4.5 Article

Advanced neuroimaging applied to veterans and service personnel with traumatic brain injury: state of the art and potential benefits

Journal

BRAIN IMAGING AND BEHAVIOR
Volume 9, Issue 3, Pages 367-402

Publisher

SPRINGER
DOI: 10.1007/s11682-015-9444-y

Keywords

Traumatic brain injury; Magnetic resonance imaging; Diffusion tensor imaging; fMRI; Positron emission tomography; Magnetic resonance spectroscopy; Veteran

Categories

Funding

  1. US Department of Veterans Affairs
  2. VA MERIT review grant program [1I01RX000684-01A2, 1I01RX001062-01A1, 1 I01 RX000928:]
  3. VA SPIRE program [VA 1 I21RX001565, VA 1 I21RX001608]
  4. Department of Defense Office of the Congressionally Directed Medical Research Programs (CDMRP) [W81XWH-10-1-0835, X81XWH-07-CC-CSDoD]
  5. National Institutes of Health [R01-NS078337]
  6. Telemedicine and Advanced Technology Research Center (TATRC) at the U.S. Army Medical Research and Material Command (USAMRMC) [W81XWH-13-2-0025]
  7. United States Army Medical Research Acquisition Activity (USAMRAA) [W81XWH-09-2-0160]
  8. Chronic Effects Neurotrauma Consortium (CENC) [PT108802-SC106187, 1W81XWH-13-2-0095]
  9. Alzheimer's Drug Discovery Foundation

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Traumatic brain injury (TBI) remains one of the most prevalent forms of morbidity among Veterans and Service Members, particularly for those engaged in the conflicts in Iraq and Afghanistan. Neuroimaging has been considered a potentially useful diagnostic and prognostic tool across the spectrum of TBI generally, but may have particular importance in military populations where the diagnosis of mild TBI is particularly challenging, given the frequent lack of documentation on the nature of the injuries and mixed etiologies, and highly comorbid with other disorders such as post-traumatic stress disorder, depression, and substance misuse. Imaging has also been employed in attempts to understand better the potential late effects of trauma and to evaluate the effects of promising therapeutic interventions. This review surveys the use of structural and functional neuroimaging techniques utilized in military studies published to date, including the utilization of quantitative fluid attenuated inversion recovery (FLAIR), susceptibility weighted imaging (SWI), volumetric analysis, diffusion tensor imaging (DTI), magnetization transfer imaging (MTI), positron emission tomography (PET), magnetoencephalography (MEG), task-based and resting state functional MRI (fMRI), arterial spin labeling (ASL), and magnetic resonance spectroscopy (MRS). The importance of quality assurance testing in current and future research is also highlighted. Current challenges and limitations of each technique are outlined, and future directions are discussed.

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