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Research Papers

Is Wii-based motor training better than task-specific matched training for children with developmental coordination disorder? A randomized controlled trial

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Pages 2611-2620 | Received 19 Aug 2018, Accepted 18 Dec 2018, Published online: 22 Feb 2019

References

  • Anon. American psychiatric association. Diagnostic Stat Man Ment Disord DSM-5 [Internet]. 2013; [cited 2018 Jun 15]. Available from: dsm.psychiatryonline.org.
  • Cairney J, Hay JA, Faught BE, et al. Developmental coordination disorder, generalized self-efficacy toward physical activity, and participation in organized and free play activities. J Pediatr. 2005;147:515–520.
  • Blank R, Smits-Engelsman B, Polatajko H, et al. European academy for childhood disability. European Academy for Childhood Disability (EACD): recommendations on the definition, diagnosis and intervention of developmental coordination disorder (long version). Dev Med Child Neurol. 2012;54:54–93.
  • Smits-Engelsman B, Vinçon S, Blank R, et al. Evaluating the evidence for motor-based interventions in developmental coordination disorder: a systematic review and meta-analysis. Res Dev Disabil. 2018;74:72–102.
  • Hickman R, Popescu L, Manzanares R, et al. Use of active video gaming in children with neuromotor dysfunction: a systematic review. Dev Med Child Neurol. 2017;59:903–911.
  • Howie EK, Campbell AC, Abbott RA, et al. Understanding why an active video game intervention did not improve motor skill and physical activity in children with developmental coordination disorder: a quantity or quality issue? Res Dev Disabil. 2017;60:1–12.
  • Bonney E, Jelsma LD, Ferguson GD, et al. Learning better by repetition or variation? Is transfer at odds with task specific training? PLoS One. 2017;12:e0174214.
  • Smits-Engelsman BCM, Jelsma LD, Ferguson GD, et al. Motor learning: an analysis of 100 trials of a ski slalom game in children with and without developmental coordination disorder. PLoS One. 2015;10:e0140470.
  • Wilson PH, Smits-Engelsman B, Caeyenberghs K, et al. Cognitive and neuroimaging findings in developmental coordination disorder: new insights from a systematic review of recent research. Dev Med Child Neurol. 2017;59:1117–1129.
  • Rahman S, Shaheen A. Virtual reality use in motor rehabilitation of neurological disorders: a systematic review. Middle-East J Sci Res. 2011;7:63–70.
  • Jelsma D, Geuze RH, Mombarg R, et al. The impact of Wii Fit intervention on dynamic balance control in children with probable developmental coordination disorder and balance problems. Hum Mov Sci. 2014;33:404–418.
  • Jelsma D, Ferguson GD, Smits-Engelsman BCM, et al. Short-term motor learning of dynamic balance control in children with probable developmental coordination disorder. Res Dev Disabil. 2015;38:213–222.
  • Mombarg R, Jelsma D, Hartman E. Effect of Wii-intervention on balance of children with poor motor performance. Res Dev Disabil. 2013;34:2996–3003.
  • Smits-Engelsman BCM, Jelsma LD, Ferguson GD. The effect of exergames on functional strength, anaerobic fitness, balance and agility in children with and without motor coordination difficulties living in low-income communities. Hum Mov Sci. 2017;55:327–337.
  • Clark RA, Bryant AL, Pua Y, et al. Validity and reliability of the Nintendo Wii balance board for assessment of standing balance. Gait Posture. 2010;31:307–310.
  • Levac D, Pierrynowski MR, Canestraro M, et al. Exploring children’s movement characteristics during virtual reality video game play. Hum Mov Sci. 2010;29:1023–1038.
  • Michalski A, Glazebrook CM, Martin AJ, et al. Assessment of the postural control strategies used to play two Wii FitTM videogames. Gait Posture. 2012;36:449–453.
  • Ferguson GD, Jelsma D, Jelsma J, et al. The efficacy of two task-orientated interventions for children with developmental coordination disorder: neuromotor task training and Nintendo Wii Fit training. Res Dev Disabil. 2013;34:2449–2461.
  • Cavalcante Neto JL, de Oliveira CC, Greco AL, et al. Is virtual reality effective in improving the motor performance of children with developmental coordination disorder? A systematic review. Eur J Phys Rehabil Med. 2018. [Epub ahead of print].
  • Hubbard IJ, Parsons MW, Neilson C, et al. Task-specific training: evidence for and translation to clinical practice. Occup Ther Int. 2009;16:175–189.
  • Tsekleves E, Warland A, Kilbride C, et al. The use of the Nintendo Wii in motor rehabilitation for virtual reality interventions: a literature review. In: Ma M, Jain L. AP, editor. Virtual, augmented reality and serious games for healthcare 1. Berlin: Springer; 2014.
  • Cavalcante Neto JL, Steenbergen B, Tudella E. Motor intervention with and without Nintendo Wii for children with developmental coordination disorder: protocol for a randomized clinical trial. Submitted.
  • Herrmann C, Seelig H. Structure and profiles of basic motor competencies in the third grade-validation of the test instrument MOBAK-3. Percept Mot Skills. 2017;124:5–20.
  • Lopes VP, Saraiva L, Rodrigues LP. Reliability and construct validity of the test of gross motor development-2 in Portuguese children. Int J Sport Exerc Psychol. 2016;16:250–260.
  • Prado MSS, Magalhães LC, Wilson BN. Cross-cultural adaptation of the developmental coordination disorder questionnaire for Brazilian children. Rev Bras Fisioter. 2009;13:236–243.
  • Smits-Engelsman B, Schoemaker M, Delabastita T, et al. Diagnostic criteria for DCD: past and future. Hum Mov Sci. 2015;42:293–306.
  • Blank R, Barnett A, Cairney J, et al. EACD clinical practice guidelines on the definition, diagnosis, assessment, intervention and psychosocial aspects of DCD. Dev Med Child Neurol. In press.
  • Henderson SE, Sugden DA, Barnett A. Movement assessment battery for children. 2nd ed. New York (NY): Springer; 2007.
  • Wilson BN, Crawford SG, Green D, et al. Psychometric properties of the revised developmental coordination disorder questionnaire. Phys Occup Ther Pediatr. 2009;29:182–202.
  • Conde WL, Monteiro CA. Body mass index cutoff points for evaluation of nutritional status in Brazilian children and adolescents. J Pediatr (Rio J). 2006;82:266–272.
  • Weedon BD, Liu F, Mahmoud W, et al. The relationship of gross upper and lower limb motor competence to measures of health and fitness in adolescents aged 13–14 years. BMJ Open Sport Exerc Med. 2018;4:e000288.
  • Miyahara M, Hillier SL, Pridham L, et al. Task-oriented interventions for children with developmental co-ordination disorder. Cochrane Database Syst Rev. 2017;7:CD010914.
  • Cohen J. Statistical power analysis for the behavioral sciences. Hillsdale (NJ): Eribaum; 1977.
  • Sullivan GM, Feinn R. Using effect size-or why the p value is not enough. J Grad Med Educ. 2012;4:279–282.
  • PEDro. PEDro Scale. 1999. [cited 2018 Jun 2]. Available from: www.pedro.org.au/english/downloads/pedro-scale/.
  • Dicks M, Keith D, Duarte A. Ecological psychology and task representativeness: implications for the design of perceptual-motor training programmes in sport. In: Bartlett YHR, editor. The Routledge handbook of biomechanics and human movement science. London: Routledge; 2008. p. 129–139.
  • Bonney E, Ferguson G, Smits-Engelsman B. The efficacy of two activity-based interventions in adolescents with developmental coordination disorder. Res Dev Disabil. 2017;71:223–236.
  • Statton MA, Encarnacion M, Celnik P, et al. A single bout of moderate aerobic exercise improves motor skill acquisition. PLoS One. 2015;10:e0141393.
  • Ashkenazi T, Laufer Y, Orian D, et al. Effect of training children with developmental coordination disorders in a virtual environment compared with a conventional environment. Int Conf Virtual Rehabil. 2013;35:46–50.
  • Straker L, Howie E, Smith A, et al. A crossover randomised and controlled trial of the impact of active video games on motor coordination and perceptions of physical ability in children at risk of developmental coordination disorder. Hum Mov Sci. 2015;42:146–160.
  • Hammond J, Jones V, Hill EL, et al. An investigation of the impact of regular use of the Wii Fit to improve motor and psychosocial outcomes in children with movement difficulties: a pilot study. Child Care Health Dev. 2014;40:165–175.
  • Anon. Nintendo UK’s official site. [cited 2017 Dec 3]. Available from: http://www.nintendo.co.uk/
  • Schlömer T, Poppinga B, Henze N, et al. Gesture recognition with a Wii controller. TEI ’08: proceedings of the 2nd international conference on Tangible and embedded interaction. New York: ACM; 2008. p. 11–14. Available from: http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.725.5526&rep=rep1&type=pdf
  • Jelsma LD, Smits-Engelsman BCM, Krijnen WP, et al. Changes in dynamic balance control over time in children with and without developmental coordination disorder. Hum Mov Sci. 2016;49:148–159.
  • George Hornby T, Straube DS, Kinnaird CR, et al. Importance of specificity, amount, and intensity of locomotor training to improve ambulatory function in patients post stroke. Top Stroke Rehabil. 2011;18:293–307.
  • Jenkins N, Adams J, Bilbrey T, et al. Specificity of training in cardiac rehabilitation to facilitate a patient’s return to strenuous work following aortic valve replacement. Baylor Univ Med Cent Proc. 2018;31:72–75.
  • Barbeau H. Locomotor training in neurorehabilitation: emerging rehabilitation concepts. Neurorehabil Neural Repair. 2003;17:3–11.
  • Hawley JA. Specificity of training adaptation: time for a rethink? J Physiol (Lond). 2008;586:1–2.

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