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首页> 外文期刊>Journal of sport rehabilitation >Improving Mobility Performance in Wheelchair Basketball
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Improving Mobility Performance in Wheelchair Basketball

机译:提高轮椅篮球的移动性能

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摘要

Objective: This study aimed to investigate which characteristics of athlete, wheelchair and athlete-wheelchair interface are the best predictors of wheelchair basketball mobility performance. Design: A total of 60 experienced wheelchair basketball players performed a wheelchair mobility performance test to assess their mobility performance. To determine which variables were the best predictors of mobility performance, forward stepwise linear regression analyses were performed on a set of 33 characteristics, including 10 athlete, 19 wheelchair, and 4 athlete-wheelchair interface characteristics. Results: A total of 8 of the characteristics turned out to be significant predictors of wheelchair basketball mobility performance. Classification, experience, maximal isometric force, wheel axis height, and hand rim diameter-which both are interchangeable with each other and wheel diameter-camber angle, and the vertical distance between shoulder and rear wheel axis-which was interchangeable with seat height-were positively associated with mobility performance. The vertical distance between the front seat and the footrest was negatively associated with mobility performance. Conclusion: With this insight, coaches and biomechanical specialists are provided with statistical findings to determine which characteristics they could focus on best to improve mobility performance. Six out of 8 predictors are modifiable and can be optimized to improve mobility performance. These adjustments could be carried out both in training (maximal isometric force) and in wheelchair configurations (eg, camber angle).
机译:目的:本研究旨在调查运动员,轮椅和运动员轮椅界面的哪些特性是轮椅篮球移动性能的最佳预测因素。设计:共有60名经验丰富的轮椅篮球运动员进行轮椅移动性能测试,以评估其移动性能。为了确定哪些变量是移动性能的最佳预测因子,在一组33个特征上进行正向线性回归分析,包括10台运动员,19轮椅和4个运动员轮椅接口特性。结果:总共8个特征原因是轮椅篮球移动性能的重要预测因素。分类,经验,最大等距力,轮轴高度和手轮辋直径 - 这两者都互相互换,肩部和后轮轴之间的垂直距离 - 互换高度 - 是与移动性能正相关。前座椅和脚踏板之间的垂直距离与移动性能产生负面相关。结论:通过这种洞察力,教练和生物力学专家提供统计发现,以确定他们可以重点关注哪些特征,以提高移动性能。 8个预测因子中的六种可修改,可以优化以改善移动性性能。这些调整可以在训练(最大等距力)和轮椅配置(例如,倾角)中进行。

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