How functional movement variability facilitates successful skill adaptation during the volleyball attack

Paulo Caldeira, Ana Paulo, A. Veloso, Jorge Infante, K. Davids, D. Araújo
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Abstract

From an ecological dynamics perspective, careful manipulation of task constraints can provide opportunities for action, exploited by functional movement variability of participants. The constraints-led approach (CLA) induces functional movement variability in practice designs, supporting athlete performance in satisfying task constraints and finding performance solutions to achieve intended task goals. Young male volleyball players were randomly assigned to either a traditional approach (TA) or CLA practice group. Selected spatial-temporal movement coordination variables were recorded, to explore their relations to successful performance outcomes in the attacking phase. Binomial logistic regression was used to verify the association of spatial-temporal movement variables with the percentage of successful attacks. Six spatial-temporal variables were included, and a manual backward stepwise regression was used to remove those which did not contribute to the best predictive model of successful performance. After a 6-week intervention programme, the CLA practice group displayed a significantly higher percentage of successful attack actions, when facing the opposition block. The TA group showed a small increase in successful attack actions after the intervention. The final binomial logistic regression model revealed that the variables ‘lateral deviation of the participants’ centre of mass’ at the planting step and ‘longitudinal deviation of the participants’ centre of mass’ at point of ball contact were the main predictors of successful attacking outcomes. To overcome the opposition's block in volleyball, infusing functional variability in a CLA task design, promoted superior performance in practice. Presumably, greater movement pattern variability emerged in participants to satisfy performance constraints in successful volleyball attacks.
在排球进攻过程中,功能性运动可变性如何促进成功的技术适应
从生态动力学的角度来看,仔细操纵任务约束可以为行动提供机会,利用参与者的功能运动可变性。约束导向方法(CLA)诱导练习设计中的功能运动变异性,支持运动员在满足任务约束方面的表现,并找到实现预期任务目标的性能解决方案。年轻男子排球运动员被随机分配到传统方法(TA)或CLA练习组。记录选定的时空运动协调变量,以探索它们与攻击阶段成功表现结果的关系。采用二项逻辑回归验证时空运动变量与攻击成功率的关系。包括6个时空变量,并使用手动反向逐步回归来去除那些对成功绩效的最佳预测模型没有贡献的变量。经过6周的干预计划,CLA练习组在面对反对障碍时,表现出明显更高的成功攻击行动百分比。在干预后,TA组的成功攻击行动略有增加。二项logistic回归分析结果表明,球员在植球阶段的横向质心偏差和球员在球接触点的纵向质心偏差是影响球员进攻成功的主要因素。为了克服排球比赛中对手的阻碍,在CLA任务设计中注入功能变异性,促进了运动员在练习中的优异表现。据推测,更大的运动模式可变性出现在参与者中,以满足成功的排球攻击的性能限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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