4.6 Article

A Brain Morphometry Study with Across-Site Harmonization Using a ComBat-Generalized Additive Model in Children and Adolescents

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DIAGNOSTICS
卷 13, 期 17, 页码 -

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MDPI
DOI: 10.3390/diagnostics13172774

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ComBat-GAM; structural brain MRI; voxel-based morphometry; CIVET; normal reference values

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This study aims to provide normal reference values of global and regional brain volumes for children and adolescents of different sexes and age groups across multiple institutions. MRI examinations of 846 neurotypical participants were collected, and regional brain volumes were measured and analyzed using the CIVET 2.1.0. pipeline and ComBat-GAM harmonization. The results of this study can be used to evaluate the brain morphology of individuals in a clinical setting and investigate brain morphology in ultra-rare diseases.
Regional anatomical structures of the brain are intimately connected to functions corresponding to specific regions and the temporospatial pattern of genetic expression and their functions from the fetal period to old age. Therefore, quantitative brain morphometry has often been employed in neuroscience investigations, while controlling for the scanner effect of the scanner is a critical issue for ensuring accuracy in brain morphometric studies of rare orphan diseases due to the lack of normal reference values available for multicenter studies. This study aimed to provide across-site normal reference values of global and regional brain volumes for each sex and age group in children and adolescents. We collected magnetic resonance imaging (MRI) examinations of 846 neurotypical participants aged 6.0-17.9 years (339 male and 507 female participants) from 5 institutions comprising healthy volunteers or neurotypical patients without neurological disorders, neuropsychological disorders, or epilepsy. Regional-based analysis using the CIVET 2.1.0. pipeline provided regional brain volumes, and the measurements were across-site combined using ComBat-GAM harmonization. The normal reference values of global and regional brain volumes and lateral indices in our study could be helpful for evaluating the characteristics of the brain morphology of each individual in a clinical setting and investigating the brain morphology of ultra-rare diseases.

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