1.
Australian Bureau of Statistics (ABS) . Australian health survey: physical activity. 2013. Accessed April 10, 2017.
http://www.health.gov.au/internet/main/publishing.nsf/content/health-pubhlth-strateg-active-evidence.htm Google Scholar2.
Janssen, I, LeBlanc, AG. Systematic review of the health benefits of physical activity and fitness in school-aged children and youth. Int J Behav Nutr Phys Act. 2010;7(1):40.
Google Scholar |
Crossref |
Medline |
ISI3.
Barnett, LM, van Beurden, E, Morgan, PJ, Brooks, LO, Beard, JR. Childhood motor skill proficiency as a predictor of adolescent physical activity. J Adolesc Health. 2009;44(3):252-259.
Google Scholar |
Crossref |
Medline |
ISI4.
Kriemler, S, Meyer, U, Martin, E, van Sluijs, EM, Andersen, LB, Martin, BW. Effect of school-based interventions on physical activity and fitness in children and adolescents: a review of reviews and systematic update. Br J Sports Med. 2011;45(11):923-930.
Google Scholar |
Crossref |
Medline |
ISI5.
Beets, MW, Weaver, RG, Ioannidis, JPA, et al. Identification and evaluation of risk of generalizability biases in pilot versus efficacy/effectiveness trials: a systematic review and meta-analysis. Int J Behav Nutr Phys Act. 2020;17:19.
https://doi.org/10.1186/s12966-020-0918-y Google Scholar6.
Jarani, J, Grøntved, A, Muca, F, et al. Effects of two physical education programmes on health- and skill-related physical fitness of Albanian children. J Sports Sci. 2016;34(1):35-46. doi:
10.1080/02640414.2015.1031161 Google Scholar |
Crossref |
Medline7.
Bardaglio, G, Marasso, D, Magno, F, Rabaglietti, E, Ciairano, S. Team-teaching in physical education for promoting coordinative motor skills in children: the more you invest the more you get. Phys Educ Sport Pedagogy. 2015;20(3):268-282. doi:
10.1080/17408989.2013.837434 Google Scholar |
Crossref8.
Piek, JP, McLaren, S, Kane, R, et al. Does the animal fun program improve motor performance in children aged 4-6 years? Hum Mov Sci. 2013;32(5):1086-1096. doi:
10.1016/j.humov.2012.08.004 Google Scholar |
Crossref |
Medline |
ISI9.
Alesi, M, Bianco, A, Padulo, J, et al. Motor and cognitive growth following a football training program. Front Psychol. 2015;6:1627.
Google Scholar |
Crossref |
Medline |
ISI10.
Vernadakis, N, Papastergiou, M, Zetou, E, Antoniou, P. The impact of an exergame-based intervention on children’s fundamental motor skills. Comput Educ. 2015;83:90-102. doi:
10.1016/j.compedu.2015.01.001 Google Scholar |
Crossref |
ISI11.
Altunsöz, IH, Goodway, JD. SKIPing to motor competence: the influence of project successful kinesthetic instruction for preschoolers on motor competence of disadvantaged preschoolers. Phys Educ Sport Pedagogy. 2016;21(4):366-385. doi:
10.1080/17408989.2015.1017453 Google Scholar |
Crossref12.
Bhatia, P, Davis, A, Shamas-Brandt, E. Educational gymnastics: the effectiveness of Montessori practical life activities in developing fine motor skills in kindergartners. Early Educ Dev. 2015;26(4):594-607. doi:
10.1080/10409289.2015.995454 Google Scholar |
Crossref13.
Pesce, C, Masci, I, Marchetti, R, Vazou, S, Sääkslahti, A, Tomporowski, PD. Deliberate play and preparation jointly benefit motor and cognitive development: mediated and moderated effects. Front Psychol. 2016;7:349.
Google Scholar |
Crossref |
Medline14.
Probst, P, Grummich, K, Heger, P, et al. Blinding in randomized controlled trials in general and abdominal surgery: protocol for a systematic review and empirical study. Syst Rev. 2016;5:48.
https://doi.org/10.1186/s13643-016-0226-4 Google Scholar15.
Certo, ST, Busenbark, JR, Woo, HS, Semadeni, M. Sample selection bias and Heckman models in strategic management research. Strateg Manag J. 2016;37(13):2639-2657.
Google Scholar |
Crossref16.
Nunan, D, Aronson, J, Bankhead, C. Catalogue of bias: attrition bias. BMJ Evid Based Med. 2018;23(1):21-22.
Google Scholar |
Crossref |
Medline17.
DeVito, NJ, Goldacre, B. Catalogue of bias: publication bias. BMJ Evid Based Med. 2019;24(2):53-54.
Google Scholar |
Crossref |
Medline
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