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Born Too Early and Too Small: Higher Order Cognitive Function and Brain at Risk at Ages 8-16
Marta Córcoles-Parada1, Rocio Giménez-Mateo1, Victor Serrano-Del-Pueblo1
1Human Neuroanatomy Laboratory, School of Medicine and Regional Centre for Biomedical Research, University of Castilla-La Mancha, Albacete, Spain.
Insights
Very preterm and very low birth weight children often have brain abnormalities. These can lead to lower IQ and executive function deficits later in life, linked to altered brain structure.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Radiology
Background:
- Prematurity poses risks to higher-order cognitive functions, with deficits emerging later in development.
- The precise causes and long-term consequences of prematurity on cognitive development remain incompletely understood.
Purpose of the Study:
- To identify clinical predictors of brain abnormalities in very preterm (VP) and very low birth weight (VLBW) neonates.
- To assess cognitive function, brain structure, and white matter integrity in older VP-VLBW children.
Main Methods:
- Longitudinal study of 196 VP-VLBW children.
- Ultrasound brain assessments in neonates.
- Neuropsychological testing and MRI scans at ages 8-16 in a subset of VP-VLBW children and controls.
Main Results:
- 37% of VP-VLBW neonates exhibited brain abnormalities.
- Clinical factors (gestational age, birth weight, hospital course) predicted neonatal brain abnormalities.
- VP-VLBW children showed lower IQ, impaired executive function, and reduced gray and white matter integrity.
- IQ correlated with cortical thickness in higher-order processing areas.
Conclusions:
- Clinical factors in the neonatal period predict brain abnormalities in very preterm infants.
- Executive function and IQ are significantly affected in very preterm children, associated with altered cortical areas and white matter integrity.
Abstract:
Prematurity presents a risk for higher order cognitive functions. Some of these deficits manifest later in development, when these functions are expected to mature. However, the causes and consequences of prematurity are still unclear. We conducted a longitudinal study to first identify clinical predictors of ultrasound brain abnormalities in 196 children born very preterm (VP; gestational age ≤32 weeks) and with very low birth weight (VLBW; birth weight ≤1500 g). At ages 8-16, the subset of VP-VLBW children without neurological findings (124) were invited for a neuropsychological assessment and an MRI scan (41 accepted). Of these, 29 met a rigorous criterion for MRI quality and an age, and gender-matched control group (n = 14) was included in this study. The key findings in the VP-VLBW neonates were: (a) 37% of the VP-VLBW neonates had ultrasound brain abnormalities; (b) gestational age and birth weight collectively with hospital course (i.e., days in hospital, neonatal intensive care, mechanical ventilation and with oxygen therapy, surgeries, and retinopathy of prematurity) predicted ultrasound brain abnormalities. At ages 8-16, VP-VLBW children showed: a) lower intelligent quotient (IQ) and executive function; b) decreased gray and white matter (WM) integrity; (c) IQ correlated negatively with cortical thickness in higher order processing cortical areas. In conclusion, our data indicate that facets of executive function and IQ are the most affected in VP-VLBW children likely due to altered higher order cortical areas and underlying WM.
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