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Motor and executive function at 6 years of age after extremely preterm birth
Neil Marlow1, Enid M Hennessy, Melanie A Bracewell
1School of Human Development, University of Nottingham, Nottingham, United Kingdom. neil.marlow@nottingham.ac.uk
Insights
Extremely preterm children show motor and executive function deficits impacting school performance. These neuromotor impairments contribute to poor classroom outcomes, independent of cognitive issues.
Area of Science:
- Developmental Pediatrics
- Neuroscience
- Educational Psychology
Background:
- Very preterm infants often exhibit neurocognitive impairments.
- Hypothesized that neuromotor and executive-function deficits independently contribute to school failure.
Purpose of the Study:
- To investigate the independent contributions of neuromotor and executive-function deficits to school failure in extremely preterm children.
Main Methods:
- Studied children born at <= 25 weeks gestation.
- Utilized standardized cognitive (Kaufman Assessment Battery for Children, NEPSY) and neuromotor assessments.
- Included teacher-based academic achievement evaluation.
Main Results:
- Extremely preterm children performed worse on motor tasks and had more non-right-hand preferences.
- Visuospatial and sensorimotor function deficits persisted after controlling for cognitive scores.
- Motor, visuospatial, and executive-function scores explained significant variance in classroom performance.
Conclusions:
- Motor, visuospatial, and sensorimotor impairments contribute to excess morbidity in extremely preterm children.
- These deficits independently predict poor classroom performance at 6 years of age.
- Planning, self-regulation, and motor persistence are key areas of impairment.
Background:
Studies of very preterm infants have demonstrated impairments in multiple neurocognitive domains. We hypothesized that neuromotor and executive-function deficits may independently contribute to school failure.
Methods:
We studied children who were born at < or = 25 completed weeks' gestation in the United Kingdom and Ireland in 1995 at early school age. Children underwent standardized cognitive and neuromotor assessments, including the Kaufman Assessment Battery for Children and NEPSY, and a teacher-based assessment of academic achievement.
Results:
Of 308 surviving children, 241 (78%) were assessed at a median age of 6 years 4 months. Compared with 160 term classmates, 180 extremely preterm children without cerebral palsy and attending mainstream school performed less well on 3 simple motor tasks: posting coins, heel walking, and 1-leg standing. They more frequently had non-right-hand preferences (28% vs 10%) and more associated/overflow movements during motor tasks. Standardized scores for visuospatial and sensorimotor function performance differed from classmates by 1.6 and 1.1 SDs of the classmates' scores, respectively. These differences attenuated but remained significant after controlling for overall cognitive scores. Cognitive, visuospatial scores, and motor scores explained 54% of the variance in teachers' ratings of performance in the whole set; in the extremely preterm group, additional variance was explained by attention-executive tasks and gender.
Conclusions:
Impairment of motor, visuospatial, and sensorimotor function, including planning, self-regulation, inhibition, and motor persistence, contributes excess morbidity over cognitive impairment in extremely preterm children and contributes independently to poor classroom performance at 6 years of age.
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