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Updated: May 3, 2026

A Mouse Model of Single and Repetitive Mild Traumatic Brain Injury
Published on: June 20, 2017
Repeated mild traumatic brain injury results in long-term white-matter disruption
Virginia Donovan1, Claudia Kim2, Ariana K Anugerah2
1Cell, Molecular and Developmental Biology Program, University of California, Riverside, California, USA.
Abstract:
Mild traumatic brain injury (mTBI) is an increasing public health concern as repetitive injuries can exacerbate existing neuropathology and result in increased neurologic deficits. In contrast to other models of repeated mTBI (rmTBI), our study focused on long-term white-matter abnormalities after bilateral mTBIs induced 7 days apart. A controlled cortical impact (CCI) was used to induce an initial mTBI to the right cortex of Single and rmTBI Sprague Dawley rats, followed by a second injury to the left cortex of rmTBI animals. Shams received only a craniectomy. Ex vivo diffusion tensor imaging (DTI), transmission electron microscopy (TEM), and histology were performed on the anterior corpus callosum at 60 days after injury. The rmTBI animals showed a significant bilateral increase in radial diffusivity (myelin), while only modest changes in axial diffusivity (axonal) were seen between the groups. Further, the rmTBI group showed an increased g-ratio and axon caliber in addition to myelin sheath abnormalities using TEM. Our DTI results indicate ongoing myelin changes, while the TEM data show continuing axonal changes at 60 days after rmTBI. These data suggest that bilateral rmTBI induced 7 days apart leads to progressive alterations in white matter that are not observed after a single mTBI.
Insights
Repetitive mild traumatic brain injuries (mTBIs) cause long-term white matter damage. Bilateral mTBIs 7 days apart led to progressive myelin and axonal changes not seen after single injuries.
Area of Science:
- Neuroscience
- Neurology
- Biomedical Engineering
Background:
- Mild traumatic brain injury (mTBI) is a growing public health issue.
- Repetitive injuries can worsen neurological deficits.
- Understanding long-term effects of repeated mTBI (rmTBI) is crucial.
Purpose of the Study:
- To investigate long-term white matter abnormalities after bilateral mTBIs.
- To compare outcomes of single vs. bilateral rmTBI.
- To analyze myelin and axonal integrity post-injury.
Main Methods:
- Controlled cortical impact (CCI) model in Sprague Dawley rats.
- Bilateral mTBIs induced 7 days apart.
- Ex vivo diffusion tensor imaging (DTI), transmission electron microscopy (TEM), and histology at 60 days post-injury.
Main Results:
- rmTBI group showed increased radial diffusivity (myelin) bilaterally.
- Modest changes in axial diffusivity (axonal) were observed.
- TEM revealed myelin sheath abnormalities, increased g-ratio, and axon caliber in rmTBI group.
Conclusions:
- Bilateral rmTBI induces progressive white matter alterations.
- Myelin and axonal changes persist 60 days after injury.
- These progressive changes are specific to rmTBI, not single mTBI.
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