Saturday, February 23, 2013

Robotic bat wing engineered: Researchers uncover flight secrets of real bats

Feb. 21, 2013 ? The strong, flapping flight of bats offers great possibilities for the design of small aircraft, among other applications. By building a robotic bat wing, Brown researchers have uncovered flight secrets of real bats: the function of ligaments, the elasticity of skin, the structural support of musculature, skeletal flexibility, upstroke, downstroke.

Researchers at Brown University have developed a robotic bat wing that is providing valuable new information about dynamics of flapping flight in real bats.

The robot, which mimics the wing shape and motion of the lesser dog-faced fruit bat, is designed to flap while attached to a force transducer in a wind tunnel. As the lifelike wing flaps, the force transducer records the aerodynamic forces generated by the moving wing. By measuring the power output of the three servo motors that control the robot's seven movable joints, researchers can evaluate the energy required to execute wing movements.

Testing showed the robot can match the basic flight parameters of bats, producing enough thrust to overcome drag and enough lift to carry the weight of the model species.

A paper describing the robot and presenting results from preliminary experiments is published in the journal Bioinspiration and Biomimetics. The work was done in labs of Brown professors Kenneth Breuer and Sharon Swartz, who are the senior authors on the paper. Breuer, an engineer, and Swartz, a biologist, have studied bat flight and anatomy for years.

The faux flapper generates data that could never be collected directly from live animals, said Joseph Bahlman, a graduate student at Brown who led the project. Bats can't fly when connected to instruments that record aerodynamic forces directly, so that isn't an option -- and bats don't take requests.

"We can't ask a bat to flap at a frequency of eight hertz then raise it to nine hertz so we can see what difference that makes," Bahlman said. "They don't really cooperate that way."

But the model does exactly what the researchers want it to do. They can control each of its movement capabilities -- kinematic parameters -- individually. That way they can adjust one parameter while keeping the rest constant to isolate the effects.

"We can answer questions like, 'Does increasing wing beat frequency improve lift and what's the energetic cost of doing that?'" Bahlman said. "We can directly measure the relationship between these kinematic parameters, aerodynamic forces, and energetics."

Detailed experimental results from the robot will be described in future research papers, but this first paper includes some preliminary results from a few case studies.

One experiment looked at the aerodynamic effects of wing folding. Bats and some birds fold their wings back during the upstroke. Previous research from Brown had found that folding helped the bats save energy, but how folding affected aerodynamic forces wasn't clear. Testing with the robot wing shows that folding is all about lift.

Studying an animal with unique abilities

Over the years, Kenneth Breuer, an engineer, and Sharon Swartz, a biologist, have developed a large archive of bat data, from wind tunnels to field studies and slow-motion video.In a flapping animal, positive lift is generated by the downstroke, but some of that lift is undone by the subsequent upstroke, which generates negative lift. By running trials with and without wing folding, the robot showed that folding the wing on the upstroke dramatically decreases that negative lift, increasing net lift by 50 percent.

Data like that will not only give new insights into the mechanics of bat flight, it could aid the design of small flapping aircraft. The research was funded by the U.S. Air Force Office of Scientific Research and the National Science Foundation..

Inspired by the real thing

Bat wings are complex things. They span most of the length of a bat's body, from shoulder to foot. They are supported and moved by two arm bones and five finger-like digits. Over those bones is a super-elastic skin that can stretch up to 400 percent without tearing. The eight-inch robot mimics that anatomy with plastic bones carefully fabricated on a 3-D printer to match proportions of a real bat. The skin is made of a silicone elastomer. The joints are actuated by servo motors that pull on tendon-like cables, which in turn pull on the joints.

The robot doesn't quite match the complexity of a real bat's wing, which has 25 joints and 34 degrees of freedom. An exact simulation isn't feasible given today's technology and wouldn't be desirable anyway, Bahlman said. Part of why the model is useful is that it distills bat flapping down to five fundamental parameters: flapping frequency, flapping amplitude, the angle of the flap relative to the ground, the amount of time used for the downstroke, and the extent to which the wings can fold back.

Experimental data aside, Bahlman said there were many lessons learned just in building the robot and getting it to work properly. "We learned a lot about how bats work from trying to duplicate them and having things go wrong," he said.

During testing, for example, the tongue and groove joint used for the robot's elbow broke repeatedly. The forces on the wing would spread open the groove, and eventually break it open. Bahlman eventually wrapped steel cable around the joint to keep it intact, similar to the way ligaments hold joints together in real animals.

The fact that the elbow was a characteristic weak point in the robot might help to explain the musculature of elbows in real bats. Bats have a large set of muscles at the elbow that are not positioned to flex the joint. In humans, these muscles are used in the motion that helps us turn our palms up or down. Bats can't make that motion, however, so the fact that these muscles are so large was something of a mystery. Bahlman's experience with the robot suggests these muscles may be adapted to resist bending in a direction that would break the joint open.

The wing membrane provided more lessons. It often tore at the leading edge, prompting Bahlman to reinforce that spot with elastic threads. The fix ended up looking a lot like the tendon and muscle that reinforce leading edges in bats, underscoring how important those structures are.

Now that the model is operational, Bahlman has lots of plans for it.

"The next step is to start playing with the materials," he said. "We'd like to try different wing materials, different amounts of flexibility on the bones, looking to see if there are beneficial tradeoffs in these material properties."

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Story Source:

The above story is reprinted from materials provided by Brown University.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Joseph W Bahlman, Sharon M Swartz, Kenneth S Breuer. Design and characterization of a multi-articulated robotic bat wing. Bioinspiration & Biomimetics, 2013; 8 (1): 016009 DOI: 10.1088/1748-3182/8/1/016009

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_science/~3/mH5WJdkNVC4/130221143942.htm

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Underlying mechanisms behind chronic inflammation-associated diseases revealed

Feb. 22, 2013 ? Inflammatory response plays a major role in both health protection and disease generation. While the symptoms of disease-related inflammatory response have been know, scientists have not understood the mechanisms that underlie it.

In a paper published Feb. 21 in Cell Reports, a team lead by Xian Chen, associate professor of biochemistry and biophysics and member of the UNC Lineberger Comprehensive Cancer Center, mapped the complex interactions of proteins that control inflammation at the molecular level.

The inflammatory response acts as a first line of defense for the immune system. Cytokines are generated to contain infection, preventing the occurrence or spread of diseases, including cancerous tumors. An overproduction or underproduction of these cytokines during disease-related inflammatory responses can lead to a variety of disease such as arthritis, asthma and some kinds of cancer.

The team found that chronic inflammatory response is mediated by the interaction of the protein phosphatase PP2Ac and an adaptor protein of Toll-like receptors (TLRs) MyD88 in a type of the immune cells (macrophages) showing tolerance to persistent stimulation of endotoxin (LPS).

Within endotoxin-tolerized macrophages, "PP2Ac is constitutively activated and operates on a switch that exists to convert pro-inflammatory MyD88 to immunosuppressant MyD88," said Chen.

Studying interactions of the protein network that underlies inflammation, the research team found that PP2Ac disrupts the pro-inflammatory signaling pathway mediated by the complex of MyD88 and TLR4. As a result of this disruption, both constitutively active PP2Ac and MyD88 move within the cellular nucleus, where they bound with the epigenetic machinery and alter the chromatin structure of a class of pro-inflammatory genes that leads to the silencing of this class of the genes.

"In the nucleus, in a MyD88-dependent way constitutively active PP2Ac reprograms the epigenetic machinery," said Chen.

With the discovery of PP2Ac behavior, Chen's research establishes a previously unknown link between cellular signaling and epigenetic regulation, which affects the genetic blueprint of inflammation. By mapping out the signaling pathway, as well the epigenetic machinery targeted by abnormally activated PP2Ac within the cells under chronic inflammation, the research identifies potential targets of immunomodulation for future therapies for inflammation-related disorders and cancers.

"Not only did we identify individual targets, but we also identified those interconnected targets in networks of dynamic protein interactions. That will set up the base for future network medicine, as targets on single genes and targets can have off-target side effects. To increase the precision of the drug targets, we reveal individual proteins but also their interactions as targets," said Chen.

This work is supported by NIH grants to Dr. Chen(NIH R01AI064806 and NIH 1U24CA160035).

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Story Source:

The above story is reprinted from materials provided by University of North Carolina School of Medicine.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Ling Xie, Cui Liu, Li Wang, Harsha?P. Gunawardena, Yanbao Yu, Ruyun Du, Debra?J. Taxman, Penggao Dai, Zhen Yan, Jing Yu, Stephen?P. Holly, Leslie?V. Parise, Yisong Y. Wan, Jenny?P. Ting, Xian Chen. Protein Phosphatase 2A Catalytic Subunit ? Plays a MyD88-Dependent, Central Role in the Gene-Specific Regulation of Endotoxin Tolerance. Cell Reports, 2013; DOI: 10.1016/j.celrep.2013.01.029

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/most_popular/~3/fuRr8-XpXzU/130222143135.htm

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Air Menzies Int'l opens new division in India

A meeting of like minds at the Combined Logistics Networks annual meeting in Bangkok from May 25-30, 2010, aims to be a good start to rebounding quickly from the impacts of the Global Financial Crisis.

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Friday, February 15, 2013

Suicide bombers attack Pakistani police station

BANNU, Pakistan (AP) ? Pakistani police say five suicide bombers attacked a police station in the country's northwest, wounding one police officer.

Nisar Tanoli says three of the bombers detonated their explosive vests while the police shot dead the other two attackers.

Tanoli says a police officer was wounded during Thursday's attack in Bannu city. Tanoli is the police chief in Bannu.

Pakistani Taliban spokesman Ahsanullah Ahsan has claimed responsibility for the attack.

He says it was in retaliation for the killings of eight militants whose bullet-riddled bodies were found abandoned in the neighboring North Waziristan tribal area.

Source: http://news.yahoo.com/suicide-bombers-attack-pakistani-police-station-054942376.html

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A job fair planned in Louisville next week seeks to put military veterans return...

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Nevada higher ed funding formula under microscope

CARSON CITY, Nev. (AP) -- Nevada lawmakers are drilling into the details of a new funding formula for higher education will send more money to campuses in southern Nevada at the expense of the northern and rural areas.

Gov. Brian Sandoval has proposed $472 million a year for the Nevada System of Higher Education, the same as existing spending levels. But how that money is divvied up is creating angst among institutions that will lose money, especially community colleges.

Under the plan approved by the Board of Regents, funding will weighted and based on how many class credits students complete instead of on enrollment. For University of Nevada, Reno and community colleges in northern Nevada, the shift will mean a loss of around $13 million that will go to schools in southern Nevada.

Source: http://news.yahoo.com/nevada-higher-ed-funding-formula-205255254.html

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Thursday, February 14, 2013

Asda finds horse DNA in bolognese sauce, pulls products

LONDON (Reuters) - Wal-Mart Stores Inc's British supermarket arm, Asda, said on Thursday it had discovered horse DNA in its beef bolognese sauce and was withdrawing that product and three others from its stores.

"We have a preliminary test result that suggests the presence of horse DNA in our 500g Beef Bolognese sauce. As you'd expect, we have withdrawn this product from our shelves," Asda spokeswoman Jo Newbould said. Asda has about 550 shops across the UK.

"We are taking a belt-and-braces approach so in addition, as a precaution, we're also withdrawing three other beef-based products produced by the same supplier," she said.

The three other products are beef broth soup, meat feast pasta sauce and chilli con carne soup. Asda said it does not have positive test results for horse DNA in those products. It said the products were made at the Irish food group Greencore's plant in Bristol.

Last month, Asda withdrew four burger products after they were found to contain trace levels of horse DNA. The burgers were supplied by Silvercrest, which had also sold Tesco and other grocers beef burgers containing horse meat.

Separately on Thursday, Irish supplier Rangeland Foods said it was withdrawing its frozen burger products after discovering that some contained 5 percent to 30 percent horse meat. Rangeland supplies frozen burgers to restaurants, pubs, caterers and fast food chain Supermac's.

The discovery of horsemeat in products supposed to contain beef has rocked the food industry in Europe and Britain and triggered investigations into Irish and Romanian suppliers that sell products to major supermarkets.

Britain's Food Standards Agency (FSA) said on Thursday that six horses slaughtered in the UK that tested positive for the drug phenylbutazone were exported to France and may have entered the human food chain.

The drug known as bute is a common anti-inflammatory painkiller for sporting horses, but it is banned for animals intended for eventual human consumption because of concerns that it poses a health risk to humans.

(Reporting by Brenda Goh; Editing by Toni Reinhold)

Source: http://news.yahoo.com/walmarts-british-arm-finds-horse-dna-bolognese-sauce-200253597--finance.html

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