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Fundamental movement skills are more than run, throw and catch: the role of stability skills

机译:基本运动技能不仅是奔跑,掷球和擒拿:稳定技能的作用

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摘要

INTRODUCTION: In motor development literature fundamental movement skills are divided into three constructs: locomotive, object control and stability skills. Most fundamental movement skills research has focused on children\u27s competency in locomotor and object control skills. The first aim of this study was to validate a test battery to assess the construct of stability skills, in children aged 6 to 10 (M age = 8.2, SD = 1.2). Secondly we assessed how the stability skills construct fitted into a model of fundamental movement skill. METHOD: The Delphi method was used to select the stability skill battery. Confirmatory factor analysis (CFA) was used to assess if the skills loaded onto the same construct and a new model of FMS was developed using structural equation modelling. RESULTS: Three postural control tasks were selected (the log roll, rock and back support) because they had good face and content validity. These skills also demonstrated good predictive validity with gymnasts scoring significantly better than children without gymnastic training and children from a high SES school performing better than those from a mid and low SES schools and the mid SES children scored better than the low SES children (all p < .05). Inter rater reliability tests were excellent for all three skills (ICC = 0.81, 0.87, 0.87) as was test re-test reliability (ICC 0.87-0.95). CFA provided good construct validity, and structural equation modelling revealed stability skills to be an independent factor in an overall FMS model which included locomotor (r = .88), object control (r = .76) and stability skills (r = .81). DISCUSSION: This study provides a rationale for the inclusion of stability skills in FMS assessment. The stability skills could be used alongside other FMS assessment tools to provide a holistic assessment of children\u27s fundamental movement skills.
机译:简介:在运动发展文献中,基本运动技能分为三种结构:机车,对象控制和稳定性技能。最基本的运动技能研究集中在儿童的运动和对象控制技能上。这项研究的第一个目的是验证一个测试电池组,以评估6至10岁儿童(M年龄= 8.2,SD = 1.2)的稳定技能。其次,我们评估了稳定性技能如何构建为基本运动技能模型的基础。方法:采用德尔菲法选择稳定性技能电池。验证性因子分析(CFA)用于评估是否将技能加载到相同的结构上,并使用结构方程模型开发了FMS的新模型。结果:选择了三个姿势控制任务(原木滚转,岩石和后支撑),因为它们具有良好的面部和内容有效性。这些技能还显示出良好的预测效度,体操运动员的得分显着优于未经体操训练的孩子,并且高中学龄儿童的表现要好于中低中学龄儿童,而中小学学龄儿童的分数要比低中学龄儿童的分数要好(所有p <.05)。评分员间的可靠性测试对于所有三个技能(ICC = 0.81、0.87、0.87)都非常出色,而重新测试的可靠性(ICC 0.87-0.95)也是如此。 CFA提供了良好的构造效度,并且结构方程模型表明稳定性技能是整个FMS模型中的独立因素,其中包括运动(r = .88),对象控制(r = .76)和稳定性(r = .81) 。讨论:本研究为将稳定技能纳入FMS评估提供了依据。稳定性技能可以与其他FMS评估工具一起使用,以全面评估儿童的基本运动技能。

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