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Published on: August 14, 2019
White Matter Alterations in Military Service Members With Remote Mild Traumatic Brain Injury
Sharon Kim1,2, John Ollinger3, Chihwa Song3
1Program in Neuroscience, Uniformed Services University of Health Sciences, Bethesda, Maryland.
Importance:
Mild traumatic brain injury (mTBI) is the signature injury experienced by military service members and is associated with poor neuropsychiatric outcomes. Yet, there is a lack of reliable clinical tools for mTBI diagnosis and prognosis.
Objective:
To examine the white matter microstructure and neuropsychiatric outcomes of service members with a remote history of mTBI (ie, mTBI that occurred over 2 years ago) using diffusion tensor imaging (DTI) and neurite orientation dispersion and density imaging (NODDI).
Design, Setting, And Participants:
This case-control study examined 98 male service members enrolled in a study at the National Intrepid Center of Excellence. Eligible participants were active duty status or able to enroll in the Defense Enrollment Eligibility Reporting system, ages 18 to 60 years, and had a remote history of mTBI; controls were matched by age.
Exposures:
Remote history of mTBI.
Main Outcomes And Measures:
White matter microstructure was assessed using a region-of-interest approach of skeletonized diffusion images, including DTI (fractional anisotropy, mean diffusivity, radial diffusivity and axial diffusivity) and NODDI (orientation dispersion index [ODI], isotropic volume fraction, intra-cellular volume fraction). Neuropsychiatric outcomes associated with posttraumatic stress disorder (PTSD) and postconcussion syndrome were assessed.
Results:
A total of 65 male patients with a remote history of mTBI (mean [SD] age, 40.5 [5.0] years) and 33 age-matched male controls (mean [SD] age, 38.9 [5.6] years) were included in analysis. Compared with the control cohort, the 65 service members with mTBI presented with significantly more severe PTSD-like symptoms (mean [SD] PTSD CheckList-Civilian [PCL-C] version scores: control, 19.0 [3.8] vs mTBI, 41.2 [11.6]; P < .001). DTI and NODDI metrics were altered in the mTBI group compared with the control, including intra-cellular volume fraction of the right cortico-spinal tract (β = -0.029, Cohen d = 0.66; P < .001), ODI of the left posterior thalamic radiation (β = -0.006, Cohen d = 0.55; P < .001), and ODI of the left uncinate fasciculus (β = 0.013, Cohen d = 0.61; P < .001). In service members with mTBI, fractional anisotropy of the left uncinate fasciculus was associated with postconcussion syndrome (β = 5.4 × 10-3; P = .003), isotropic volume fraction of the genu of the corpus callosum with PCL-C (β = 4.3 × 10-4; P = .01), and ODI of the left fornix and stria terminalis with PCL-C avoidance scores (β = 1.2 × 10-3; P = .02).
Conclusions And Relevance:
In this case-control study of military-related mTBI, the results suggest that advanced magnetic resonance imaging techniques using NODDI can reveal white matter microstructural alterations associated with neuropsychiatric symptoms in the chronic phase of mTBI. Diffusion trends observed throughout widespread white matter regions-of-interest may reflect mechanisms of neurodegeneration as well as postinjury tissue scarring and reorganization.
Insights
Service members with a history of mild traumatic brain injury (mTBI) show altered white matter microstructure and more severe PTSD symptoms. Advanced MRI techniques like NODDI can detect these chronic changes, aiding diagnosis and prognosis.
Area of Science:
- Neuroscience
- Radiology
- Military Medicine
Background:
- Mild traumatic brain injury (mTBI) is a common injury in military personnel, often leading to significant neuropsychiatric issues.
- Current diagnostic and prognostic tools for mTBI are limited, especially for chronic cases.
Purpose of the Study:
- To investigate white matter microstructure and neuropsychiatric outcomes in service members with a remote history of mTBI.
- To utilize advanced neuroimaging techniques, Diffusion Tensor Imaging (DTI) and Neurite Orientation Dispersion and Density Imaging (NODDI), for mTBI assessment.
Main Methods:
- A case-control study involving 98 male service members, with 65 having a remote mTBI history and 33 age-matched controls.
- White matter integrity was assessed using DTI and NODDI metrics in specific brain regions.
- Neuropsychiatric outcomes, including PTSD and postconcussion syndrome, were evaluated.
Main Results:
- Service members with mTBI exhibited significantly higher PTSD-like symptoms compared to controls.
- Significant alterations in DTI and NODDI metrics were observed in the mTBI group, indicating changes in white matter microstructure.
- Specific white matter alterations correlated with the severity of postconcussion syndrome and PTSD symptoms.
Conclusions:
- Advanced MRI techniques, particularly NODDI, can identify chronic white matter microstructural changes associated with mTBI.
- These findings suggest potential neurodegenerative processes or tissue reorganization following mTBI.
- The study highlights the utility of advanced imaging in understanding the long-term effects of mTBI and associated neuropsychiatric conditions.
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