Showing posts with label brain changes. Show all posts
Showing posts with label brain changes. Show all posts

Monday, December 30, 2013

NIH and NFL will research long-term effects of concussions

This article outlines research that will be done on the long-term effects and consequences of concussions. This research will be done as a partnership between the National Institutes of Health (NIH) and the National Football League (NFL).

The U.S. National Institutes of Health is teaming up with the National Football League on research into the long-term effects of repeated head injuries and improving concussion diagnosis.
The projects will be supported largely through a $30 million donation made last year to the Foundation for the National Institutes of Health by the NFL, which is wrestling with the issue of concussions and their impact on current and former players.
There's growing concern about the potential long-term effects of repeated concussions, particularly among those most at risk, including football players and other athletes and members of the military.
Current tests can't reliably diagnosis concussion. And there's no way to predict which patients will recover quickly, suffer long-term symptoms or develop a progressive brain disease called chronic traumatic encephalopathy (CTE), according to an NIH press statement released Monday.
"We need to be able to predict which patterns of injury are rapidly reversible and which are not. This program will help researchers get closer to answering some of the important questions about concussion for our youth who play sports and their parents," Story Landis, director of the National Institute of Neurological Disorders and Stroke (NINDS), said in the news release.
Two of the projects will receive $6 million each and will focus on determining the extent of long-term changes that occur in the brain years after a head injury or after numerous concussions. They will involve researchers from NINDS, the National Institute of Child Health and Human Development and academic medical centers.
One of the projects will attempt to define a clear set of criteria for various stages of CTE. It will also seek to distinguish it from Alzheimer's disease, amyotrophic lateral sclerosis (Lou Gehrig's disease) and other degenerative brain diseases that as of now can only be determined in brain tissue samples collected after death. The objective is to find medical signs of CTE that might eventually be used to diagnose the illness in living people.
The other project will seek to identify the long-term effects of mild, moderate and severe traumatic brain injury (TBI) and compare them with features of CTE. The goal is to identify signs that could be used to diagnose brain degeneration linked to traumatic brain injury in patients.
While the two projects focus on different aspects of traumatic brain injury, "their combined results promise to answer critical questions about the chronic effects of single versus repetitive injuries on the brain, how repetitive TBI (traumatic brain injury) might lead to CTE, how commonly these changes occur in an adult population, and how CTE relates to neurodegenerative disorders like Alzheimer's disease," Landis said.
Six other pilot projects will receive a total of just over $2 million and last up to two years. They will concentrate on improving the diagnosis of concussions and identifying potential medical signs that can be used to assess a patient's recovery. If the early results are promising, these projects may form the basis of more extensive research, the news release said.

Tuesday, December 17, 2013

Head impacts lead to lower test scores

A new study shows that non-concussion head impacts can result in lower test scores and brain changes over time.

Repeated blows to the head during a season of contact sports may cause changes in the brain's white matter and affect cognitive abilities even if none of the impacts resulted in a concussion, according to a study published today in the journalNeurology.
Using a form of magnetic resonance imaging, or MRI, researchers at the Indiana University School of Medicine and the Geisel School of Medicine at Dartmouth College found significant differences in brain white matter of varsity football and hockey players compared with a group of noncontact-sport athletes following one season of competition. White matter is composed primarily of axons, the long fibers that transmit signals between neurons.
"The contact sports and noncontact-sports groups differed, and the number of times the contact sports participants were hit, and the magnitude of the hits they sustained, were correlated with changes in the white matter measures," said Thomas W. McAllister, M.D., chair of the IU Department of Psychiatry.
"In addition, there was a group of contact sports athletes who didn't do as well as predicted on tests of learning and memory at the end of the season, and we found that the amount of change in the white matter measures was greater in this group," Dr. McAllister said.
The study was conducted while Dr. McAllister was Millennium Professor of Psychiatry at Dartmouth.
"This study raises the question of whether we should look not only at concussions but also the number of times athletes receive blows to the head and the magnitude of those blows, whether or not they are diagnosed with a concussion," Dr. McAllister said.
Two groups of Dartmouth athletes were studied: 80 football and ice hockey players in the contact sports group, and 79 athletes drawn from such noncontact sports as track, crew and Nordic skiing. The football and hockey players wore helmets equipped with accelerometers, which enabled the researchers to compile the number and severity of impacts to their heads. Players who sustained a concussion during the season were not included in the analysis.
The athletes were administered a form of MRI test known as diffusion tensor imaging, which is used to measure the integrity of the white matter. They were also given the California Verbal Learning Test II, a measure of verbal learning and memory.
The study did not find "large-scale, systematic differences" in the brain scan measures at the end of the season, which the authors found "somewhat reassuring" and consistent with the fact that thousands of individuals have played contact sports for many years without developing progressive neurodegenerative disorders.
However, the results do suggest that some athletes may be more susceptible to repeated head impacts that do not involve concussions, although much more research would be necessary to determine how to identify those athletes.
More work would also be necessary to determine whether the effects of the head impacts are long-lasting or permanent, and whether they are cumulative.
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