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Published on: April 3, 2013
Individual Variation of Human Cortical Structure Is Established in the First Year of Life
John H Gilmore1, Benjamin Langworthy2, Jessica B Girault3
1Department of Psychiatry, University of North Carolina School of Medicine, Chapel Hill, North Carolina.
Insights
Individual differences in brain structure are established early in childhood. Key variations in cortical gray matter (GM) volume and surface area are evident by one year of age, impacting development.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatric Imaging
Background:
- Individual differences in brain structure are linked to cognitive function and developmental psychiatric disorders.
- Understanding the timing of these differences is crucial for identifying abnormal brain development in childhood.
Purpose of the Study:
- To investigate when individual differences in cortical gray matter (GM) structure are established during early childhood.
- To determine the developmental trajectory of cortical GM volume, white matter volume, cortical thickness, and surface area from birth to age six.
Main Methods:
- Longitudinal structural magnetic resonance imaging (MRI) was used in two cohorts (singleton and twin children) from birth to six years.
- Analyzed changes in cortical GM volume, white matter volume, cortical thickness, and surface area.
Main Results:
- Cortical GM volume grows rapidly in the first year, then more gradually.
- Between ages 1 and 6, surface area increased by 29% and cortical thickness decreased by 3.5%.
- A significant portion of variation in GM volume (81%-87%) and surface area (73%-83%) at age 6 was already present by age 1.
Conclusions:
- Individual differences in cortical GM structure are largely established by the end of the first year of life.
- Alterations in GM structure related to developmental psychiatric disorders may originate in the first year.
- Interventions for abnormal brain development may need to target very early childhood.
Background:
Individual differences in cortical gray matter (GM) structure are associated with cognitive function and psychiatric disorders with developmental origins. Identifying when individual differences in cortical structure are established in childhood is critical for understanding the timing of abnormal cortical development associated with neuropsychiatric disorders.
Methods:
We studied the development of cortical GM and white matter volume, cortical thickness, and surface area using structural magnetic resonance imaging in two unique cohorts of singleton (121 male and 131 female) and twin (99 male and 83 female) children imaged longitudinally from birth to 6 years.
Results:
Cortical GM volume increases rapidly in the first year of life, with more gradual growth thereafter. Between ages 1 and 6 years, total surface area expands 29%, while average cortical thickness decreases about 3.5%. In both cohorts, a large portion of individual variation in cortical GM volume (81%-87%) and total surface area (73%-83%) at age 6 years is present by age 1 year. Regional heterogeneity of cortical thickness observed at age 6 is largely in place at age 1.
Conclusions:
These findings indicate that individual differences in cortical GM structure are largely established by the end of the first year of life, following a period of rapid postnatal GM growth. This suggests that alterations in GM structure associated with psychiatric disorders with developmental origins may largely arise in the first year of life and that interventions to normalize or mitigate abnormal GM development may need to be targeted to very early childhood.
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