a professor at Harvard Medical School, says he hopes to run clinical trials once the product has been manufactured according to Food and Drug Administration guidelines.

Other groups have been experimenting with injections of other types of heat-killed bacteria, including Myobacterium vaccae, a tuberculosis relative. In two studies in January's European Journal of Cancer, researchers report that these bacteria may help fight certain lung and renal cancers.

The first study is a reanalysis of a trial with 162 patients who received heat-killed bacteria (and chemotherapy). In the original study, the treatment didn't seem to improve survival and in 2004, the company developing the therapy, London-based Silence Therapeutics, gave up on Mycobacterium.

But John Stanford, a shareholder in the company and a researcher at University College London, says these studies were poorly designed and analyzed. When he and collaborators re-analyzed the results, they found that Mycobacterium injections could increase survival of adenocarcinoma patients by four months. Stanford believes that part of the bacterial cell wall switches the body from producing ineffective antibodies to sending out cancer-killing blood cells.

In the second study, researchers reported that 60 renal cancer patients injected with Myobacterium survived just as long as those treated with standard chemotherapy.

Stanford has formed a company, Immodulon Therapeutics, and wants to run trials with a stricter and more intense injection regime, to repeat the results and, hopefully, extend patients' lives longer.

Although both Krieg and Timmerman are inspired by Coley's work, they question the philosophy behind reviving Coley's preparation and using other bacterial extracts. But, Krieg says, "as a physician you have to maintain a sense of humility and avoid being overly skeptical."

Tuesday, January 22, 2008

Could The Universe Be Tied Up With Cosmic String?

ScienceDaily (Jan. 21, 2008) — A team of physicists and astronomers from the University of Sussex and Imperial College London have uncovered hints that there may be cosmic strings - lines of pure mass-energy - stretching across the entire Universe.

Cosmic strings are predicted by high energy physics theories, including superstring theory. This is based on the idea that particles are not just little points, but tiny vibrating bits of string Cosmic strings are predicted to have extraordinary amounts of mass - perhaps as much as the mass of the Sun - packed into each metre of a tube whose width is less a billion billionth of the size of an atom.

Lead researcher Dr Mark Hindmarsh, Reader in Physics at the University of Sussex, said: “This is an exciting result for physicists. Cosmic strings are relics of the very early Universe and signposts that would help construct a theory of all forces and particles.”

His team took data from NASA's Wilkinson Microwave Anisotropy Probe (WMAP), which is a satellite currently mapping the intensity of cosmic microwaves from all directions, and carefully compared the predictions of what should be seen with and without strings.

Dr Hindmarsh said: “We cannot yet see these strings directly. They are many billion light years away. We can only look for indirect evidence of their existence through precision measurements of the cosmic microwave background, of cosmic rays, gravitational radiation, and looking for double images of distant quasars.”

The four-person team are members of COSMOS, the UK's world-leading cosmology supercomputing consortium fronted by Stephen Hawking. Using a Silicon Graphics supercomputer they made predictions of how the strings would affect the Cosmic Microwave Background, relic radio waves from the Big Bang which fill the universe. It turned out that the best explanation for the pattern of this radiation was a theory which included strings.

Dr Hindmarsh said that better data is required before the existence of cosmic strings can be confirmed. He hopes this will be produced by the European Space Agency's Planck Satellite mission (due for launch this year).

The results are published in Physical Review Letters on 18 January, 2008.

Adapted from materials provided by University of Sussex, via AlphaGalileo.

Thursday, January 17, 2008

'Darkest ever' material created

By Helen Briggs
BBC News science reporter


The "darkest ever" substance known to science has been made in a US laboratory.

The material was created from carbon nanotubes - sheets of carbon just one atom thick rolled up into cylinders.

Researchers say it is the closest thing yet to the ideal black material, which absorbs light perfectly at all angles and over all wavelengths.

The discovery is expected to have applications in the fields of electronics and solar energy.

Theoretical clues

An ideal black object absorbs all the colours of light and reflects none of them. In theory, it should be possible to make something that approaches the "perfect absorber".

They've made the blackest material known to science
Prof Sir John Pendry

But it has proved difficult to construct an object that does not reflect light at all.

Researchers at Rensselaer Polytechnic Institute in Troy, New York, turned to carbon nanotubes - structures made from carbon, billionths of a metre across, that have unique properties.

Theory suggests that nanotubes might make a super black object, and experts are just starting to test these predictions.

A team led by Dr Pulickel Ajayan, who is presently at Rice University in Houston, Texas, built an array of vertically aligned, low-density carbon nanotubes. Dr Shawn Lin measured the optical properties.

The roughness of the material's surface was tuned to minimise its optical reflectance.



Experiments showed that this "forest" of carbon nanotubes was very good at absorbing light, and very poor at reflecting it.

Reporting their findings in the journal Nano Letters, Dr Ajayan, Dr Lin and colleagues say the reflectance of the material is three times lower than previously achieved.

This makes it the "darkest man-made material ever".

"The periodic nanotube structures make an ideal candidate for creating superdark materials, because it allows one to tailor light absorption by controlling the dimensions and periodicities of nanotubes in the structure," said Dr Ajayan.

Commenting on the study, Professor Sir John Pendry, who first predicted that such a discovery might be possible, said the results were promising.

"They've made the blackest material known to science," the theoretical physicist from Imperial College, London, told BBC News.

"The application will be to things like more efficient solar cells, more efficient solar panels and any application where you need to harvest light," he added.

Wednesday, January 16, 2008

World Bank Disgrace

From: http://online.wsj.com/article/SB120026972002987225.html?mod=opinion_main_review_and_outlooks


Credit Robert Zoellick for knowing how to put the best face on a profound embarrassment. On Friday, the World Bank president announced in a press release that the bank had "joined forces" with the government of India to "fight fraud and corruption" in that country's health sector. This is happening at the same time that Mr. Zoellick's colleagues are hounding bank anticorruption chief Suzanne Rich Folsom, the person primarily responsible for bringing the scandals to light.

Corruption is an endemic problem in bank projects, swallowing unknown but significant chunks from its $30 billion-plus annual portfolio. No less a problem has been the bank staff's ferocious resistance to anything that might stand in the way of its lending ever more money to projects run by the same governments that tolerate this malfeasance.


Yet nothing we've seen so far can compare to what has now been uncovered about five health projects in India, involving $569 million in loans. The projects were the subject of a "Detailed Implementation Review," a lengthy forensic examination undertaken by Ms. Folsom's Department of Institutional Integrity, known within the bank as INT. As of this writing the bank has not publicly released the review, though it's been shared with the bank's board. But we've seen a copy and are posting its executive summary on wsj.com/opinion and OpinionJournal.com (click here to see it). We are also posting photographs that show the real price that corruption in bank projects exacts on the poor. Here are some of the lowlights:

In the $54 million "Food and Drug Capacity Building Project," for which money is still being disbursed, the INT found "questionable procurement practices, some of which indicate fraud and corruption, in contracts representing 87 percent of the number of pieces and 88 percent of the total value of equipment procured." That is nearly $9 of every $10 in aid funds.

For the $194 million "Second National AIDS Control Project," the INT discovered that "some of the test kits supplied by particular companies often performed poorly by producing erroneous or invalid results, potentially resulting in the further spread of disease."

In the $114 million "Malaria Control Project," the review found "numerous indicators of poor product quality in the bed nets supplied by the firms." And in the $125 million "Tuberculosis Control Project," the INT discovered "bidders sharing the same address and telephone numbers, unit prices showing a common formula, and indicators of intent to split contract awards among several bidders."

After visiting 55 hospitals connected to the bank's $82 million "Orissa Health Systems Development Project" (Orissa is one of India's poorest states), INT investigators found "uninitiated and uncompleted work, severely leaking roofs, crumbling ceilings, molding walls, and non-functional water, sewage, and/or electrical systems." It also found "neonatal equipment that lacked adequate electrical grounding, potentially exposing babies and their medical staff to electrical shocks."

All this would be bad enough if Indian companies or officials were making off with ill-gotten gains behind the backs of World Bank staff. Instead, the INT found evidence of the bank repeatedly looking the other way. In the case of Orissa's 55 "hospitals," the INT found that the "construction management consultants (CMCs) who supervised the work certified that 38 of these hospitals to be complete to project specifications." In the AIDS Control Project, "the bank appeared to pay scant attention to the performance and quality of the goods supplied to the blood banks and testing centers, instead focusing on the number of such facilities being erected."

The report goes on in this vein for hundreds of pages. With the exception of Paul Volcker's investigation of the U.N. Oil for Food scandal, we can think of no comparable review of an international organization that has brought such damaging facts to light, certainly not one that was internally conducted.

Yet not only does Mr. Zoellick's press release fail to praise INT's dogged achievement, it ignores Ms. Folsom altogether. It does, however, give pride of place to bank managing director Ngozi Okonjo-Iweala, who was recently hired by Mr. Zoellick and is quoted as saying she is encouraged by the Indian government's "strong resolve" to deal with corruption.

We'll believe that resolve when we see it. Such promises would be more credible if Mr. Zoellick took meaningful steps to hold accountable those in the bank who acquiesce in this corruption. Former President Paul Wolfowitz showed real spine when he stopped lending to a related Indian health project after a previous INT investigation uncovered fraud. Yet lending to Indian health projects resumed the moment he departed last year.

We wonder, for example, what this now-documented Indian corruption means for the career of Praful Patel, who has been running the bank's South Asia operations since 2003, and for Managing Director Graeme Wheeler, who until recently oversaw Mr. Patel's work. Instead of accountability for these supervisors, the bank offers up the Orwellian contrivance by which Ms. Folsom has been whited-out from this story, like the proverbial vanishing commissar.

The foreign aid lobby sometimes says that corruption is the inevitable price of "doing good" in the developing world. Our online readers should look at the photographs of hazardous laboratories and sewage overflowing in hospitals, and wonder how anyone can make that case with a clear conscience.

Friday, January 11, 2008

Hubble finds double Einstein Ring

By http://www.spacetelescope.org/news/html/heic0803.html

10-Jan-2008: The NASA/ESA Hubble Space Telescope has revealed a never-before-seen optical alignment in space: a pair of glowing rings, one nestled inside the other like a bull's-eye pattern. The double-ring pattern is caused by the complex bending of light from two distant galaxies strung directly behind a foreground massive galaxy, like three beads on a string.

More than just a novelty, a very rare phenomenon found with the Hubble Space Telescope can offer insight into dark matter, dark energy, the nature of distant galaxies, and even the curvature of the Universe. A double Einstein ring has been found by an international team of astronomers led by Raphael Gavazzi and Tommaso Treu of the University of California, Santa Barbara. The discovery is part of the ongoing Sloan Lens Advanced Camera for Surveys (SLACS) program. They are reporting their results at the 211th meeting of the American Astronomical Society in Austin, Texas, USA. A paper has been submitted to The Astrophysical Journal.

The phenomenon, called gravitational lensing, occurs when a massive galaxy in the foreground bends the light rays from a distant galaxy behind it, in much the same way as a magnifying glass would. When both galaxies are exactly lined up, the light forms a circle, called an “Einstein ring”, around the foreground galaxy. If another more distant galaxy lies precisely on the same sightline, a second, larger ring will appear.

The odds of seeing such a special alignment are so small that Tommaso says that they “hit the jackpot” with this discovery.

Such stunning cosmic coincidences reveal so much about nature. Dark matter is not hidden to lensing,” added Leonidas Moustakas of the Jet Propulsion Laboratory in Pasadena, California, USA. “The elegance of this lens is trumped only by the secrets of nature that it reveals.

The massive foreground galaxy is almost perfectly aligned in the sky with two background galaxies at different distances. The foreground galaxy is 3 billion light-years away. The inner ring and outer ring are comprised of multiple images of two galaxies at a distance of 6 billion and approximately 11 billion light-years.

SLACS team member Adam Bolton of the University of Hawaii's Institute for Astronomy in Honolulu first identified the lens in the Sloan Digital Sky Survey (SDSS). “The original signature that led us to this discovery was a mere 500 photons (particles of light) hidden among 500,000 other photons in the SDSS spectrum of the foreground galaxy,” commented Bolton.

The twin rings were clearly visible in the Hubble image”, added Tommaso. “When I first saw it I said ‘wow, this is insane!’ I could not believe it!

The distribution of dark matter in the foreground galaxies that is warping space to create the gravitational lens can be precisely mapped. In addition, the geometry of the two Einstein rings allowed the team to measure the mass of the middle galaxy precisely to be a value of 1 billion solar masses. The team reports that this is the first measurement of the mass of a dwarf galaxy at cosmological distance (redshift of z=0.6).

A sample of several dozen double rings such as this one would offer a purely independent measure. The comparative radius of the rings could also be used to provide an independent measure of the curvature of space by gravity.

Observations of the cosmic microwave background (a relic from the Big Bang) favour flat geometry. A sample of 50 suitable double Einstein rings would be sufficient to measure the dark matter content of the Universe and the equation of state of the dark energy (a measure of its pressure) to 10 percent precision. Other double Einstein rings could be found with wide-field space telescope sky surveys that are being proposed for the Joint Dark Energy Mission (JDEM) and recently recommended by the National Research Council.

Wednesday, January 9, 2008

Time Travel in the Brain

By DANIEL GILBERT, RANDY BUCKNER


What are you doing when you aren't doing anything at all? If you said "nothing," then you have just passed a test in logic and flunked a test in neuroscience. When people perform mental tasks--adding numbers, comparing shapes, identifying faces--different areas of their brains become active, and brain scans show these active areas as brightly colored squares on an otherwise dull gray background. But researchers have recently discovered that when these areas of our brains light up, other areas go dark. This dark network (which comprises regions in the frontal, parietal and medial temporal lobes) is off when we seem to be on, and on when we seem to be off. If you climbed into an MRI machine and lay there quietly, waiting for instructions from a technician, the dark network would be as active as a beehive. But the moment your instructions arrived and your task began, the bees would freeze and the network would fall silent. When we appear to be doing nothing, we are clearly doing something. But what?


The answer, it seems, is time travel.

The human body moves forward in time at the rate of one second per second whether we like it or not. But the human mind can move through time in any direction and at any speed it chooses. Our ability to close our eyes and imagine the pleasures of Super Bowl Sunday or remember the excesses of New Year's Eve is a fairly recent evolutionary development, and our talent for doing this is unparalleled in the animal kingdom. We are a race of time travelers, unfettered by chronology and capable of visiting the future or revisiting the past whenever we wish. If our neural time machines are damaged by illness, age or accident, we may become trapped in the present. Alzheimer's disease, for instance, specifically attacks the dark network, stranding many of its victims in an endless now, unable to remember their yesterdays or envision their tomorrows.

Why did evolution design our brains to go wandering in time? Perhaps it's because an experience is a terrible thing to waste. Moving around in the world exposes organisms to danger, so as a rule they should have as few experiences as possible and learn as much from each as they can. Although some of life's lessons are learned in the moment ("Don't touch a hot stove"), others become apparent only after the fact ("Now I see why she was upset. I should have said something about her new dress"). Time travel allows us to pay for an experience once and then have it again and again at no additional charge, learning new lessons with each repetition. When we are busy having experiences--herding children, signing checks, battling traffic--the dark network is silent, but as soon as those experiences are over, the network is awakened, and we begin moving across the landscape of our history to see what we can learn--for free.


Animals learn by trial and error, and the smarter they are, the fewer trials they need. Traveling backward buys us many trials for the price of one, but traveling forward allows us to dispense with trials entirely. Just as pilots practice flying in flight simulators, the rest of us practice living in life simulators, and our ability to simulate future courses of action and preview their consequences enables us to learn from mistakes without making them. We don't need to bake a liver cupcake to find out that it is a stunningly bad idea; simply imagining it is punishment enough. The same is true for insulting the boss and misplacing the children. We may not heed the warnings that prospection provides, but at least we aren't surprised when we wake up with a hangover or when our waists and our inseams swap sizes. The dark network allows us to visit the future, but not just any future. When we contemplate futures that don't include us--Will the NASDAQ be up next week? Will Hillary run in 2008?--the dark network is quiet. Only when we move ourselves through time does it come alive.

Perhaps the most startling fact about the dark network isn't what it does but how often it does it. Neuroscientists refer to it as the brain's default mode, which is to say that we spend more of our time away from the present than in it. People typically overestimate how often they are in the moment because they rarely take notice when they take leave. It is only when the environment demands our attention--a dog barks, a child cries, a telephone rings--that our mental time machines switch themselves off and deposit us with a bump in the here and now. We stay just long enough to take a message and then we slip off again to the land of Elsewhen, our dark networks awash in light.

Gilbert and Buckner are professors of psychology at Harvard. Gilbert's Stumbling on Happiness was published last May.

Tuesday, January 8, 2008

U.S. Demand for Human Hair Grows, Used in Wigs, Pizza

Associated Press

FLORIDA CITY, Fla. — Walking into the small Florida City warehouse, Blair Blacker pauses to survey the towering pyramid of canvas bundles, each about the size of a punching bag, that contain the stock-in-trade of his business: human hair.

About 15 tons of it on a recent day, imported from China, neatly pressed into mats and ready to ship to farmers and nursery growers who swear by the horticultural benefits of Blacker's hairy wares.

"If you had told me when I was flying combat helicopters in Vietnam that one day I'd be sitting on 30,000 pounds of human hair," said Blacker, a retired Army colonel-turned-entrepreneur, "I'd have said you were crazy."


The mats stored in southern Miami-Dade County are part of a world marketplace for human hair. Uses range from the obvious, such as false eyelashes and wigs, to the more obscure: it's a common raw-material source for l-cysteine, an amino acid frequently used in baked goods such as pizza dough and bagels.

China and India exported more than $154 million worth of human hair last year, according to United Nations trade statistics. They are Blacker's main suppliers.

"It's not processed or dyed like a lot of hair we have here," said Blacker, whose own hair is silvery and neatly cropped.

The product, marketed as SmartGrow, is effective in keeping out weeds, and has even shown signs of increasing yield in crops like tomatoes, according to University of Florida scientists.

"It's really exciting. The first trial was just outstanding," said Aaron Palmateer, an associate professor of plant pathology who has conducted tests on the SmartGrow product at UF's Tropical Research and Education Center in Homestead.

There is an admitted yuck factor to using hair in lieu of herbicide, but Palmateer points out that common agricultural methods can be similarly unappetizing.

"For people who say, 'Oh my God, this is hair' and think it's disgusting, they should know these farmers put manure on tomatoes like its going out of style," said Palmateer.

Luis Naranjo, owner of one of the largest wholesale nursery operations in South Miami-Dade, swears by the hirsute stuff.

"In the beginning, we were saying, 'Human hair? What is this?"' said Naranjo. He now expects 80 percent of his nearly 1 million plants, like ground orchids, at Octavio Taylor Nurseries will be cozily blanketed with the mats by this spring.

The hair mats saved him $45,000 in pesticides last year, and $200,000 in labor. "We can't raise our prices the way the market is today, so we need to keep expenses down," said Naranjo, who has been a grower for two decades.

The mats range in size from 25-foot sheets that can be custom-cut for row crops like tomatoes to golfball-sized cubes to tuck around the roots of potted ficus trees.

Wal-Mart began selling the mats for home gardeners last spring in about 60 stores in central Florida. Dollar General just signed on to sell the smaller-size sheets at 1,000 of its stores.

SmartGrow relies on two hair brokers — in China and India — to procure the hair, which is boiled in 120-degree water, dried, loaded onto 40-foot boats and shipped via waterway to a port city in China. Then it is transported to the small town of Zhaoyuan, home of the SmartGrow factory.

The mass of strands is loaded onto an old-style needle-punch machine, formerly used to make carpets.

A hopper blows air through the hair to loosen it, and the strands are then woven into a loose felt-like mat of mostly dark and shiny follicles, with the occasional gray strand peeping through.

SmartGrow began as the brainstorm of Phil McCrory, an Alabama hairstylist, nearly 20 years ago. McCrory was watching television coverage of the massive oil spill in Alaska caused by the Exxon Valdez in 1989, when he noticed oil-covered otters swimming to shore.

"I noticed how their fur soaked up the oil, and it just clicked," said McCrory, who used the clippings from his Huntsville salon — and his wife's pantyhose — to develop a prototype.

A few years later, Blacker was running a company in Alabama, World Response Group, that specialized in oil and chemical remediation products when a colleague walked into his office with a matted wad of McCrory's making.

Blacker bought the patent from McCrory — but found the oil industry wasn't interested. Then he started getting calls from growers wanting to buy his product in bulk.

"That blew my mind," said Blacker, who was surprised to learn that hair had a folk-remedy reputation for repelling deer and fertilizing plants.

"It was sort of an old wives' tale," said Blacker. He shut down the business, boned up on the science of hair, and decided to relocate to the Homestead area to be closer to the agricultural industry — and potential customers.

McCrory gave up hairstyling to sell what he used to sweep into the garbage. He also stands to make royalties if SmartGrow takes off.

The company's sales team has been met with a few raised eyebrows.

One grower in North Carolina, after hearing the sales pitch, "asked if he was on Candid Camera," said Mike Foley, executive vice president in charge of sales.

The hair mats recently received certification from the Organic Materials Review Institute allowing it to be used on farms complying with USDA-approved organic methods. Another group of UF scientists at the Gulf Coast Research and Education Center in Balm, Florida, are studying the hair mats' effect on bell peppers, blueberries and other crops.

Palmateer, the UF scientist, is now examining why the mats are increasing plant growth and crop yield.

"It's still one of the unknowns," said Palmateer, who said he's noticed a "significant" increase in the yield of tomato plants grown in containers.

The original use for the mats may be making a comeback, too.

The oil-capturing hair mats, marketed by Blacker's company as Ottimats, were used after an oil spill off the coast of California in November.

A video of activists using the hair mats to swipe the tarry mess off a San Francisco beach has been posted on YouTube.

"It seemed to work pretty well, and it's bio-neutral," said Lance Contreras, San Francisco's operations commander for the clean-up effort.

Which is good news for Blacker, who is considering broadening sales beyond the Southeast to the West Coast.

"Here we are in little ole Florida City," said Blacker. "And we're going to help the world go green."