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Thalamic Subregions and Obsessive-Compulsive Symptoms in 2,500 Children From the General Population
Cees J Weeland1, Chris Vriend2, Ysbrand van der Werf2
1Amsterdam UMC, Vrije Universiteit Amsterdam, the Netherlands; Erasmus Medical Center, Rotterdam, the Netherlands; Generation R Study Group, Erasmus Medical Center, Rotterdam, the Netherlands.
Insights
Pediatric obsessive-compulsive disorder (OCD) is linked to thalamic volume changes. This study found that while ventral nuclei may be larger in children with probable OCD, these findings require further investigation due to statistical limitations.
Area of Science:
- Neuroscience
- Developmental Psychology
- Child Psychiatry
Background:
- Pediatric obsessive-compulsive disorder (OCD) and related symptoms are associated with increased overall thalamic volume in children.
- The specific thalamic subregions contributing to this volume increase remain unclear.
Purpose of the Study:
- To investigate the relationship between obsessive-compulsive symptoms and the volume of specific thalamic subregions in a population-based sample of children.
- To determine if particular thalamic nuclei are enlarged in children with probable OCD.
Main Methods:
- Utilized structural 3T magnetic resonance imaging (MRI) scans from the Generation R Study for 2500 children (9-12 years).
- Thalamic nuclei volumes were extracted and categorized into anterior, ventral, intralaminar/medial, lateral, and pulvinar subregions.
- Compared subregional volumes between children with probable OCD (Short Obsessive-Compulsive Disorder Screener [SOCS] ≥ 6) and matched controls, and analyzed associations between continuous SOCS scores and subregional volumes.
Main Results:
- Children with probable OCD showed larger ventral nuclei volumes compared to controls (p = .025).
- A continuous measure of obsessive-compulsive symptoms (SOCS score) was negatively associated with pulvinar volume after accounting for total thalamic volume (p = .009).
- These observed associations did not survive multiple testing correction, indicating a need for cautious interpretation.
Conclusions:
- Individual thalamic nuclei may contribute differently to overall thalamic volume in pediatric OCD, though these specific findings require further validation.
- Further research into the role of thalamic nuclei and their circuits in pediatric OCD could inform novel treatment strategies targeting these neural pathways.
Objective:
Pediatric obsessive-compulsive disorder (OCD) and clinically relevant obsessive-compulsive symptoms in the general population are associated with increased thalamic volume. It is unknown whether this enlargement is explained by specific thalamic subregions. The relation between obsessive-compulsive symptoms and volume of thalamic subregions was investigated in a population-based sample of children.
Method:
Obsessive-compulsive symptoms were measured in children (9-12 years of age) from the Generation R Study using the Short Obsessive-Compulsive Disorder Screener (SOCS). Thalamic nuclei volumes were extracted from structural 3T magnetic resonance imaging scans using the ThalamicNuclei pipeline and regrouped into anterior, ventral, intralaminar/medial, lateral, and pulvinar subregions. Volumes were compared between children with symptoms above clinical cutoff (probable OCD cases, SOCS ≥ 6, n = 156) and matched children without symptoms (n = 156). Linear regression models were fitted to investigate the association between continuous SOCS score and subregional volume in the whole sample (N = 2500).
Results:
Children with probable OCD had larger ventral nuclei compared with children without symptoms (d = 0.25, p = .025, false discovery rate adjusted p = .126). SOCS score showed a negative association with pulvinar volume when accounting for overall thalamic volume (β = -0.057, p = .009, false discovery rate adjusted p = .09). However, these associations did not survive multiple testing correction.
Conclusion:
The results suggest that individual nuclei groups contribute in varying degrees to overall thalamic volume in children with probable OCD, although this did not survive multiple comparisons correction. Understanding the role of thalamic nuclei and their associated circuits in pediatric OCD could lead toward treatment strategies targeting these circuits.
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