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Published on: January 20, 2023
Evolving White Matter Injury following Pediatric Traumatic Brain Injury
Brenda Bartnik-Olson1, Barbara Holshouser1, Nirmalya Ghosh2
1Department of Radiology, Loma Linda University Health, Loma Linda, California, USA.
Insights
Pediatric traumatic brain injury (TBI) shows early white matter changes that worsen over time. These early diffusion tensor imaging (DTI) alterations correlate with cognitive function at 12 months post-injury.
Area of Science:
- Neuroscience
- Radiology
- Pediatric Neurology
Background:
- Traumatic brain injury (TBI) in children can lead to long-term neurological deficits.
- Understanding the evolution of white matter injury is crucial for predicting outcomes.
- Diffusion tensor imaging (DTI) offers insights into white matter integrity.
Purpose of the Study:
- To examine the early evolution of white matter injury in pediatric TBI patients.
- To correlate acute and chronic DTI findings with cognitive performance at 12 months.
- To investigate potential region-specific differences in brain repair and plasticity post-TBI.
Main Methods:
- Acquisition of DTI data at two time-points: acutely (6-17 days) and 12 months post-injury.
- Comparison of regional DTI metrics (fractional anisotropy, diffusivity) between TBI groups (complicated mild/moderate, severe) and healthy controls.
- Tract-based spatial statistics (TBSS) analysis of DTI data.
- Correlation of DTI metrics with attention, memory, and intellectual functioning at 12 months.
Main Results:
- Acute TBI revealed regional decreases in fractional anisotropy (FA) in the occipital white matter, anterior limb of the internal capsule/basal ganglia, and corpus callosum.
- Severe TBI group showed distinct axial diffusivity (AD) changes in the brainstem and corpus callosum.
- By 12 months, widespread decreases in FA and increases in apparent diffusion coefficient (ADC) and radial diffusivity (RD) were observed, with an increase in affected regions over time.
- Early regional DTI changes were associated with 12-month performance IQ scores.
Conclusions:
- Pediatric TBI induces early white matter changes that progress over the first year.
- The observed DTI alterations are linked to cognitive outcomes, particularly intellectual functioning.
- Findings suggest region-specific brain repair mechanisms or plasticity following pediatric TBI.
Abstract:
This study is unique in that it examines the evolution of white matter injury very early and at 12 months post-injury in pediatric patients following traumatic brain injury (TBI). Diffusion tensor imaging (DTI) was acquired at two time-points: acutely at 6-17 days and 12 months following a complicated mild (cMild)/moderate (mod) or severe TBI. Regional measures of anisotropy and diffusivity were compared between TBI groups and against a group of age-matched healthy controls and used to predict performance on measures of attention, memory, and intellectual functioning at 12-months post-injury. Analysis of the acute DTI data using tract based spatial statistics revealed a small number of regional decreases in fractional anisotropy (FA) in both the cMild/mod and severe TBI groups compared with controls. These changes were observed in the occipital white matter, anterior limb of the internal capsule (ALIC)/basal ganglia, and corpus callosum. The severe TBI group showed regional differences in axial diffusivity (AD) in the brainstem and corpus callosum that were not seen in the cMild/mod TBI group. By 12-months, widespread decreases in FA and increases in apparent diffusion coefficient (ADC) and radial diffusivity (RD) were observed in both TBI groups compared with controls, with the overall number of regions with abnormal DTI metrics increasing over time. The early changes in regional DTI metrics were associated with 12-month performance IQ scores. These findings suggest that there may be regional differences in the brain's reparative processes or that mechanisms associated with the brain's plasticity to recover may also be region based.
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