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Updated: May 28, 2026

Advanced Diffusion Imaging in The Hippocampus of Rats with Mild Traumatic Brain Injury
Published on: August 14, 2019
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
Abstract:
Mild traumatic brain injury (mTBI) due to explosive blast is common among military service members and often associated with long term psychological and cognitive disruptions. Little is known about the neurological effects of blast-related mTBI and whether they differ from those of civilian, non-blast mTBI. Given that brain damage from blasts may be diffuse and heterogeneous, we tested the hypothesis that blast mTBI is associated with subtle white matter disruptions in the brain that are spatially inconsistent across individuals. We used diffusion tensor imaging to examine white matter integrity, as quantified by fractional anisotropy (FA), in a group of American military service members with (n=25) or without (n=33) blast-related mTBI who had been deployed as part of Operation Iraqi Freedom or Operation Enduring Freedom. History of civilian non-blast mTBI was equally common across groups, which enabled testing of both blast and non-blast mTBI effects on measures sensitive to (1) concentrated, spatially consistent (average FA within a region of interest [ROI]), (2) concentrated, spatially variable (number of ROIs with low average FA), and (3) diffuse (number of voxels with low FA) disruptions of white matter integrity. Blast mTBI was associated with a diffuse, global pattern of lower white matter integrity, and this pattern was not affected by previous civilian mTBI. Neither type of mTBI had an effect on the measures sensitive to more concentrated and spatially consistent white matter disruptions. Additionally, individuals with more than one blast mTBI tended to have a larger number of low FA voxels than individuals with a single blast injury. These results indicate that blast mTBI is associated with disrupted integrity of several white matter tracts, and that these disruptions are diluted by averaging across the large number of voxels within an ROI. The reported pattern of effects supports the conclusion that the neurological effects of blast mTBI are diffuse, widespread, and spatially variable.
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.
Related Concept Videos
Traumatic Brain Injury l: Introduction
Cerebral Edema ll: Pathophysiology

