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Published on: May 17, 2024
The role of early fine and gross motor development on later motor and cognitive ability
Jan P Piek1, Lisa Dawson, Leigh M Smith
1School of Psychology, Curtin University of Technology, GPO Box U1987, Perth 6845, Western Australia, Australia. j.piek@curtin.edu.au
Insights
Early gross motor development, measured by the Ages and Stages Questionnaires (ASQ), predicts later cognitive function in children. This suggests parent-report questionnaires can identify developmental risks before school entry.
Area of Science:
- Developmental Psychology
- Pediatric Neurodevelopment
- Early Childhood Education
Background:
- Early childhood motor development is crucial for later cognitive and academic success.
- Predicting school-age outcomes from early developmental trajectories remains an area of active research.
- Parent-report questionnaires offer a scalable method for monitoring child development.
Purpose of the Study:
- To investigate if early motor performance (birth to 4 years) predicts school-age motor and cognitive abilities.
- To explore the predictive power of trajectory information derived from the Ages and Stages Questionnaires (ASQ).
- To examine the influence of socio-economic status (SES) and gestational age on these developmental relationships.
Main Methods:
- Longitudinal study of 33 children assessed from 4 months to 4 years using ASQ.
- ASQ scores generated trajectory data (age of asymptote, score range, variance).
- School-age assessments included the McCarron Assessment of Neuromuscular Development (MAND) for motor skills and the Wechsler Intelligence Scale for Children-IV (WISC-IV) for cognition.
Main Results:
- Socio-economic status (SES) predicted school-age fine motor and cognitive performance.
- Early fine motor trajectory did not significantly predict later fine motor or cognitive skills after controlling for SES.
- Early gross motor trajectory significantly predicted cognitive performance, specifically working memory and processing speed, after controlling for SES.
Conclusions:
- Early gross motor development, as indicated by ASQ trajectories, is a significant predictor of later cognitive function.
- Parent-report measures like the ASQ can aid in identifying children at risk for developmental delays before school age.
- Findings support further research into the etiological links between early motor development and cognitive outcomes.
Abstract:
The aim of this study was to determine whether information obtained from measures of motor performance taken from birth to 4 years of age predicted motor and cognitive performance of children once they reached school age. Participants included 33 children aged from 6 years to 11 years and 6 months who had been assessed at ages 4 months to 4 years using the ages and stages questionnaires (ASQ: [Squires, J. K., Potter, L., & Bricker, D. (1995). The ages and stages questionnaire users guide. Baltimore: Brookes]). These scores were used to obtain trajectory information consisting of the age of asymptote, maximum or minimum score, and the variance of ASQ scores. At school age, both motor and cognitive ability were assessed using the McCarron Assessment of Neuromuscular Development (MAND: [McCarron, L. (1997). McCarron assessment of neuromuscular development: Fine and gross motor abilities (revised ed.). Dallas, TX: Common Market Press.]), and the Wechsler Intelligence Scale for Children-Version IV (WISC-IV: [Wechsler, D. (2004). WISC-IV integrated technical and interpretive manual. San Antonio, Texas: Harcourt Assessment]). In contrast to previous research, results demonstrated that, although socio-economic status (SES) predicted fine motor performance and three of four cognitive domains at school age, gestational age was not a significant predictor of later development. This may have been due to the low-risk nature of the sample. After controlling for SES, fine motor trajectory information did not account for a significant proportion of the variance in school aged fine motor performance or cognitive performance. The ASQ gross motor trajectory set of predictors accounted for a significant proportion of the variance for cognitive performance once SES was controlled for. Further analysis showed a significant predictive relationship for gross motor trajectory information and the subtests of working memory and processing speed. These results provide evidence for detecting children at risk of developmental delays or disorders with a parent report questionnaire prior to school age. The findings also add to recent investigations into the relationship between early motor development and later cognitive function, and support the need for ongoing research into a potential etiological relationship.
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