Radiation from nearby Galaxies helped Fuel 1st Monster Black Hole

The massive black hole shown at left in this drawing is able to rapidly grow as intense radiation from a galaxy nearby shuts down star-formation in its host galaxy. Credit: John Wise, Georgia Tech

The massive black hole shown at left in this drawing is able to rapidly grow as intense radiation from a galaxy nearby shuts down star-formation in its host galaxy.
Credit: John Wise, Georgia Tech

Modeling supports one view of massive black-hole creation in early universe. The appearance of supermassive black holes at the dawn of the universe has puzzled astronomers since their discovery more than a decade ago. A supermassive black hole is thought to form over billions of years, but more than 2 dozen of these behemoths have been sighted within 800 million years of the Big Bang 13.8 billion years ago.

In a new study a team of researchers add evidence to one theory of how these ancient black holes, about a billion times heavier than our sun, may have formed and quickly put on weight...

Read More

Pain in the neck: Engineers use CRISPR technology to Prevent Tissue Damage, resulting Chronic Pain

University of Utah bioengineering assistant professor Robby Bowles and bioengineering doctoral student Niloofar Farhan are part of a team that has discovered a way to curb chronic pain by modulating genes that reduce tissue- and cell-damaging inflammation. The team is using the CRISPR (Clustered Regularly Interspaced Short Palindromic Repeat) system -- new technology of modifying human genetics -- to stop cell death and keep the cells from producing molecules that damage tissue and result in chronic pain. Credit: Dan Hixson/University of Utah College of Engineering

University of Utah bioengineering assistant professor Robby Bowles and bioengineering doctoral student Niloofar Farhan are part of a team that has discovered a way to curb chronic pain by modulating genes that reduce tissue- and cell-damaging inflammation. The team is using the CRISPR (Clustered Regularly Interspaced Short Palindromic Repeat) system — new technology of modifying human genetics — to stop cell death and keep the cells from producing molecules that damage tissue and result in chronic pain. Credit: Dan Hixson/University of Utah College of Engineering

For millions of sufferers, there is nothing more debilitating than chronic back or joint pain. It can feel like a lifetime of misery...

Read More

Never before seen Images of Early stage Alzheimer’s disease

Images that predate the formation of toxic clumps of beta-amyloid, the protein believed to be at the root of Alzheimer’s disease, have now been captured by researchers. Credit: Illustration: Per Uvdal

Images that predate the formation of toxic clumps of beta-amyloid, the protein believed to be at the root of Alzheimer’s disease, have now been captured by researchers. Credit: Illustration: Per Uvdal

MAX IV synchrotron in Lund, Sweden – the strongest of its kind in the world – has been used to produce images that predate the formation of toxic clumps of beta-amyloid, the protein believed to be at the root of Alzheimer’s disease. The unique images appear to contradict a previously unchallenged consensus. Instead of attempting to eliminate beta-amyloid plaques, the researchers now suggest stabilizing the protein.

It is a long-held belief in the scientific community that the beta-amyloid plaques appear almost instantaneously. Hence the term “popcorn plaques...

Read More

2 Radio Signals, 1 Chip, open a new World for Wireless Communication

Al Molnar, holding a test board with the two-way transceiver chip mounted in the center, is shown with graduate student Hazal Yüksel in Molnar's lab. Yüksel is co-lead author of the latest paper from the Molnar lab, published earlier this year in the Journal of Solid-State Circuits. Credit: Cornell University

Al Molnar, holding a test board with the two-way transceiver chip mounted in the center, is shown with graduate student Hazal Yüksel in Molnar’s lab. Yüksel is co-lead author of the latest paper from the Molnar lab, published earlier this year in the Journal of Solid-State Circuits. Credit: Cornell University

Cornell engineers have devised a method for transmitting and receiving radio signals on a single chip, which could ultimately help change the way wireless communication is done. Separating the send and receive bands is difficult enough, but the problem is compounded by the ever-increasing number of bands in the latest devices, which handle everything wireless technology has to offer...

Read More