Default mode network anatomy and function is linked to pediatric concussion recovery
Kartik K. Iyer, Andrew Zalesky, Karen M. Barlow, Luca Cocchi
Summary
AI-generated from the abstractIn children recovering from mild traumatic brain injury, sleep disturbances and fatigue are linked to reduced grey matter volume and weaker functional connectivity in two key brain regions: the posterior cingulate cortex and the medial prefrontal cortex, both part of the default mode network. Combining structural and functional brain measurements from these regions accurately predicted which children would have persistent post-concussion symptoms at follow-up, with an area under the curve of 0.86. The findings suggest that the default mode network's structure and function underlie sleep-related problems after concussion and carry prognostic information for recovery.
Study at a glance
| Characteristics | Observational cohort |
|---|---|
| Sample size | 110 |
| Population | Children recovering from mild traumatic brain injury seen at a concussion clinic |
| Duration | 8-10 weeks post-injury |
| Key finding | Sleep disturbance after mild traumatic brain injury is associated with decreased grey matter volume and reduced functional connectivity in the posterior cingulate cortex and medial prefrontal cortex, and combining these brain indices predicts clinical outcomes with high accuracy. |
Abstract
ABSTRACT Objective To determine whether anatomical and functional brain features relate to key persistent post-concussion symptoms (PPCS) in children recovering from mild traumatic brain injuries (mTBI), and whether such brain indices can predict individual recovery from PPCS. Methods 110 children with mixed recovery following mTBI were seen at the concussion clinic at Neurology department Alberta Children’s Hospital. The primary outcome was the Post-Concussion Symptom Inventory (PCSI, parent proxy). Sleep disturbance scores (PCSI sub-domain) and the Neurocognition Index (CNS Vital Signs) were also measured longitudinally. PPCS was assessed at 4 weeks post-injury and 8-10 weeks post-injury. Grey matter volumes were assessed using magnetic resonance imaging (MRI) and voxel-based morphometry. Functional connectivity was estimated using resting-state MRI. Two complementary machine learning methods were used to assess if the combination of grey matter and functional connectivity indices carried meaningful prognostic information. Results Higher scores on a composite index of sleep disturbance, including fatigue, were associated with converging decreases in grey matter volume and local functional connectivity in two key nodes of the default mode network: the posterior cingulate cortex and the medial prefrontal cortex. Sleep-related disturbances also significantly correlated with reductions in functional connectivity between these brain regions. The combination of structural and functional brain indices associated to individual variations in the default mode network accurately predicted clinical outcomes at follow-up (area under the curve = 0.86). Interpretation These results highlight that the function-structure profile of core default mode regions underpins sleep-related problems following mTBI and carries meaningful prognostic information for pediatric concussion recovery.