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Effects of Resistance Training on Academic Outcomes in School-Aged Youth: A Systematic Review and Meta-Analysis

Overview
Journal Sports Med
Specialty Orthopedics
Date 2023 Jul 19
PMID 37466900
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Abstract

Background: The primary aim of our systematic review and meta-analysis was to investigate the effect of resistance training on academic outcomes in school-aged youth.

Methods: We conducted a systematic search of six electronic databases (CINAHL Complete, PsycINFO, SCOPUS, Ovid MEDLINE, SPORTDiscus and EMBASE) with no date restrictions. Studies were eligible if they: (a) included school-aged youth (5-18 years), and (b) examined the effect of resistance training on academic outcomes (i.e., cognitive function, academic achievement, and/or on-task behaviour in the classroom). Risk of bias was assessed using the appropriate Cochrane Risk of Bias Tools, funnel plots and Egger's regression asymmetry tests. A structural equation modelling approach was used to conduct the meta-analysis.

Results: Fifty-three studies were included in our systematic review. Participation in resistance training (ten studies with 53 effect sizes) had a small positive effect on the overall cognitive, academic and on-task behaviours in school-aged youth (standardized mean difference (SMD) 0.19, 95% confidence interval (CI) 0.05-0.32). Resistance training was more effective (SMD 0.26, 95% CI 0.10-0.42) than concurrent training, i.e., the combination of resistance training and aerobic training (SMD 0.11, 95% CI - 0.05-0.28). An additional 43 studies (including 211 effect sizes) examined the association between muscular fitness and cognition or academic achievement, also yielding a positive relationship (SMD 0.13, 95% CI 0.10-0.16).

Conclusion: This review provides preliminary evidence that resistance training may improve cognitive function, academic performance, and on-task behaviours in school-aged youth.

Prospero Registration: CRD42020175695.

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References
1.
Donnelly J, Hillman C, Castelli D, Etnier J, Lee S, Tomporowski P . Physical Activity, Fitness, Cognitive Function, and Academic Achievement in Children: A Systematic Review. Med Sci Sports Exerc. 2016; 48(6):1197-222. PMC: 4874515. DOI: 10.1249/MSS.0000000000000901. View

2.
Hultcrantz M, Rind D, Akl E, Treweek S, Mustafa R, Iorio A . The GRADE Working Group clarifies the construct of certainty of evidence. J Clin Epidemiol. 2017; 87:4-13. PMC: 6542664. DOI: 10.1016/j.jclinepi.2017.05.006. View

3.
Santana C, Azevedo L, Cattuzzo M, Hill J, Andrade L, Prado W . Physical fitness and academic performance in youth: A systematic review. Scand J Med Sci Sports. 2016; 27(6):579-603. DOI: 10.1111/sms.12773. View

4.
Blair C . School readiness. Integrating cognition and emotion in a neurobiological conceptualization of children's functioning at school entry. Am Psychol. 2002; 57(2):111-27. DOI: 10.1037//0003-066x.57.2.111. View

5.
Tomporowski P . Effects of acute bouts of exercise on cognition. Acta Psychol (Amst). 2003; 112(3):297-324. DOI: 10.1016/s0001-6918(02)00134-8. View