Altered brain network integrity after childhood maltreatment: A structural connectomic DTI-study
V B Puetz1, D Parker2, N Kohn3
1Division of Psychology and Language Sciences, University College London, London, United Kingdom.
Insights
Childhood maltreatment alters white matter (WM) brain networks, impacting global and local connectivity. These changes are linked to behavioral issues and stress regulation in children.
Area of Science:
- Neuroscience
- Developmental Psychology
- Child Psychiatry
Background:
- Childhood maltreatment is linked to neurodevelopmental alterations and increased psychopathology risk.
- Previous studies noted white matter (WM) tract changes, but network connectivity in maltreated children remains under-investigated.
Purpose of the Study:
- To investigate white matter (WM) structural connectome abnormalities in maltreated children using graph theory analysis.
- To examine associations between WM network alterations, basal cortisol levels, and behavioral outcomes.
Main Methods:
- Utilized Diffusion Tensor Imaging (DTI) to analyze the structural connectome in 25 maltreated children and 24 controls.
- Applied graph theoretical analyses to quantify global and local WM network abnormalities.
- Measured basal cortisol levels and behavioral symptoms (internalizing/externalizing).
Main Results:
- Maltreated children exhibited reduced global connectivity strength, local connectivity, and increased path length in WM networks.
- Global connectivity reductions correlated with placement instability, lower cortisol secretion, and increased behavioral problems.
- Specific regional reductions in connectivity were observed in the ventromedial prefrontal cortex (vMPFC).
Conclusions:
- Childhood maltreatment leads to systemic, global neurodevelopmental alterations in WM networks.
- Regional WM alterations in affect-regulating areas like the vMPFC are also present.
- These WM organization deficits may underlie functional impairments and multi-symptom patterns in maltreated children.
Abstract:
Childhood maltreatment is associated with alterations in neural architecture that potentially put these children at increased risk for psychopathology. Alterations in white matter (WM) tracts have been reported, however no study to date has investigated WM connectivity in brain networks in maltreated children to quantify global and local abnormalities through graph theoretical analyses of DTI data. We aimed for a multilevel investigation examining the DTI-based structural connectome and its associations with basal cortisol levels of 25 children with documented maltreatment experiences before age 3, and 24 matched controls (age: 10.6 ± 1.75 years). On the global and lobar level, maltreated children showed significant reductions in global connectivity strength, local connectivity and increased path length, suggesting deviations from the small-world network architecture previously associated with psychopathology. Reductions in global connectivity were associated with placement instability, attenuated cortisol secretion and higher levels of internalizing and externalizing behaviours. Regional measures revealed lower connectivity strength especially in regions within the ventromedial prefrontal cortex (vMPFC) in maltreated children. These findings show that childhood maltreatment is associated with systemic global neurodevelopmental alterations in WM networks next to regional alterations in areas involved in the regulation of affect. These alterations in WM organization could underlie global functional deficits and multi-symptom patterns frequently observed in children with maltreatment experiences. Hum Brain Mapp 38:855-868, 2017. © 2016 Wiley Periodicals, Inc.
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