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Updated: Oct 10, 2026

A Standardized Pipeline for Examining Human Cerebellar Grey Matter Morphometry using Structural Magnetic Resonance Imaging
Published on: February 4, 2022
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.
Abstract:
Individuals born before 33 weeks' gestation are at risk of brain lesions, which have the potential to disrupt subsequent neurodevelopment. As a result they manifest an increased incidence of neuromotor signs and cognitive deficits, which can still be detected in adolescence. The cerebellum is known to be involved in both the co-ordination of movement and in cognitive processes. We therefore set out to establish whether cognitive and motor impairments in adolescents born very pre-term are associated with abnormalities of the cerebellum as revealed by volumetric analysis of brain MRI scans. The volume of the whole cerebellum was determined manually using a PC-based Cavalieri procedure in 67 adolescents born very pre-term and 50 age-matched, full-term born controls. Cognitive and neurological assessments were performed at 1, 4, 8 and 14-15 years of age as part of the long-term follow-up of the pre-term subjects. The pre-term-born subjects had significantly reduced cerebellar volume compared with term-born controls (P<0.001). This difference was still present after controlling for potential confounders. There was no association between cerebellar volume and motor neurological signs. However, there were significant associations between cerebellar volume and several cognitive test scores, in particular the Wechsler Intelligence Scale for Children-Revised, the Kaufman Assessment Battery for Children and the Schonnel reading age. This provides further evidence implicating the cerebellum in cognition and suggests that cerebellar abnormalities may underlie some of the cognitive deficits found in individuals born very pre-term.
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