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Advanced Diffusion Imaging in The Hippocampus of Rats with Mild Traumatic Brain Injury
Published on: August 14, 2019
Adverse Outcome Following Mild Traumatic Brain Injury Is Associated with Microstructure Alterations at the Gray and
Lara Pankatz1,2, Philine Rojczyk1,2, Johanna Seitz-Holland1,3
1Psychiatry Neuroimaging Laboratory, Department of Psychiatry, Brigham and Women's Hospital, Harvard Medical School, Somerville, MA 02145, USA.
Abstract:
The gray matter/white matter (GM/WM) boundary of the brain is vulnerable to shear strain associated with mild traumatic brain injury (mTBI). It is, however, unknown whether GM/WM microstructure is associated with long-term outcomes following mTBI. The diffusion and structural MRI data of 278 participants between 18 and 65 years of age with and without military background from the Department of Defense INTRuST study were analyzed. Fractional anisotropy (FA) was extracted at the GM/WM boundary across the brain and for each lobe. Additionally, two conventional analytic approaches were used: whole-brain deep WM FA (TBSS) and whole-brain cortical thickness (FreeSurfer). ANCOVAs were applied to assess differences between the mTBI cohort (n = 147) and the comparison cohort (n = 131). Associations between imaging features and post-concussive symptom severity, and functional and cognitive impairment were investigated using partial correlations while controlling for mental health comorbidities that are particularly common among military cohorts and were present in both the mTBI and comparison group. Findings revealed significantly lower whole-brain and lobe-specific GM/WM boundary FA (p < 0.011), and deep WM FA (p = 0.001) in the mTBI cohort. Whole-brain and lobe-specific GM/WM boundary FA was significantly negatively correlated with post-concussive symptoms (p < 0.039), functional (p < 0.016), and cognitive impairment (p < 0.049). Deep WM FA was associated with functional impairment (p = 0.002). Finally, no significant difference was observed in cortical thickness, nor between cortical thickness and outcome (p > 0.05). Findings from this study suggest that microstructural alterations at the GM/WM boundary may be sensitive markers of adverse long-term outcomes following mTBI.
Insights
Mild traumatic brain injury (mTBI) is linked to altered brain microstructure at the gray matter/white matter (GM/WM) boundary. These GM/WM changes correlate with long-term symptoms and impairments following mTBI.
Area of Science:
- Neuroimaging
- Traumatic Brain Injury Research
- Neuroscience
Background:
- The gray matter/white matter (GM/WM) boundary is susceptible to injury in mild traumatic brain injury (mTBI).
- The relationship between GM/WM microstructural integrity and long-term outcomes after mTBI remains unclear.
- Military personnel are a population with a high incidence of mTBI.
Purpose of the Study:
- To investigate whether GM/WM boundary microstructural integrity is associated with long-term outcomes following mTBI.
- To compare GM/WM microstructure between individuals with and without a history of mTBI.
- To explore the association between specific imaging features and post-concussive symptoms, functional, and cognitive impairment.
Main Methods:
- Diffusion and structural MRI data from 278 participants (147 mTBI, 131 controls) were analyzed.
- Fractional anisotropy (FA) was extracted at the GM/WM boundary and for deep white matter (WM) using TBSS.
- Cortical thickness was assessed using FreeSurfer; ANCOVAs and partial correlations were used for statistical analysis.
Main Results:
- The mTBI cohort exhibited significantly lower whole-brain and lobe-specific GM/WM boundary FA and deep WM FA compared to controls.
- Lower GM/WM boundary FA was significantly correlated with increased post-concussive symptoms, functional impairment, and cognitive impairment.
- Deep WM FA was associated with functional impairment; cortical thickness showed no significant differences or associations with outcomes.
Conclusions:
- Microstructural alterations at the GM/WM boundary are significantly associated with mTBI.
- GM/WM boundary FA may serve as a sensitive imaging biomarker for predicting long-term adverse outcomes after mTBI.
- Cortical thickness is not a significant indicator of long-term outcomes in this mTBI cohort.
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