4.7 Article

Inter-individual variability in structural brain development from late childhood to young adulthood

Journal

NEUROIMAGE
Volume 242, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2021.118450

Keywords

Adolescence; Cortex; Gray matter; Longitudinal; Subcortical; White matter

Funding

  1. Research Council of Norway (RCN) [288083]
  2. RCN [223273]
  3. South-Eastern Norway Regional Health Authority grant [2019069, 2021070, 500189]
  4. National Institutes of Health [K01 MH1087610]
  5. European Council [ERC-2010-StG_263234]

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This study examined individual variability and sex differences in changes in brain structure across ages 8.0-26.0 years. Results showed considerable inter-individual variability in brain measures, with most individuals demonstrating decreases in certain areas during mid-adolescence. There were also sex differences in these patterns and an association between brain structure size and rate of change.
A fundamental task in neuroscience is to characterize the brain's developmental course. While replicable group-level models of structural brain development from childhood to adulthood have recently been identified, we have yet to quantify and understand individual differences in structural brain development. The present study examined inter-individual variability and sex differences in changes in brain structure, as assessed by anatomical MRI, across ages 8.0-26.0 years in 269 participants (149 females) with three time points of data (807 scans), drawn from three longitudinal datasets collected in the Netherlands, Norway, and USA. We further investigated the relationship between overall brain size and developmental changes, as well as how females and males differed in change variability across development. There was considerable inter-individual variability in the magnitude of changes observed for all examined brain measures. The majority of individuals demonstrated decreases in total gray matter volume, cortex volume, mean cortical thickness, and white matter surface area in mid-adolescence, with more variability present during the transition into adolescence and the transition into early adulthood. While most individuals demonstrated increases in white matter volume in early adolescence, this shifted to a majority demonstrating stability starting in mid-to-late adolescence. We observed sex differences in these patterns, and also an association between the size of an individual's brain structure and the overall rate of change for the structure. The present study provides new insight as to the amount of individual variance in changes in structural morphometrics from late childhood to early adulthood in order to obtain a more nuanced picture of brain development. The observed individual-and sex-differences in brain changes also highlight the importance of further studying individual variation in developmental patterns in healthy, at-risk, and clinical populations.

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