Relation between Motor and Cognitive Skills in Italian Basketball Players Aged between 7 and 10 Years Old

Francesca Policastro, Agostino Accardo, Roberto Marcovich, Giovanna Pelamatti, Stefania Zoia, Francesca Policastro, Agostino Accardo, Roberto Marcovich, Giovanna Pelamatti, Stefania Zoia

Abstract

There is evidence supporting a correlation between motor, attention and working memory in children. This present study focuses on children aged between 7 and 10 years, who have been playing basketball in the last two years. The aim of this study is to verify the correlation between cognitive and motor abilities and to understand the importance of this correlation in basketball practice. A total of 75 children who were 7.2⁻10.99 years old were assessed in terms of their attention, motor manual sequences and visuo-spatial working memory. A regression analysis was provided. In this sample, the motor abilities of children were found to be correlated with attention (denomination task, R² = 0.07), visuo-spatial working memory (R² = 0.06) and motor manual sequencing (aiming and catching task, R² = 0.05; and manual dexterity task, R² = 0.10). These correlations justify the suggestion to introduce deeper cognitive involvement during basketball training. The development of executive functions could have an important impact on basketball practice and the introduction of attention and memory tasks could help coaches to obtain optimal improvement in performance during the training sessions.

Keywords: Movement Assessment Battery for Children-2; attention; basketball; motor manual sequences; visuo-spatial working memory.

Conflict of interest statement

The authors declare no conflicts of interest.

References

    1. National Basketball Association USA Basketball Youth Basketball Guidelines. [(accessed on 2 July 2018)];2017 Available online: .
    1. Federazione Italiana Pallacanestro Statistiche Tesserati a Livello Nazionale e Regionale. [(accessed on 2 July 2018)];2012 Available online: .
    1. Mondoni M., Avanzino R. Manuale di pallacanestro. Tecnica e didattica. Vita e pensiero, Università di Cattolica; Milan, Italy: 2014.
    1. Cremonini M., Pellegrino F.M. Minibasket. L’emozione, la Scoperta, il Gioco. Federazione Italiana Pallacanestro; Milan, Italy: 2010.
    1. Cremonini M. Le Favole Nel Minibasket. [(accessed on 2 July 2018)];2002 Available online: .
    1. Newell K.M. Coordination, control and skill. Adv. Psychol. 1985;27:295–317.
    1. Piek J.P., Dawson L., Smith L.M., Gasson N. The role of early fine and gross motor development on later motor and cognitive ability. Hum. Mov. Sci. 2008;27:668–681. doi: 10.1016/j.humov.2007.11.002.
    1. Niederer I., Kriemler S., Gut J., Hartmann T., Schindler C., Barral J., Puder J.J. Relationship of aerobic fitness and motor skills with memory and attention in preschoolers (Ballabeina): A cross-sectional and longitudinal study. BMC Pediatr. 2011;11:34. doi: 10.1186/1471-2431-11-34.
    1. Alloway T.P., Temple K.J. A comparison of working memory skills and learning in children with developmental coordiantion disorder and moderate learning difficulties. Appl. Cogn. Psychol. 2007;21:473–487. doi: 10.1002/acp.1284.
    1. Piek J.P., Dyck M.J., Francis M., Conwell A. Working memory, processing speed, and set-shifting in children with developmental coordination disorder and attention-deficit–hyperactivity disorder. Dev. Med. Child Neurol. 2007;49:678–683. doi: 10.1111/j.1469-8749.2007.00678.x.
    1. Coker C.A. Motor Learning and Control for Practitioners. Routledge; Abingdon-on-Thames, UK: 2017.
    1. Rosenbaum D.A. Human Motor Control. Academic Press; Cambridge, MA, USA: 2009.
    1. Diamond A., Lee K. Interventions shown to aid executive function development in children 4 to 12 years old. Science. 2011;333:959–964. doi: 10.1126/science.1204529.
    1. Benzing V., Schmidt M., Jäger K., Egger F., Conzelmann A., Roebers C.M. A classroom intervention to improve executive functions in late primary school children: Too ‘old’ for improvements? Br. J. Educ. Psychol. 2018 doi: 10.1111/bjep.12232.
    1. Henderson S.E., Sugden D.A., Barnett A.L. Movement Assessment Battery for Children-2. Harcourt Assessment, Psychological Corporation; London, UK: 2007.
    1. Biancotto M., Guicciardi M., Pelamatti G.M., Santamaria T., Zoia S. Movement Assessment Battery for Children. 2nd ed. Giunti O.S. Psychometrics; Firenze, Italy: 2016.
    1. Korkman M., Kirk U., Kemp S.L. NEPSY: A Developmental Neuropsycological Assessment. 2nd ed. The Psychological Corporation; San Antonio, TX, USA: 2007.
    1. Mammarella I.C., Toso C., Pazzaglia F., Cornoldi C. BVS-Corsi. Batteria per la Valutazione Della Memoria Visiva e Spaziale. Con CD-ROM; Edizioni Erickson; Trento, Italia: 2008.
    1. Rigoli D., Piek J.P., Kane R., Oosterlaan J. An examination of the relationship between motor coordination and executive functions in adolescents. Dev. Med. Child Neurol. 2012;54:1025–1031. doi: 10.1111/j.1469-8749.2012.04403.x.
    1. Roebers C.M., Kauer M. Motor and cognitive control in a normative sample of 7-years-olds. Dev. Sci. 2009;12:175–181. doi: 10.1111/j.1467-7687.2008.00755.x.
    1. Mandich A., Buckolz E., Polatajko H. On the ability of children with developmental coordination disorder (DCD) to inhibit response initiation: The Simon effect. Brain Cogn. 2002;50:150–162. doi: 10.1016/S0278-2626(02)00020-9.
    1. Diamond A. Close interrelation of motor development and cognitive development and of the cerebellum and prefrontal cortex. Child Dev. 2000;71:44–56. doi: 10.1111/1467-8624.00117.
    1. Best J.R. Effects of physical activity on children’s executive function: Contributions of experimental research on aerobic exercise. Dev. Rev. 2010;30:331–351. doi: 10.1016/j.dr.2010.08.001.
    1. Blair C., Zelazo P.D., Greenberg M.T. Measurement of Executive Function in Early Childhood: A Special Issue of Developmental Neuropsychology. Psychology Press; East Sussex, UK: 2016.

Source: PubMed

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