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First published online January 20, 2020

Motor Skills of 5-Year-Old Children: Gender Differences and Activity and Family Correlates

Abstract

It is unclear why there may be gender differences in the motor skills of same aged children. We compared motor skill competence of 5-year-old boys and girls (n = 712) and examined whether variations in time spent in different types of activities and in family-related variables were associated with motor skills. We measured motor skills with the Bruininks–Oseretsky Test, Second Edition short form, and we used parental questionnaires to measure behavioral and family-related variables. Girls outperformed boys on most motor skills tasks, as eight of 14 tests showed statistically significant gender differences (p <.001). In addition, drawing or doing handicrafts for 60 minutes or more per day was positively associated with fine motor control (p <.001). Father’s higher education was associated with the children’s better body coordination (p =.020). Finally, both attending day care (p =.017) and outdoor physical activity for 60 minutes or more per day (p =.034) were positively associated with strength and agility. We found no associations between manual coordination and either daily activities or family-related variables. Time spent in different activities of young children should be recognized as a means of enhancing the development of fundamental motor skills.

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References

Bardid F., Huyben F., Lenoir M., Seghers J., De Martelaer K., Goodway J. D., Deconinck F. J. (2016). Assessing fundamental motor skills in Belgian children aged 3-8 years highlights differences to US reference sample. Acta Paediatrica, 105(6), e281‒e290.
Barnett L. M., Lai S. K., Veldman S. L. C., Hardy L. L., Cliff D. P., Morgan P. J., Okely A. D. (2016). Correlates of gross motor competence in children and adolescents: A systematic review and meta-analysis. Sports Medicine, 46(11), 1663‒1688.
Bingham D. D., Costa S., Hinkley T., Shire K. A., Clemes S. A., Barber S. E. (2016). Physical activity during the early years: A systematic review of correlates and determinants. American Journal of Preventive Medicine, 51(3), 384‒402.
Bruininks R. H., Bruininks B. D. (2005). Bruininks-Oseretsky test of motor proficiency (2nd ed.). Minneapolis, MN: NCS Pearson.
Certain L. K., Kahn R. S. (2002). Prevalence, correlates, and trajectory of television viewing among infants and toddlers. Pediatrics, 109(4), 634–642.
Cools W., Martelaer K. D., Samaey C., Andries C. (2009). Movement skill assessment of typically developing preschool children: A review of seven movement skill assessment tools. Journal of Sports Science & Medicine, 8(2), 154‒168.
D’Hondt E., Venetsanou F., Kambas A., Lenoir M. (2019, July). Motor competence levels in young children: A cross-cultural comparison between Belgium and Greece. Motor Learning and Development, 3, 289‒306. Advance online publication.
Deitz J. C., Kartin D., Kopp K. (2007). Review of the Bruininks-Oseretsky Test of Motor Proficiency, second edition (BOT-2). Physical & Occupational Therapy in Pediatrics, 27(4), 87‒102.
De Craemer M., De Decker E., De Bourdeaudhuij I., Vereecken C., Manios Y., Cardon G., … ToyBox-study group. (2012). Correlates of energy balance-related behaviours in preschool children: A systematic review. Obesity Reviews, 13, 13‒28.
Engel A. C., Broderick C. R., van Doorn N., Hardy L. L., Parmenter B. J. (2018). Exploring the relationship between fundamental motor skill interventions and physical activity levels in children: A systematic review and meta-analysis. Sports Medicine, 4(8), 1845‒1857.
Figueroa R., An R. (2017). Motor skill competence and physical activity in preschoolers: A review. Maternal and Child Health Journal, 21(1), 136‒146.
Gabbard C. P. (2018). Lifelong motor development (7th ed.). Philadelphia, PA: Wolters Kluwer.
Gallahue D. L., Ozmun J. C., Goodway J. D. (2012). Understanding motor development: Infants, children, adolescents, adults (7th ed.). New York, NY: McGraw-Hill.
Han A., Fu A., Cobley S., Sanders R. H. (2018). Effectiveness of exercise intervention on improving fundamental movement skills and motor coordination in overweight/obese children and adolescents: A systematic review. Journal of Science and Medicine in Sport, 21(1), 89‒102.
Hardy L. L., Reinten-Reynolds T., Espinel P., Zask A., Okely A. D. (2012). Prevalence and correlates of low fundamental movement skill competency in children. Pediatrics, 130(2), e390‒e398.
Haywood K. M., Getchell N. (2014). Life span motor development (6th ed.). United States: Human Kinetics.
Henderson S. E., Sugden D. A., Barnett A. L. (2007). Movement assessment battery for children–2 (2nd ed.). London, England: Harcourt Assessment.
Hesketh K. R., Lakshman R., van Sluijs E. M. F. (2017). Barriers and facilitators to young children’s physical activity and sedentary behaviour: A systematic review and synthesis of qualitative literature. Obesity Reviews, 18(9), 987‒1017.
Kokstejn J., Musalek M., Tufano J. J. (2017). Are sex differences in fundamental motor skills uniform throughout the entire preschool period? PLoS One, 12(4), e0176556.
Lagström H., Rautava P., Kaljonen A., Räihä H., Pihlaja P., Korpilahti P., Niemi P. (2013). Cohort profile: Steps to the healthy development and well-being of children (the STEPS study). International Journal of Epidemiology, 42(5), 1273‒1284.
Laukkanen A., Pesola A., Havu M., Sääkslahti A., Finni T. (2014). Relationship between habitual physical activity and gross motor skills is multifaceted in 5- to 8-year-old children. Scandinavian Journal of Medicine and Science in Sports, 24(2), e102‒e110.
Liu Y., Metens T., Absil J., De Maertelaer V., Balériaux D., David P., Aeby A. (2011). Gender differences in language and motor-related fibers in a population of healthy preterm neonates at term-equivalent age: A diffusion tensor and probabilistic tractography study. American Journal of Neuroradiology, 32(11), 2011‒2016.
Logan S., Barnett L., Goodway J., Stodden D. (2016). Comparison of performance on process- and product-oriented assessments of fundamental motor skills across childhood. Journal of Sports Sciences, 35(7), 1‒8.
Lubans D. R., Morgan P. J., Cliff D. P., Barnett L. M., Okely A. D. (2010). Review of the benefits associated with fundamental movement skill competency in youth. Sports Medicine, 40, 1019‒1035.
Matarma T., Tammelin T., Kulmala J., Koski P., Hurme S., Lagström H. (2017). Factors associated with objectively measured physical activity and sedentary time of 5–6-year-old children in the STEPS study. Early Child Development and Care, 187(12), 1863‒1873.
Morley D., Till K., Ogilvie P., Turner G. (2015). Influences of gender and socioeconomic status on the motor proficiency of children in the UK. Human Movement Science, 44, 150‒156.
Olesen L. G., Kristensen P. L., Ried-Larsen M., Grontved A., Froberg K. (2014). Physical activity and motor skills in children attending 43 preschools: A cross-sectional study. BMC Pediatrics, 14, 229.
Piek J. P., Hands B., Licari M. K. (2012). Assessment of motor functioning in the preschool period. Neuropsychology Review, 22(4), 402‒413.
Piek J. P., McLaren S., Kane R., Jensen L., Dender A, Roberts C., Straker L. (2013). Does the animal fun program improve motor performance in children aged 4-6 years? Human Movement Science, 32(5), 1086‒1096.
Pienaar A. E., Barhorst R., Twisk J. W. (2014). Relationships between academic performance, SES school type and perceptual-motor skills in first grade South African learners: NW-CHILD study. Child: Care, Health and Development, 40(3), 370–378.
Santos M. O., Barbosa D. G., Junior G. J. F., Silva R. C., Pelegrini A., Felden É. P. G. (2018). Capacity of objective measures of physical activity to predict Brazilian Children’s low motor proficiency. Perceptual and Motor Skills, 125(4), 669‒681.
Soini A., Tammelin T., Sääkslahti A., Watt A., Villberg J., Kettunen T., Poskiparta M. (2013). Seasonal and daily variation in physical activity among three-year-old Finnish preschool children. Early Child Development and Care, 184(4), 589‒601.
Stodden D. F., Goodway J. D., Langendorfer S. J., Roberton M. A., Rudisill M. E., Garcia C., Garcia L. E. (2008). A developmental perspective on the role of motor skill competence in physical activity: An emergent relationship. Quest, 60(2), 290‒306.
Thomas J., French K. E. (1985). Gender differences across age in motor performance: A meta-analysis. Psychological Bulletin, 98(2), 260.
Tonge K. L., Jones R. A., Okely A. D. (2016). Correlates of children’s objectively measured physical activity and sedentary behavior in early childhood education and care services: A systematic review. Preventive Medicine, 89, 129‒139.
Ulrich D. A. (2000) Test of gross motor development (2nd ed.). Austin, TX: Pro-Ed.
Van Capelle A., Broderick C. R., van Doorn N., E. Ward R., Parmenter B. J. (2017). Interventions to improve fundamental motor skills in pre-school aged children: A systematic review and meta-analysis. Journal of Science and Medicine in Sport, 20(7), 658‒666.
Venetsanou F., Kambas A. (2016). Motor proficiency in young children: A closer look at potential gender differences. Sage Open, 6(1), 1‒10.
Wick K., Leeger-Aschmann C. S., Monn N. D., Radtke T., Ott L. V., Rebholtz C. E., Kriemler S. (2017). Interventions to promote fundamental movement skills in childcare and kindergarten: A systematic review and meta-analysis. Sports Medicine, 47(10), 2045‒2068.
Wrotniak B. H., Epstein L. H., Dorn J. M., Jones K. E., Kondilis V. A. (2006). The relationship between motor proficiency and physical activity in children. Pediatrics, 118(6), e1758‒e1765.

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Published In

Article first published online: January 20, 2020
Issue published: April 2020

Keywords

  1. preschool
  2. BOT-2
  3. motor skill correlates
  4. STEPS Study

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© The Author(s) 2020.
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PubMed: 31959076

Authors

Affiliations

Tanja Matarma
Department of Clinical Medicine, University of Turku, Finland
Hanna Lagström
Department of Public Health, University of Turku and Turku University Hospital, Finland
Eliisa Löyttyniemi
Department of Biostatistics, University of Turku, Finland
Pasi Koski
Department of Teacher Education, University of Turku, Finland

Notes

Tanja Matarma, Department of Clinical Medicine, University of Turku, Turku 20014, Finland. Email: [email protected]

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