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首页> 外文期刊>Journal of Biomechanics >Asymmetric velocity profiles in Paralympic powerlifters performing at different exercise intensities are detected by functional data analysis
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Asymmetric velocity profiles in Paralympic powerlifters performing at different exercise intensities are detected by functional data analysis

机译:通过功能数据分析检测在不同运动强度下进行的残奥会Powerlifer中的不对称速度分布

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摘要

Asymmetries compromise performance in powerlifting and Paralympic powerlifting, but its quantification can be complex. Previous studies consider average or peak values to quantify asymmetries, however this approach does not consider the pattern of movement like velocity profiles. Here we demonstrate that conducting a functional analysis of variance (FANOVA) permits to quantify asymmetries in bench press performance by Paralympic powerlifting at different submaximal intensities. Kinematic data were collected from 10 Paralympic powerlifting athletes performing in bench press at submaximal intensities (50% and 90% of the one-repetition maximum). Linear velocity was quantified considering mean values and the entire waveform. Mean values were compared by analysis of variance (ANOVA) and the waveforms were compared by FANOVA. FANOVA identified asymmetry profiles that ANOVA did not recognize at the highest intensity, which is the closest to a competition. This way, FANOVA can bring advantages to the analysis of competitive performance. FANOVA data analysis identifies asymmetries at higher intensity of effort considering the whole pattern of movement. Therefore, we consider that the FANOVA's approach may benefit the biomechanical assessment of the Paralympic powerlifting. (C) 2021 Elsevier Ltd. All rights reserved.
机译:不对称会影响举重和残奥会举重的表现,但其量化可能很复杂。以前的研究考虑平均或峰值来量化不对称,但是这种方法不考虑运动模式的速度分布。在这里,我们证明了进行功能方差分析(FANOVA)可以量化残奥会举重在不同次最大强度下的台压表现不对称性。运动学数据来自10名残奥会举重运动员,他们以次最大强度(一次重复最大强度的50%和90%)在卧推中进行表演。考虑平均值和整个波形,对线速度进行量化。通过方差分析(ANOVA)比较平均值,并通过FANOVA比较波形。FANOVA发现了ANOVA在最高强度下无法识别的不对称轮廓,这是最接近竞争的。这样,FANOVA可以为竞争绩效分析带来优势。FANOVA数据分析发现,考虑到整个运动模式,在更高的努力强度下存在不对称。因此,我们认为FANOVA的方法可能有利于残奥会举重的生物力学评估。(c)2021爱思唯尔有限公司保留所有权利。

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