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Published on: January 11, 2016
Relations among upper-limb movement organization and cognitive function at school age in children born preterm
Erik Domellöf1, Anna-Maria Johansson, Aijaz Farooqi
1Department of Psychology, Umeå University, Umeå, Sweden. erik.domellof@psy.umu.se
Insights
Movement patterns in preterm children are linked to intelligence. More organized arm and head movements correlate with higher cognitive scores, even when controlling for gestational age and sex.
Area of Science:
- Developmental neuroscience
- Motor control
- Cognitive development
Background:
- Children born preterm often exhibit subtle neurodevelopmental differences.
- Understanding motor-cognitive links is crucial for early intervention.
Purpose of the Study:
- To investigate the relationship between upper-body movement organization and intelligence in school-aged children born preterm.
- To compare these relationships with those in full-term born children.
Main Methods:
- Three-dimensional (3D) kinematic analysis of arm and head movements during a precision task.
- Assessment of intelligence using the Wechsler Intelligence Scale for Children, 4th edition.
- Comparison between 32 preterm and 40 full-term born children (6-8 years old).
Main Results:
- In preterm children, movement duration and trajectory segmentation were associated with full-scale intelligence quotient, independent of gestational age and sex.
- More effective movement organization on the preferred side correlated with higher intelligence scores in the preterm group.
- Full-scale intelligence quotient was lower in preterm children (mean 94.5) compared to full-term children (mean 101.7).
Conclusions:
- Spatiotemporal organization of upper-limb movements is associated with cognitive performance in preterm children.
- These motor-cognitive links are observable in school-aged children and are independent of gestational age.
Objective:
To explore relations between aspects of upper-body spatiotemporal movement organization and intelligence in children born preterm at school age.
Methods:
Three-dimensional (3D) kinematic recordings of arm and head movements during a unimanual precision task were related to performance on the Wechsler Intelligence Scale for Children, 4th edition, in a sample of 32 children born preterm (gestational age, mean: 31.5 weeks [range: 22-35 weeks]; birth weight, mean: 1699 g [range: 404-2962 g]) at 6 years to 8 years with no diagnosed cognitive, sensory, or motor impairments compared with 40 age-matched control children born fullterm.
Results:
In the children born preterm, upper-limb movement duration and segmentation of movement trajectories were significantly associated with full-scale intelligence quotient independent of gestational age (GA) and sex. These effects pertained to the preferred side, characterized by more effective movement organization being linked with increased intelligence scores. The same relations were not seen in the controls. Within the children born preterm, a significant effect of GA was also found for some aspects of upper-limb movement organization. Full-scale intelligence quotient was within normal limits for both groups but significantly lower in the preterm (mean: 94.5 [range: 72-120]) compared with the fullterm (mean: 101.7 [range: 76-119]) born children.
Conclusions:
The findings demonstrate that, independent of GA, the spatiotemporal organization of upper-limb movements is partly associated with cognitive performance in children born preterm.
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