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Updated: Aug 6, 2026

Preterm EEG: A Multimodal Neurophysiological Protocol
Published on: February 18, 2012
Are there critical periods for brain growth in children born preterm?
1School of Reproductive and Developmental Medicine, University of Liverpool, UK. mc19@liv.ac.uk
Insights
Head growth in preterm infants impacts later motor and cognitive skills. Impaired head circumference (OFC) growth, particularly between birth and discharge, is linked to motor deficits, while later OFC is associated with intelligence quotient (IQ).
Area of Science:
- Neonatal development
- Pediatric neurology
- Developmental psychology
Background:
- Children born very preterm often experience motor, behavioral, and learning challenges.
- Reduced postnatal head growth, particularly in the occipitofrontal circumference (OFC), is observed in these children.
- The timing of impaired head growth and its specific impact on later function remain unclear.
Purpose of the Study:
- To determine critical developmental periods where impaired head growth influences motor and cognitive function in preterm infants.
- To investigate the relationship between head circumference growth patterns and later functional outcomes.
Main Methods:
- A cohort of 194 infants born weighing less than 1500g was studied.
- Occipitofrontal circumference (OFC) was measured at birth, discharge, 4, and 15 years.
- Intelligence quotient (IQ) and motor impairment (TOMI) were assessed at 8 years, with adjustments for confounding variables.
Main Results:
- Intelligence quotient (IQ) correlated with OFC at 4 and 15 years, even after accounting for intrauterine growth restriction (IUGR) and social class.
- Motor impairment scores showed significant correlation with OFC at all measured times, especially at discharge and for the change in OFC between birth and discharge.
- Motor function outcomes were not affected by adjustments for social class or IUGR.
Conclusions:
- While IQ and motor impairments are linked in school-aged preterm children, their underlying determinants and critical timing differ.
- Improving IQ in this population requires addressing IUGR and enhancing later childhood growth.
- Interventions to enhance motor ability should prioritize brain protection during the neonatal period.
Background:
Children born very preterm who attend mainstream schools have a high prevalence of minor motor, behavioural, and learning disorders. These appear to be associated with reduced postnatal growth, particularly of the head. It is unclear when this poor growth occurs and whether growth restriction during different periods has different effects on later function.
Objective:
To identify periods during early development, in children born preterm, when impaired head growth may influence minor motor and cognitive function.
Population:
A geographically defined cohort of 194 infants born in Merseyside during 1980-81 and weighing less than 1500 g.
Methods:
Measurements of head circumference (occipitofrontal circumference (OFC)) were available at birth, hospital discharge, 4 years, and 15 years of age. Assessments of intelligence (intelligence quotient (IQ)) and minor motor impairment (test of motor impairment (TOMI)) were made at 8 years of age. Clinical, social, and demographic variables were obtained from the clinical record and maternal interviews.
Results:
IQ correlated significantly with OFC at 4 and 15 years of age after correction for growth restriction at birth (intrauterine growth restriction (IUGR)) and social class. TOMI scores correlated significantly with OFC at all four times, but especially with OFC at discharge and with change in OFC between birth and discharge. They were not affected by correction for social class or IUGR.
Conclusion:
Although both IQ and minor motor impairments correlate strongly with each other at school age in very low birthweight children, the factors determining them and their timing of operation are different. Interventions designed to improve IQ in this population would need to reduce IUGR and improve later childhood growth. Those aimed to improve motor ability need to be targeted more at brain protection during the neonatal period.
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