Int J Sports Physiol Perform. 2018 Jul 1;13(6):742-749. doi: 10.1123/ijspp.2017-0326. Epub 2018 Jul 10.
Classification is a defining factor for competition in wheelchair sports, but it is a delicate and time-consuming process with often questionable validity. New inertial sensor-based measurement methods applied in match play and field tests allow for more precise and objective estimates of the impairment effect on wheelchair-mobility performance. The aim of the present research was to evaluate whether these measures could offer an alternative point of view for classification.
Six standard wheelchair-mobility performance outcomes of different classification groups were measured in match play (n = 29), as well as best possible performance in a field test (n = 47).
In match results, a clear relationship between classification and performance level is shown, with increased performance outcomes in each adjacent higher-classification group. Three outcomes differed significantly between the low- and mid-classified groups, and 1, between the mid- and high-classified groups. In best performance (field test), there was a split between the low- and mid-classified groups (5 out of 6 outcomes differed significantly) but hardly any difference between the mid- and high-classified groups. This observed split was confirmed by cluster analysis, revealing the existence of only 2 performance-based clusters.
The use of inertial sensor technology to obtain objective measures of wheelchair-mobility performance, combined with a standardized field test, produced alternative views for evidence-based classification. The results of this approach provide arguments for a reduced number of classes in wheelchair basketball. Future use of inertial sensors in match play and field testing could enhance evaluation of classification guidelines, as well as individual athlete performance.
分类是轮椅运动竞赛的决定性因素,但它是一个精细且耗时的过程,其有效性往往存在疑问。新的基于惯性传感器的测量方法应用于比赛和现场测试,可更精确和客观地评估对轮椅移动性能的损伤效应。本研究的目的是评估这些措施是否能为分类提供另一种观点。
在比赛中(n=29)测量了不同分类组的 6 项标准轮椅移动性能结果,以及现场测试中的最佳可能表现(n=47)。
在比赛结果中,分类和表现水平之间显示出明显的关系,每个相邻的高分类组的表现结果都有所提高。在低和中分类组之间,有 3 个结果有显著差异,而在中分类组和高分类组之间,有 1 个结果有显著差异。在最佳表现(现场测试)中,低分类组和中分类组之间存在明显的差异(6 个结果中有 5 个有显著差异),而中分类组和高分类组之间几乎没有差异。聚类分析证实了这种差异的存在,仅发现了 2 个基于表现的聚类。
使用惯性传感器技术获得客观的轮椅移动性能测量结果,并结合标准化的现场测试,为基于证据的分类提供了替代观点。这种方法的结果为减少轮椅篮球的分类数量提供了依据。未来在比赛和现场测试中使用惯性传感器可以增强对分类指南和个别运动员表现的评估。