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便携式 gFlight 系统与力量板测量跳跃性能变量的同时效度比较。

Concurrent validity of the portable gFlight system compared to a force plate to measure jump performance variables.

机构信息

Department of Sport, Exercise and Rehabilitation, Faculty of Health and Life Sciences, Northumbria University, Newcastle-Upon-Tyne, NE1 8ST, United Kingdom.

出版信息

Physiol Meas. 2021 Feb 6;42(1):015003. doi: 10.1088/1361-6579/abd236.

Abstract

OBJECTIVE

Lower-limb strength and power is commonly assessed indirectly by measuring jump performance. A novel portable system (gFlight) that can be used in applied settings provides measures of jump performance. The aim of this study was to validate jump performance measures provided by the gFlight to those provided by a force plate.

APPROACH

Thirty-six participants performed three countermovement jump (CMJ) and drop jump (DJ) trials. Jump height (JH), contact time, and reactive strength index (RSI) were simultaneously recorded by a force plate and gFlight sensors to assess concurrent validity.

MAIN RESULTS

The gFlight provided significantly higher measures of JH during the CMJ (mean: +8.79 ± 4.16 cm, 95% CI: +7.68 to 9.90 cm, P < 0.001) and DJ (mean: +4.68 ± 3.57 cm, 95% CI: +3.73 to 5.63 cm, P < 0.001) compared to the force plate. The gFlight sensors displayed significantly higher measures of RSI (mean: +0.48 ± 0.39 m·s, 95% CI: +0.37 to 0.58 m·s, P < 0.001) and lower measures of contact time (mean: -0.036 ± 0.028 s, 95% CI: -0.044 to -0.029 s, P < 0.001) during the DJ compared to the force plate. The bias displayed by the gFlight for JH, contact time and RSI measures are reduced using corrective equations.

SIGNIFICANCE

The gFlight sensors are a cost-effective, portable measurement system with high concurrent and ecological validity for the objective measurement of jump performance in applied settings. Corrective equations should be used to reduce measurement biases so comparisons can be made to force plate measurements of jump performance.

摘要

目的

下肢力量和功率通常通过测量跳跃表现来间接评估。一种新型的便携式系统(gFlight)可用于应用环境,提供跳跃表现的测量。本研究的目的是验证 gFlight 提供的跳跃表现测量值与力板提供的测量值的一致性。

方法

36 名参与者进行了三次反跳(CMJ)和跳落(DJ)试验。跳跃高度(JH)、接触时间和反应强度指数(RSI)同时由力板和 gFlight 传感器记录,以评估同时有效性。

主要结果

gFlight 在 CMJ(平均值:+8.79 ± 4.16 cm,95%置信区间:+7.68 至 9.90 cm,P < 0.001)和 DJ(平均值:+4.68 ± 3.57 cm,95%置信区间:+3.73 至 5.63 cm,P < 0.001)中提供的 JH 测量值明显更高。gFlight 传感器显示的 RSI 测量值(平均值:+0.48 ± 0.39 m·s,95%置信区间:+0.37 至 0.58 m·s,P < 0.001)更高,而 DJ 中的接触时间测量值(平均值:-0.036 ± 0.028 s,95%置信区间:-0.044 至 -0.029 s,P < 0.001)更低。使用校正方程后,gFlight 对 JH、接触时间和 RSI 测量值的偏差有所减小。

意义

gFlight 传感器是一种具有成本效益的便携式测量系统,具有高的同步和生态有效性,可用于应用环境中跳跃表现的客观测量。应使用校正方程来减少测量偏差,以便与力板的跳跃表现测量值进行比较。

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