Cognitive and motor function and the size of the cerebellum in adolescents born very pre-term

M Allin1, H Matsumoto, A M Santhouse

  • 1Institute of Psychiatry, King's College, London, UK. mathew.allin@iop.kcl.ac.uk

Insights

Adolescents born very preterm have smaller cerebellums, impacting cognitive development. This study links reduced cerebellar volume to cognitive deficits, not motor impairments, in this population.

Area of Science:

  • Neuroscience
  • Developmental Pediatrics
  • Radiology

Background:

  • Premature birth before 33 weeks gestation increases risk of brain lesions impacting neurodevelopment.
  • Cognitive deficits and neuromotor signs are common in adolescents born very preterm.
  • The cerebellum plays a role in both motor control and cognitive functions.

Purpose of the Study:

  • To investigate the association between cerebellar volume and cognitive/motor impairments in adolescents born very preterm.
  • To determine if cerebellar abnormalities, assessed via MRI, correlate with neurodevelopmental outcomes.

Main Methods:

  • Volumetric analysis of cerebellar MRI scans in 67 very preterm adolescents and 50 term-born controls.
  • Manual measurement of whole cerebellum volume using a PC-based Cavalieri procedure.
  • Longitudinal cognitive and neurological assessments from infancy to adolescence.

Main Results:

  • Significantly reduced cerebellar volume was observed in very preterm-born adolescents compared to controls (P<0.001).
  • No association was found between cerebellar volume and motor neurological signs.
  • Cerebellar volume showed significant associations with cognitive test scores, including intelligence and reading ability.

Conclusions:

  • Cerebellar abnormalities may contribute to cognitive deficits in individuals born very preterm.
  • This study provides further evidence for the cerebellum's role in cognitive processes.
  • Reduced cerebellar volume is a key finding in very preterm adolescents with cognitive impairments.

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