Does active participation in organised physical activity contribute to children’s achievement of the 24-hour movement guidelines? findings from the family physical activity, sedentary behaviour, and sleep (FAMIPASS) study | BMC Public Health

Rollo S, Antsygina O, Tremblay MS. The whole day matters: Understanding 24-hour movement guideline adherence and relationships with health indicators across the lifespan. J Sport Health Sci. 2020;9:493–510. https://doi.org/10.1016/j.jshs.2020.07.004
Google Scholar
Rhodes RE, Guerrero MD, Vanderloo LM, Barbeau K, Birken CS, Chaput JP, Faulkner G, Janssen I, Madigan S, Mâsse LC, McHugh TL, Perdew M, Stone K, Shelley J, Spinks N, Tamminen KA, Tomasone JR, Ward H, Welsh F, Tremblay MS. Development of a consensus statement on the role of the family in the physical activity, sedentary, and sleep behaviours of children and youth. Int J Behav Nutr Phys Act. 2020;17(1):74. https://doi.org/10.1186/s12966-020-00973-0
Google Scholar
Gustafson SL, Rhodes R. Parental correlates of physical activity in children and early adolescents. Sports Med. 2006;36(1):79–97.
Google Scholar
Goncalves WSF, Byrne R, de Lira PIC, Viana MT, Trost SG. Adherence to 24-hour movement guidelines among rural Brazalian preschool children: associations with parenting practices. Int J Behav Nutr Phys Act. 2022;19:133. https://doi.org/10.1186/s12966-022-01369-y
Google Scholar
Fridolfsson J, Buck C, Hunsberger M, Baran J, Lauria F, Molnar D, Moreno LA, Börjesson M, Lissner L, Arvidsson D. I.Family consortium. High-intensity activity is more strongly associated with metabolic health in children compared to sedentary time: a cross-sectional study of the i.family cohort. Int J Behav Nutr Phys Act. 2021;18(1):90. https://doi.org/10.1186/s12966-021-01156-1
Google Scholar
Herbert JJ, Møller NC, Andersen LB, Wedderkopp N. Organized sport participation is associated with higher levels of overall health-related physical activity in children (CHAMPS Study-DK). PLoS ONE. 2015;10(8):e0134621. https://doi.org/10.1371/journal.pone.0134621
Google Scholar
Rocha HA, Marinho DA, Jidovtseff B, Silva AJ, Costa AM. Influence of regular soccer or swimming practice on gross motor development in childhood. Motricidade. 2016;12(4):33–43. https://doi.org/10.6063/motricidade.7477
Google Scholar
Chowdhury J. Effect of sport participation on social development in children ages 6–14. CHILD J. 2023;2(1):child.v2i1.3474. https://doi.org/10.15173/child.v2i1.3474.
Harlow M, Wolman L, Fraser-Thomas J. Should toddlers and preschoolers participate in organized sport? A scoping review of developmental outcomes associated with young children’s sport participation. Int Rev Sport Exerc Psychol. 2018;13(1):40–64. https://doi.org/10.1080/1750984X.2018.1550796
Google Scholar
Taylor RW, Haszard JJ, Healey D, Meredith-Jones KA, Taylor BJ, Galland BC. Adherence to 24-h movement behavior guidelines and psychosocial functioning in young children: a longitudinal analysis. Int J Behav Nutr Phys Act. 2021;18(1):110. https://doi.org/10.1186/s12966-021-01185-w
Google Scholar
Kuzik N, Spence JC, Arkko K, Blye CJ, Davie J, Duddridge R, Ekeli T, English A, Etruw E, Hunter S, Lamboglia CG, Nesdoly A, Predy M, Rubuliak R, Wohlers B, Wright K, Carson V. Associations between meeting the Canadian 24-hour movement guidelines and physical, cognitive, social-emotional, and overall development in early childhood.J Act Seden Sleep Behav. 2022;1:2(2022). https://doi.org/10.1186/s44167-022-00002-4
Bjørnarå HB, Westergren T, Sejersted E, Torstveit MK, Hansen BH, Berntsen S, Bere E. Does organized sports participation in childhood and adolescence positively influence health? A review of reviews. Prev Med Rep. 2021;23:101425. https://doi.org/10.1016/j.pmedr.2021.101425
Google Scholar
Sigmundová D, Dygrýn J, Vorlíček M, Banátová K, Voráčová J, Sigmund E. FAMIly physical activity, sedentary behaviour and sleep (FAMIPASS) study: protocol for a cross-sectional study. BMJ Open. 2023;13(8):e073244. https://doi.org/10.1136/bmjopen-2023-073244
Google Scholar
Sigmund E, Sigmundová D, Badura P, Voráčová J, Vladimír H Jr, Hollein T, Pavelka J, Půžová Z, Kalman M. Time-trends and correlates of obesity in Czech adolescents in relation to family socioeconomic status over a 16-year study period (2002–2018). BMC Pub Health. 2020;20(1):229. https://doi.org/10.1186/s12889-020-8336-2
Google Scholar
Sigmund E, Sigmundová D, Pavelka J, Kalman M, Voráčová J, Meier Z, Kopčáková J, Badura P. Changes in the prevalence of obesity in Czech adolescents between 2018 and 2022 and its current non-genetic correlates – HBSC study. BMC Pub Health. 2023;23(1):2092. https://doi.org/10.1186/s12889-023-17010-x
Google Scholar
Sigmundová D, Voráčová J, Dygrýn J, Vorlíček M, Sigmund E. Parent-Child associations in Accelerometer-Measured physical activity and sedentary behaviour: the FAMIPASS study. Child (Basel). 2024;11(6):710. https://doi.org/10.3390/children11060710
Google Scholar
Voráčová J, Sigmund E, Vorlíček M, Dygrýn J, Sigmundová D. Accelerometer-measured sleep behaviour and parent-child sleep guideline adherence and sleep quality in Czech families with children aged 3–8 years: the family physical activity, sedentary behaviour and sleep (FAMIPASS) study. J Sleep Res. 2024;33(6):e14242. https://doi.org/10.1111/jsr.14242
Google Scholar
Sigmund E, Voráčová J, Dygrýn J, Vorlíček M, Sigmundová D. Comparative analysis of 24-h movement behaviours in Non-Overweight and overweight/obese children: findings from the family physical activity, sedentary behaviour, and sleep (FAMIPASS). Child (Basel). 2024;11(11):1298. https://doi.org/10.3390/children11111298
Google Scholar
Migueles JH, Rowlands AV, Huber F, Sabia S. GGIR: A research community–driven open source R package for generating physical activity and sleep outcomes from multi-day Raw accelerometer data. J Meas Phys Behav. 2019;2:188–96. https://doi.org/10.1123/jmpb.2018-0063
Google Scholar
van Hees VT, Sabia S, Jones SE, Wood AR, Anderson KN, Kivimäki M, Frayling TM, Pack AI, Bucan M, Trenell MI, Mazzotti DR, Gehrman PR, Singh-Manoux BA, Weedon MN. Estimating sleep parameters using an accelerometer without sleep diary. Sci Rep. 2018;8:12975. https://doi.org/10.1038/s41598-018-31266-z
Google Scholar
Zborilova V, Pridalova M, Sigmundova D, Kaplanova T. The validity of parental-reported body height and weight: a comparison with objective measurements of 7-8-year-old Czech children. Anthrop Rev. 2018;81(3):278–88. https://doi.org/10.2478/anre-2018-0027
Google Scholar
Chai LK, Collins CE, May C, Holder C, Burrows TL. Accuracy of Parent-Reported child height and weight and calculated body mass index compared with objectively measured anthropometrics: secondary analysis of a randomized controlled trial. J Med Internet Res. 2019;21(9):e12532. https://doi.org/10.2196/12532
Google Scholar
Chan NP, Choi KC, Nelson EA, Sung RY, Chan JC, Kong AP. Self-reported body weight and height: an assessment tool for identifying children with overweight/obesity status and cardiometabolic risk factors clustering. Matern Child Health J. 2013;17(2):282–91. https://doi.org/10.1007/s10995-012-0972-4
Google Scholar
Torsheim T, Cavallo F, Levin KA, Schnohr C, Mazur J, Niclasen B, Currie C, FAS Development Study Group. Psychometric validation of the revised family affluence scale: a latent variable approach. Child Indic Res. 2016;9:771–84. https://doi.org/10.1007/s12187-015-9339-x
Google Scholar
Hobza V, Hamrik Z, Bucksch J, De Clerq B. The family affluence scale as an indicator for socioeconomic status: validation on regional income differences in the Czech Republic. Int J Environ Res Public Health. 2017;14(12):E1540.
Google Scholar
Schmitz KH, Harnack L, Fulton JE, Jacobs DR Jr, Gao S, Lytle LA, Van Coevering P. Reliability and validity of a brief questionnaire to assess television viewing and computer use by middle school children. J Sch Health. 2004;74(9):370–7. https://doi.org/10.1111/j.1746-1561.2004.tb06632.x
Google Scholar
WHO. Guidelines on physical activity, sedentary behaviour and sleep for children under 5 years of age. Geneva: World Health Organization. 2019 (Accessed 4 Dec 2024).
WHO. WHO guidelines on physical activity and sedentary behaviour. Geneva: World Health Organization. 2020. (Accessed 4 Dec 2024).
Tremblay MS, Carson V, Chaput JP, Connor Gorber S, Dinh T, Duggan M, Faulkner G, Gray CE, Gruber R, Janson K, Janssen I, Katzmarzyk PT, Kho ME, Latimer-Cheung AE, LeBlanc C, Okely AD, Olds T, Pate RR, Phillips A, Poitras VJ, Rodenburg S, Sampson M, Saunders TJ, Stone JA, Stratton G, Weiss SK, Zehr L. Canadian 24-Hour movement guidelines for children and youth: an integration of physical activity, sedentary behaviour, and sleep. Appl Physiol Nutr Metab. 2016;41(6 Suppl 3):S311–27. https://doi.org/10.1139/apnm-2016-0151
Google Scholar
Ross R, Ross R, Chaput JP, Giangregorio LM, Janssen I, Saunders TJ, Kho ME, Poitras VJ, Tomasone JR, El-Kotob R, McLaughlin EC, Duggan M, Carrier J, Carson V, Chastin SF, Latimer-Cheung AE, Chulak-Bozzer T, Faulkner G, Flood SM, Gazendam MK, Healy GN, Katzmarzyk PT, Kennedy W, Lane KN, Lorbergs A, Maclaren K, Marr S, Powell KE, Rhodes RE, Ross-White A, Welsh F, Willumsen J, Tremblay MS, et al. Canadian 24-Hour movement guidelines for adults aged 18–64 years and adults aged 65 years or older: an integration of physical activity, sedentary behaviour, and sleep. Appl Physiol Nutr Metab. 2020;45(10):S57–102. (Suppl. 2)).
Google Scholar
WHO Multicentre Growth Reference Study Group, de Onis M. WHO child growth standards based on length/height, weight and age. Acta Pædiatr. 2006;95:76–85. https://doi.org/10.1111/j.1651-2227.2006.tb02378.x
Google Scholar
de Onis M, Onyango AW, Borghi E, Siyam A, Nishida C, Siekmann J. Development of a WHO growth reference for school-aged children and adolescents. Bull World Health Organ. 2007;85(9):660–7. https://doi.org/10.2471/blt.07.043497
Google Scholar
Woynarowska B, Palczewska I, Oblacińska A. Standardy who Rozwoju fizycznego Dzieci W Wieku 0–5 Lat. Siatki Centylowe Dlugosci/wysokosci Masy Ciala Wskaznika Masy BMI I Obwodu glowy [WHO child growth standards for children 0–5 years. Percentile charts of length/height, weight, body mass index and head circumference]. Med Wieku Rozwoj. 2012;16(3):232–9.
Google Scholar
World Health Organization. Overweight and Obesity. 2024. Available online: (accessed on 11 December 2024).
Tapia-Serrano MA, Sevil-Serrano J, Sánchez-Miguel PA, López-Gil JF, Tremblay MS, García-Hermoso A. Prevalence of meeting 24-Hour movement guidelines from pre-school to adolescence: A systematic review and meta-analysis including 387,437 participants and 23 countries. J Sport Health Sci. 2022;11(4):427–37. https://doi.org/10.1016/j.jshs.2022.01.005
Google Scholar
Chong KH, Suesse T, Cross PL, Ryan ST, Aadland E, Aoko O, Byambaa A, Carson V, Chaput JP, Christian H, Cliff DP, De Craemer M, de Lucena Martins CM, Delisle Nyström C, Draper CE, El Hamdouchi A, Florindo AA, Guan H, Ha AS, Hamzavi Zarghani N, Hesketh KD, Hossain MS, Jajat J, Kim T, Koh D, Kontsevaya AV, Kuzik N, Leppänen MH, Löf M, Lubree H, Meredith-Jones K, Mwase-Vuma TW, Ng JYY, Novotny R, Nusurupia JJ, Pham BN, Poh BK, Reilly JJ, Staiano AE, Sultoni K, Tanaka C, Tang HK, Taylor RW, Tomaz SA, Tremblay MS, Trost SG, Turab A, Vale S, Wickramasinghe VP, Okely AD. Pooled analysis of physical activity, sedentary behavior, and sleep among children from 33 countries. JAMA Pediatr. 2024;178(11):1199–207. https://doi.org/10.1001/jamapediatrics.2024.3330
Google Scholar
Kracht CL, Webster EK, Staiano AE. Sociodemographic differences in young children meeting 24-Hour movement guidelines. J Phys Act Health. 2019;16(10):908–15. https://doi.org/10.1123/jpah.2019-0018
Google Scholar
Byambaa A, Dechinjamts O, Jambaldorj B, Jones RA, Chong KH, Okely AD. Prevalence and health associations of meeting the world health organization guidelines for physical activity, sedentary behavior, and sleep in Preschool-Aged children: the SUNRISE Mongolia pilot and feasibility study. J Phys Act Health. 2024;21(3):283–93. https://doi.org/10.1123/jpah.2023-0511
Google Scholar
Coyle-Asbil HJ, Breau B, Ma DWL, Haines J, Buchholz AC, Vallis LA. Guelph family health study. Compliance with the 24-hour movement behavior guidelines and the impact of sleep methods among toddler, preschool, and school-aged children enrolled in the Guelph family health study. J Sci Med Sport. 2024;27(9):631–39. https://doi.org/10.1016/j.jsams.2024.05.014
Google Scholar
Swindell N, Wachira LJ, Okoth V, Kagunda S, Owino G, Ochola S, Brophy S, Summers H, Richards A, Fairclough SJ, Onywera V, Stratton G. Prevalence and correlates of compliance with 24-h movement guidelines among children from urban and rural Kenya-The Kenya-LINX project. PLoS ONE. 2022;17(12):e0279751. https://doi.org/10.1371/journal.pone.0279751
Google Scholar
Feng J, Huang WY, Reilly JJ, Wong SH. Compliance with the WHO 24-h movement guidelines and associations with body weight status among preschool children in Hong Kong. Appl Physiol Nutr Metab. 2021;46(10):1273–8. https://doi.org/10.1139/apnm-2020-1035
Google Scholar
Leppänen MH, Ray C, Wennman H, Alexandrou C, Sääksjärvi K, Koivusilta L, Erkkola M, Roos E. Compliance with the 24-h movement guidelines and the relationship with anthropometry in Finnish preschoolers: the DAGIS study. BMC Public Health. 2019;19(1):1618. https://doi.org/10.1186/s12889-019-7967-7
Google Scholar
De Craemer M, Verbestel V, Cardon G, Androutsos O, Manios Y, Chastin S. Correlates of meeting the physical activity, sedentary behavior, and sleep guidelines for the early years among Belgian preschool children: the ToyBox-Study. Int J Environ Res Public Health. 2020;17(19):7006. https://doi.org/10.3390/ijerph17197006
Google Scholar
Yaffe Y. Systematic review of the differences between mothers and fathers in parenting styles and practices. Curr Psychol. 2023;42:16011–24. https://doi.org/10.1007/s12144-020-01014-6
Google Scholar
Český Statistický úřad (ČSÚ). Vývoj obyvatelstva v krajích České republiky, Rozvodovost [Population development in the regions of the Czech Republic, Diversity]. Accessed 16 Dec 2024.
Bold F. Péče o nezletilé děti po rozvodu/rozchodu rodičů [Care of minor children after divorce/separation of parents]. Právní Prostor. 2019; 1–5. Accessed 16 Dec 2024.
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