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Showing posts with label United States. Show all posts
Showing posts with label United States. Show all posts

Friday, April 27, 2012

Metabolic Switch for Storing or Burning Fat


From Feast to Famine: A Metabolic Switch That May Help Diabetes Treatment



Humans are built to hunger for fat, packing it on during times of feast
and burning it during periods of famine. But when deluged by foods rich
in fat and sugar, the modern waistline often far exceeds the need to
store energy for lean times, and the result has been an epidemic of
diabetes, heart disease and other obesity-related problems.

The Salk researchers discovered that mice lacking a protein known as fibroblast growth factor 1 (FGF1) were unable to store and use fat normally. When these mice were switched from a high-fat diet to a normal diet, they developed uneven lumps of fat (seen in white in the above image) in their body tissues, suggesting that their fat metabolism mechanisms had gone awry. (Credit: Courtesy of Jae Myoung Suh, research associate, Gene Expression Laboratory)
The Salk researchers discovered that mice lacking a
protein known as fibroblast growth factor 1 (FGF1)
were unable to store and use fat normally. When these
mice were switched from a high-fat diet to a normal diet,
they developed uneven lumps of fat (seen in white in the
above image) in their body tissues, suggesting that their
fat metabolism mechanisms had gone awry. (Credit:
Courtesy of Jae Myoung Suh, research associate, Gene
Expression Laboratory)
Now, scientists at the Salk Institute for Biological Studies have identified the linchpin of fat metabolism, a protein known as fibroblast growth factor 1 (FGF1), which may open new avenues in the treatment of diabetes.

In a paper published April 22 in Nature, the Evans lab reports that FGF1 activity is triggered by a high-fat diet and that mice lacking the protein swiftly develop diabetes. This suggests that FGF1 is crucial to maintaining the body's sensitivity to insulin and normal levels of sugar in the blood.

"Because humans are good at storing fat during times of plenty, we are also excellent at surviving times of famine," says Ronald M. Evans, a professor in Salk's Gene Expression Laboratory and lead author of the paper. "The fat tissues of our body are like batteries, providing us with a steady source of energy when food is scarce. FGF1 governs the expansion and contraction of fat and thus controls the ebb and flow of energy throughout our body."

Obesity rates have soared in the United States in recent decades, with more than one third of U.S. adults and 17 percent of children and adolescents now considered obese, according to the Centers for Disease Control and Prevention.

As the number of overweight people has grown, so too has the incidence of metabolic disease, with nearly 26 million Americans estimated to have obesity-related type 2 diabetes. With annual costs exceeding well over $200 billion, obesity is a chronic disease that is consuming a huge portion of our health care dollars.

Although exercise and calorie restriction are known to be effective at preventing and treating diabetes, the obesity epidemic continues to grow and new drugs to treat the problem are desperately needed. Against this backdrop, the Evans' lab discovery is an important breakthrough -- -- and a surprise.

"The discovery of FGF1 was unexpected -- -- and intriguing -- -- because it was believed to do nothing," says Jae Myoung Suh, a postdoctoral researcher in Evans' laboratory and co-first author on the paper. "If you deplete FGF1 from the body, nothing happens when the mice are fed a steady low fat diet. But when given a high-fat, "Western-style" diet the mice develop an aggressive form of diabetes and experience a system-wide breakdown of their metabolic health."

"These abnormalities cause abdominal or stomach fat to become inflamed," says Michael Downes, a senior staff scientist in Salk's Gene Expression Laboratory and co-lead author on the paper. "This is important because inflamed visceral fat has been linked to heightened risk for diabetes and other obesity-related diseases, such as heart disease and stroke."

The scientists also found that FGF1 is regulated by the antidiabetic drug Actos, which is used to increase the body's sensitivity to insulin. But Actos and related drugs, though helpful, have side effects that limit their use.

Thus, Evans and his colleagues plan to explore whether FGF1 might point to a new way to control diabetes by avoiding the drawbacks of Actos and providing a more natural means of increasing insulin sensitivity.

The research was supported by the National Institutes of Health, the Leona M. and Harry B. Helmsley Charitable Trust and the Howard Hughes Medical Institute.

Sunday, October 23, 2011

Global Warming Is Real, New Analysis Confirms


Global warming is real, according to a major study released Oct. 20. Despite issues raised by climate change skeptics, the Berkeley Earth Surface Temperature study finds reliable evidence of a rise in the average world land temperature of approximately 1°C since the mid-1950s.

Comparison of data showing decadal land-surface average world temperature changes from 15 different sources, some going back as far as 1800. (Credit: Image courtesy of Berkeley Earth Surface Temperature)

Analyzing temperature data from 15 sources, in some cases going as far back as 1800, the Berkeley Earth study directly addressed scientific concerns raised by skeptics, including the urban heat island effect, poor station quality, and the risk of data selection bias.

On the basis of its analysis, according to Berkeley Earth's founder and scientific director, Professor Richard A. Muller, the group concluded that earlier studies based on more limited data by teams in the United States and Britain had accurately estimated the extent of land surface warming.

"Our biggest surprise was that the new results agreed so closely with the warming values published previously by other teams in the U.S. and the U.K.," Muller said. "This confirms that these studies were done carefully and that potential biases identified by climate change skeptics did not seriously affect their conclusions."

Previous studies, carried out by NOAA, NASA, and the Hadley Center, also found that land warming was approximately 1°C since the mid-1950s, and that the urban heat island effect and poor station quality did not bias the results. But their findings were criticized by skeptics who worried that they relied on ad-hoc techniques that meant that the findings could not be duplicated. Robert Rohde, lead scientist for Berkeley Earth, noted that "the Berkeley Earth analysis is the first study to address the issue of data selection bias, by using nearly all of the available data, which includes about 5 times as many station locations as were reviewed by prior groups."

Elizabeth Muller, co-founder and Executive Director of Berkeley Earth, said she hopes the Berkeley Earth findings will help "cool the debate over global warming by addressing many of the valid concerns of the skeptics in a clear and rigorous way." This will be especially important in the run-up to the COP 17 meeting in Durban, South Africa, later this year, where participants will discuss targets for reducing Greenhouse Gas (GHG) emissions for the next commitment period as well as issues such as financing, technology transfer and cooperative action.

The Berkeley Earth team includes physicists, climatologists, and statisticians from California, Oregon, and Georgia. Rohde led the development of a new statistical approach and what Richard Muller called "the Herculean labor" of merging the data sets. One member of the group, Saul Perlmutter, was recently announced as a winner of the 2011 Nobel Prize in Physics (for his work in cosmology).



The Berkeley Earth study did not assess temperature changes in the oceans, which according to the Intergovernmental Panel on Climate Change (IPCC) have not warmed as much as land. When averaged in, they reduce the global surface temperature rise over the past 50 years -- the period during which the human effect on temperatures is discernable -- to about two thirds of one degree Centigrade.

Specifically, the Berkeley Earth study concludes that:
  • The urban heat island effect is locally large and real, but does not contribute significantly to the average land temperature rise. That's because the urban regions of Earth amount to less than 1% of the land area.
  • About 1/3 of temperature sites around the world reported global cooling over the past 70 years (including much of the United States and northern Europe). But 2/3 of the sites show warming. Individual temperature histories reported from a single location are frequently noisy and/or unreliable, and it is always necessary to compare and combine many records to understand the true pattern of global warming.
  • The large number of sites reporting cooling might help explain some of the skepticism of global warming," Rohde commented. "Global warming is too slow for humans to feel directly, and if your local weather man tells you that temperatures are the same or cooler than they were a hundred years ago it is easy to believe him." In fact, it is very hard to measure weather consistently over decades and centuries, and the presence of sites reporting cooling is a symptom of the noise and local variations that can creep in. A good determination of the rise in global land temperatures can't be done with just a few stations: it takes hundreds -- or better, thousands -- of stations to detect and measure the average warming. Only when many nearby thermometers reproduce the same patterns can we know that the measurements were reliably made.
  • Stations ranked as "poor" in a survey by Anthony Watts and his team of the most important temperature recording stations in the U.S., (known as the USHCN -- the US Historical Climatology Network), showed the same pattern of global warming as stations ranked "OK." Absolute temperatures of poor stations may be higher and less accurate, but the overall global warming trend is the same, and the Berkeley Earth analysis concludes that there is not any undue bias from including poor stations in the survey.
Four scientific papers setting out these conclusions have been submitted for peer review and will form part of the literature for the next IPCC report on Climate Change. They can be accessed on: www.BerkeleyEarth.org. A video animation graphically shows global warming around the world since 1800.

Berkeley Earth is making its preliminary results public, together with its programs and dataset, in order to invite additional scrutiny. Elizabeth Muller said that "one of our goals is to make the science behind global warming readily accessible to the public." Most of the data were previously available on public websites, but in so many different locations and different formats that most people could access only a small subset of the data. The merged database, which combines 1.6 billion records, is now accessible from the Berkeley Earth website: www.BerkeleyEarth.org .

What Berkeley Earth has not done is make an independent assessment of how much of the observed warming is due to human actions, Richard Muller acknowledged. As a next step, Berkeley Earth plans to address the total warming of the oceans, with a view to obtaining a more accurate figure for the total amount of global warming observable.

More information about Berkeley Earth is available at www.BerkeleyEarth.org.

Thursday, July 7, 2011

Smart grids: New study highlights key challenges and trends in the EU


Intelligent electricity networks – smart grids – are a key component in the EU energy strategy, but substantial investments are needed to make them a reality. A new study from the European Commission's in-house science service, the Joint Research Centre (JRC), presents a review of 219 smart grid projects Europe-wide. The vast majority of investments, amounting to about €5.5 billion, were made in old Member States ("EU15"), while new Member States ("EU12") tend to lag behind.


By providing a complete catalogue of the projects to date, the report showcases how smart grids can help integrate more renewables, accommodate electric vehicles, give more control to consumers over their energy consumption, avoid blackouts and restore power quickly when outages occur.

European Commissioner for Research, Innovation and Science, Máire Geoghegan-Quinn, says: The implementation of smart grids is a significant opportunity for European industry to research, to market and to export new technologies, to create new jobs and maintain global technological leadership. We are only at the beginning of the transition to smart grids, and at this stage, sharing the results of research projects can help increase the stock of knowledge and add impetus to innovation in this field.

The report shows that Distribution System Operators (DSOs) play a leading role in coordinating smart grid deployment across Europe. DSO-led projects represent about 27% of all projects and about 67% of investments. However, the study underlines that current regulation in EU Member States tends to promote cost efficiency by reducing operation costs rather than by upgrading to a smarter system. It warns that the investment potential on smart grids will have difficulty accelerating without revising the current regulatory models. Regulation should ensure a fair sharing of costs and benefits in the set up of services platforms, as power system owners and operators are expected to sustain the majority of investments whereas several players might get benefits from smart grids.



Smart grids enable a two-way exchange of information and power between producers and consumers, and this leads to increased transparency, promoting responsible energy saving measures on the consumers' side. Success stories in the EU15 Member States confirm that consumer engagement is crucial to the effectiveness of smart electricity systems and needs to be won through trust, understanding and clear tangible benefits. For example, real-time information on electricity consumption and prices allowed consumers to save up to 10% of electricity.

The survey indicates that in almost all countries a significant amount of investment addresses the integration of different smart grid technologies. Most technologies are known, but their integration - i.e. how well they work together - is the key challenge for the success of these projects and the overall smart grid concept.

Background

This inventory compiled by the Joint Research Centre results from a request from the Directorate-General for Energy (DG ENER) to start a data collection effort to develop a catalogue of Smart Grids projects in Europe and to carry out a qualitative analysis of their results. The analysis contributed to the drafting of the Commission Communication "Smart Grids: from innovation to deployment", adopted in April 2011 [COM (2011) 202].

Links

"Smart Grid projects in Europe: lessons learned and current developments" report: JRC Smart Electricity Systems website: http://ses.jrc.ec.europa.eu/index.php?option=com_content&view=article&id=93&Itemid=137

EC Communication on Smart Grids – Smart grids: from innovation to deployment - COM(2011) 202, 12/04/2011 http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=CELEX:52011DC0202:EN:HTML:NOT

Friday, July 1, 2011

WiFi 'napping' doubles phone battery life


A Duke University graduate student has found a way to double the battery life of mobile devices – such as smartphones or laptop computers – by making changes to WiFi technology.
This is Justin Manweiler from Duke University.
Credit: Justin Manweiler

WiFi is a popular wireless technology that helps users download information from the Internet. Such downloads, including pictures, music and video streaming, can be a major drain of battery.

The energy drain is especially severe in the presence of other WiFi devices in the neighborhood. In such cases, each device has to "stay awake" before it gets its turn to download a small piece of the desired information. This means that the battery drainage in downloading a movie in Manhattan is far higher than downloading the same movie in a farmhouse in the Midwest, the researchers said.

The Duke-developed software eliminates this problem by allowing mobile devices to sleep while a neighboring device is downloading information. This not only saves energy for the sleeping device, but also for competing devices as well.

The new system has been termed SleepWell by Justin Manweiler, a graduate student in computer science under the direction of Romit Roy Choudhury, assistant professor of electrical and computer engineering at Duke's Pratt School of Engineering. The SleepWell system was presented at the ninth Association for Computing Machinery's International Conference on Mobile Systems, Applications and Services (MobiSys), being held in Washington, D.C.

Manweiler described the system by analogy: "Big cities face heavy rush hours as workers come and leave their jobs at similar times. If work schedules were more flexible, different companies could stagger their office hours to reduce the rush. With less of a rush, there would be more free time for all, and yet, the total number of working hours would remain the same."



"The same is true of mobile devices trying to access the Internet at the same time," Manweiler said. "The SleepWell-enabled WiFi access points can stagger their activity cycles to minimally overlap with others, ultimately resulting in promising energy gains with negligible loss of performance."

With cloud computing on the horizon, mobile devices will need to access the Internet more frequently -- however, such frequent access could be severely constrained by the energy toll that WiFi takes on the device's battery life, according to Roy Choudhury.

"Energy is certainly a key problem for the future of mobile devices, such as iPhones, iPads and Android smartphones," Roy Choudhury said. "The SleepWell system can certainly be an important upgrade to WiFi technology, especially in the light of increasing WiFi density."

Manweiler said that "the testing we conducted across a number of device types and situations gives us confidence that SleepWell is a viable approach for the near future."
Provided by Duke University

Monday, June 27, 2011

Is Your Child Likely to Commit a Cybercrime? Check Their Friends


The likelihood that your child will illegally download music or hack into someone's online account may depend on what his or her friends are up to, according to a new study suggesting that peer influence drives juvenile cybercrimes.
Whether a child's friends have committed cybercrimes 
is thebiggest predictor of how likely she or he is to 
engage in illegal online activities.

The study, which consisted of surveying 435 middle- and high-school students from a suburban Kentucky school district, showed that the biggest predictor of how likely a child is to engage in illegal online activities is whether his or her friends have committed cybercrimes. Previous research has primarily focused on college students.

Cybercrimes include digital piracy, such as "stealing" music or movie files by downloading them without paying, or online bullying and harassment, which can consist of sending threatening or sexual messages via email or text message. Computer hacking, also known as cybertrespassing, and viewing online pornography, which is illegal for those under 18, are also cybercrimes.

"It's important to know what your kids are doing when they're online and who they are associating with both online and offline," Thomas Holt, Michigan State University criminologist and study leader, said in a statement.



The study showed that a lack of self-control is also a major predictor of children's cybercrimes. Risk-taking, impulsive kids are more likely than other children to act on an opportunity to commit illegal online activities, according to the researchers.

Holt recommends that parents place parental-control software on their children's computers, but warns that many kids can work around these programs.

"It's not just enough to have a Net Nanny," Holt said. "Parents need to be more proactive with their kids and discuss these ethical dilemmas to using a computer, such as whether it's right or wrong to steal music or to download something without paying for it."

The study is published online in the American Journal of Criminal Justice.

Friday, June 24, 2011

Heart Valve Replacement without Opening the Chest Gives New Option for Patients with Untreatable, Non-Operative Condition



An innovative approach for implanting a new aortic heart valve without open-heart surgery is being offered at Rush University Medical Center to patients with severe aortic stenosis who are at high-risk or not suitable candidates for open heart valve replacement surgery.

"This breakthrough technology could save the lives of thousands of patients with heart valve disease who have no other therapeutic options," says Dr. Ziyad Hijazi, director of the Rush Center for Congenital and Structural Heart Disease and interventional cardiologist of the Rush Valve Clinic. The treatment is offered through a multi-center, phase IIb cohort study called the PARTNER II (Placement of AoRTic traNscathetER valves) trial.

Aortic valve stenosis (AS) is a type of valvular heart disease characterized by an abnormal narrowing of the aortic valve opening. It is a condition that affects nearly 1.5 million Americans. It causes hardening or thickening of the aortic valve leaflets, which limits leaflet motion and obstructs oxygen-rich blood flow from the heart to the rest of the body. Patients with severe AS may have symptoms of chest pain, fatigue, shortness of breath, lightheadedness or fainting. Although AS typically progresses slowly without symptoms, once symptoms occur, treatment is required. Fifty percent of patients may not survive beyond one to three years.

Traditionally, patients with symptomatic AS undergo aortic valve replacement during an open-heart surgery to alleviate symptoms, improve survival and improve quality of life. However, many patients who are at very high risk for surgery, such as elderly, frail individuals with multiple health concerns, are considered inoperable.

The PARTNER II trial will compare a pioneering technology called the Edwards SAPIEN XT valve, which is made of bovine pericardial tissue leaflets hand-sewn onto a metal frame, and a new catheter delivery system called the Edwards NovaFlex delivery system, which navigates the heart from a small incision to the femoral artery in a patient’s leg or through a small incision between the ribs and snaked up into the left ventricle. The Edwards NovaFlex delivery system positions the catheter inside the patient's original, collapsed valve, using a balloon to deploy the frame, which holds the artificial valve in place in order to restore normal blood flow. Both procedures are performed on a beating heart, without the need for open, cardiopulmonary bypass and its associated risks.



Annually, some 200,000 people in the U.S. need a new heart valve, but nearly half of them do not receive a new valve for a variety of reasons.

"Past study results show conclusively that transcatheter valve replacement is a safe and effective alternative to open surgery, which remains the 'gold standard' for most patients," says Hijazi.

Results from the first phase of the PARTNER trial showed that the rate of death from any cause at one year was 50.7 percent in the patients who received standard therapy, as compared to 30.7 percent of patients treated with transcatheter aortic valve replacement (TAVR).

The transcatheter valve procedures take about 90 minutes, compared with four to six hours for open-heart surgery. In open-heart surgery, the surgeon cuts through the breastbone, stops the heart, removes the valve and replaces it. Open-heart surgery can require a two- to three-month recovery period, compared to only a few days for the transcatheter approach.

The next generation Edwards SAPIEN XT valve in The PARTNER II trial was engineered to provide a better valve patterned after surgical heart valves and potentially decrease treatment complications.

The PARTNER trial is the world's first randomized, controlled trial of a transcatheter aortic heart valve. In this clinical phase IIb cohort, patients are randomized to receive either the new Edwards Sapien XT valve using the NovaFlex delivery system or the Edwards SAPIEN Transcatheter Heart Valve.

“The primary objective of the trial is to reduce death, major stroke and repeat hospitalization in these patients,” says Hijazi. “Additionally, we hope to improve quality-of-life indicators."

The PARTNER II trial is one of the three latest, nationwide clinical trials for minimally invasive heart valve replacement being offered through the Rush Valve Clinic, where a team of cardiac surgical and interventional experts address diseases of the aortic, mitral and pulmonary valves.

The three clinical trials include:
  • PARTNER II trial for patients with aortic stenosis
  • COMPASSION trial for patients with a dysfunctional conduit – A phase II clinical trial using the SAPIEN Transcatheter Heart Valve in patients who have a dysfunctional conduit between the right ventricle and the pulmonary artery
  • EVEREST II trial for patients with mitral regurgitation – A continued access trial using the eValve MitraClip to treat a mitral valve leak.

For more information about the PARTNER trial or any of the other clinical trials at the Rush Valve Clinic, call 312-942-6800.

Tuesday, June 21, 2011

British Library, Google in deal to digitize books



A treatise on a stuffed hippopotamus, an 18th-century English primer for Danish sailors and a description of the first engine-driven submarine are among 250,000 books to be made available online in a deal between Google and the British Library.
People work on laptops in a reading room at the British
Library in London, Monday, June 20, 2011. A treatise on
a stuffed hippopotamus, an 18th-century English primer for
Danish sailors and a description of the first engine-driven
submarine are among 250,000 books to be made available
online in a deal between Google and the British Library.
The agreement, announced Monday, will let Internet
users read, search, download and copy thousands of
texts published between 1700 and 1870.
(AP Photo/Matt Dunham)

The agreement, announced Monday, will let Internet users read, search, download and copy thousands of texts published between 1700 and 1870.

It is a small step toward the library's goal of making the bulk of its 14 million books and 1 million periodicals available in digital form by 2020.

"So far we have only been able to digitize quite a small fraction of the global collection," said the library's chief executive, Lynne Brindley. "There is a long way to go."



The deal with Google, which will see 40 million pages digitized over the next three years, will offer online researchers a selection of rarely seen works from an era of social, political, scientific and technological change that took in the Enlightenment, the Industrial Revolution and the American war of independence.

The books range from Georges Louis Leclerc's "Natural History of the Hippopotamus, or River-Horse" - which includes a description of a stuffed animal owned by the Prince of Orange - to the 1858 work "A Scheme for Underwater Seafaring," describing the first combustion engine-driven submarine.

The books are more than scholarly curiosities. British Library curator Kristian Jensen said an 18th-century guide to English for Danish mariners shows "how English began to emerge from being the language spoken by people over there on that island" to become the world's dominant tongue.

Google will pay to digitize the books, which are no longer covered by copyright restrictions. They will be available on the British Library and Google Books websites.

Peter Barron, Google's European spokesman, declined to say how much the project would cost, beyond describing it as "a substantial sum."

Google has digitized 13 million books in similar deals with more than 40 libraries around the world. But its plan to put millions of copyrighted titles online has been opposed by the publishing industry and is the subject of a legal battle in the United States.

Barron said the company's goal "is to make as wide a range of items as possible" available online.

"Having richer content means people around the world are searching more for it, and that is good for our business," he said.

Last year, the British Library announced plans to digitize up to 40 million pages of newspapers dating back three-and-a-half centuries, and it recently made thousands of 19th-century books digitized in a deal with Microsoft available as an app for iPhone and iPad devices.

More information:
Google Books: http://books.google.com/ British Library: http://www.bl.uk/

Tuesday, June 14, 2011

'Smart cars' that are actually, well, smart



Since 2000, there have been 110 million car accidents in the United States, more than 443,000 of which have been fatal — an average of 110 fatalities per day. These statistics make traffic accidents one of the leading causes of death in this country, as well as worldwide.
The researchers test their algorithm using a miniature
autonomous vehicle traveling along a track that partially
overlaps with a second track for a human-controlled vehicle,
observing incidences of collision and collision avoidance.
Photo: Melanie Gonick

Engineers have developed myriad safety systems aimed at preventing collisions: automated cruise control, a radar- or laser-based sensor system that slows a car when approaching another vehicle; blind-spot warning systems, which use lights or beeps to alert the driver to the presence of a vehicle he or she can’t see; and traction control and stability assist, which automatically apply the brakes if they detect skidding or a loss of steering control.

Still, more progress must be made to achieve the long-term goal of “intelligent transportation”: cars that can “see” and communicate with other vehicles on the road, making them able to prevent crashes virtually 100 percent of the time.

Of course, any intelligent transportation system (ITS), even one that becomes a mainstream addition to new cars, will have to contend with human-operated vehicles as long as older cars remain on the road — that is, for the foreseeable future. To this end, MIT mechanical engineers are working on a new ITS algorithm that takes into account models of human driving behavior to warn drivers of potential collisions, and ultimately takes control of the vehicle to prevent a crash.

The theory behind the algorithm and some experimental results will be published in the journal IEEE Robotics and Automation Magazine. The paper is co-authored by Rajeev Verma, who was a visiting PhD student at MIT this academic year, and Domitilla Del Vecchio, assistant professor of mechanical engineering and W. M. Keck Career Development Assistant Professor in Biomedical Engineering.

Avoiding the car that cried wolf

According to Del Vecchio, a common challenge for ITS developers is designing a system that is safe without being overly conservative. It’s tempting to treat every vehicle on the road as an “agent that’s playing against you,” she says, and construct hypersensitive systems that consistently react to worst-case scenarios. But with this approach, Del Vecchio says, “you get a system that gives you warnings even when you don’t feel them as necessary. Then you would say, ‘Oh, this warning system doesn’t work,’ and you would neglect it all the time.”

That’s where predicting human behavior comes in. Many other researchers have worked on modeling patterns of human driving. Following their lead, Del Vecchio and Verma reasoned that driving actions fall into two main modes: braking and accelerating. Depending on which mode a driver is in at a given moment, there is a finite set of possible places the car could be in the future, whether a tenth of a second later or a full 10 seconds later. This set of possible positions, combined with predictive models of human behavior — when and where drivers slow down or speed up around an intersection, for example — all went into building the new algorithm.

The result is a program that is able to compute, for any two vehicles on the road nearing an intersection, a “capture set,” or a defined area in which two vehicles are in danger of colliding. The ITS-equipped car then engages in a sort of game-theoretic decision, in which it uses information from its onboard sensors as well as roadside and traffic-light sensors to try to predict what the other car will do, reacting accordingly to prevent a crash.

When both cars are ITS-equipped, the “game” becomes a cooperative one, with both cars communicating their positions and working together to avoid a collision.

Steering clear of the ‘bad set’

Del Vecchio and Verma tested their algorithm with a laboratory setup involving two miniature vehicles on overlapping circular tracks: one autonomous and one controlled by a human driver. Eight volunteers participated, to account for differences in individual driving styles. Out of 100 trials, there were 97 instances of collision avoidance. The vehicles entered the capture set three times; one of these times resulted in a collision.

In the three “failed” trials, Del Vecchio says the trouble was largely due to delays in communication between ITS vehicles and the workstation, which represents the roadside infrastructure that captures and transmits information about non-ITS-equipped cars. In these cases, one vehicle may be making decisions based on information about the position and speed of the other vehicle that is off by a fraction of a second. “So you may end up actually being in the capture set while the vehicles think you are not,” Del Vecchio says.



One way to handle this problem is to improve the communication hardware as much as possible, but the researchers say there will virtually always be delays, so their next step is to make the system robust to these delays — that is, to ensure that the algorithm is conservative enough to avoid a situation in which a communication delay could mean the difference between crashing and not crashing.

Jim Freudenberg, a professor of electrical and computer engineering at the University of Michigan, says that although it’s nearly impossible to correctly predict human behavior 100 percent of the time, Del Vecchio and Verma’s approach is promising. “Human-controlled technologies and computer-controlled technologies are coming more and more into contact with one other, and we have to have some way of making assumptions about the human — otherwise, you can’t do anything because of how conservative you have to be,” he says.

The researchers have already begun to test their system in full-size passenger vehicles with human drivers. In addition to learning from these real-life trials, future work will focus on incorporating human reaction-time data to refine when the system must actively take control of the car and when it can merely provide a passive warning to the driver.

Eventually, the researchers also hope to build in sensors for weather and road conditions and take into account car-specific manufacturing details — all of which affect handling — to help their algorithm make even better informed decisions.

This story is republished courtesy of MIT News (http://web.mit.edu/newsoffice/), a popular site that covers news about MIT research, innovation and teaching.

Friday, April 22, 2011

Material That If Scratched, You Can Quickly and Easily Fix Yourself, With Light Not Heat



Imagine you're driving your own new car--or a rental car--and you need to park in a commercial garage. Maybe you're going to work, visiting a mall or attending an event at a sports stadium, and you're in a rush. Limited and small available spots and concrete pillars make parking a challenge. And it happens that day: you slightly misjudge a corner and you can hear the squeal as you scratch the side of your car--small scratches, but large anticipated repair costs.
Schematic of optically healing polymers. The specially 
designed polymer molecules that make up the solid 
item can be disassembled by the UV light so that they 
flow and fill in the cracks. When the light is turned off, 
the molecules reassemble themselves and the filled 
cracks become rigid again. (Credit: Zina Deretsky, 
National Science Foundation, after Burnworth et al., 
Nature, April 21, 2011)

Now imagine that that you can repair these unsightly scratches yourself--quickly, easily and inexpensively. . . . or that you can go through a car wash that can detect these and other more minor scratches and fix them as the car goes through the washing garage. Fantasy? Not exactly. Not anymore. Not according to a new discovery detailed in the April 21 issue of the journal Nature, and depicted in a short video interview and simulation: http://www.youtube.com/watch?v=h-fka0wfY8w


A team of researchers in the United States and Switzerland have developed a polymer-based material that can heal itself with the help of a widely used type of lighting. Called "metallo-supramolecular polymers," the material is capable of becoming a supple liquid that fills crevasses and gaps left by scrapes and scuffs when placed under ultraviolet light for less than a minute and then resolidifying.

"This is ingenious and transformative materials research," said Andrew Lovinger, polymers program director in NSF's Division of Materials Research. "It demonstrates the versatility and power of novel polymeric materials to address technological issues and serve society while creating broadly applicable scientific concepts."

The team involves researchers at Case Western Reserve University in Cleveland, Ohio, led by Stuart J. Rowan; the Adolphe Merkle Institute of the University of Fribourg in Switzerland, led by Christoph Weder; and the Army Research Laboratory at Aberdeen Proving Ground in Maryland, led by Rick Beyer.

The scientists envision widespread uses in the not-so-distant future for re-healable materials like theirs, primarily as coatings for consumer goods such as automobiles, floors and furniture. While their polymers are not yet ready for commercial use, they acknowledge, they now have proved that the concept works. And with that, what happens next is up to the market place. Necessity, the mother of invention, will expand the possibilities for commercial applications.

"These polymers have a Napoleon Complex," explains lead author Stuart Rowan, a professor of macromolecular engineering and science and director of the Institute for Advanced Materials at Case Western Reserve University. "In reality they're pretty small but are designed to behave like they're big by taking advantage of specific weak molecular interactions."

"Our study is really a fundamental research study," said Christoph Weder, a professor of polymer chemistry and materials and the director of the Adolphe Merkle Institute. "We tried to create materials that have a unique property matrix, that have unique functionality and that in principle could be very useful."

Specifically, the new materials were created by a mechanism known as supramolecular assembly. Unlike conventional polymers, which consist of long, chain-like molecules with thousands of atoms, these materials are composed of smaller molecules, which were assembled into longer, polymer-like chains using metal ions as "molecular glue" to create the metallo-supramolecular polymers.

While these metallo-supramolecular polymers behave in many ways like normal polymers, when irradiated with intense ultraviolet light the assembled structures become temporarily unglued. This transforms the originally solid material into a liquid that flows easily. When the light is switched off, the material re-assembles and solidifies again; its original properties are restored.

Using lamps such as those dentists use to cure fillings, the researchers repaired scratches in their polymers. Wherever they waved the light beam, the scratches filled up and disappeared, much like a cut that heals and leaves no trace on skin. While skin's healing process can be represented by time-lapse photography that spans several days or weeks, self-healing polymers heal in just seconds.

In addition, unlike the human body, durability of the material does not seem to be compromised by repeated injuries. Tests showed the researchers could repeatedly scratch and heal their materials in the same location.

Further, while heat has provided a means to heal materials for a long time, the use of light provides distinct advantages, says Mark Burnworth, a graduate student at Case Western Reserve University. "By using light, we have more control as it allows us to target only the defect and leave the rest of the material untouched."

The researchers systematically investigated several new polymers to find an optimal combination of mechanical properties and healing ability. They found that metal ions that drive the assembly process via weaker chemical interactions serve best as the light-switchable molecular glue.

They also found the materials that assembled in the most orderly microstructures had the best mechanical properties. But, healing efficiency improved as structural order decreased.

"Understanding these relationships is critical for allowing us improve the lifetime of coatings tailored to specific applications, like windows in abrasive environments" Beyer said.

And what's next? According to Rowan, "One of our next steps is to use the concepts we have shown here to design a coating that would be more applicable in an industrial setting."

Film director and art curator Aaron Rose was at least partially right when he said, "In the right light, at the right time, everything is extraordinary." Self-healing polymers certainly are extraordinary.

The research was funded by the Army Research Office of the U.S. Army Research Laboratory, the U.S. National Science Foundation, and the Adolphe Merkle Foundation.

Saturday, September 4, 2010

Model for Implantable Artificial Kidney to Replace Dialysis Unveiled


UCSF researchers have unveiled a prototype model of the first implantable artificial kidney, in a development that one day could eliminate the need for dialysis.
A model of the implantable bioartificial kidney shows the two-stage system. Thousands of nanoscale filters remove toxins from the blood, while a BioCartridge of renal tubule cells mimics the metabolic and water-balance roles of the human kidney. (Credit: Image courtesy of UCSF)

The device, which would include thousands of microscopic filters as well as a bioreactor to mimic the metabolic and water-balancing roles of a real kidney, is being developed in a collaborative effort by engineers, biologists and physicians nationwide, led by Shuvo Roy, PhD, in the UCSF Department of Bioengineering and Therapeutic Sciences.

The treatment has been proven to work for the sickest patients using a room-sized external model developed by a team member in Michigan. Roy's goal is to apply silicon fabrication technology, along with specially engineered compartments for live kidney cells, to shrink that large-scale technology into a device the size of a coffee cup. The device would then be implanted in the body without the need for immune suppressant medications, allowing the patient to live a more normal life.

"This device is designed to deliver most of the health benefits of a kidney transplant, while addressing the limited number of kidney donors each year," said Roy, an associate professor in the UCSF School of Pharmacy who specializes in developing micro-electromechanical systems (MEMS) technology for biomedical applications. "This could dramatically reduce the burden of renal failure for millions of people worldwide, while also reducing one of the largest costs in U.S. healthcare."

The team has established the feasibility of an implantable model in animal models and plans to be ready for clinical trials in five to seven years.

End-stage renal disease, or chronic kidney failure, affects more than 500,000 people per year in the United States alone, and currently is only fully treated with a kidney transplant. That number has been rising between 5-7 percent per year, Roy said, in part because of the kidney damage associated with diabetes and hypertension.

Yet transplants are difficult to obtain: a mere 17,000 donated kidneys were available for transplant last year, while the number of patients on the transplant waiting list currently exceeds 85,000, according to the Organ Procurement ant Transplant Network.

Roughly 350,000 patients are reliant on kidney dialysis, Roy explained, which comes at a tremendous cost. The Medicare system alone spends $25 billion on treatments for kidney failure -- more than 6 percent of the total budget -- while the disease affects only 1 percent of Medicare recipients, he said. That cost includes almost $75,000 per patient each year for dialysis, according to the U.S. Renal Data System.

Dialysis also takes a human toll. A typical dialysis schedule is three sessions per week, for 3 to 5 hours per session, in which blood is pumped through an external circuit for filtration. This is exhausting for patients and only replaces 13 percent of kidney function, Roy said. As a result, only 35 percent of patients survive for more than 5 years.

With the limited supply of donors, that means thousands of patients die each year waiting for a kidney.

The implantable device aims to eradicate that problem. The two-stage system uses a hemofilter to remove toxins from the blood, while applying recent advances in tissue engineering to grow renal tubule cells to provide other biological functions of a healthy kidney. The process relies on the body's blood pressure to perform filtration without needing pumps or an electrical power supply.

The project exemplifies the many efforts under way at UCSF to build collaborations across scientific disciplines that accelerate the translation of academic research into real solutions for patients, according to Mary Anne Koda-Kimble, PharmD, dean of the UCSF School of Pharmacy.

"This is a perfect example of the work we are doing at UCSF to address some of the most critical medical issues of our time, both in human and financial costs," Koda-Kimble said. "This project shows what can be accomplished by teams of scientists with diverse expertise, collaborating to profoundly and more quickly improve the lives of patients worldwide."

The creation of the Department of Bioengineering and Therapeutic Sciences -- a joint department in the UCSF schools of Pharmacy and Medicine -- was itself an effort to promote translational research at UCSF by forming collaborations across biomedical specialties. Roy is also a founding faculty member of the UCSF Pediatric Device Consortium, which aims to accelerate the development of innovative devices for children health, and a faculty affiliate of the California Institute for Quantitative Biosciences (QB3) at UCSF.

His team is collaborating with 10 other teams of researchers on the project, including the Cleveland Clinic where Roy initially developed the idea, Case Western Reserve University, University of Michigan, Ohio State University, and Penn State University.

The first phase of the project, which has already been completed, focused on developing the technologies required to reduce the device to a size that could fit into the body and testing the individual components in animal models. In the second and current phase, the team is doing the sophisticated work needed to scale up the device for humans. The team now has the components and a visual model and is pursuing federal and private support to bring the project to clinical use.

Thursday, August 26, 2010

Electricity collected from the air could become the newest alternative energy source


Imagine devices that capture electricity from the air ― much like solar cells capture sunlight ― and using them to light a house or recharge an electric car. Imagine using similar panels on the rooftops of buildings to prevent lightning before it forms. Strange as it may sound, scientists already are in the early stages of developing such devices, according to a report presented today at the 240th National Meeting of the American Chemical Society (ACS).
Powering homes with electricity collected from the air may
be possible after scientists report solving a centuries old
riddle about how moisture in the atmosphere
becomes electrically charged. Credit: Martin Fischer

"Our research could pave the way for turning electricity from the atmosphere into an alternative energy source for the future," said study leader Fernando Galembeck, Ph.D. His research may help explain a 200-year-old scientific riddle about how electricity is produced and discharged in the atmosphere. "Just as solar energy could free some households from paying electric bills, this promising new energy source could have a similar effect," he maintained.

"If we know how electricity builds up and spreads in the atmosphere, we can also prevent death and damage caused by lightning strikes," Galembeck said, noting that lightning causes thousands of deaths and injuries worldwide and millions of dollars in property damage.

The notion of harnessing the power of electricity formed naturally has tantalized scientists for centuries. They noticed that sparks of static electricity formed as steam escaped from boilers. Workers who touched the steam even got painful electrical shocks. Famed inventor Nikola Tesla, for example, was among those who dreamed of capturing and using electricity from the air. It's the electricity formed, for instance, when water vapor collects on microscopic particles of dust and other material in the air. But until now, scientists lacked adequate knowledge about the processes involved in formation and release of electricity from water in the atmosphere, Galembeck said. He is with the University of Campinas in Campinas, SP, Brazil.

Scientists once believed that water droplets in the atmosphere were electrically neutral, and remained so even after coming into contact with the electrical charges on dust particles and droplets of other liquids. But new evidence suggested that water in the atmosphere really does pick up an electrical charge.

Galembeck and colleagues confirmed that idea, using laboratory experiments that simulated water's contact with dust particles in the air. They used tiny particles of silica and aluminum phosphate, both common airborne substances, showing that silica became more negatively charged in the presence of high humidity and aluminum phosphate became more positively charged. High humidity means high levels of water vapor in the air ― the vapor that condenses and becomes visible as "fog" on windows of air-conditioned cars and buildings on steamy summer days.

"This was clear evidence that water in the atmosphere can accumulate electrical charges and transfer them to other materials it comes into contact with," Galembeck explained. "We are calling this 'hygroelectricity,' meaning 'humidity electricity'."

In the future, he added, it may be possible to develop collectors, similar to the solar cells that collect the sunlight to produce electricity, to capture hygroelectricity and route it to homes and businesses. Just as solar cells work best in sunny areas of the world, hygroelectrical panels would work more efficiently in areas with high humidity, such as the northeastern and southeastern United States and the humid tropics.

Galembeck said that a similar approach might help prevent lightning from forming and striking. He envisioned placing hygroelectrical panels on top of buildings in regions that experience frequent thunderstorms. The panels would drain electricity out of the air, and prevent the building of electrical charge that is released in lightning. His research group already is testing metals to identify those with the greatest potential for use in capturing atmospheric electricity and preventing lightning strikes.

"These are fascinating ideas that new studies by ourselves and by other scientific teams suggest are now possible," Galembeck said. "We certainly have a long way to go. But the benefits in the long range of harnessing hygroelectricity could be substantial."

Tuesday, August 24, 2010

Drink Water to Curb Weight Gain? Clinical Trial Confirms Effectiveness of Simple Appetite Control Method


Has the long-sought magic potion in society's "battle with the bulge" finally arrived? An appetite-control agent that requires no prescription, has no common side effects, and costs almost nothing? Scientists report results of a new clinical trial confirming that just two 8-ounce glasses of the stuff, taken before meals, enables people to shed pounds. The weight-loss elixir, they told the 240th National Meeting of the American Chemical Society (ACS), is ordinary water.
Drinking more water before meals can help promote weight loss, new research suggests. (Credit: iStockphoto/Lise Gagne)

"We are presenting results of the first randomized controlled intervention trial demonstrating that increased water consumption is an effective weight loss strategy," said Brenda Davy, Ph.D., senior author on the study. "We found in earlier studies that middle aged and older people who drank two cups of water right before eating a meal ate between 75 and 90 fewer calories during that meal. In this recent study, we found that over the course of 12 weeks, dieters who drank water before meals, three times per day, lost about 5 pounds more than dieters who did not increase their water intake."

"People should drink more water and less sugary, high-calorie drinks. It's a simple way to facilitate weight management."

Davy pointed out that folklore and everyday experience long have suggested that water can help promote weight loss. But there has been surprisingly little scientific information on the topic. Previous studies hinted that drinking water before meals reduces intake of calories. Lacking until now, however, has been the "gold-standard" evidence from a randomized, controlled clinical trial that compares weight loss among dieters who drink water before meals with those who do not.

The study included 48 adults aged 55-75 years, divided into two groups. One group drank 2 cups of water prior to their meals and the other did not. All of the subjects ate a low-calorie diet during the study. Over the course of 12 weeks, water drinkers lost about 15.5 pounds, while the non-water drinkers lost about 11 pounds.

Davy said water may be so effective simply because it fills up the stomach with a substance that has zero calories. People feel fuller as a result, and eat less calorie-containing food during the meal. Increased water consumption may also help people lose weight if they drink it in place of sweetened calorie-containing beverages, said Davy, who is with Virginia Tech in Blacksburg, Va.

Diet soda pop and other beverages with artificial sweeteners may also help people reduce their calorie intake and lose weight, Davy said. However, she advised against using beverages sweetened with sugar and high-fructose corn syrup because they are high in calories. A 12-ounce can of regular soda pop, for instance, contains about 10 teaspoons of sugar.

Davy noted that that nobody knows exactly how much water people should drink daily. The Institute of Medicine, an agency of The National Academies, which advises the Federal Government on science, says that most healthy people can simply let thirst be their guide. It does not specify exact requirements for water, but set general recommendations for women at about 9 cups of fluids -- from all beverages including water -- each day, and men at about 13 cups of fluids.

And it is possible to drink too much water, a situation that can lead to a rare, but serious, condition known as water intoxication, Davy pointed out.