Diffuse and spatially variable white matter disruptions are associated with blast-related mild traumatic brain injury

Nicholas D Davenport1, Kelvin O Lim, Michael T Armstrong

  • 1Minneapolis VA Medical Center, 1 Veterans Dr., Minneapolis, MN 55417, USA. daven012@umn.edu

Neuroimage
|November 2, 2011
PubMed

Insights

Military service members with blast-related mild traumatic brain injury (mTBI) show diffuse white matter disruptions. These widespread neurological effects are not influenced by prior civilian mTBI, highlighting blast injury

Area of Science:

  • Neuroscience
  • Military Medicine
  • Radiology

Background:

  • Mild traumatic brain injury (mTBI) from explosive blasts is prevalent in military personnel, often leading to lasting cognitive and psychological issues.
  • Neurological consequences of blast-related mTBI and their distinction from civilian non-blast mTBI remain poorly understood.
  • Blast injuries may cause diffuse and heterogeneous brain damage, necessitating investigation into subtle white matter alterations.

Purpose of the Study:

  • To investigate whether blast-related mTBI is associated with subtle, spatially inconsistent white matter disruptions in military service members.
  • To differentiate the neurological effects of blast mTBI from civilian non-blast mTBI.
  • To explore the relationship between the number of blast mTBIs and the extent of white matter disruption.

Main Methods:

  • Diffusion tensor imaging (DTI) was employed to assess white matter integrity using fractional anisotropy (FA).
  • The study included American military service members with (n=25) and without (n=33) blast-related mTBI.
  • FA measures were analyzed for concentrated, spatially consistent, spatially variable, and diffuse white matter disruptions.

Main Results:

  • Blast-related mTBI was linked to a diffuse, global pattern of reduced white matter integrity.
  • Previous civilian mTBI did not alter the observed effects of blast mTBI on white matter integrity.
  • No significant effects of either mTBI type were found on measures of concentrated, spatially consistent white matter disruptions.
  • Individuals with multiple blast mTBIs exhibited a greater number of voxels with low FA compared to those with a single blast injury.

Conclusions:

  • Blast-related mTBI is associated with disrupted integrity across multiple white matter tracts.
  • These disruptions are diffuse, widespread, and spatially variable, underscoring the unique nature of blast neurotrauma.
  • Averaging FA values within regions of interest may obscure the extent of white matter damage caused by blast injuries.