Wednesday, April 24, 2013

Cell phones can speed up malaria treatment in remote areas - SciDev.Net

Cell phones can speed up malaria treatment in remote areas - SciDev.Net:

NEWS

Cell phones can speed up malaria treatment in remote areas

Naimul Haq
18 February 2013 | EN | FR
Bangladeshi on mobile phone
Mobile phones enable faster malaria diagnosis and care
Flickr/Bread for the World
[DHAKA] Mobile phones along with local knowledge and field support, can help to ensure the effective diagnosis and treatment of malaria in remote rural areas, according to a study inBangladesh.
Researchers examined almost 1,000 phone calls to report suspected cases of malaria that were made over two years by inhabitants of a hilly and forested part of the country bordering Mynamar. This area, called the Chittagong Hill Tracts, has Bangladesh’s highest malaria rates.
The study, published in Malaria Journal this month (4 February), was part of a wider research project on malaria epidemiology being carried out by the International Centre for Diarrhoeal Disease Research, Bangladesh (icddr,b) and the US-based Johns Hopkins Malaria Research Institute.

SPEED READ

  • Residents of a remote part of Bangladesh called health workers to report suspected malaria
  • These mobile phone calls allowed faster diagnosis and care
  • In addition to phones, local knowledge and field support are key to effective treatment
The researchers found that phone calls, which were made to locally recruited field workers or one of the members of the study team and then followed up by visits, were a useful way to detect and treat the disease in this community.
Although people could report suspected malaria to field workers when they visited local communities, a slightly greater number of suspected cases were reported using mobile phones, leading the researchers to conclude that the use of mobiles had helped to increase the number of potential cases tested and treated.
They suggest that more rapid diagnosis and treatment may help to lessen people's reliance on local medicine men or drug vendors, therefore reducing the risk of incorrect results and inappropriate treatment — and the threat of drug resistance.
Wasif Ali Khan, lead author of the study and a researcher at the icddr,b tellsSciDev.Net they also found that the proportion of confirmed malaria cases reported by mobile phones was higher in the most remote areas with no access to roads.
Khan adds that the use of mobile phone technology has the potential to build awareness of malaria through community participation.
Jacob Khyang, an icddr,b manager of the field research in Bandarban within the Chittagong Hill Tracts, tells SciDev.Net: "The use of mobile phones made our work very easy and diagnosis of the cases was also faster as we could reach the infected patients much quicker due to faster communications".
The researchers say that access to and use of mobile phones has "increased dramatically" in this area, as it has done in many remote areas of developing countries.
But because of limited mobile phone network coverage and the fact that only around a fifth of households owned at least one mobile phone, people in the study area often had to borrow phones or climb hills to get a signal needed to make calls.
Also, the study says that technology alone is insufficient and has to be paired with "on-the-ground knowledge of the area and the people", as was the case in this study.
Several mobile phone users in the region speaking to SciDev.Net were positive about future healthcare delivery programmes to tackle malaria.
Pai Mong U, a resident of one neighbourhood of the Kuhalong area of the Chittagong Hill Tracts, says: "All the 15 cases detected in our area were reported by mobile phone. What else can you expect in such remote, hilly areas?"
He adds that the residents received proper treatment thanks to the use of mobile phones and the icddr,b team.

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Monday, March 25, 2013

Heart repair breakthroughs replace surgeon’s knife | The Daily Star

Heart repair breakthroughs replace surgeon’s knife | The Daily Star:

MONDAY, MARCH 25, 2013


Heart repair breakthroughs replace surgeon’s knife


    



Atlanta cardiologist Dr Spencer King demonstrates how a catheter is used to repair a diseased heart valve, at an American College of Cardiology conference in San Francisco on Monday. Photo: AP
Atlanta cardiologist Dr Spencer King demonstrates how a catheter is used to repair a diseased heart valve, at an American College of Cardiology conference in San Francisco on Monday. Photo: AP
Have a heart problem? If it’s fixable, there’s a good chance it can be done without surgery, using tiny tools and devices that are pushed through tubes into blood vessels.
Heart care is in the midst of a transformation. Many problems that once required sawing through the breastbone and opening up the chest for open heart surgery now can be treated with a nip, twist or patch through a tube.
These minimal procedures used to be done just to unclog arteries and correct less common heart rhythm problems. Now some patients are getting such repairs for valves, irregular heartbeats, holes in the heart and other defects – without major surgery. Doctors even are testing ways to treat high blood pressure with some of these new approaches.
All rely on catheters – hollow tubes that let doctors burn away and reshape heart tissue or correct defects through small holes in blood vessels.
“This is the replacement for the surgeon’s knife. Instead of opening the chest, we’re able to put catheters in through the leg, sometimes through the arm,” said Dr Spencer King of St Joseph’s Heart and Vascular Institute in Atlanta. He is former president of the American College of Cardiology. Its conference earlier this month featured research on these novel devices.
“Many patients after having this kind of procedure in a day or two can go home” rather than staying in the hospital while a big wound heals, he said. It may lead to cheaper treatment, although the initial cost of the novel devices often offsets the savings from shorter hospital stays.
Not everyone can have catheter treatment, and some promising devices have hit snags in testing. Others on the market now are so new that it will take several years to see if their results last as long as the benefits from surgery do.
But already, these procedures have allowed many people too old or frail for an operation to get help for problems that otherwise would likely kill them.
“You can do these on 90-year-old patients,” King said.
These methods also offer an option for people who cannot tolerate long-term use of blood thinners or other drugs to manage their conditions, or who don’t get enough help from these medicines and are getting worse.
“It’s opened up a whole new field,” said Dr Hadley Wilson, cardiology chief at Carolinas HealthCare System in Charlotte. “We can hopefully treat more patients more definitively, with better results.”
For patients, this is crucial: Make sure you are evaluated by a “heart team” that includes a surgeon as well as other specialists who do less invasive treatments. Many patients now get whatever treatment is offered by whatever specialist they are sent to, and those specialists sometimes are rivals.
“We want to get away from that” and do whatever is best for the patient, said Dr Timothy Gardner, a surgeon at Christiana Care Health System in Newark, Del, and an American Heart Association spokesman. “There shouldn’t be a rivalry in the field.”
Here are some common problems and newer treatments for them:
HEART VALVES
Millions of people have leaky heart valves. Each year, more than 100,000 people in the United States alone have surgery for them. A common one is the aortic valve, the heart’s main gate. It can stiffen and narrow, making the heart strain to push blood through it. Without a valve replacement operation, half of these patients die within two years, yet many are too weak to have one.
“Essentially, this was a death sentence,” said Dr John Harold, a Los Angeles heart specialist who is president of the College of Cardiology.
That changed just over a year ago, when Edwards Lifesciences Corp won approval to sell an artificial aortic valve flexible and small enough to fit into a catheter and wedged inside the bad one. At first it was just for inoperable patients. Last fall, use was expanded to include people able to have surgery but at high risk of complications.
Gary Verwer, 76, of Napa, Calif, had a bypass operation in 1988 that made surgery too risky when he later developed trouble with his aortic valve.
“It was getting worse every day. I couldn’t walk from my bed to my bathroom without having to sit down and rest,” he said. After getting a new valve through a catheter last April at Stanford University, “everything changed; it was almost immediate,” he said. “Now I can walk almost three miles a day and enjoy it. I’m not tired at all.”
“The chest cracking part is not the most fun,” he said of his earlier bypass surgery. “It was a great relief not to have to go through that recovery again.”
Catheter-based treatments for other valves also are in testing. One for the mitral valve – Abbott Laboratories’ MitraClip – had a mixed review by federal Food and Drug Administration advisers this week; whether it will win FDA approval is unclear. It is already sold in Europe.
HEART RHYTHM PROBLEMS
Catheters can contain tools to vaporize or “ablate” bits of heart tissue that cause abnormal signals that control the heartbeat. This used to be done only for some serious or relatively rare problems, or surgically if a patient was having an operation for another heart issue.
Now catheter ablation is being used for the most common rhythm problem – atrial fibrillation, which plagues about 3 million Americans and 15 million people worldwide. The upper chambers of the heart quiver or beat too fast or too slow. That lets blood pool in a small pouch off one of these chambers. Clots can form in the pouch and travel to the brain, causing a stroke.
Ablation addresses the underlying rhythm problem. To address the stroke risk from pooled blood, several novel devices aim to plug or seal off the pouch. Only one has approval in the US now – SentreHeart Inc.’s Lariat, a tiny lasso to cinch the pouch shut. It uses two catheters that act like chopsticks. One goes through a blood vessel and into the pouch to help guide placement of the device, which is contained in a second catheter poked under the ribs to the outside of the heart. A loop is released to circle the top of the pouch where it meets the heart, sealing off the pouch.
A different kind of device – Boston Scientific Corp’s Watchman – is sold in Europe and parts of Asia, but is pending before the FDA in the US It’s like a tiny umbrella pushed through a vein and then opened inside the heart to plug the troublesome pouch. Early results from a pivotal study released by the company suggested it would miss a key goal, making its future in the US uncertain.
HEART DEFECTS
Some people have a hole in a heart wall called an atrial septal defect that causes abnormal blood flow. St Jude Medical Inc.’s Amplatzer is a fabric-mesh patch threaded through catheters to plug the hole.
The patch is also being tested for a more common defect – PFO, a hole that results when the heart wall doesn’t seal the way it should after birth. This can raise the risk of stroke. In two new studies, the device did not meet the main goal of lowering the risk of repeat strokes in people who had already suffered one, but some doctors were encouraged by other results.
CLOGGED ARTERIES
The original catheter-based treatment – balloon angioplasty – is still used hundreds of thousands of times each year in the US alone. A Japanese company, Terumo Corp., is one of the leaders of a new way to do it that is easier on patients – through a catheter in the arm rather than the groin.
Newer stents that prop arteries open and then dissolve over time, aimed at reducing the risk of blood clots, also are in late-stage testing.
HIGH BLOOD PRESSURE
About 75 million Americans and 1 billion people worldwide have high blood pressure, a major risk factor for heart attacks. Researchers are testing a possible long-term fix for dangerously high pressure that can’t be controlled with multiple medications.
It uses a catheter and radio waves to zap nerves, located near the kidneys, which fuel high blood pressure. At least one device is approved in Europe and several companies are testing devices in the United States.
“We’re very excited about this,” said Harold, the cardiology college’s president. It offers hope to “essentially cure high blood pressure.”

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Tuesday, March 5, 2013

LED Lighting to Grow 40% in 2013, Philips Executive Says - Bloomberg

LED Lighting to Grow 40% in 2013, Philips Executive Says - Bloomberg:

LED Lighting to Grow 40% in 2013, Philips Executive Says

Royal Philips Electronics NV (PHIA)’s light-emitting diodes business will grow about 40 percent this year, Greg Sebasky, chief executive officer of it North America unit, said today in an interview.
The company sees a “growth tipping point” with the debut this year of its 60-watt equivalent LED light bulb that will retail for about $10, Sebasky said. That will help the energy- efficient technology make up about 50 percent of Philips’ lighting sales by 2015, up from 25 percent last year, he said.
The company sees a “growth tipping point” with the debut this year of its 60-watt equivalent LED light bulb that will retail for about $10, Sebasky said. Photographer: Mark Elias/Bloomberg
“People are starting to see lighting as a durable good,” Sebasky said, taking lighting products with them when they move. The company is making controllable, LED-driven lighting products that the company expects can save the average homeowner about $250 in electricity costs each year.
The unit of the Dutch electronics company Koninklijke Philips Electronics NV generates about $9 billion in annual sales in the U.S., Canada and Mexico.
To contact the reporter on this story: Ehren Goossens in New York at egoossens1@bloomberg.net
To contact the editor responsible for this story: Reed Landberg at landberg@bloomberg.net

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Friday, February 1, 2013

10 Indian-Americans among 40 Intel science finalists - Rediff Getahead

10 Indian-Americans among 40 Intel science finalists - Rediff Getahead:

10 Indian-Americans among 40 Intel science finalists

Last updated on: February 1, 2013 15:55 IST
Lalit K Jha, Courtesy PTI
The finalists will present their research findings across 16 branches of science between March 7 and 13 this year.
Ten Indian-American school students have made it to the 40 finalists of the prestigious Intel Science Talent Search for the year 2013.
These 40 students were selected from 300 semi-finalists and more than 1,700 entrants to compete in Washington, DC from March 7 to 13 for USD 630,000 in awards, with the top winner receiving USD 100,000 from the Intel Foundation.
The 10 Indian-American students include the maximum three from California -- Paulomi Bhattacharya from Cupertino, Pavan Mehrotra from Simi Valley and Sahana Vasudevan from Palo Alto.
Two Indian-Americans are from Portland in Oregon -- Naomi Shah and Raghav Tripathi.
The other five are Surya Bhupatiraju from Lexington in Massachusetts, Naethan Mundukur from Louisville in Kentucky, Akshay Padmanabha from Collierville in Tennessee, Raja Selvakumar from Alpharetta in Georgia, and Mayuri Sridhar from Kings Park in New York.
"This year's Intel Science Talent Search finalists are presenting a wide range of research, from optimising algae oil for biofuel to developing a new treatment for blood cancer," said Wendy Hawkins, executive director of the Intel Foundation.
"It's exciting for the future of innovation because the US needs these 40 high school seniors, and others like them, to question, explore and help solve some of the world's greatest challenges," Hawkins said.
Young innovators chosen to participate in the Science Talent Search over the past 72 years have gone on to receive some of the world's most prestigious honours.
For example, Science Talent Search alumni have gone on to win seven Nobel Prizes, two Fields Medals, five National Medals of Science, 11 MacArthur Foundation Fellowships and even an Academy Award for Best Actress.
The finalists are from 40 schools in 21 states. Among the finalists, there is an equal gender distribution with both 50 per cent males and females.
California and New York represent over 30 per cent of this year's finalists.
Finalist projects are distributed among 16 categories, including bioengineering, chemistry, mathematics, computer science, physics and space science, behavioural and social sciences, and plant science.


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