2011-12-09

Neuroscientists boost memory in mice using genetics and a new memory-enhancing drug

"The molecule PKR (the double-stranded RNA-activated protein kinase) was originally described as a sensor of viral infections, but its function in the brain was totally unknown," said Dr. Mauro Costa-Mattioli, assistant professor of neuroscience at BCM and senior author of the paper. Since the activity of PKR is altered in a variety of cognitive disorders, Costa-Mattioli and colleagues decided to take a closer look at its role in the mammalian brain.

Super memory

The authors discovered that mice lacking PKR in the brain have a kind of "super" memory. "We found that when we genetically inhibit PKR, we increased the excitability of brain cells and enhanced learning and memory, in a variety of behavioral tests," he said. For instance, when the authors assessed spatial memory (the memory for people, places and events) through a test in which mice use visual cues for finding a hidden platform in a circular pool, they found that normal mice had to repeat the task multiple times over many days in order to remember the platform's location. By contrast, mice lacking PKR learned the task after only one training session.

Costa-Mattioli and colleagues wanted to know how this molecular process actually works. They found that when PKR is inhibited, the increased synaptic activity (that is, the enhanced communication between neurons) is caused by gamma interferon, another molecule involved in immunity.

"These data are totally unexpected, and show that two molecules classically known to play a role in viral infection and the immune response regulate the kind of brain activity that leads to the formation of long-term memory in the adult brain," said Costa-Mattioli.

Drug targets PKR

Another key finding made by Costa-Mattioli and his team of researchers was the fact that this process could be mimicked by a PKR inhibitor -- a small molecule that blocks PKR activity and thus acts as a "memory-enhancing drug."

"It is indeed quite amazing that we can also enhance both memory and brain activity with a drug that specifically targets PKR." Definitely then, the next step is to use what we have learned in mice and to try to improve brain function in people suffering from memory loss, said Costa-Mattioli.

Although Costa-Mattioli's memory pill may be years away from approval by the U.S. Food and Drug Administration, its impact on society and medicine could be very profound. There are roughly 6 million Americans and 35 million people world-wide with Alzheimer's disease and more than 70 million Americans over the age of 60 who may suffer from aged-associated impairment of memory.

Costa-Mattioli said, "More investigation is undoubtedly necessary to translate these findings to effective therapies but we would be delighted if our scientific studies were to contribute in some way to this ultimate goal."

"Our identity and uniqueness is made up of our memories," Costa-Mattioli said. "This molecule could hold the key to how we can keep our memories longer, but also how we create new ones."

Others who contributed to the research include: first author Ping Jun Zhu, Wei Huang, Jong W. Yoo, Loredana Stoica, Hongyi Zhou, Jeffrey Noebels, all at BCM; Andon N. Placzek, currently with Mercer University School of Medicine; Michael J. Friedlander and Djanenkhodja Kalikulov currently with Virginia Tech; Kresimir Krnjevic, McGill University; and John C. Bell, Ottawa Health Research Institute.

The research was supported through funding from the Searle Scholars Program (award to Costa-Mattioli), the Cynthia and George Mitchell Founds (award to Costa-Mattioli), the National Institute of Neurological Diseases and Stroke, the National Institute for Child Health and Development, the BCM Intellectual and Developmental Disabilities Research Center and the National Eye Institute.

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Neuroscientists boost memory in mice using genetics and a new memory-enhancing drug

Helping your fellow rat: Rodents show empathy-driven behavior

The observation, published December 8 in Science, places the origin of pro-social helping behavior earlier in the evolutionary tree than previously thought. Though empathetic behavior has been observed anecdotally in non-human primates and other wild species, the concept had not previously been observed in rodents in a laboratory setting.

"This is the first evidence of helping behavior triggered by empathy in rats," said Jean Decety, PhD, Irving B. Harris Professor of Psychology and Psychiatry at the University of Chicago. "There are a lot of ideas in the literature showing that empathy is not unique to humans, and it has been well demonstrated in apes, but in rodents it was not very clear. We put together in one series of experiments evidence of helping behavior based on empathy in rodents, and that's really the first time it's been seen."

The study demonstrates the deep evolutionary roots of empathy-driven behavior, said Jeffrey Mogil, the E.P. Taylor Professor in Pain Studies at McGill University, who has studied emotional contagion of pain in mice.

"On its face, this is more than empathy, this is pro-social behavior," said Mogil, who was not involved in the study. "It's more than has been shown before by a long shot, and that's very impressive, especially since there's no advanced technology here."

The experiments, designed by psychology graduate student and first author Inbal Ben-Ami Bartal with co-authors Decety and Peggy Mason, placed two rats that normally share a cage into a special test arena. One rat was held in a restrainer device -- a closed tube with a door that can be nudged open from the outside. The second rat roamed free in the cage around the restrainer, able to see and hear the trapped cagemate but not required to take action.

The researchers observed that the free rat acted more agitated when its cagemate was restrained, compared to its activity when the rat was placed in a cage with an empty restrainer. This response offered evidence of an "emotional contagion," a frequently observed phenomenon in humans and animals in which a subject shares in the fear, distress or even pain suffered by another subject.

While emotional contagion is the simplest form of empathy, the rats' subsequent actions clearly comprised active helping behavior, a far more complex expression of empathy. After several daily restraint sessions, the free rat learned how to open the restrainer door and free its cagemate. Though slow to act at first, once the rat discovered the ability to free its companion, it would take action almost immediately upon placement in the test arena.

"We are not training these rats in any way," Bartal said. "These rats are learning because they are motivated by something internal. We're not showing them how to open the door, they don't get any previous exposure on opening the door, and it's hard to open the door. But they keep trying and trying, and it eventually works."

To control for motivations other than empathy that would lead the rat to free its companion, the researchers conducted further experiments. When a stuffed toy rat was placed in the restrainer, the free rat did not open the door. When opening the restrainer door released his companion into a separate compartment, the free rat continued to nudge open the door, ruling out the reward of social interaction as motivation. The experiments left behavior motivated by empathy as the simplest explanation for the rats' behavior.

"There was no other reason to take this action, except to terminate the distress of the trapped rats," Bartal said. "In the rat model world, seeing the same behavior repeated over and over basically means that this action is rewarding to the rat."

As a test of the power of this reward, another experiment was designed to give the free rats a choice: free their companion or feast on chocolate. Two restrainers were placed in the cage with the rat, one containing the cagemate, another containing a pile of chocolate chips. Though the free rat had the option of eating all the chocolate before freeing its companion, the rat was equally likely to open the restrainer containing the cagemate before opening the chocolate container.

"That was very compelling," said Mason, PhD, Professor of Neurobiology. "It said to us that essentially helping their cagemate is on a par with chocolate. He can hog the entire chocolate stash if he wanted to, and he does not. We were shocked."

Now that this model of empathic behavior has been established, the researchers are carrying out additional experiments. Because not every rat learned to open the door and free its companion, studies can compare these individuals to look for the biological source of these behavioral differences. Early results suggested that females were more likely to become door openers than males, perhaps reflecting the important role of empathy in motherhood and providing another avenue for study.

"This model of empathy and helping behavior opens the path for elucidating aspects of the underlying neurophysiological mechanisms that were not accessible until now." Bartal said.

The experiments also provide further evidence that empathy-driven helping behavior is not unique to humans -- and suggest that Homo sapiens could learn a lesson from its rat cousins.

"When we act without empathy we are acting against our biological inheritance," Mason said. "If humans would listen and act on their biological inheritance more often, we'd be better off."

The paper, "Empathy and pro-social behavior in rats," will be published Dec. 9 by the journal Science. Funding for the study was provided by the National Institute on Drug Abuse and the National Science Foundation.

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Helping your fellow rat: Rodents show empathy-driven behavior

Decisions, decisions: House-hunting honey bees work like complex brains

Swarms of honey bees split off from their mother colony and go house-hunting, looking for a secure cavity in a tree or elsewhere that will make a good home for the new colony. In this process, they communicate to each other what they have found by dancing: a scout bee returning from a good site moves over and over in a figure-eight pattern that indicates the direction and the distance to the site, and other scouts read these dances and inspect the site themselves.

Usually, the swarm's scouts find more than one site, in which case the swarm faces a decision that must be made quickly since the swarm is exposed and the season for honey collection is passing. The decision, however, must also be good decision, the future welfare of the colony depending on a good home site.

Visscher, Seeley and colleagues report Dec. 8 in Science Express that they have found another, overlooked, signal that plays a role in this process -- a signal that is similar to those that occur between neurons in the brains of monkeys making decisions. Called the "stop signal," it is a very short buzz delivered by the sender scout while butting her head against the dancer. Its effect is to shorten and ultimately end the dance.

"It appears that the stop signals in bee swarms serve the same purpose as the inhibitory connections in the brains of monkeys deciding how to move their eyes in response to visual input," said Visscher, a professor of entomology. "In one case we have bees and in the other we have neurons that suppress the activity levels of units -- dancing bees or nerve centers -- that are representing different alternatives. Bee behavior can shed some light on general issues of decision making. Bees are a lot bigger than neurons for sure, and may be easier to study!"

To study the stop signal, Seeley, Visscher, and Thomas Schlegel at Bristol University, United Kingdom, set up swarms, one at a time, on an island off the Maine coast that was devoid of natural nesting cavities. They also set out two identical nest boxes. They labeled scout bees visiting the two boxes with paint marks of two colors. They then video-recorded the scouts producing waggle dances and tracked dances produced by the marked scouts with a microphone and videotape to ascertain when they received stop signals, and from which bees.

What the international team observed was that the stop signals were primarily delivered to dancers reporting a particular site by scouts that had been marked at the other site.

"The message the sender scout is conveying to the dancer appears to be that the dancer should curb her enthusiasm, because there is another nest site worthy of consideration," Visscher said. "Such an inhibitory signal is not necessarily hostile. It's simply saying, 'Wait a minute, here's something else to consider, so let's not be hasty in recruiting every bee to a site that may not be the best one for the swarm. All the bees have a common interest in choosing the best available site."

Visscher explained that the kind of cross inhibition seen in stop-signaling by house hunting bees mirrors cross inhibition found in nervous systems. In the research paper, theoretical models by team members Patrick Hogan and James Marshall at Sheffield University, United Kingdom, demonstrate that such cross inhibition helps to insure that a decision will not become deadlocked between equal-quality alternatives.

"This is critical, because the swarm must choose a single nest site, even if two sites of equal quality are available," Visscher said. "This cross inhibition curtails the production of waggle dances for, and thus the recruitment of bees to, a competing site."

Honey bee swarms are produced when, to establish a new colony, many thousand worker bees leave a hive that has become crowded, bringing along their mother queen. The swarming bees cluster near the parental hive for a few days while several hundred scout bees, the oldest in the swarm, locate and advertize prospective nest sites and choose the best ones.

To advertize a nest site, a dancing bee runs figure eight patterns and waggles back and forth while she moves across the middle portion. The angle of her body during this waggling run represents to the other bees the angle to fly. The duration of the waggling portion informs the other bees of how far away the nest site is. It can be thought of as a miniature reenactment of the flight to the goal; the longer the flight, the longer the waggle run, and the angle of flight relative to the sun direction equals the angle of the dance from relative to straight upwards from the swarm.

To be selected as a future home, a nest site must attract a certain number of scout bees. Further, there is competition between sites for the attention of a limited number of scouts. Once a site attracts a "quorum" number of scouts, the bees detect it, and begin to change their signals on the swarm. They then produce a piping signal by vibrating their wing muscles while pressing down on another bee. This signal leads the swarm bees, most of which simply hang quietly in the swarm during the decision-making process, to warm up in preparation for takeoff.

The piping signal is also associated with a change in the stop signal behavior. After piping begins, the stop signals are no longer delivered reciprocally; instead dancers begin to receive stop signals from scouts that had visited their own nest site, as well as the alternative nest site.

"Apparently at this point, the message of the stop signal changes, and can be thought of as, 'Stop dancing, it is time to get ready for the swarm to fly,'" Visscher explained. "It is important for the scouts to be with the swarm when it takes off, because they are responsible for guiding the flight to the nest site."

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Decisions, decisions: House-hunting honey bees work like complex brains

The impact of quantum matter

Scientists at the Joint Quantum Institute (JQI) have for the first time engineered and detected the presence of high angular momentum collisions between atoms at temperatures close to absolute zero. Previous experiments with ultracold atoms featured essentially head-on collisions. The JQI experiment, by contrast, is able to create more complicated collisions between atoms using only lasers. This innovation may facilitate the creation of exotic quantum states that can be exploited for practical applications like quantum computing. The key to the JQI approach is to alter the atoms' environment with laser light. They "dress" rubidium atoms by bathing them in a pair of laser beams, which force the atoms to have one of three discrete values of momentum. In the JQI experiment, rubidium atoms comprise a Bose-Einstein condensate (BEC). BECs have been collided before. But the observation of high-angular-momentum scattering at such low energies is new.

The new JQI results are being reported in Science magazine online (Science Express) December 8, 2011. The paper includes a variety of technical issues which will require some explanation.

Collisions

One of the cardinal principles of quantum science is that matter must be simultaneously thought of as both particles and waves. When the temperature of a gas of atoms is lowered, the wavelike nature of the atom emerges, and the idea of position becomes fuzzier. While an atom at room temperature might spread over a hundredth of a nm, atoms at nano-kelvin temperatures have a typical wavelength of about 100 nm. This is much larger than the range of the force between atoms, only a few nm. Atoms generally collide only when they meet face to face.

However, to study certain interesting quantum phenomena, such as searching for Majorana particles -- hypothetical particles that might provide a robust means of encoding quantum information -- it is desirable to engineer inter-atomic collisions beyond these low-energy, head-on type. That's what the new JQI experiment does.

Partial Waves

Scattering experiments date back to the discovery of the atomic nucleus 100 years ago, when Ernest Rutherford shot alpha particles into a foil of gold. Since then other scattering experiments have revealed a wealth of detail about atoms and sub-atomic matter such as the quark substructure of protons.

A convenient way of picturing an interaction between two particles is to view their relative approach in terms of angular momentum. Quantized angular momentum usually refers to the motion of an electron inside an atom, but it necessarily pertains also to the scattering of the two particles, which can be thought of as parts of a single quantum object.

If the value of the relative angular momentum is zero, then the scattering is designated as "s-wave" scattering. If the pair of colliding particles has one unit of angular momentum, the scattering is called p-wave scattering. Still more higher-order scattering scenarios are referred to by more letters: d-wave, f-wave, g-wave, and so on. This model is referred to as the partial waves view.

In high energy scattering, the kind at accelerators, these higher angular-momentum scattering scenarios are important and help to reveal important structure information about the particles. In atomic scattering at low temperatures, the s-wave interactions completely swamp the higher-order scattering modes. For ultralow-temperature s-wave scattering, when two atoms collide, they glance off each other (back to back) at any and all angles equally. This isotropic scattering doesn't reveal much about the nature of the matter undergoing collision; it's as if the colliding particles were hard spheres.

This has changed now. The JQI experiment is the first to create conditions in which d-wave and g-wave scattering modes in an ultracold experiment could be seen in otherwise long-lived systems.

Quantum Collider

Ian Spielman and his colleagues at the National Institute for Standards and Technology (NIST) chill Rb atoms to nano-kelvin temperatures. The atoms, around half a million of them, have a density about a millionth that of air at room temperature. Radiofrequency radiation places each atom into a superposition of quantum spin states. Then two (optical light) lasers impart momentum (forward-going and backward-going motion) to the atoms.

If this were a particle physics experiment, we would say that these BECs-in-motion were quantum beams, beams with energies that came in multiples of the energy kick delivered by the lasers. The NIST "collider" in Gaithersburg, Maryland is very different for the CERN collider in Geneva, Switzerland. In the NIST atom trap the particles have kinetic energies of a hundred pico-electron-volts rather than the trillion-electron-volt energies used at the Large Hadron Collider.

At JQI, atoms are installed in their special momentum states, and the collisions begin. Outward scattered atoms are detected after the BEC clouds are released by the trap. If the atoms hadn't been dressed, the collisions would have been s-wave in nature and the observed scattered atoms would have been seen uniformly around the scattering zone.

The effect of the dressing is to screen the atoms from s-wave scattering in the way analogous to that in some solid materials, where the interaction between two electrons is modified by the presence of trillions of other electrons nearby. In other words, the laser dressing effectively increased the range of the inter-atom force such that higher partial wave scattering was possible, even at the lowest energies.

In the JQI experiment, the observed scattering patterns for atoms emerging from the collisions was proof that d-wave and g-wave scattering had taken place. "The way in which the density of scattered atoms is distributed on the shell reflects the partial waves," said Ian Spielman. "A plot of scattered-density vs. spherical polar angles would give the sort of patterns you are used to seeing for atomic orbitals. In our case, this is a sum of s-, p-, and d- waves."

Simulating Solids Using Gases

Ultracold atomic physics experiments performed with vapors of atoms are excellent for investigating some of the strongly-interacting quantum phenomena usually considered in the context of condensed matter physics. These subjects include superconductivity, superfluids, the quantum Hall effect, and topological insulators, and some things that haven't yet been observed, such as the "Majorana" fermions.

Several advantages come with studying these phenomena in the controlled environment of ultracold atoms. Scientists can easily manipulate the landscape in which the atoms reside using knobs that adjust laser power and frequency. For example, impurities that can plague real solids can be controlled and even removed, and because (as in this new JQI experiment) the scattering of atoms can now (with the proper "dressing") reveal higher-partial-wave effects. This is important because the exotic quantum effects mentioned above often manifest themselves under exactly these higher angular-momentum conditions.

"Our technique is a fundamentally new method for engineering interactions, and we expect this work will stimulate new directions of research and be of broad interest within the physics community, experimental and theoretical," said Spielman. "We are modifying the very character of the interactions, and not just the strength, by light alone."

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The impact of quantum matter

Nighttime images help track disease from the sky

Princeton University-led researchers report in the journal Science Dec. 9 that nighttime-lights imagery presents a new tool for pinpointing disease hotspots in developing nations by revealing the population boom that typically coincides with seasonal epidemics. In urban areas with migratory populations, the images can indicate where people are clustering by capturing the expansion and increasing brightness of lighted areas. The researchers found the technique accurately indicates fluctuations in population density -- and thus the risk of epidemic -- that can elude current methods of monitoring outbreaks.

The team used nighttime images of the three largest cities in the West African nation of Niger to correlate seasonal population growth with the onset of measles epidemics during the country's dry season, roughly from September to May. The images, taken between 2000 and 2004 by a U.S. Department of Defense satellite used to obtain night-light data, were compared to records from Niger's Ministry of Health of measles cases from the same years. The team found that measles cases were most prevalent when a city's lighted area was largest and brightest.

Lead author Nita Bharti, a Princeton postdoctoral researcher in the Department of Ecology and Evolutionary Biology and the Woodrow Wilson School of Public and International Affairs, explained that people in nations such as Niger commonly migrate from rural to urban areas after the growing season. As people gather in cities during the dry-season months when agricultural work is unavailable, these urban centers frequently become host to outbreaks of crowd-dependent diseases such as measles and meningitis.

Migratory populations are notoriously difficult to track, Bharti said, which can amplify the difficulty and complexity of carrying out large-scale vaccinations. She and her co-authors found, however, that monitoring changes in nighttime lights clearly indicates where and when a population is expanding and where an epidemic would most likely occur.

"Once you establish the patterns of epidemics, you can adjust your intervention strategy," Bharti said. "We turned to this technique because there is really no other way to get any idea of how populations are changing in a place like Niger. That's true throughout most of sub-Saharan Africa and a lot of other places in the world.

"This method isn't limited to understanding measles -- think about malaria or meningitis," Bharti said. "These diseases are geographically specific, for the most part, to areas where this would be a useful technique. These are places that are not so industrialized that they will always be saturated with brightness and where there may be some level of agricultural dependence so that there are detectable labor migrations."

Bharti, who works in the lab of co-author Bryan Grenfell, a Princeton professor of ecology and evolutionary biology and public affairs, also worked with second author Andrew Tatem, a geography professor at the University of Florida; Matthew Ferrari, a biology professor at Pennsylvania State University; Rebecca Grais, an epidemiologist with Epicentre, the Paris-based research branch of Doctors Without Borders; and Ali Djibo of the Niger Ministry of Health.

The trouble with tracking migratory populations

Deborah Balk, a professor at the City University of New York and associate director of the university's Institute for Demographic Research, said the researchers' use of city-scale nighttime-lights imagery to examine the spread of disease is "pathbreaking" and offers significant advantages over more common techniques.

Images of nighttime lights have typically been used to study urbanization and economic development, as well as physical-science questions, said Balk, who is familiar with the project but had no role in it. In this case, Bharti and her collaborators use the nighttime brightness data to illustrate seasonal population swings, information that other types of satellite data such as images of housing density cannot detect, she said.

"Temporary and seasonal migrants are very hard to measure," Balk said. "The night lights are an important source of data for Africa and Asia, especially, where data is sometimes absent or quite poor."

Pej Rohani, a University of Michigan professor who studies infectious disease ecology and evolution, said that responses to epidemics are more complicated in areas with migratory or unstable populations. Rohani said that he was unaware of any other application of nighttime imagery to epidemics.

"If you're thinking about a city with hundreds of thousands or millions of people, how can you know at any one time how many people are in the city, which is why these kind of proxy measures are clever and useful," said Rohani, who is familiar with the research but also had no role in it.

Beyond providing a unique method to gauge population density, Rohani said the Princeton-led project also is notable for the unusually clear relationship it shows between outbreaks and shifts in population density in the first place.

"Traditionally, we've been having to make inferences about what determines the patterns of seasonality we see in disease outbreaks," Rohani said. "The beauty of this study is that they were able to dissect with great precision how the presence of susceptible individuals in the population correlates with and determines the growth rate of the epidemic."

The difficulty of the project and the fact that night-lights data are largely associated with long-term studies of stable populations could explain why nighttime satellite images have not previously been used to gather information about short-term events such as epidemics, Bharti said.

"Nighttime imagery is used as a tool to look at stable populations, which is the opposite of what we used it for," Bharti said. "Setting up this latest project was very labor-intensive. The idea of applying nighttime-lights data in this way is somewhat unconventional, so there was no previous research for us to work from."

Follow the lights, follow the crowd

The work stems from a longtime effort in Grenfell's lab to understand seasonal measles epidemics in Niger. In 2010, Bharti published a paper with Djibo, Grenfell, Grais and lead author Ferrari, as well as Penn State entomology professor Ottar Bjornstad, reporting that measles epidemics in Niger only occur during the dry season and that an outbreak's severity is related to an area's population.

Thus, the researchers concluded, these events are likely the result of population shifts, rather than environmental factors such as rainfall. But without an accurate method for measuring population movement and changes in density, they could not test their hypothesis, Bharti said.

The project reported in Science is intended to provide such a method. The researchers selected nighttime images clear of excess light pollution and obscuring weather from several hundred photos captured between 2000 and 2004 by the Defense Meteorological Satellite Program's Operational Linescan System, operated by the U.S. Department of Defense. Those images were compared to records from Niger's Ministry of Health of weekly measles outbreaks during the same years in the country's three largest cities: Maradi, Zinder and the capital, Niamey.

Seasonal brightness for all three cities changed similarly, the researchers report. Brightness was below average for each city during the agriculturally busy rainy season, then rose to above average as people packed urban areas during the dry season. Measles transmission rates followed the same pattern -- low in the rainy season, high in the dry.

The relationship between brightness and measles transmission appeared even clearer at the local level, as did the potential value of the researchers' technique in providing medical treatment. In Niamey, measles cases were recorded daily for three districts, or communes, during the 2003-04 dry season. Brightness and measles infection both peaked early in the first and second communes in February and March of 2004.

A two-week mass-vaccination campaign was launched in March and April, but population density, as determined by light brightness, had already started to decline in communes 1 and 2, the Princeton-led team found. This means that because the vaccination was not synchronized with population-density increases in communes 1 and 2, large numbers of people in those districts may have left the city without receiving the measles vaccine, Bharti said.

Under similar circumstances, the researchers write, measurements of population density determined by nighttime imagery -- which can be ready to analyze within 48 hours of the satellite collecting the data -- could be used to help coordinate preventative and reactive treatment with periods when the most people are arriving or are present in a certain area.

Rohani said that the technique could become important in predicting the peak of measles outbreaks in other susceptible countries, but might also apply to other diseases that, like measles, are driven by population density more than any other factor.

"This is probably the most careful dissection of an epidemic of measles in any setting I'm aware of -- it's very careful work that provides a mechanistic explanation for the progression of measles in a large population," he said. "It also shows promise for understanding seasonality in places like Niger for other directly transmitted infectious diseases like meningococcal infections or pertussis, or maybe influenza."

The researchers also are exploring the use of nighttime lights with other large-scale population-tracking methods such as the monitoring of mobile-phone usage. When used alone, both methods have their shortcomings, Bharti said. Nighttime lights imagery is susceptible to weather conditions, while mobile-phone usage data is biased in the portion of the population it can represent, she said. Bharti and her co-authors hope that when nighttime imagery is combined with other techniques, the measures will be complementary.

In addition, Bharti said, the team is looking at uses for nighttime satellite data outside of epidemiology that also involve mass migration, such as tracking population displacement during a war or following a natural disaster.

"We now have a technique that allows us to observe and measure changes in population density," Bharti said. "This short-term use of nighttime lights data could apply to a number of different situations beyond seasonal migrations and infectious diseases, such as humanitarian and disaster aid. We're excited about the potential this method has for other important global health issues. "

The research was supported by the Bill and Melinda Gates Foundation.

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Nighttime images help track disease from the sky

77,000-year-old evidence for 'bedding' and use of medicinal plants uncovered at South African rock shelter

An international team of archaeologists, with the participation of Christopher Miller, junior professor at the University of Tübingen, is reporting 77,000-year-old evidence for preserved plant bedding and the use of insect-repelling plants in a rock shelter in South Africa. This discovery is 50,000 years older than earlier reports of preserved bedding and provides a fascinating insight into the behavioural practices of early modern humans in southern Africa.

The team, led by Lyn Wadley of the University of the Witwatersrand, Johannesburg, in collaboration with Christopher Miller (University of Tübingen, Germany), Christine Sievers and Marion Bamford (University of the Witwatersrand), and Paul Goldberg and Francesco Berna (Boston University, USA), is reporting the discovery in the journal Science, available online this week.

The ancient bedding was uncovered during excavations at Sibudu rock shelter (KwaZulu-Natal province, South Africa), where Prof. Wadley has been digging since 1998. At least 15 different layers at the site contain plant bedding, dated between 77,000 and 38,000 years ago. The bedding consists of centimetre-thick layers of compacted stems and leaves of sedges and rushes, extending over at least one square meter and up to three square meters of the excavated area. Christine Sievers, of the University of the Witwatersrand, was able to identify several types of sedges and rushes used in the construction of the bedding.

The oldest evidence for bedding at the site is particularly well-preserved, and consists of a layer of fossilized sedge stems and leaves, overlain by a tissue-paper-thin layer of leaves, identified by botanist Marion Bamford as belonging to Cryptocarya woodii, or River Wild-quince. The leaves of this tree contain chemicals that are insecticidal, and would be suitable for repelling mosquitoes. "The selection of these leaves for the construction of bedding suggests that the inhabitants of Sibudu had an intimate knowledge of the plants surrounding the shelter, and were aware of their medicinal uses. Herbal medicines would have provided advantages for early human health, and the use of insect-repelling plants adds a new dimension to our understanding of human behaviour 77,000 years ago" said Lyn Wadley, honorary professor at the University of the Witwatersrand.

"The inhabitants would have collected the sedges and rushes from along the uThongathi River, located directly below the site, and laid the plants on the floor of the shelter. The bedding was not just used for sleeping, but would have provided a comfortable surface for living and working," said Wadley. Microscopic analysis of the bedding, conducted by Christopher Miller, junior-professor for geoarchaeology at the University of Tübingen, suggests that the inhabitants repeatedly refurbished the bedding during the course of occupation.

The microscopic analysis also demonstrated that after 73,000 years ago, the inhabitants of Sibudu regularly burned the bedding after use. "They lit the used bedding on fire, possibly as a way to remove pests. This would have prepared the site for future occupation and represents a novel use of fire for the maintenance of an occupation site," said Miller.

The preserved bedding is also associated with the remains of numerous fireplaces and ash dumps. Beginning at 58,000 years ago, the number of hearths, bedding and ash dumps increases dramatically. The archaeologists believe that this is a result of increased occupation of the site. In the article, the archaeologists argue that the increased occupation may correspond with changing demographics within Africa at the time. By around 50,000 years ago, modern humans began expanding out of Africa, eventually replacing archaic forms of humans in Eurasia, including the Neanderthals.

This discovery adds to a long list of important finds at Sibudu over the past decade, including perforated seashells, believed to have been used as beads, and sharpened bone points, likely used for hunting. Wadley and others have also presented early evidence from the site for the development of bow and arrow technology, the use of snares and traps for hunting and the production of glue for hafting stone tools.

The discovery is particularly well timed, since future work at the site may be in jeopardy. Local officials are planning the construction of large housing tracts near Sibudu that would irreparably damage the site and prevent future excavation. Wadley and her colleagues hope that this discovery will emphasize the importance of Sibudu as an irreplaceable cultural resource for South Africa and the rest of the world.

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77,000-year-old evidence for 'bedding' and use of medicinal plants uncovered at South African rock shelter

IHS cuts 2012 PC forecast on HDD shortages

SAN FRANCISCO—Market research firm IHS iSuppli Thursday (Dec. 8) cut its PC market forecast for 2012, citing hard disk drive (HDD) shortages triggered by rampant flooding in Thailand earlier this year.

Total PC unit shipments are expected to grow by 6.8 percent in 2012, reaching 376 million. The firm had previously forecast that PC shipments would grow 9.5 percent in 2012, reaching 399 million.

IHS said the HDD shortages caused by damage and closures to HDD and component production facilities will result in a 3.8-million unit shortfall in the first quarter of 2012. First quarter shipments are projected to amount to 84.2 million units, down from an earlier IHS forecast of 88 million units.

First quarter PC shipments are forecast to decline 11.6 percent from the projected total for the fourth quarter of 2011, 95.3 million units, IHS said. While PC shipments typically decrease in the first quarter compared to the peak holiday-selling season in the fourth quarter, the drop in 2012 will be far sharper than the 6 percent historical average decline, IHS projects.
 
The bulk in reduction in shipments will be in the notebook space, which is the area impacted by the HDD shortage, IHS said. Notebook PC shipments in 2012 now are expected to rise by 10.1 percent, down from the previous forecast of 13.8 percent growth, the firm said.
 
"The PC supply chain says it has sufficient HDD inventory for the fourth quarter of 2011," said Matthew Wilkins, senior principal analyst of compute platforms for IHS, in a statement. "However, those stockpiles will run out in the first quarter of 2012, impacting PC production during that period."

IHS said it expects the HDD supply situation to begin to improve in the first quarter of 2012. But it will take time to replenish the supply chain, the firm warned. Overall HDD supply is not expected to be sufficient to meet demand until the end of the third quarter of 2012, IHS said. Already, the major HDD suppliers have shifted production to locations outside of Thailand, which will help ease the shortage situation, IHS said.
 
PC shipments should rebound from the HDD shortage in the second half of 2012, IHS said. Still, total shipments for 2012 will fall short of previous expectations because of economic factors and rising competition from media tablets.
 
Ironically, the HDD market could face an inventory surplus by the end of 2012, after facilities in Thailand return to full production, according to IHS. When combined with the added production outside the country, the recovery in Thailand's HDD operations could result in excess supply, according to the firm.

IHS cuts 2012 PC forecast on HDD shortages

Gartner cuts 2012 chip market forecast

SAN FRANCISCO—Market research firm Gartner Inc. Thursday (Dec. 8) reduced its forecast for the 2012 global semiconductor market, saying it now expects the market to reach $309 billion, a 2.2 percent increase from the projected total this year.

Gartner (Stamford, Conn.) had earlier forecast that the semiconductor market would grow by 4.6 percent in 2012.

Bryan Lewis, research vice president at Gartner, said through a statement that uncertainty over spending by both consumers and enterprises in light of the European financial crisis appears set to continue, bringing significant implications for the semiconductor industry. "The near-term forecast is being shaped not only by economic forces but by an inventory correction, manufacturing oversupply and natural disasters," Lewis said.

Gartner also lowered its PC production forecast for 2012, saying it now expects PC unit growth of 5.1 percent for the year down from an earlier forecast of 10.1 percent. Gartner cited not only a weak economic backdrop, but also lingering supply chain effects from the Thai floods, for the PC production forecast cut.

Gartner did forecast that the global DRAM market will grow by 3 percent in 2012, following a projected decline of 26 percent in 2011. NAND flash is the expected to be the fastest-growing device category in 2012 with 16.6 percent growth due to strong growth in mobile consumer devices, Gartner said.

Gartner said it does expect slightly higher mobile phone production unit growth in 2012 than it did in its previous forecast. The firm now expects mobile phone production units to increase 7.5 percent in 2012, up from an earlier estimate of 7 percent.
 
But Gartner lowered its forecast for media tablet production, saying it now expects 107 million units to be produced next year, down from an earlier forecast of 110 million. Even the reduced forecast for media tablets calls for 63 percent production growth compared to 2010.

Lewis said Garnter's latest forecast analysis predicts that dollar growth in smartphones, media tablets and solid-state drives will in total generate 77 percent of semiconductor market growth through 2015.

Gartner cuts 2012 chip market forecast

2011-12-08

Fujitsu and SuVolta slash SRAM supply voltage Electronics News

FUJITSU Semiconductor and SuVolta have demonstrated ultra-low-voltage operation of static random access memory (SRAM) blocks down to 0.425V.

This was made possible by integrating SuVolta's PowerShrink low-power CMOS platform into Fujitsu Semiconductor's low-power process technology.

The results were presented at the 2011 International Electron Devices Meeting (IEDM) on 5 December.

Controlling power consumption is the primary limiter of adding features to product types ranging from mobile electronics to tethered servers and networking equipment. The biggest contributor to power consumption is supply voltage.

At the 130nm technology node, the power supply voltage of CMOS is at 1.0V. However, even as technology has scaled to 28nm, power supply voltage reduction has not kept up.

To reduce the power supply voltage, one of the biggest obstacles is the minimum operating voltage of embedded SRAM blocks.

By combining their technologies, the companies have verified that a 576Kb SRAM can work well at approximately 0.4V by reducing CMOS transistor threshold voltage (VT) variation to half.

This technology matches well with existing infrastructures including existing system-on-chip (SoC) design layouts, existing design schemes such as body bias control, and existing manufacturing tools.


Fujitsu and SuVolta slash SRAM supply voltage Electronics News

Samsung to set up 20nm NAND facility in China Electronics News

SAMSUNG Electronics is looking to set up a NAND flash memory manufacturing plant in China, in order to meet strong demand for smartphones and tablet computers.

Toward this end, it is seeking government approval for the 20nm node facility. The company hopes to start construction in 2012, and begin operations in 2013.

Industry consensus is Samsung wishes to improve its competitiveness in the memory industry by leveraging Chinese subsidies and cheaper manufacturing costs.

In 2007, Intel, which is the world’s biggest semiconductor manufacturer, set up a plant in Dalian. Hynix Semiconductor, another memory competitor, has had a facility in Wuxi since 2006.

The Samsung move is an indication of China’s ascent to becoming the foremost manufacturer of high-tech electronics. It seems the increasing competition is overriding concerns the South Korean company (and indeed others) have regarding transferring its technology to a location where it is more vulnerable to IP leakage.

Samsung, on its part, claims that by 2013, 20nm NAND flash memory technology will be common, and will in fact be behind the technology used in its South Korean facilities.


Samsung to set up 20nm NAND facility in China Electronics News

New satellite manufacturing agreement Electronics News

NEWSAT has entered into a contract with Lockheed Martin Commercial Space Systems, who will construct the Jabiru-1 satellite.

Jabiru-1 will incorporate an advanced Ka-band payload which will provide high-powered satellite coverage across growth regions over the Middle East, Africa and Asia. The large Jabiru-1 spacecraft will utilise Lockheed Martin’s proven A2100 series spacecraft and is designed for an in-orbit life of 15 years.

The construction of the Jabiru-1 satellite will commence immediately and is scheduled for launch in the second half of 2014.

The Jabiru-1 is slated to be Australia’s first independently owned commercial satellite. It will also be NewSat’s first geostationary communications satellite. It will provide bandwidth to military, defence, government and resources markets.

NewSat is Australia’s largest specialist satellite communications company, delivering Internet, voice, data and video communications via satellite.


New satellite manufacturing agreement Electronics News

Radio waves to re-activate paralysed muscles and nerves Electronics News

THE US Federal Communications Commission (FCC) has allocated a part of the radio spectrum to help restore function to paralysed limbs.

The new rules will enable a new generation of wireless medical devices which will aid stroke patients and those suffering from brain or spinal cord injuries.

The basis of these devices is Medical Micropower Networks (MMNs) which are ultra-low power wideband networks consisting of multiple transmitters implanted in the body, as well as a wireless controller. These use electric currents to activate and monitor nerves and muscles.

These devices have been approved for use within the 413 to 457MHz range, fitting with the prototype MMN systems already in existence. This frequency is the most efficient for penetrating tissue with radio waves.

This move by the FCC opens the way for trials of MMN systems on humans.

More information from the FCC.


Radio waves to re-activate paralysed muscles and nerves Electronics News

Intel and Micron unveil 128Gb NAND flash memory Electronics News

INTEL and Micron have announced a 128Gb NAND flash memory device, the world’s first 20nm multilevel-cell (MLC) device at that capacity.

The companies have also announced mass production of their 64Gb 20nm NAN.

Developed through Intel and Micron's joint-development venture, IM Flash Technologies (IMFT), the new 20nm monolithic 128Gb device is the first in the industry to enable a terabit (Tb) of data storage in a fingertip-size package by using just eight die.

The 128Gb device provides twice the storage capacity and performance of the companies' existing 20nm 64Gb NAND device. It meets the high-speed ONFI 3.0 specification, achieving speeds of 333 megatransfers per second (MT/s).

According to Intel and Micron, the device will be particularly useful in the next generation of tablets, smartphones and high-capacity solid-state drives.

The companies say the key to their success with 20nm process technology is due to an innovative new cell structure that enables more aggressive cell scaling than conventional architectures.

The 20nm NAND uses a planar cell structure to overcome the inherent difficulties that accompany advanced process technology, enabling performance and reliability on par with the previous generation.

The planar cell structure successfully breaks the scaling constraints of the standard NAND floating gate cell by integrating the first Hi-K/metal gate stack on NAND production.


Intel and Micron unveil 128Gb NAND flash memory Electronics News

LCD price-fixing suit settled for $388 million Electronics News

SIX LCD panel makers have settled a price-fixing lawsuit for $388 million.

Sharp, Samsung Electronics and Chimei Innolux paid $105 million, $82.7 million and $78 million respectively.

According to the class action brought before courts in the US, the companies fixed prices of their LCD panels, driving prices for direct purchasers of the screen, or goods containing the screens. This price-fixing behaviour is said to have occurred from 1999 to 2006.

In 2008 and 2009, LG Display, Chunghwa Picture Tubes and Sharp pleaded guilty and paid $585 million in criminal fines, after a US Justice Department investigation resulted in litigation.

In settling the class action lawsuit, the companies involved have denied wrongdoing but have settled for the above sums of money.


LCD price-fixing suit settled for $388 million Electronics News

Changes in bioelectric signals trigger formation of new organs: Tadpoles made to grow eyes in back, tail

The researchers achieved most surprising results when they manipulated membrane voltage of cells in the tadpole's back and tail, well outside of where the eyes could normally form. "The hypothesis is that for every structure in the body there is a specific membrane voltage range that drives organogenesis," said Pai. "These were cells in regions that were never thought to be able to form eyes. This suggests that cells from anywhere in the body can be driven to form an eye."

To do this, they changed the voltage gradient of cells in the tadpoles' back and tail to match that of normal eye cells. The eye-specific gradient drove the cells in the back and tail -- which would normally develop into other organs -- to develop into eyes.

These findings break new ground in the field of biomedicine because they identify an entirely new control mechanism that can be capitalized upon to induce the formation of complex organs for transplantation or regenerative medicine applications, according to Michael Levin, Ph.D., professor of biology and director of the Center for Regenerative and Developmental Biology at Tufts University's School of Arts and Sciences. Levin is senior and corresponding author on the work published in the journal "Development." online December 7 2011, in advance of print.

"These results reveal a new regulator of eye formation during development, and suggest novel approaches for the detection and repair of birth defects affecting the visual system," he said. "Aside from the regenerative medicine applications of this new technique for eyes, this is a first step to cracking the bioelectric code."

Tufts post-doctoral fellow Vaibhav P. Pai Ph.D., is first author of the paper, entitled "Transmembrane Voltage Potential Controls Embryonic Eye Patterning in Xenopus laevis." .

Signals Turn On Eye Genes

From the outset of their research, the Tufts' biologists wanted to understand how cells use natural electrical signals to communicate in their task of creating and placing body organs. In recent research, Tufts biologist Dany S. Adams showed that bioelectrical signals are necessary for normal face formation in the Xenopus (frog) embryos. In the current set of experiments, the Levin lab identified and marked hyperpolarized (more negatively charged) cell clusters located in the head region of the frog embryo.

They found that these cells expressed genes that are involved in building the eye called Eye Field Transcription Factors (EFTFs). Sectioning of the embryo through the developed eye and analyzing the eye regions under fluorescence microscopy showed that the hyperpolarized cells contributed to development of the lens and retina. The researchers hypothesized that these cells turned on genes that are necessary for building the eye.

Changing the Signals Lead to Defects

Next, the researchers were able to show that changing the bioelectric code, or depolarizing these cells, affected normal eye formation. They injected the cells with mRNA encoding ion channels, which are a class of gating proteins embedded in the membranes of the cell. Like gates, each ion channel protein selectively allows a charged particle to pass in and out of the cell.

Using individual ion channels that allow, the researchers changed the membrane potential of these cells. This affected expression of EFTF genes, causing abnormalities to occur: Tadpoles from these experiments were normal except that they had deformed or no eyes at all.

Further, the Tufts biologists were also able to show that they could control the incidence of abnormal eyes by manipulating the voltage gradient in the embryo. "Abnormalities were proportional to the extent of disruptive depolarization," said Pai. "We developed techniques to raise or lower voltage potential to control gene expression."

Electric Properties of Cells Can Be Manipulated to Generate Specific Organs

The researchers achieved most surprising results when they manipulated membrane voltage of cells in the tadpole's back and tail, well outside of where the eyes could normally form.

"The hypothesis is that for every structure in the body there is a specific membrane voltage range that drives organogenesis," said Pai. "By using a specific membrane voltage, we were able to generate normal eyes in regions that were never thought to be able to form eyes. This suggests that cells from anywhere in the body can be driven to form an eye."

Levin and his colleagues are pursuing further research, additionally targeting the brain, spinal cord, and limbs. The findings, he said "will allow us to have much better control of tissue and organ pattern formation in general. We are developing new applications of molecular bioelectricity in limb regeneration, brain repair, and synthetic biology." Additional authors include post-doctoral fellow Sherry Aw, Tufts Postdoctoral Associate Tal Shomrat, and Research Associate Joan M. Lemire. Funding for this research came from the National Institutes of Health.

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Changes in bioelectric signals trigger formation of new organs: Tadpoles made to grow eyes in back, tail

Drug reverses aging-associated changes in brain cells, animal study shows

Aging-related memory loss is associated with the gradual deterioration of the structure and function of synapses (the connections between brain cells) in brain regions critical to learning and memory, such as the hippocampus. Recent studies suggested that histone acetylation, a chemical process that controls whether genes are turned on, affects this process. Specifically, it affects brain cells' ability to alter the strength and structure of their connections for information storage, a process known as synaptic plasticity, which is a cellular signature of memory.

In the current study, Cui-Wei Xie, PhD, of the University of California, Los Angeles, and colleagues found that compared with younger rats, hippocampi from older rats have less brain-derived neurotrophic factor (BDNF) -- a protein that promotes synaptic plasticity -- and less histone acetylation of the Bdnf gene. By treating the hippocampal tissue from older animals with a drug that increased histone acetylation, they were able to restore BDNF production and synaptic plasticity to levels found in younger animals. "These findings shed light on why synapses become less efficient and more vulnerable to impairment during aging," said Xie, who led the study. "Such knowledge could help develop new drugs for cognitive aging and aging-related neurodegenerative diseases, such as Alzheimer's disease," she added.

The researchers also found that treating the hippocampal tissue from older animals with a different drug that activates a BDNF receptor also reversed the synaptic plasticity deficit in the older rats. Because histone acetylation is important in many functions throughout the body, these findings offer a potential pathway to treat aging-related synaptic plasticity deficits without interfering with histone acetylation. "It appears that lifelong shifts in gene regulation steadily deprive the brain of a key growth factor and cause a collapse of the 'machinery' supporting memory, cognition, and the viability of neurons," said Gary Lynch, PhD, a synaptic plasticity expert at the University of California, Irvine. "The very good news suggested by this study is that it may be possible to reverse these effects."

The research was supported by the National Institute on Aging and UCLA Older Americans Independence Center.

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Drug reverses aging-associated changes in brain cells, animal study shows

One-stop e-waste recycling for Australia Electronics News

HYDROMET has entered into a memorandum of understanding with Australian electronics recycler PGM Refiners to take a majority share in the company.

This move is part of HydroMet’s diversification and expansion plan.

PGM recently upgraded its processing facility in Dandenong, Australia, and has plans to expand into other parts of Australia.

PGM’s proprietary technology recovers aluminium, copper, steel, plastics and precious metals from electronic scrap. It can also separate and upgrade cathode ray tubes.

Hydromet’s move will increase the combined processing capability of both companies, and along with downstream processing. The companies say they will provide a one-stop solution to the growing electronic scrap problem in Australia.


One-stop e-waste recycling for Australia Electronics News

Samsung’s flexible and transparent tablet Electronics News

SAMSUNG has unveiled a concept device which takes the form of a flexible and transparent tablet.

Samsung seems to be developing its flexible AMOLED concept further, with the concept to be rollable and also expanded or contracted for various tasks, such as being used as a e-reader, camera, video chat, etc.

By making the device transparent, it is also possible to overlay information on reality (augmented-reality), allowing virtual objects to be viewed in three dimensions in real time.


Samsung's flexible and transparent tablet Electronics News

Intel, Photronics back multi-beam litho firm

SAN FRANCISCO—Intel Corp.'s venture capital arm and photomask vendor Photronics Inc. have each invested an undisclosed amount in IMS Nanofabrication AG, an Austrian firm developing direct-write lithography technology, IMS said Wednesday (Dec. 7).

The funding, which also included investments by private investors, will be used to can electron multi-beam mask exposure tool proof-of-concept to support tool characterization, column optimization and infrastructure enhancements that set the stage for commercialization, IMS (Vienna) said. According to the company, IMS established the technical feasibility of the technology through a proof of writing strategy program earlier this year.

"The additional resources will help IMS to demonstrate a 256 thousand e-beam mask writer column with initial exposures by the end of 2011," said Max Bayerl, CEO of IMS, in a statement.

In a addition to developing an electron multi-beam mask writer, IMS is also developing a direct-write lithography technology called projection maskless lithography.

Additional terms of the transaction were not disclosed.

Keith Larson, a vice president at Intel's venture capital arm, Intel Capital said successful demonstration of an electron multi-beam mask writer column would be "a significant step forward in addressing industry needs for higher productivity mask writing capability at finer levels of resolution."

Christopher Progler, chief technology officer at Photronics, said the photomask vendor joined the equity round to support the development of technology that would allow it to provide leading edge mask production capability to its customers. "Our investment in IMS demonstrates our commitment to invest in technologies that can keep Photronics on the cutting edge of mask writing technology," Progler said.

Intel, Photronics back multi-beam litho firm

Maternal care influences brain chemistry into adulthood, animal study shows

A collaborative research group including scientists from the Max Planck Institute for Medical Research in Heidelberg has demonstrated using mice that intensive maternal care during infancy promotes the effect of NPY in the brain. As a result of receiving such care, the animals were also less anxious in adulthood and weighed more than their counterparts who had received less affection. The research group was able to show that the effect is explained by the maternal care which stimulated the persistent formation of certain NPY receptors in the forebrain.

Neuropeptide Y (NPY) assumes several key roles in the brain's complex control circuits. The messenger substance not only influences body weight but also controls, among other things, the development of anxiety and stress responses. Hence NPY plays an important role in a series of mental illnesses such as post-traumatic stress disorders and anxiety disorders. NPY takes effect in the brain by binding to different docking sites on the neurons -- the NPY receptors. In this way, the hormone triggers signal cascades which control the different physical functions.

In a study on mice carried out in Rolf Sprengel from the Max Planck Institute for Medical Research and his colleagues in Italy have shown that the effect of NPY depends on how much care and attention the young animals experienced in the first three weeks of life. Mice who had received little care from their mothers were more anxious adults than their counterparts who had received intensive attention in their early weeks of life. They also remained slimmer throughout their lives. As the researchers discovered, the maternal behaviour influenced the formation of NPY1 receptors in the limbic system -- the area of the brain responsible for the processing of emotions.

"We were able to show that the expression of the NPY1 receptor in the young animals' limbic system is increased by good maternal care," explains Rolf Sprengel. "This ensures their healthy development in the long term." The positive effects of maternal care and attention were evidenced by the fact that the young animals gained weight faster and showed greater courage in behavioural experiments as adults than rodents which had experienced little warmth and security after birth.

For their study, the scientists had newborn mice, in which the NPY1 receptors had been switched off selectively, raised by mothers who differed in their behaviour towards the young animals. One group belonged to a mouse strain that was exemplary in caring for its young. These females spent a lot of time with their offspring, fed them frequently and, in addition to extensive grooming, also provided intensive physical contact. In young animals which grew up under such conditions, new NPY-1 receptors formed in the brain's limbic system. The second group of females were programmed to take far less care of the young. In this case, the number of NPY1 receptors in the young mice did not increase.

The neuroscientists' findings help us to reach a better understanding of how experience in the early life of an organism can affect it in later life. "The results of the study show how maternal care and attention have a sustained impact on the chemistry of the limbic system," says Rolf Sprengel. Maternal behaviour can influence the emotions and physical constitution into adulthood in this way.

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Maternal care influences brain chemistry into adulthood, animal study shows

Medtech startups hear dour diagnosis

SAN JOSE, Calif. – Medical device startups heard a bleak diagnosis from a panel of executives at the annual BiomedDevice conference here. Funding is tight, regulations are complex and global markets can be difficult to navigate, they said.

"Funding has dried up over the last three years, especially for early stage companies--even later stage companies are getting hammered," said Mir Imran, a serial entrepreneur and chief executive of Modulus Inc. (San Jose), a contract medical design and manufacturing company. "Meanwhile, the regulatory process has become so convoluted it requires more funds to get products through it, so many of us have gone to Europe," he added.

As many as 40 percent of venture capitalists in medtech have been unable to raise new funds since the 2008 recession and are now holding money to keep their existing portfolio companies alive, said Imran who has started or funded dozens of medical electronics companies. Meanwhile deals are available to invest in late-stage companies at early-stage prices, he added.

"Our small fund has done two or three deals in the last year, but some have not done a single early-stage deal in the last year," Imran said. "Things are grim, and probably won't change for another year or two until things flush out," he said.

Long term prospects should improve. Big medtrech corporations such as Medtronic depend on acquiring startups as part of their product development process. A scarcity of early-stage startups now could lead to higher valuations for the few who make it to be acquisition targets in four or five years, said Imran.

"The cycle will fix itself in a few years," he said, noting more than 90 percent of medical electronics startups are eventually acquired.

To survive the lean times, Imran creates multiple companies using the same team and facilities, partnering with others for regulatory and manufacturing services. Others agreed outsourcing has become a requirement for medtech startups.

"In the go-go days VCs would look at and invest in your teams, but now I am seeing investors like it when you partner for capital efficiency," said Roger Stern, president of Stellartech Research Corp. (Sunnyvale, Calif.), another contract development and manufacturing company specializing in medtech.

Meanwhile the regulatory process in the U.S. "has become so convoluted…most of us are going to Europe and Asia, and we are seriously looking at India and China as initial markets to develop with the U.S. last," said Imran.

He mentioned one heart valve startup acquired by Medtronic for more than $700 million without having filed even preliminary regulatory documents with the U.S. Food and Drug Administration. "Going overseas to establish clinical value and maybe even launching a product is more valuable than going to the FDA," Imran said.

But global markets are no slam dunk.

"The global component adds another layer of complexity," said Joseph Heanue, president of Triple Ring Technologies (Newark, Calif.), another contract design and manufacturing company. "There are challenges finding products that work for multiple markets and working at a distance with other groups inside and outside your company," he said.


Medtech startups hear dour diagnosis

Why does the same mutation kill one person but not another?

Since the early twentieth century researchers have studied the role that genetic variability (mutations) and the environment (consumption habits, lifestyle, etc.) have in the development of diseases. "However, genetic and environmental differences are not enough" said Alejandro Burga, one of the authors of the article. "In the last decade we have learned by studying very simple organisms such as bacteria that gene expression -- the extent to which a gene is turned on or off -- varies greatly among individuals, even in the absence of genetic and environmental variation. Two cells are not completely identical and sometimes these differences have their origin in random or stochastic processes. The results of our study show that this type of variation can be an important influence the phenotype of animals, and that its measurement can help to reliably predict the chance of developing an abnormal phenotype such as a disease ."

The researchers conducted their study using the roundworm Caenorhabditis elegans as a model. Due to its simplicity, this microscopic worm is one of the most widely studied organisms in biology, and was the first animal to have its genome sequenced. Recently three different Nobel Prizes have been awarded for research using C. elegans.

Since the genetic composition and the environment are insufficient to determine whether or not a mutation will affect an individual, they developed a methodology to measure small differences in gene expression in vivo. "The challenge was not only to develop a method to quantify these small differences among individuals, but also to predict which genes are relevant for a particular mutation," adds Ben Lehner, coordinator of the study and ICREA Research Professor in the European Molecular Biology Laboratory-Centre for Genomic Regulation Systems Biology Research Unit. "In both round worms and humans, genes cooperate and help each other to perform functions within the cell. A few genes are very "generous" and help hundreds of others to perform many different processes, whereas others only help a few other genes to perform more specific functions. The key to predict what will happen in each individual is to measure variation in the expression of both types of gene."

The work suggests that, even if we completely understand all of the genes important for a particular human disease, we may never be able to predict what will happen to each person from their genome sequence alone. Rather, to develop personalised and predictive medicine it will also be necessary to consider the varying extent to which genes are turned on or off in each person.

The study was funded by the European Research Council, the Institució Catalana de recerca i Estudis Avanzats (ICREA) and the Ministry of Science and Innovation (MICINN).

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Why does the same mutation kill one person but not another?

TI engineers elected as IEEE Fellows

MOUNTAIN VIEW, Calif.--Three engineers from Texas Instruments Inc. (TI) have been elected as IEEE Fellows for "extraordinary accomplishments" in the semiconductor space and their contributions to the electrical engineering community.

TI's Ajith Amerasekera, director of Kilby Labs, Ahmad Bahai, Analog Chief Technology Officer, and Luigi Colombo, TI Fellow in the External Development and Manufacturing (EDM) group, all received the IEEE's highest level of membership, joining 19 other TI engineers who hold the title of IEEE Fellow.

Dr. Ajith Amerasekera received his honor for "leadership in semiconductor innovation and contributions to circuit design," especially for his work on high-current and high-voltage effects in submicron CMOS technologies which led to the first predictive models in practical device and circuit simulators.

Amerasekera's research helped foster an improved understanding of semiconductor device robustness, including electrostatic discharge (ESD), latchup physics and circuit-level gate oxide integrity.

Amerasekera holds 30 patents, has published over 100 papers in technical journals and written four books on semiconductor electronics. He currently leads TI's Kilby Labs, which the firm describes as its "high-risk innovation centers focused entirely on delivering breakthrough technology."

Dr. Ahmad Bahai received his honor for work on multi-carrier wireless and wire-line communication systems, and is recognized for being the co-inventor of the multi-carrier spread spectrum theory used in 4G and power line communication.

Previously CTO and director of research labs at National Semiconductor, Bahai now serves as CTO of TI's Analog business and director of TI's analog and mixed-signal labs. He has over 120 IEEE/IEE publications, 26 issued and two pending patents on systems and circuits, and has written a textbook on orthogonal frequency-division multiplexing.

Dr. Luigi Colombo was honored for contributions to infrared (IR) detectors and high-k gate dielectrics. His research on the development of the HgCdTe growth process which helped TI become important in the defense space, was of particular note, especially as it helped TI become a provider of IR detectors for military imaging applications, such as night vision and heat-seeking missiles.

Dr. Colombo also helped to establish high-k materials technology as important in the semiconductor industry. He has authored more than 130 articles in journals and proceedings, written three book chapters and holds 73 U.S. and 18 international patents, with an additional 20 patents pending in the areas of IR materials, ferroelectric memories, high-k, metal gates, device integration and graphene.

Rich Templeton, TI's president and CEO said innovation was the foundation of TI's 80-plus year history, adding, "We're fortunate to have some of the brightest minds working at TI."

As a company, TI takes research and development very seriously, having already invested $5 billion in R&D over the last three years. The company also works closely with universities and industry consortia, offering both funding and expertise.


TI engineers elected as IEEE Fellows

Changes in bioelectric signals trigger formation of new organs

The researchers achieved most surprising results when they manipulated membrane voltage of cells in the tadpole's back and tail, well outside of where the eyes could normally form. "The hypothesis is that for every structure in the body there is a specific membrane voltage range that drives organogenesis," said Pai. "These were cells in regions that were never thought to be able to form eyes. This suggests that cells from anywhere in the body can be driven to form an eye."

To do this, they changed the voltage gradient of cells in the tadpoles' back and tail to match that of normal eye cells. The eye-specific gradient drove the cells in the back and tail -- which would normally develop into other organs -- to develop into eyes.

These findings break new ground in the field of biomedicine because they identify an entirely new control mechanism that can be capitalized upon to induce the formation of complex organs for transplantation or regenerative medicine applications, according to Michael Levin, Ph.D., professor of biology and director of the Center for Regenerative and Developmental Biology at Tufts University's School of Arts and Sciences. Levin is senior and corresponding author on the work published in the journal "Development." online December 7 2011, in advance of print.

"These results reveal a new regulator of eye formation during development, and suggest novel approaches for the detection and repair of birth defects affecting the visual system," he said. "Aside from the regenerative medicine applications of this new technique for eyes, this is a first step to cracking the bioelectric code."

Tufts post-doctoral fellow Vaibhav P. Pai Ph.D., is first author of the paper, entitled "Transmembrane Voltage Potential Controls Embryonic Eye Patterning in Xenopus laevis." .

Signals Turn On Eye Genes

From the outset of their research, the Tufts' biologists wanted to understand how cells use natural electrical signals to communicate in their task of creating and placing body organs. In recent research, Tufts biologist Dany S. Adams showed that bioelectrical signals are necessary for normal face formation in the Xenopus (frog) embryos. In the current set of experiments, the Levin lab identified and marked hyperpolarized (more negatively charged) cell clusters located in the head region of the frog embryo.

They found that these cells expressed genes that are involved in building the eye called Eye Field Transcription Factors (EFTFs). Sectioning of the embryo through the developed eye and analyzing the eye regions under fluorescence microscopy showed that the hyperpolarized cells contributed to development of the lens and retina. The researchers hypothesized that these cells turned on genes that are necessary for building the eye.

Changing the Signals Lead to Defects

Next, the researchers were able to show that changing the bioelectric code, or depolarizing these cells, affected normal eye formation. They injected the cells with mRNA encoding ion channels, which are a class of gating proteins embedded in the membranes of the cell. Like gates, each ion channel protein selectively allows a charged particle to pass in and out of the cell.

Using individual ion channels that allow, the researchers changed the membrane potential of these cells. This affected expression of EFTF genes, causing abnormalities to occur: Tadpoles from these experiments were normal except that they had deformed or no eyes at all.

Further, the Tufts biologists were also able to show that they could control the incidence of abnormal eyes by manipulating the voltage gradient in the embryo. "Abnormalities were proportional to the extent of disruptive depolarization," said Pai. "We developed techniques to raise or lower voltage potential to control gene expression."

Electric Properties of Cells Can Be Manipulated to Generate Specific Organs

The researchers achieved most surprising results when they manipulated membrane voltage of cells in the tadpole's back and tail, well outside of where the eyes could normally form.

"The hypothesis is that for every structure in the body there is a specific membrane voltage range that drives organogenesis," said Pai. "By using a specific membrane voltage, we were able to generate normal eyes in regions that were never thought to be able to form eyes. This suggests that cells from anywhere in the body can be driven to form an eye."

Levin and his colleagues are pursuing further research, additionally targeting the brain, spinal cord, and limbs. The findings, he said "will allow us to have much better control of tissue and organ pattern formation in general. We are developing new applications of molecular bioelectricity in limb regeneration, brain repair, and synthetic biology." Additional authors include post-doctoral fellow Sherry Aw, Tufts Postdoctoral Associate Tal Shomrat, and Research Associate Joan M. Lemire. Funding for this research came from the National Institutes of Health.

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Changes in bioelectric signals trigger formation of new organs

NASA Mars rover finds mineral vein deposited by water

"This tells a slam-dunk story that water flowed through underground fractures in the rock," said Steve Squyres of Cornell University, Ithaca, N.Y., principal investigator for Opportunity. "This stuff is a fairly pure chemical deposit that formed in place right where we see it. That can't be said for other gypsum seen on Mars or for other water-related minerals Opportunity has found. It's not uncommon on Earth, but on Mars, it's the kind of thing that makes geologists jump out of their chairs."

The latest findings by Opportunity were presented Dec. 7 at the American Geophysical Union's conference in San Francisco.

The vein examined most closely by Opportunity is about the width of a human thumb (0.4 to 0.8 inch, or 1 to 2 centimeters), 16 to 20 inches (40 to 50 centimeters) long, and protrudes slightly higher than the bedrock on either side of it. Observations by the durable rover reveal this vein and others like it within an apron surrounding a segment of the rim of Endeavour Crater. None like it were seen in the 20 miles (33 kilometers) of crater-pocked plains that Opportunity explored for 90 months before it reached Endeavour, nor in the higher ground of the rim.

Last month, researchers used the Microscopic Imager and Alpha Particle X-ray Spectrometer on the rover's arm and multiple filters of the Panoramic Camera on the rover's mast to examine the vein, which is informally named "Homestake." The spectrometer identified plentiful calcium and sulfur, in a ratio pointing to relatively pure calcium sulfate.

Calcium sulfate can exist in many forms, varying by how much water is bound into the minerals' crystalline structure. The multi-filter data from the camera suggest gypsum, a hydrated calcium sulfate. On Earth, gypsum is used for making drywall and plaster of Paris. Observations from orbit had detected gypsum on Mars previously. A dune field of windblown gypsum on far northern Mars resembles the glistening gypsum dunes in White Sands National Monument in New Mexico.

"It is a mystery where the gypsum sand on northern Mars comes from," said Opportunity science-team member Benton Clark of the Space Science Institute in Boulder, Colo. "At Homestake, we see the mineral right where it formed. It will be important to see if there are deposits like this in other areas of Mars."

The Homestake deposit, whether gypsum or another form of calcium sulfate, likely formed from water dissolving calcium out of volcanic rocks. The calcium combined with sulfur that was either leached from the rocks or introduced as volcanic gas, and it was deposited as calcium sulfate into an underground fracture that later became exposed at the surface.

Throughout Opportunity's long traverse across Mars' Meridiani plain, the rover has driven over bedrock composed of magnesium, iron and calcium sulfate minerals that also indicate a wet environment billions of years ago. The highly concentrated calcium sulfate at Homestake could have been produced in conditions more neutral than the harshly acidic conditions indicated by the other sulfate deposits observed by Opportunity.

"It could have formed in a different type of water environment, one more hospitable for a larger variety of living organisms," Clark said.

Homestake and similar-looking veins appear in a zone where the sulfate-rich sedimentary bedrock of the plains meets older, volcanic bedrock exposed at the rim of Endeavour. That location may offer a clue about their origin.

Opportunity and its rover twin, Spirit, completed their three-month prime missions on Mars in April 2004. Both rovers continued for years of extended missions and made important discoveries about wet environments on ancient Mars that may have been favorable for supporting microbial life. Spirit stopped communicating in 2010. Opportunity continues exploring, currently heading to a sun-facing slope on the northern end of the Endeavour rim fragment called "Cape York" to keep its solar panels at a favorable angle during the mission's fifth Martian winter.

"We want to understand why these veins are in the apron but not out on the plains," said the mission's deputy principal investigator, Ray Arvidson, of Washington University in St. Louis. "The answer may be that rising groundwater coming from the ancient crust moved through material adjacent to Cape York and deposited gypsum, because this material would be relatively insoluble compared with either magnesium or iron sulfates."

NASA launched the next-generation Mars rover, the car-sized Curiosity, on Nov. 26. It is slated for arrival at the planet's Gale Crater in August 2012. NASA's Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the Mars Exploration Rover Project for the NASA Science Mission Directorate in Washington. For more information about the rovers, visit http://www.nasa.gov/rovers and http://marsrovers.jpl.nasa.gov .

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NASA Mars rover finds mineral vein deposited by water

LX wins Innovation Award at the Anthill Magazine 2011 Annual Cool Company Awards. Electronics News

LX Design House is working on a system that uses a electroencephagraphic headset to “read” brain impulses and translate them to actions or movements by an electronic device, such as a television or a robot. Read more: http://anthillonline.com/meet-lx-design-house-anthill-2011-cool-company-award-winner-innovation-categories/

The Cool Company Awards is a national program that was developed in 2006 to recognise Australian companies that are doing things differently to bring about positive change.

Over 700 aspiring ‘cool companies’ were nominated for the 2011 awards, making ‘The Cools’ one of Australia’s largest business awards programs.

“The Cool Company Awards are extremely egalitarian,” said James Tuckerman, Editor-In-Chief, Anthill Magazine. “Previous winners have included two-person start-ups, not-for-profit social enterprises, large private companies and publicly-listed corporations.”

“Judging takes into account far more than mere business variables, such as revenue and wealth. The criteria are geared to consider other qualities, from the disruptive nature of the product or service to the culture of the organisation.”

“Applicants either nominated themselves or were nominated by peers, work colleagues, family, friends and other ‘admirers’. A field of hundreds was examined (and cross-examined) before our judges were able to isolate three Finalists for each of our seven categories.”

What are Cool Company Awards?

The Cool Company Awards was launched in 2006 as a way for Anthill Magazine to publicly acknowledge and celebrate Australian organisations that are doing things differently to bring about positive change. In its sixth year, the awards attracted nominations from over 700 organisations, making it among the largest business award programs in Australia.

What is Anthill Magazine?

AnthillOnline.com is a digital business magazine that celebrates creativity, inspiration and commercial ingenuity, providing a fresh, exciting and practical perspective on Australian business in a global world. It is among the Top 50 Business & Finance websites in Australia, as ranked by Nielsen Online Ratings, and is home to the Cool Company Awards, the 30under30 and the Smart 100. It’s where ideas and business meet.

For further information:
Debra Drury, Marketing Coordinator, debra.d@lx-group.com.au

LX is an award-winning electronics design company based in Sydney, Australia. LX services include full turnkey design, electronics, hardware, software and firmware design. LX specialises in embedded systems and wireless technologies design. www.lx-group.com.au

Published by LX Pty Ltd for itself and the LX Group of companies, including LX Design House, LX Solutions and LX Consulting, LX Innovations.

 


LX wins Innovation Award at the Anthill Magazine 2011 Annual Cool Company Awards. Electronics News

Qualcomm MEMS display drives Kyobo e-reader


LONDON – The Kyobo e-reader from Kyobo Book Centre, Korea's largest book seller, is the first e-reader to use Mirasol MEMS-based display technology from Qualcomm MEMS Technologies Inc.

The Kyobo e-reader was unveiled in Seoul, South Korea, and features a 5.7-inch diagonal-size XGA resolution display (1,024 pixels by 768 pixels). The resolution is 223 pixels per inch the unit includes Qualcomm's 1.0-GHz Snapdragon S2 class processor and Kyobo's custom reader application sits on an Android 2.3 base.

The Mirasol display has the advantage of being non-volatile so that it only needs to use energy when changing the page – well suited to an e-reader.

The technology, which Qualcomm (San Diego, Calif.) acquired in 2004, is also reflective so it can save power by not requiring a backlight and make use of ambient light. However, by the same token the display could be seen as less intense and visually appealing than a saturated emissive display, such as OLED.

Mirasol is based on a MEMS structure combined with thin film optics to create interferometric modulation. The color display is thin and bi-stable so that power is only consumed when changing the status of display. This has the disadvantage that grey-scale requires the application of spatial and temporal dithering. Nonetheless the display is capable of running video at 30-frame per second.



A 5.7-inch MEMS-based display makes it to market in the Kyobo e-reader.

"Kyobo's customers will be the first to enjoy the exceptional color e-reader experience and long battery life that only mirasol displays can provide." said Clarence Chui, senior vice president and general manager of Qualcomm MEMS Technologies Inc., in a statement.

Chui said on the QMT website that commercialization efforts are still in the early stages and the company will remain focused on low-volume partners such as Kyobo. A purpose built factory in Taiwan is due to come online in 2012 allowing QMT to go to higher volume production.

The Kyobo e-reader is available for purchase at a price of 349,000 Korean Won (about $310).


Related links and articles:

www.mirasoldisplays.com

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Qualcomm's display stays small, for now

Qualcomm's MEMS display gains e-reader design win


Comment: Qualcomm's MEMS display is smart but is it bright enough?


Qualcomm MEMS display drives Kyobo e-reader

R&S, U-blox validate GLONASS compatibility

Rohde & Schwarz (Munich, Germany) and U-blox (Thalwil, Switzerland) have successfully concluded a simulation of the Russian GLONASS satellite navigation system.

The test, carried out with the R&S SMBV100A vector signal generator and its GNSS simulation options, verified the U-blox proof-of-concept and the compatibility of U-blox receiver technology with the GLONASS transmission protocol.

The GLONASS satellite system is Russia's answer to the US NAVSTAR GPS satellite positioning system. It will provide a high-accuracy positioning system with global coverage once completed. GLONASS will also be used in hybrid receivers around the world in conjunction with GPS to ensure improved coverage especially in dense cities and thus improve the location accuracy.

"Our close cooperation with Rohde & Schwarz has proven to be a valuable and strategic asset, allowing us to develop advanced satellite receiver technology well before the actual satellites are available," said Thomas Nigg, VP Product Marketing at U-blox.

Earlier this year Rohde & Schwarz' verified of the U-blox' LEON GSM module for application in eCall and ERA-GLONASS emergency call systems.
 
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R&S, U-blox validate GLONASS compatibility

World's first super predator had remarkable vision

This story will be accompanied by an artist's impression of the super predator on the front cover of the 8 December 2011 issue of Nature.

Palaeontologists have discovered exceptionally preserved fossil eyes of the top predator in the Cambrian ocean from over 500 million years ago: the fearsome metre-long Anomalocaris.

The scientists show that the world's first apex predator had highly acute vision, rivalling or exceeding that of most living insects and crustaceans.

The international team behind this discovery includes two Adelaide researchers, Dr Michael Lee (SA Museum and University of Adelaide -- Environment Institute and School of Earth & Environmental Sciences) and Dr Jim Jago (SA Museum and UniSA), and was led by Dr John Paterson (University of New England).

The World's Oldest Apex Predator

Anomalocaris is the stuff of nightmares and sci-fi movies. It is considered to be at the top of the earliest food chains because of its large body size, formidable grasping claws at the front of its head and a circular mouth with razor-sharp serrations.

Supporting evidence of this predator's dominance includes damage to contemporaneous trilobites, and even its fossilised poo (or coprolites) containing the remains of its prey.

The discovery of its stalked eyes -- showing astonishing details of its optical design -- from a 515 million-year-old deposit on Kangaroo Island in South Australia now confirms it had superb vision to support its predatory lifestyle.

All The Better To See You With...

The fossils represent compound eyes -- the multi-faceted variety seen in arthropods such as flies, crabs and kin -- and are amongst the largest to have ever existed, with each eye up to 3 cm in length and containing over 16,000 lenses.

The number of lenses and other aspects of their optical design suggest that Anomalocaris would have seen its world with exceptional clarity whilst hunting in well-lit waters. Only a few arthropods, such as modern predatory dragonflies, have similar resolution.

The existence of highly sophisticated, visual hunters within Cambrian communities would have accelerated the predator-prey 'arms race' that began during this important phase in early animal evolution over half a billion years ago.

The discovery of powerful compound eyes in Anomalocaris confirms it is a close relative of arthropods, and has other far-reaching evolutionary implications. It demonstrates that this particular type of visual organ appeared and was elaborated upon very early during arthropod evolution, originating before other characteristic anatomical structures of this group, such as a hardened exoskeleton and walking legs.

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Photronics to halt mask making in Singapore

SAN FRANCISCO—Photomask vendor Photronics Inc. said this week it would cease manufacturing operations at its Singapore facility in an effort to streamline its mask building infrastructure.

Photronics (Brookfield, Conn.) said manufacturing for customers previously serviced from its Singapore facility would be handled by the company's other manufacturing facilities, included sites in South Korea and Taiwan.

Customer service, data preparation and photomask repel services will continue to be handled at the Singapore facility, Photronics said. The company estimates that the action will save $3 million to $4 million per year. Photronics will take a restructuring charge for fiscal 2012 of no more than $2.5 million, the company said.

"The Asian semiconductor landscape continues to change and we are aligning our manufacturing facilities to meet current demand and improve our cost structure," said Constantine Macricostas, founder, chairman and CEO of Photronics, in a statement.

Also this week, Photronics reported record sales of semiconductor and flat-panel display photomasks for its fiscal year 2011, which closed Oct. 30.

Photronics reported sales of $122.2 million for the fiscal fourth quarter, which also closed Oct. 30, down 10 percent compared to the previous quarter but up 11 percent compared to the year-ago quarter. Sales of semiconductor photomasks in the quarter totaled $96.5 million, or 79 percent of revenues, while sales of flat-panel display photomasks totaled $25.7 million, or 21 percent of revenues, Photronics said.

The company posted a net income in accordance with generally accepted accounting principles for the quarter of $9.3 million, or 14 cents per diluted share, down 18 percent from the previous quarter and up 15 percent from the year-ago quarter.

For the fiscal year, Photronics reported record sales of $512 million, up 20 percent from fiscal 2010.

Sales of semiconductor photomasks were $391.2 million, or 76 percent of revenues for the fiscal year, while sales of flat-panel display photomasks totaled $120.8 million, or 24 percent of revenues. The company posted a GAAP net income for the year of $16.2 million, or 28 cents per share, including a debt extinguishment loss of $35.3 million. GAAP net income slipped from fiscal 2010, when it was $23.9 million, or 43 cents per share.

"Though weakness in the global semiconductor and flat panel markets may continue in the short term, we believe that demand at the leading edge is in our favor for future growth and share gains," Macricostas said.
Photronics to halt mask making in Singapore