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Do children with congenital hypothyroidism exhibit abnormal cortical morphology?
Hayyah Clairman1, Jovanka Skocic1, Julieta E Lischinsky2
1Neurosciences and Mental Health Program, The Hospital for Sick Children, Toronto, Ontario, Canada.
Insights
Children with congenital hypothyroidism (CH) show altered cortical thickness in the brain, impacting development. These brain changes correlate with thyroid hormone levels and predict cognitive outcomes.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatric Endocrinology
Background:
- Thyroid hormone (TH) is crucial for early brain development.
- Congenital hypothyroidism (CH) can lead to cognitive and behavioral issues despite early treatment.
- Cortical development effects in CH are not well understood.
Purpose of the Study:
- To investigate cortical thickness (CT) differences in children with CH compared to typically developing controls (TDC).
- To determine if CT variations correlate with hypothyroidism severity and predict neuropsychological functioning.
Main Methods:
- Utilized FreeSurfer software on MRI scans from 41 CH and 42 TDC children (aged 9-16).
- Employed vertex-based analysis to compare CT between groups.
- Correlated CT with disease severity indices and neuropsychological outcomes.
Main Results:
- CH group exhibited regional cortical thinning and thickening compared to TDC.
- CT differences correlated significantly with early T4 and TSH levels.
- Cortical thickness changes also correlated with current neuropsychological test results.
Conclusions:
- The developing cortex is sensitive to early thyroid hormone deficiency in CH.
- Observed patterns of cortical thinning/thickening may indicate timing of TH loss relative to cortical development stages.
Background:
Given thyroid hormone (TH)'s essential role in multiple aspects of early brain development, children with congenital hypothyroidism (CH) detected and treated early may still display subtle cognitive and behavioral impairments as well as brain abnormalities. However, effects on their cortical development are not yet known. We used an automated neuroimaging technique to determine if these children differ in cortical thickness (CT) from typically developing controls (TDC) and if the regions showing CT differences reflect severity of initial hypothyroidism and predict later neuropsychological functioning.
Methods:
FreeSurfer Image Analysis Suite was used on archived MRI scans from 41 CH and 42 TDC children aged 9-16 y. Vertex-based procedures were used to compare groups and perform correlations between CT and indices of disease severity and neuropsychological outcome.
Results:
The CH group showed multiple regions of cortical thinning or cortical thickening within right and left hemispheres relative to TDC. CT values were significantly correlated with early T4 and thyroid-stimulating hormone (TSH) levels and current neuropsychological test indices.
Conclusion:
The developing cortex is sensitive to early TH loss in CH. Different patterns of cortical thinning or cortical thickening among brain regions may reflect timing of TH deficiency relative to timing of cortical development.
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