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Social Media Is A Faster Source For Unemployment Data Than Government

Government unemployment data today are what Nielsen TV ratings were decades ago - a flawed metric...

Gestational Diabetes Up 36% In The Last Decade - But Black Women Are Healthiest

Gestational diabetes, a form of glucose intolerance during pregnancy, occurs primarily in women...

Object-Based Processing: Numbers Confuse How We Perceive Spaces

Researchers recently studied the relationship between numerical information in our vision, and...

Males Are Genetically Wired To Beg Females For Food

Bees have the reputation of being incredibly organized and spending their days making sure our...

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Is there a definitive test for mental illness? Not yet, but using advanced neuropsychiatric diagnostic tools including magnetic resonance imaging (MRI) and positron emission tomography (PET), mental health professionals at The Menninger Clinic in Houston are pinpointing the causes of behavioral and psychiatric problems in patients.

“Even though a patient may have a straightforward mental health diagnosis or diagnoses, the neuropsychiatric approach can help us rule out medical or neurological reasons for the patient’s symptoms before we settle on a psychiatric reason,” says Florence Kim, M.D., director of the Menninger Comprehensive Psychiatric Assessment Service.

Nectar-feeding bats burn sugar faster than any other mammal on Earth – and three times faster than even top-class athletes – ecologists have discovered. The findings, published in the British Ecological Society's journal Functional Ecology, illustrate that because they live life on an energetic knife edge, these bats are very vulnerable to any changes in their environment that interrupt their fuel supply for even a short period.

Working with a captive breeding colony in Germany, Dr Christian Voigt of the Leibniz Institute for Zoo and Wildlife Research in Berlin and Professor John Speakman of the University of Aberdeen fed long-tongued bats (Glossophaga soricina) sugar labelled with non-radioactive carbon-13 and then measured the amount of carbon-13 in the bats’ exhaled breath.

According to the Centers for Disease Control, 7% of the U.S. population has diabetes, and 90-95% of those cases are classified as type 2 diabetes. Type 2 diabetes is caused by external factors -namely diet and exercise - but is also influenced by several genes.

A two-dimensional “paper” made out of titanium-dioxide – also known as TiO2, titania and titanium white – nanowires has been developed. The nanowires have a diameter of 60 nanometers (a nanometer equals one billionth of meter ) and are 30 to 40 millimeters long. The nanowires can withstand temperatures up to 700 degrees Celsius and could provide solutions for a variety of applications, including chemical and water filtration, solar cells, drug delivery and non-woven textiles stable at high-temperature.

“It is unprecedented to have such a pure fiber,” said James Throckmorton, president of Intellectual Property Partners LLC, which acquired the technology from Z. Ryan Tian, an assistant professor of chemistry and biochemistry at the University of Arkansas.

Researchers at Sandia National Laboratories in Albuquerque, N.M. and Livermore, Calif., are part of a Defense Advanced Research Projects Agency (DARPA) -funded team led by UOP, LLC, a Honeywell company, looking at the production of military Jet Propellant 8 (JP-8) fuel based on the use of renewable biomass oil crop feedstocks, including microalgae.

The goal of the 18-month effort, which is backed by a $6.7 million project award from DARPA, is to develop and commercialize a process to produce the Jet Propellant 8 (JP-8) fuel used by U. S.

Heart disease hits people with diabetes twice as often as people without diabetes. In those with diabetes, cardiovascular complications occur at an earlier age and often result in premature death, making heart disease the major killer of diabetic people. But why is heart disease so prevalent among diabetics?

To help answer that question, researchers at Washington University School of Medicine in St. Louis have been analyzing the fat (lipid) composition of heart tissue from laboratory mice with diabetes. They have found that heart cells of diabetic mice lose an important lipid from cellular components that generate energy for the heart, and their latest research shows this happens at the very earliest stages of diabetes.