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

Wednesday, September 19, 2012

Battlefield M.R.I.s



Magnetic Resonance Imaging machines stateside allow medical staff to get a better look at tissue in the human body, including the brain. The M.R.I. trailer in Kandahar, Afghanistan allows battlefield doctors to traumatic brain injury and its effects on service members on the front lines.


Video provided by American Forces Network Afghanistan

Monday, July 16, 2012

DCoE Seeks Feedback on Mild TBI Pocket Guide


By Corina Notyce, DCoE Strategic Communications

We want to hear from you! Defense Centers of Excellence for Psychological Health and Traumatic Brain Injury (DCoE) encourages health care professionals to share their thoughts on the Mild Traumatic Brain Injury Pocket Guide and corresponding mobile app. Your feedback will help us make improvements to the pocket guide and other traumatic brain injury-related products.

How often do you refer to the pocket guide? What aspect of it do you find most useful? Based on your experience with the pocket guide, tell us everything from advantages and disadvantages to recommendations and suggestions for future traumatic brain injury (TBI) clinical resources and tools.

The pocket guide, developed by DCoE, is an all-encompassing, quick reference clinical guidance tool to help primary care providers assess and treat service members and veterans who have sustained a concussion. It includes a summary of the clinical practice guidelines and recommendations from the Defense Department and Department of Veterans Affairs on the management of mild TBI and provides information on treating common mild TBI symptoms; coding guidance; clinical recommendations for cognitive rehabilitation and driving following TBI; patient education materials; and additional clinical tools and resources related to TBI prevention and care.

You can also access the pocket guide from your smartphone with the free mobile app developed by National Center for Telehealth and Technology, a DCoE center. The mobile app was created to help providers conveniently access the latest evidence-based clinical guidelines for concussion care and enhance provider-patient interactions.

Hard copies of the pocket guide are available from Defense and Veterans Brain Injury Center. Call 800-870-9244 or email for details. To download an electronic version and other TBI clinical resources, visit the Health Professionals section of the DCoE website.

Take the online survey today — it only takes a few minutes. Participation is voluntary and responses will remain anonymous.

Wednesday, April 18, 2012

Army Research Drives Brain Injury Science


By Cheryl Pellerin
American Forces Press Service

WASHINGTON, April 18, 2012 – With $633 million and 472 active research projects on traumatic brain injury alone, the Army is driving the science behind this neglected public health problem that affects everyone from kids on the sports field to service members in Afghanistan.

TBI, and especially mild TBI, “is essentially a frontier of medicine,” Army Col. (Dr.) Dallas Hack, director of the Army’s Combat Casualty Care Research Program, said in a recent interview with American Forces Press Service.

From 2000 to 2011, just over 133,000 soldiers were diagnosed with TBI. For the Defense Department as a whole in that period, 220,000 service members were diagnosed, according to an Army behavioral health specialist.

Traumatic brain injuries range from severe to moderate to mild and can be caused by a bump, blow or jolt to the head or a penetrating head injury that disrupts normal brain function.

On the battlefield, Hack said, fewer than 25 percent of brain injuries are combat related. Most are caused by training injuries, vehicle accidents and a range of other activities.

Severe brain injuries are easy to diagnose, Hack said. Any kind of a computed tomography, or CT, scan can show the resulting physical defect.

CT scans combine a series of X-ray views taken from many different angles with computer processing to produce cross-sectional images of soft tissues inside the brain.

It’s a little more difficult to diagnose moderate TBI, he said, “although some of the more advanced imaging, even [magnetic resonance imaging, or MRI] scans generally do a decent job.”

MRI machines use powerful magnets and radio waves to create pictures of the internal brain.

“Where it is so difficult and where we as a culture and as a profession basically ignored it for all these years,” Hack said, “is in the mild TBI area.”

To improve the spectrum of diagnosis-to-treatment of mild TBI, he said, the research program pushes the science with partners like university researchers, and even organizations like the National Football League and the National Hockey League, sports whose players are at risk for concussion, also called mild TBI.

Research being funded includes a range of neuroimaging or brain scanning technologies; quantitative electroencephalography or brain mapping, blood tests for biomarkers of brain injury, and even drugs that may prevent injuries from mild brain trauma.

Brain imaging is “probably the current best we can do,” Hack said, but scientists often don’t have enough data to interpret mTBI scans.

“The fact is,” he added, “that on the milder injuries you don’t see physical defects but you can see functional issues.”

Studies are ongoing with functional MRIs, which rather than showing brain structures show brain activity by tracking the uptake of glucose, the brain’s source of energy.

Other imaging research targets a new kind of CT scan called single-photon emission computed tomography, or SPECT, which shows how blood flows through arteries and veins in the brain.

A technique called DTI, for diffusion tensor imaging, is a special version of MRI that measures the direction of water molecules in the brain, Hack said, so scientists can follow the physical path of nerve tracts in the brain.

Brain mapping, called quantitative EEG, can automatically detect and locate abnormal brain activity, he added, “or what we call silent seizures. We often see these soon after an injury and we have studies that are working on getting [Food and Drug Administration] approval” to use the technique in mTBI.

The program’s biomarker studies are producing devices that can test the blood for proteins unique to brain cells and indicate whether brain cells are damaged.

“When brain cells die and break [apart],” Hack said, “they spill their contents into the brain fluid. Some of that gets across into the blood and we can measure it.”

An application for FDA approval of the device will be submitted sometime in 2013, the physician said, “and hopefully we can have an approved test by the end of 2013.”

Eye movements are another way to get a look inside the brain.

“Certain kinds of eye movements are affected by even mild brain injury,” Hack said, “so we have some projects in that. We have others in sensory function. Balance, for instance, or vestibular function, is also quite sensitive to brain injury.

In such fledgling brain science studies, the researchers have to make sure they’re diagnosing the right conditions.

“Confounders are other conditions that could cause the same problems,” Hack said, “and we need to make sure in our studies that we’re able to differentiate brain injury from other conditions that can cause functional impact,” including Alzheimer’s disease, for example, or even lack of sleep or poor nutrition.

The program’s three-pronged approach to understanding mTBI, he said, is to determine whether there is brain cell damage, where the damage is and its functional impact.

“The science behind all of that is still very rudimentary, so we’re spending a lot of effort in those areas,” he said.

The program also funds drug trials, some of which examine existing drugs to see if they have a beneficial effect on brain inflammation, which can occur after a brain injury.

Atorvastatin, whose brand name is Lipitor, “is one of the drugs that has shown a benefit [on inflammation] in brain cells.”

The program is working with the National Institutes of Health on a phase III clinical trial of the female hormone progesterone.

“Progesterone is essentially a steroid that also is a female hormone but it is called a neurosteroid as well,” Hack said. “It has a positive benefit on brain inflammation.”

He added, “We don’t think there’s any one drug that will [help those with mTBI]. This is a complex problem and it’s going to take multiple approaches to solving it.”

Wednesday, February 22, 2012

DCoE February Webinar – Treating Sleep Problems in PTSD and TBI

The Defense Centers of Excellence (DCoE) presents:

Title: DCoE February Webinar – Treating Sleep Problems in PTSD and TBI
Date: Feb. 23, 2012, 1-2:30 p.m. (EST)

Purpose: The DCoE February webinar will focus on evidence-based and empirically-supported treatments for sleep problems (e.g., trouble getting to sleep, trouble staying asleep, nightmares and excessive daytime sleepiness) that are common in patients with post-traumatic stress disorder (PTSD) and/or traumatic brain injury (TBI). Both behavioral and pharmacological treatments will be presented, with a special emphasis on prazosin. Prazosin is a medication that has been found to be effective in reducing combat-related nightmares.

Presenters: 

 ■Anthony Panettiere, MD

 National Intrepid Center of Excellence

■Murray Raskind, MD

 VA Puget Sound Health Care System

Continuing education units (CEUs) and continuing medical education (CMEs) credits from Saint Louis University will be available for this webinar. Pre-registration is required to receive CEUs/CMEs.

Now available through Adobe Connect and Defense Connect Online

In an effort to support all guests whose network security settings may limit access to various internet sites, we are simultaneously hosting this webinar via two technical platforms. The primary site is via Adobe Connect and Defense Connect Online is the optional site. You need only to sign on to either one of the sites to fully participate in the webinar.

To register, please visit: http://es.adobeconnect.com/dcoewebinar/event/registration.html. Please note, if you would like to obtain CEUs/CMEs, you must register. Some network security settings (e.g., Department of Veterans Affairs) limit access to the registration page. If this occurs, please access the registration page from a different network.

View the webinar

The webinar will be simultaneously hosted on two technical platforms. The primary site is via Adobe Connect and Defense Connect Online is the optional site. You need only to sign on to either one of the sites to fully participate in the webinar. Visithttp://www.dcoe.health.mil/Training/MonthlyWebinars.aspx for instructions on how to access the webinar room and dial-in information for the audio portion of the webinar. Audio will not be provided via Adobe Connect or DCO.

If you have any questions, please email DCoE.MonthlyWebinar@tma.osd.mil

Monday, January 30, 2012

Fort Campbell Makes Advances in TBI Evaluation

By Kathy Helmick, DCoE deputy director for traumatic brain injury

In December, I had the opportunity to visit Fort Campbell, Ky., to learn more about their Military Functional Assessment Program. Maj. Sarah Goldman, Army Office of the Surgeon General, traumatic brain injury (TBI) program manager, and I were invited to see this comprehensive, advanced five-day assessment, which is part of a 12-week program designed to treat service members with TBIs.

This evaluation does not rely on a pen and paper test or a computer assessment. It takes place on post and in the program’s simulation lab, exposing service members to realistic combat scenarios while allowing a team of medical and rehabilitation providers the opportunity to evaluate their responses. Service members are observed on camera while combat-related decision-making functions are tested, such as how long it takes a service member to come to the aid of a fallen comrade, identify a threat, plan a course of action, or radio call into a command center. If they perform tasks in simulated combat situations in accordance to Army standards, then this information helps guide return-to-duty decision-making.

Additionally, the lab tests how the service member performs under environmental stressors, such as lack of light or loud sounds, to approximate scenarios encountered in combat zones.

One of the program’s best practices relates to integrating the expertise of a non-commissioned officer (NCO) to evaluate the ability of the soldier to perform the tasks to established Army standards. In the assessment we saw, the NCO was instrumental in educating medical providers about Army standards and describing combat scenarios. Leveraging the knowledge of a qualified NCO helps the medical provider offer a comprehensive evaluation of the service member’s impairments associated with TBI and the injury’s effects on their ability to perform military duties on the battlefield to standard.

I was also impressed with how this program focused on function; instead of clicking a dot on a computer test or circling a multiple choice question, service members with TBI are put in an environment to test their performance and capabilities. Some service members may perform well in a controlled rehabilitation environment, but may not be able to perform as well when multitasking during a high-pressure combat scenario. It was clear that the service members appreciated this type of evaluation and gained more confidence, whether they transitioned back to duty, or out of the military into civilian life.

In continuing to follow this advanced program, I hope that we can identify key outcomes that predict return-to-duty success, or help service members return back home.

Monday, January 23, 2012

8th Annual Blast Injury Conference Discusses New Technology, Continuum of Care

By Robyn Mincher, DCoE Strategic Communications

Defense and Veterans Brain Injury Center (DVBIC), a center of Defense Centers of Excellence for Psychological Health and Traumatic Brain Injury (DCoE), hosted the 8th Annual Blast Injury Conference Dec. 14, 2011, in Tampa, Fla. The event covered topics such as current care efforts of blast injury, new technology to improve treatment of traumatic brain injury (TBI), blast testing methods and how families can be affected by TBI.

Dr. Steven Scott, medical director of James A. Haley Veterans’ Hospital’s Polytrauma Rehabilitation Center in Tampa, gave opening remarks and helped organize the conference. Scott has been integral to the annual event since it began as a session at the Special Operations Medical Association conference in 2004. It has since grown to a full-day event, bringing together TBI and psychological health care experts from around the world, as well as those invested in TBI and psychological care and treatment in the military community.

“When the conference first originated eight years ago, we were seeing injuries from the wars, but recognized that the community and providers often didn’t really know what blast injury was,” he said. “Realizing the uniqueness of this injury, we made the conference a one-day event so we can educate our people working in care settings on advanced knowledge on blast injury.”

In her presentation “Mild Traumatic Brain Injury: Continuum of Care,” Army Col. Jamie Grimes, DVBIC director, discussed pre-deployment prevention and education training for service members on concussion, such as an Army campaign to teach soldiers and units how to identify, care for and track cases of mild TBI, which includes mandatory classes on the basics of the injury.

New technology was the focus of the presentation “Improving Function through Use of the Functional Electrical Stimulation Hand Glove 200.” Scott and a team of researchers from Haley Veterans’ Hospital discussed how the electrical glove delivered electrical stimulation to finger extensors and flexors attached to parts of the hand. The glove, invented by a scientist who spent 10 years as a robotic engineer for films, strengthened muscle, reduced spasticity, pain and swelling in hands that have decreased function as a result of TBI.

Dr. Jeanette Betancourt, vice president of outreach and educational practices with Sesame Workshop, the nonprofit organization behind Sesame Street, discussed the impact of TBI on military families. She listed their resources to help military families communicate when there is a psychological health care issue, such as their website www.familiesnearandfar.org.

The conference marked another year where top minds in TBI furthered knowledge on the many concerns surrounding the injury in the military.

“There’s a lot we’re learning every day about blast injuries. This injury has a significant effect on the whole person and their family, and it needs a whole team community behind rehabilitation,” said Scott.

Thursday, December 22, 2011

Annual Trauma Spectrum Conference Day One: TBI, Technology, Sleep Discussed

By Robyn Mincher and Emily Deck, DCoE Strategic Communications

Defense Centers of Excellence for Psychological Health and Traumatic Brain Injury (DCoE) hosted the fourth annual Trauma Spectrum Conference at the National Institutes of Health (NIH) in Bethesda, Md., Dec. 8-9. The conference brought together top minds from DCoE, NIH, Department of Veterans Affairs (VA), health care providers and military health care advocates to discuss a key issue: how to bridge the gap between clinical research and military systems of care for psychological health and traumatic brain injury (TBI).

“This is an important conference because we have a lot of creative people out in the world doing excellent work,” said Navy Capt. Paul S. Hammer, DCoE director, who gave opening remarks. He stressed the need to provide greater care to wounded warriors by translating information from the research world into clinical reality, and reminded the audience of the importance of keeping the patient at the center of what they do every day.

After encouraging the audience to introduce themselves to neighboring attendees, Hammer remarked that one of the first steps in bridging this gap was to reach out “and get to know people from other agencies.”

Keynote speaker Dr. Ramon Diaz-Arrastia, Center for Neuroscience and Regenerative Medicine, Uniformed Services University for the Health Sciences, outlined the modern epidemiology of TBI and gave an overview of TBI in the military and modern battlefield. He discussed diffusion-tensor imaging, an advanced technique that scans white matter in the brain. The technique is valuable because it can help clinicians diagnose a TBI months after the trauma.

Technology to improve diagnosis and treatment became a focal point of the conference, as new imaging techniques and technology from National Center of Telehealth and Technology (T2) were presented.

Dr. Greg Gahm, T2 director, took the audience on a virtual tour of the center’s mobile applications, websites, telehealth units and the future of its efforts to help service members manage care.

He praised suicideoutreach.org and afterdeployment.org as key resources for improving military psychological health care and noted the success of the popular Mood Tracker mobile application. He also discussed the use of virtual worlds for treatment, including demonstrating the T2 Virtual PTSD Experience, which provides information about PTSD causes, symptoms and resources for care.

“We at T2 believe the best way to predict the future is to create it, and we will continue to do that,” Gahm said.

Dr. Anthony Panettiere, a neurology and sleep physician at National Intrepid Center of Excellence, talked about sleep concerns. The center treats service members with post-combat sleep disorders in its sleep lab.

“Most troops do not look forward to going to bed,” he said as he discussed ways the center treats a service member with wartime experiences that turn into nightmares.

“We have a patient take a dream or nightmare they’re having, write it down and then [encourage them to] change the beginning or the end to something less emotional,” said Panettiere.

Afternoon workshops provided attendees with opportunities to gain more information and resources and ask questions about psychological health topics such as co-occurring disorders, cognitive rehabilitation, substance use disorders, among other subjects.

Day one of the conference ended with encouragement for attendees to embrace what they learned to help improve the system of military health care.

“We can rapidly translate what we’re learning from our investment into clinical practice,” said Dr. Alison Cernich, VA Maryland Health Care System and VA senior liaison for TBI with DCoE. “Above all, the service member and veteran is our focus. For all of us, the responsibility, and the charge, is clear.”

A first-time poster session was held later that afternoon where 26 researchers highlighted current and emerging findings and best practices focused on bridging the gap between research and clinical practice of psychological health and TBI. Award recognition went to Susanne W. Gibbons, Ph.D., assistant professor, Graduate School of Nursing, Uniformed Services University of the Health Sciences, for her poster about “Gender Differences in Response to Deployment Among Military Healthcare Providers in Afghanistan and Iraq.”

Naval Technology Could be a Lifesaver

By Dave Smalley, Office of Naval Research Public Affairs

ARLINGTON, Va. (NNS) -- Battlefield corpsmen and medical professionals across the country gained a valuable tool Dec. 13, as the Food and Drug Administration approved the first hand-held device to detect life-threatening bleeding in the brain.

Research on the unit, called the Infrascanner, was initiated and funded by the Office of Naval Research (ONR).

The portable, battery-powered medical device reveals intracranial hematomas soon after an injury, and could be a lifesaver for Sailors and Marines injured at sea or on battlefields far from the diagnostic machines available in hospitals.

Experts say early detection of brain trauma is essential.

"When a brain injury occurs, every moment without an accurate assessment can determine a person's risk" of severe injury or death due to a brain bleed, said Theresa Rankin, a traumatic brain injury survivor who works with Brain Injury Services.

The Infrascanner could be a particular boon to the Department of the Navy (DON), as heavy computed tomography (CT) machines are not normally carried aboard ships in the frigate or destroyer class, or in the field with the Marine Corps.

"Naval warfighters, on ship or land, may be a great distance away from any definitive medical care," said Dr. Michael Given, ONR's program manager for expeditionary medicine, combat casualty care. "So something like this could be very useful, almost essential."

The device is designed for quick and easy use.

"You can do the whole scan in a minute or so," said Given. "We tried to make it simple. Just a red-green lighted spot kind of display. So red, you're in trouble; green, everything's great. There are three sizes of red dots so you can tell if the bleeding is progressing. Simple and effective."

Warfighters diagnosed with hematoma would be immediately sent to advanced medical facilities.

The Infrascanner detects near-infrared light that penetrates into the skull. Pooled blood from hematomas absorbs that light differently from oxygenated blood circulating in blood vessels, and the device detects that difference.

Given said the greatest danger from hematomas is that they are sometimes not discovered until too late.

"If it goes undiagnosed and things look normal, and maybe a day later, you die of cerebral hemorrhage," Given said. "And it could be because people have a headache and then take aspirin-that interferes with the coagulation cascade, so they start bleeding even more.

"If you don't know it's going on, that's the danger. So that's where this device fits in."

The revolutionary tool could see quick deployment. According to Dr. Baruch Ben Dor, president of Philadelphia's InfraScan which makes the Infrascanner, a plan is already in place through ONR to move the system to field evaluation with the Marine Corps Systems Command.

The Marines are testing and "ruggedizing" a version of the device that meets military standards for resistance to water, sand, corrosion by salt spray and more.

Traumatic brain injury (TBI) touches many veterans and military families. Blasts are a leading cause of TBI in war zones, according to the Centers for Disease Control (CDC), affecting memory and reasoning, sensory perception, communication ability and emotional well-being, as well as increased risk of unpredictable epileptic seizures and early onset of brain disorders typically associated with age.

Of the 1.4 million Americans diagnosed with TBI yearly, the CDC estimates 50,000 will die.

Rankin, who also founded brainlinemilitary.org, commended ONR's research.

"Clearly, this naval medical technology will have a global impact," Rankin said, "because the field of neurotrauma continues to struggle with the lack of portable transformative diagnostic technology.

"The Office of Naval Research is ready to set a new standard of excellence."

ONR provides the science and technology necessary to maintain the Navy and Marine Corps' technological advantage. Through its affiliates, ONR is a leader in science and technology with engagement in 50 states, 70 countries, 1,035 institutions of higher learning and 914 industry partners. ONR employs approximately 1,400 people, comprising uniformed, civilian and contract personnel, with additional employees at the Naval Research Lab in Washington, D.C.