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Brain volumes and cognitive function in very-low-birth-weight (VLBW) young adults
Knut J Bjuland1, Lars M Rimol1, Gro C C Løhaugen2
1Department of Laboratory Medicine, Children's and Women's Health, Norwegian University of Science and Technology, Olav Kyrres gt. 11, N-7489 Trondheim, Norway.
Insights
Very-low-birth-weight (VLBW) survivors show reduced brain volumes and larger ventricles at age 20, indicating lasting effects of perinatal injury on cognitive function.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Radiology
Background:
- Preterm very-low-birth-weight (VLBW) survivors face heightened risks of perinatal brain injury.
- This injury can lead to altered brain development and long-term neurodevelopmental impairments, including cognitive deficits.
Purpose of the Study:
- To investigate long-term differences in brain volumes at age 20 in VLBW individuals compared to term-born controls.
- To explore the associations between brain volumes, cognitive abilities, and perinatal factors in VLBW subjects.
Main Methods:
- Structural MRI and cognitive testing (WAIS-III) were used to assess 44 VLBW subjects and 60 controls at age 20.
- Volumetric analysis was performed using FreeSurfer software.
- A subset of participants had serial MRIs from age 15 to examine age-related brain volume changes.
Main Results:
- At age 20, VLBW subjects exhibited smaller brain volumes (thalamus, globus pallidus, corpus callosum) and enlarged lateral ventricles compared to controls.
- No significant group differences in brain volume changes between ages 15 and 20 were found.
- Greater perinatal morbidity and smaller size at birth correlated with more pronounced brain volume deviations in VLBW individuals.
- Positive associations were observed between several brain volumes and cognitive scores (full IQ and three sub-indices) in the VLBW group.
Conclusions:
- Reduced grey and white matter volumes and ventricular enlargement in VLBW young adults suggest permanent impacts of perinatal brain injury.
- These structural brain changes may influence later cognitive functioning in VLBW survivors.
Background:
Preterm born very-low-birth-weight (VLBW: birth weight ≤1500 g) survivors have increased risk of perinatal brain injury that may cause deviant brain development and later neuroimpairments, including reduced cognitive functioning.
Aims:
In this long-term follow up study of three year-cohorts (birth years 1986-88) of VLBW subjects and term born controls with normal birth weight, the aim was to examine differences in brain volumes at age 20 years. In addition, the relationships between brain volumes and cognitive abilities and perinatal variables were explored.
Methods:
Forty-four VLBW subjects and 60 controls were assessed with cognitive testing (Wechsler Adult Intelligence Scale - WAIS-III) and structural MRI at 1.5 T, using the FreeSurfer 5.1 software for volumetric analysis. A subpopulation had MRI performed also at age 15, and for this group changes in brain volumes with age were examined.
Results:
The VLBW subjects had smaller brain volumes, especially of thalamus, globus pallidus and parts of the corpus callosum, and larger lateral ventricles than controls at age 20. However, no significant group differences in longitudinal change from age 15 to 20 were observed. The most immature and smallest VLBW subjects at birth, and those with the highest perinatal morbidity, showed most pronounced volume deviations. Positive associations between several brain volumes and full IQ, as well as three of four IQ indices in the VLBW group, were observed.
Conclusion:
Reduced volumes of grey and white matter and ventricular dilatation in VLBW young adults may indicate permanent effects on brain development from perinatal brain injury with influence on later cognitive function.
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