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Independent Associations of Organized Physical Activity and Weight Status with Children's Cognitive Functioning: A Matched-Pairs Design

Overview
Specialties Orthopedics
Pediatrics
Date 2015 Aug 8
PMID 26252198
Citations 5
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Abstract

Purpose: This study tested whether participation in organized physical activity (active vs. inactive) or weight status (normal weight vs. overweight or obese) independently relate to children's cognition, using a matched-pairs design.

Design And Methods: Normal weight, active children (8-11 yrs, 5th-75th percentile BMI) were recruited from extracurricular physical activity programs while normal weight inactive (5th-75th percentile BMI) and overweight inactive children (BMI ≥85th percentile) were recruited from local Augusta, Georgia area schools. Measures included the Cognitive Assessment System, anthropometrics, and parent- and self-report of physical activity. Paired t tests compared cognition scores between matched groups of normal weight active vs. normal weight inactive (N = 24 pairs), normal weight inactive vs. overweight inactive (N = 21 pairs), and normal weight active vs. overweight inactive children (N = 16 pairs). Children in each comparison were matched for race, gender, age, and socioeconomic status.

Results: Normal weight active children had higher Planning (M± SD = 109 ± 11 vs. 100 ± 11, p = .011) and Attention scores (108 ± 11 vs. 100 ± 11, p = .013) than overweight inactive children. Normal weight inactive children had higher Attention scores than overweight inactive children (105 ± 13 vs. 93 ± 12, p = .008). When compared with normal weight inactive children, normal weight active children had higher Planning (113 ± 10 vs. 102 ± 13, p = .008) and marginally higher Attention scores (111 ± 11 vs. 104 ± 12, p = .06).

Conclusion: Findings suggest independent associations of children's weight status with selective attention, and physical activity with higher-order processes of executive function.

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References
1.
Cottrell L, Northrup K, Wittberg R . The extended relationship between child cardiovascular risks and academic performance measures. Obesity (Silver Spring). 2008; 15(12):3170-7. DOI: 10.1038/oby.2007.377. View

2.
Kamijo K, Pontifex M, Khan N, Raine L, Scudder M, Drollette E . The negative association of childhood obesity to cognitive control of action monitoring. Cereb Cortex. 2012; 24(3):654-62. PMC: 3920765. DOI: 10.1093/cercor/bhs349. View

3.
Li Y, Dai Q, Jackson J, Zhang J . Overweight is associated with decreased cognitive functioning among school-age children and adolescents. Obesity (Silver Spring). 2008; 16(8):1809-15. DOI: 10.1038/oby.2008.296. View

4.
Roth C, Elfers C, Gebhardt U, Muller H, Reinehr T . Brain-derived neurotrophic factor and its relation to leptin in obese children before and after weight loss. Metabolism. 2012; 62(2):226-34. DOI: 10.1016/j.metabol.2012.08.001. View

5.
Hillman C, Pontifex M, Castelli D, Khan N, Raine L, Scudder M . Effects of the FITKids randomized controlled trial on executive control and brain function. Pediatrics. 2014; 134(4):e1063-71. PMC: 4179093. DOI: 10.1542/peds.2013-3219. View