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Erich Feldmeier

Michaela Dewar: wissenschaft.de - info overload Ich merk mir was, was du dir nicht merkst - 0 views

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    "Um das Gedächtnis auf Trab zu halten, lösen gerade ältere Menschen oft Kreuzworträtsel oder Sudokus. Das ist laut der neuen Studie von Dewar und ihren Kollegen nicht die Ideallösung, zumindest nicht, wenn direkt nach dem Erlernen der Neuigkeit gespielt wird. Einfach einmal zehn Minuten hinsetzen und nichts tun ist besser - denn dann hat das Gehirn Zeit und Ruhe, sich das neu Erlernte einzuprägen. Das Team von der University of Edinburgh hat dazu zwei Studien durchgeführt. In der ersten erzählten die Wissenschaftler älteren Menschen zwischen 61 und 87 Jahren zwei Kurzgeschichten. Danach durfte eine Gruppe zehn Minuten in einem dunklen Raum pausieren, während die andere ein „Finde den Unterschied"-Spiel am Computer spielte. Anschließend sollten die Probanden die Geschichte möglichst detailgetreu nacherzählen. Nach einer Woche forderten die Forscher sie erneut dazu auf."
Janos Haits

FORCE11 Home | FORCE11 - 0 views

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    Force11 is a virtual community working to transform scholarly communications through advanced use of computers and the Web. We invite you to join us.
Janos Haits

Tetherless World Constellation | Tetherless World Constellation - 0 views

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    Tetherless World Constellation (TWC) at Rensselaer Polytechnic Institute (RPI) explores the research and engineering principles that underlie the Web, to enhance the Web's reach beyond the desktop and laptop computer, and develops new technologies and languages that expand the capabilities of the Web under three themes: Future Web, Xinformatics and Semantic Foundations.
Janos Haits

The Tabula Project | StartSomeGood: Igniting Ideas, Investment & Impact. - 0 views

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    Tabula will be platform and content agnostic, working with as many brands and versions of tablet computers as possible. Of course, compatibility takes coding hours, so we'll start with one or two platforms and build from there. But let's just say we fully recognize the value of high-end and lower-cost hardware when it comes to solutions to help schools thrive.
Janos Haits

MIT CSAIL Parallel and Distributed Operating Systems - 0 views

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    "We build and investigate software systems for parallel and distributed environments. We have conducted research in operating systems, networking, mobile computing, language design, compiler design, and architecture, taking a pragmatic approach: we build high-performance, reliable, and working systems."
Janos Haits

SCinet - Wikipedia, the free encyclopedia - 0 views

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    "SCinet is a high-performance network that is built, once a year, in support of the annual International Conference for High Performance Computing and Communications also known as the Supercomputing Conference. It is the primary network for the conference and is used by attendees to demonstrate and test high-performance distributed applications."
David Corking

Guest Column: Computers vs. Brains - Olivia Judson Blog - NYTimes.com - 0 views

  • let’s say that one movable synapse could store one byte (8 bits) of memory. That thimble would then contain 1,000 gigabytes (1 terabyte) of information. A thousand thimblefuls make up a whole brain, giving us a million gigabytes — a petabyte — of information. To put this in perspective, the entire archived contents of the Internet fill just three petabytes.
    • David Corking
       
      Utterly astounding.
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    Inspiring and startling.
Maluvia Haseltine

Virtual Worlds May Be the Future Setting of Scientific Collaboration - 0 views

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    A team of scientists from the California Institute of Technology, Princeton, Drexel University, and the Massachusetts Institute of Technology have formed the first professional scientific organization based entirely in virtual worlds. Meta Institute for Computational Astrophysics (MICA) conducts professional seminars and popular lectures, among other events, for its growing membership.
Skeptical Debunker

Human cells exhibit foraging behavior like amoebae and bacteria - 0 views

  • "As far as we can tell, this is the first time this type of behavior has been reported in cells that are part of a larger organism," says Peter T. Cummings, John R. Hall Professor of Chemical Engineering, who directed the study that is described in the March 10 issue of the Public Library of Science journal PLoS ONE. The discovery was the unanticipated result of a study the Cummings group conducted to test the hypothesis that the freedom with which different cancer cells move - a concept called motility - could be correlated with their aggressiveness: That is, the faster a given type of cancer cell can move through the body the more aggressive it is. "Our results refute that hypothesis—the correlation between motility and aggressiveness that we found among three different types of cancer cells was very weak," Cummings says. "In the process, however, we began noticing that the cell movements were unexpectedly complicated." Then the researchers' interest was piqued by a paper that appeared in the February 2008 issue of the journal Nature titled, "Scaling laws of marine predator search behaviour." The paper contained an analysis of the movements of a variety of radio-tagged marine predators, including sharks, sea turtles and penguins. The authors found that the predators used a foraging strategy very close to a specialized random walk pattern, called a Lévy walk, an optimal method for searching complex landscapes. At the end of the paper's abstract they wrote, "...Lévy-like behaviour seems to be widespread among diverse organisms, from microbes to humans, as a 'rule' that evolved in response to patchy resource distributions." This gave Cummings and his colleagues a new perspective on the cell movements that they were observing in the microscope. They adopted the basic assumption that when mammalian cells migrate they face problems, such as efficiently finding randomly distributed targets like nutrients and growth factors, that are analogous to those faced by single-celled organisms foraging for food. With this perspective in mind, Alka Potdar, now a post-doctoral fellow at Case Western Reserve University and the Cleveland Clinic, cultured cells from three human mammary epithelial cell lines on two-dimensional plastic plates and tracked the cell motions for two-hour periods in a "random migration" environment free of any directional chemical signals. Epithelial cells are found throughout the body lining organs and covering external surfaces. They move relatively slowly, at about a micron per minute which corresponds to two thousandths of an inch per hour. When Potdar carefully analyzed these cell movements, she found that they all followed the same pattern. However, it was not the Lévy walk that they expected, but a closely related search pattern called a bimodal correlated random walk (BCRW). This is a two-phase movement: a run phase in which the cell travels primarily in one direction and a re-orientation phase in which it stays in place and reorganizes itself internally to move in a new direction. In subsequent studies, currently in press, the researchers have found that several other cell types (social amoeba, neutrophils, fibrosarcoma) also follow the same pattern in random migration conditions. They have also found that the cells continue to follow this same basic pattern when a directional chemical signal is added, but the length of their runs are varied and the range of directions they follow are narrowed giving them a net movement in the direction indicated by the signal.
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    When cells move about in the body, they follow a complex pattern similar to that which amoebae and bacteria use when searching for food, a team of Vanderbilt researchers have found. The discovery has a practical value for drug development: Incorporating this basic behavior into computer simulations of biological processes that involve cell migration, such as embryo development, bone remodeling, wound healing, infection and tumor growth, should improve the accuracy with which these models can predict the effectiveness of untested therapies for related disorders, the researchers say.
Janos Haits

WorldWide Telescope - 0 views

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    The WorldWide Telescope (WWT) is a visualization environment that enables your computer to function as a virtual telescope-bringing together imagery from the world's best ground- and space-based telescopes for the exploration of the universe. WWT blends terabytes of images, information, and stories from multiple sources into a seamless, immersive, rich media experience. Explorers of all ages will feel empowered to explore and understand the cosmos using WWT's simple and powerful user interface.
Janos Haits

MIT Places Database for Scene Recognition - 0 views

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    "Scene recognition is one of the hallmark tasks of computer vision, allowing defining a context for object recognition. Here we introduce a new scene-centric database called Places, with 205 scene categories and 2.5 millions of images with a category label. Using convolutional neural network (CNN), we learn deep scene features for scene recognition tasks, and establish new state-of-the-art performances on scene-centric benchmarks. Here we provide the Places Database and the trained CNNs for academic research and education purposes."
Erich Feldmeier

George Dvorsky: The 12 cognitive biases that prevent you from being rational - 1 views

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    "The human brain is capable of 1016 processes per second, which makes it far more powerful than any computer currently in existence. But that doesn't mean our brains don't have major limitations. The lowly calculator can do math thousands of times better than we can, and our memories are often less than useless - plus, we're subject to cognitive biases, those annoying glitches in our thinking that cause us to make questionable decisions and reach erroneous conclusions. Here are a dozen of the most common and pernicious cognitive biases that you need to know about"
Janos Haits

Wekinator | Software for real-time, interactive machine learning - 0 views

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    "The Wekinator allows users to build new interactive systems by demonstrating human actions and computer responses, instead of writing programming code."
Janos Haits

Human Brain Project Home - 0 views

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    "The Human Brain Project aims to put in place a cutting-edge research infrastructure that will allow scientific and industrial researchers to advance our knowledge in the fields of neuroscience, computing, and brain-related medicine"
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