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A Mouse Model of Single and Repetitive Mild Traumatic Brain Injury
Published on: June 20, 2017
Structural and Volumetric Brain MRI Findings in Mild Traumatic Brain Injury
J B Patel1,2, S H Wilson3, T R Oakes1,4
1From Lovelace Biomedical Research (J.B.P., T.R.O., P.S.), Albuquerque, New Mexico.
Background And Purpose:
Routine MR imaging findings are frequently normal following mild traumatic brain injury and have a limited role in diagnosis and management. Advanced MR imaging can assist in detecting pathology and prognostication but is not readily available outside research settings. However, 3D isotropic sequences with ∼1-mm3 voxel size are available on community MR imaging scanners. Using such sequences, we compared radiologists' findings and quantified regional brain volumes between a mild traumatic brain injury cohort and non-brain-injured controls to describe structural imaging findings associated with mild traumatic brain injury.
Materials And Methods:
Seventy-one military personnel with persistent symptoms and 75 controls underwent 3T MR imaging. Three neuroradiologists interpreted the scans using common data elements. FreeSurfer was used to quantify regional gray and white matter volumes.
Results:
WM hyperintensities were seen in 81% of the brain-injured group versus 60% of healthy controls. The odds of ≥1 WM hyperintensity in the brain-injured group was about 3.5 times the odds for healthy controls (95% CI, 1.58-7.72; P = .002) after adjustment for age. A frontal lobe-only distribution of WM hyperintensities was more commonly seen in the mild traumatic brain injury cohort. Furthermore, 7 gray matter, 1 white matter, and 2 subcortical gray matter regions demonstrated decreased volumes in the brain-injured group after multiple-comparison correction. The mild traumatic brain injury cohort showed regional parenchymal volume loss.
Conclusions:
White matter findings are nonspecific and therefore a clinical challenge. Our results suggest that prior trauma should be considered in the differential diagnosis of multifocal white matter abnormalities with a clinical history of mild traumatic brain injury, particularly when a frontal predilection is observed.
Insights
Mild traumatic brain injury (mTBI) can cause white matter abnormalities and reduced brain volumes, detectable with advanced MRI. These findings, particularly frontal white matter changes, aid in diagnosing mTBI when clinical history is present.
Area of Science:
- Neuroimaging
- Radiology
- Neurology
Background:
- Routine MRI often shows normal findings after mild traumatic brain injury (mTBI), limiting its diagnostic and prognostic value.
- Advanced MRI techniques can detect subtle pathology and aid prognostication but are not widely accessible.
- High-resolution 3D isotropic MRI sequences are becoming available in community settings.
Purpose of the Study:
- To compare radiologist findings and quantify regional brain volumes in individuals with mTBI versus controls using advanced MRI.
- To identify structural imaging findings associated with mTBI using 3D isotropic MRI sequences.
Main Methods:
- Seventy-one military personnel with persistent mTBI symptoms and 75 controls underwent 3T MRI.
- Scans were interpreted by three neuroradiologists using standardized data elements.
- Regional gray and white matter volumes were quantified using FreeSurfer software.
Main Results:
- White matter (WM) hyperintensities were observed in 81% of the mTBI group versus 60% of controls.
- The odds of WM hyperintensities were 3.5 times higher in the mTBI group, with a frontal lobe predilection.
- Decreased volumes were noted in 7 gray matter, 1 white matter, and 2 subcortical gray matter regions in the mTBI cohort.
Conclusions:
- WM findings in mTBI are nonspecific but a frontal predilection is notable.
- Advanced MRI can reveal regional brain volume loss and white matter abnormalities in mTBI.
- Consider mTBI in the differential diagnosis of multifocal white matter abnormalities, especially with frontal involvement.
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