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验证一种用于测量深蹲运动执行速度的光电仪器。

Validation of an opto-electronic instrument for the measurement of execution velocity in squat exercise.

机构信息

Sports Science Research Department, International Institute of Physical Exercise Sciences and Health, Alicante, Spain.

Faculty of Biomedical and Health Sciences, European University of Madrid, Madrid, Spain.

出版信息

Sports Biomech. 2021 Sep;20(6):706-719. doi: 10.1080/14763141.2019.1597156. Epub 2019 May 24.

Abstract

The purpose of this study was to analyse the reliability and validity of an opto-electronic sensor system (Velowin) for assessment of the bar-velocity in the deep squat exercise. Mean velocity, mean propulsive velocity and peak velocity generated in the deep squat exercise performed in the Smith machine bar were analysed compared to a linear velocity transducer considered as the gold standard. The study was conducted with a sample of 26 men with experience in resistance training. Six measurements were analysed for squat exercise in concentric phase using a progressive loading increase. Three consecutive repetitions were performed per load with a 3-4 min recovery between loads. Analysis of variance confirmed that there were no significant differences (0.05) for the velocity variables between Velowin and T-Force for each of the loads. The reliability analysis showed high values of the intraclass correlation coefficient (ICC = 0.94-0.99), an 'almost perfect' Lin's concordance coefficient (CCC = 0.99) and a low coefficient of variation (CV <3.4%) for each of the loads and velocities. These results confirm the reliability and validity of the Velowin device for measuring the execution velocity in deep squat exercise.

摘要

本研究的目的是分析光电传感器系统(Velowin)在评估深蹲运动中杆速度的可靠性和有效性。将在史密斯机杠铃上进行的深蹲运动中产生的平均速度、平均推进速度和峰值速度与被认为是金标准的线性速度传感器进行了分析比较。该研究的样本包括 26 名有抗阻训练经验的男性。使用渐进式加载增加对深蹲运动的向心阶段进行了 6 次测量分析。每个负载进行 3 到 4 分钟的恢复,然后进行 3 次连续重复。方差分析证实,在 Velowin 和 T-Force 之间,对于每个负载,速度变量之间没有显著差异(0.05)。可靠性分析显示,对于每个负载和速度,组内相关系数(ICC=0.94-0.99)、近乎完美的林氏一致性系数(CCC=0.99)和低变异系数(CV<3.4%)具有较高的值。这些结果证实了 Velowin 设备在测量深蹲运动中执行速度的可靠性和有效性。

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