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Relationships between Math Skills, Motor Skills, Physical Activity, and Obesity in Typically Developing Preschool
Pedro Flores1, Eduarda Coelho2,3, Isabel Mourão-Carvalhal2,3
1CI-ISCE, Higher Institute of Education and Sciences of the Douro, 4560-708 Penafiel, Portugal.
Insights
Fine motor skills, specifically visuomotor integration, significantly impact preschool math abilities. Gross motor skills may indirectly enhance math performance by improving visuomotor integration in young children.
Area of Science:
- Child Development
- Motor Skills
- Cognitive Development
Background:
- Motor and cognitive development are interconnected in early childhood.
- Fine motor skills, particularly visuomotor integration, are crucial for mathematical performance in preschoolers.
- Low physical activity during this developmental stage can hinder motor skill development and contribute to obesity.
Purpose of the Study:
- To investigate the relationship between mathematical skills, motor skills (fine and gross), physical activity levels, and obesity in preschool children.
- To identify specific motor skills that influence mathematical performance.
- To explore the indirect effects of gross motor skills and physical activity on mathematical abilities.
Main Methods:
- Assessed mathematical skills using the Weschler preschool and primary scale of intelligence-revised arithmetic test.
- Evaluated fine motor skills via the "Adapted Threading Beads Test" and "Adapted Visuomotor Integration Test".
- Measured gross motor skills using the Movement Assessment Battery for Children-2 (Balance and Aiming & Catching).
- Quantified physical activity with the "Preschool-age physical activity questionnaire" and obesity via Body Mass Index (BMI).
Main Results:
- Visuomotor integration, a fine motor skill, was the only significant predictor of mathematical skills in the regression model.
- Gross motor skills showed a positive association with visuomotor integration.
- Physical activity levels and obesity were not significantly associated with visuomotor integration or mathematical skills.
Conclusions:
- Mathematical skills in preschool children are directly and significantly influenced by visuomotor integration.
- Gross motor skills may indirectly enhance mathematical skills by improving visuomotor integration.
- Structured physical activity programs could potentially improve mathematical performance through enhanced motor skill development.
Abstract:
There is evidence of a relationship between motor and cognitive development. The literature has shown that of all the motor skills, fine motor skills are those that contribute most to mathematical performance in preschool children. As this is a sensitive period in the development of motor skills, low levels of physical activity in this period can compromise their development and contribute to weight gain and obesity. The aim of this study was therefore to analyze the relationship between mathematical and motor skills, physical activity levels, and obesity. The sample consisted of 62 preschool children (32 males) with an average age of 4.63 ± 0.81. The Weschler preschool and primary scale of intelligence-revised arithmetic test was used to assess mathematical skills. The tests to assess fine motor skills were the "Adapted Threading Beads Test" and the "Adapted Visuomotor Integration Test". The movement assessment battery for children-2, band 1, "Aiming & Catching", and "Balance" tests were used to assess gross motor skills. Levels of physical activity were assessed using the "Preschool-age physical activity questionnaire" and obesity using the body mass index. The results indicated that only the fine motor skills of visuomotor integration were included in the multiple linear regression model (F < 0.001; r = 0.464; R2 = 0.215; p < 0.001), with the exclusion of gross motor skills, physical activity levels, and obesity levels. Thus, it was concluded that mathematical skills were only directly and significantly influenced by visuomotor integration. However, visuomotor integration was positively and significantly associated with gross motor skills (r = 0.269; p < 0.05) and not with levels of physical activity and obesity. Thus, gross motor skills could contribute to improving visuomotor integration directly and consequently mathematical skills indirectly. The results of this study suggest that the implementation of structured physical activity programs can contribute to mathematical performance.
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