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Prenatal meth exposure linked to abnormal brain development
A first of its kind study examining the effects of methamphetamine use during pregnancy has found the drug appears to cause abnormal brain development in children.   view more (2009-04-16)

Mechanism Behind Stuttering Revealed (p 380)
Stuttering is caused by a structural abnormality in the left hemisphere of the brain, according to an article in this week's LANCET. Dr Martin Sommer and colleagues from the Universities of Hamburg and Göttingen in Germany report that persistent developmental stuttering results from a disconnection of speech-related areas in the cortex.... view more... (2002-07-31)

Fat and smart - the perfect combination?
The reason why human babies are so plump is related to the energetic needs of our uniquely enlarged brain claim a team of scientists in the latest edition of the American Journal of Human Biology. Humans are the species with the fattest newborns. Proportionately, our babies are as fat as animals living in the artic and fatter than aquatic animals,... view more... (2004-02-17)

Colluding with colloids: Scientists make liquid crystal discovery
What do milk, paint, ink and liquid crystals have in common? Colloids. Findings of Kent State University scientists indicate that manipulating the size of colloids, micron-sized or nanometer-sized particles, can produce huge changes in the material properties of liquid crystals.   view more (2006-12-18)

Big and fast growing infants at greater risk of later obesity
Large infants, and those who grow rapidly during the first two years of life, are at increased risk of obesity in childhood and adulthood, a study published online by the BMJ today (14 October 2005) has found.   view more (2005-10-14)

Researchers find an evolutionarily preserved signature in the primate brain
Researchers have determined that there are hundreds of biological differences between the sexes when it comes to gene expression in the cerebral cortex of humans and other primates.   view more (2008-06-20)

Seeing what we are thinking
At last we can see ourselves thinking, using the technique known as functional brain imaging (fMRI), and some of the exciting developments in this field were described in a series of papers presented today, Thursday 29 March, at The British Psychological Society's Centenary Annual Conference, held at the SECC, Glasgow. Dr Adrian Owen, of the... view more... (2001-03-26)

Breast cancer subtypes linked to survival from secondary brain tumors
Screening breast cancers for three receptors could help doctors predict the likely survival of patients with brain metastases.   view more (2008-02-28)

Unraveling where chimp and human brains diverge
Six million years ago, chimpanzees and humans diverged from a common ancestor and evolved into unique species.   view more (2006-11-14)

UCLA researchers determine toxic levels of Alzheimer's clusters in brain
Scientists have long suspected that Alzheimer's disease (AD) is caused by a small protein called the amyloid β-protein (Aβ).   view more (2009-08-12)

Gene variations linked to brain aneurysms
Variations in a gene seem to be linked to brain (cerebral) aneurysms, suggests research published ahead of print in the Journal of Neurology Neurosurgery and Psychiatry.   view more (2006-04-27)

Brain tumor researchers find their 'niche'
Brain tumors appear to arise from cancer stem cells (CSCs) that live within microscopic protective "niches" formed by blood vessels in the brain; and disrupting these niches is a promising strategy for eliminating the tumors and preventing them from re-growing.   view more (2007-01-17)

Researchers identify a cell type that limits stroke damage
A research team including Serge Rivest of University Laval's Faculty of Medicine has demonstrated the existence of a type of cells that limits brain damage after a stroke. The study was recently published in the online version of Nature Medicine.   view more (2009-01-28)

Changes in brain density can help predict schizophrenia
Changes in brain density could be used to predict whether an individual who is at risk for schizophrenia is likely to develop the condition or not.   view more (2006-12-07)

Preventing overload in the brain
Brain researchers in Amsterdam have observed a double control system in the hippocampus. This double control system contributes to the memory and ensures that the brain does not `crash`, as is the case during an epileptic seizure. The neurobiologists from the University of Amsterdam carried out their observations on the hippocampus of rats. The... view more... (2002-01-29)

Healthy older brains not significantly smaller than younger brains, new imaging study shows
The belief that healthy older brains are substantially smaller than younger brains may stem from studies that did not screen out people whose undetected, slowly developing brain disease was killing off cells in key areas, according to new research. As a result, previous findings may have overestimated atrophy and underestimated normal size for the... view more... (2009-09-08)

Scientists identify brain regions that decide where we look
Scientists have found the brain regions that decide where we look, and where to direct our eyes when we're faced with a difficult choice, such as looking someone straight in the eye or looking away.   view more (2005-01-24)

UBC scientist unveils secret of newborn's first words
A new study could explain why "daddy" and "mommy" are often a baby's first words - the human brain may be hard-wired to recognize certain repetition patterns.   view more (2008-08-27)

Parts of brain involved in social cognition may be in place by age 6
Social cognition-the ability to think about the minds and mental states of others-is essential for human beings. In the last decade, a group of regions has been discovered in the human brain that are specifically used for social cognition.   view more (2009-07-15)

How can we make nanoscale capacitors even smaller?
Researchers at UC Santa Barbara have discovered what limits our ability to reduce the size of capacitors, often the largest components in integrated circuits, down to the nanoscale.   view more (2006-10-13)
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