1Department of Physical Education, Sport and Human Movement, Autonomous University of Madrid, Madrid, Spain; and 2Scientific Committee, Myosin Apps, Spain.
J Strength Cond Res. 2014 Feb;28(2):528-33. doi: 10.1519/JSC.0b013e318299a52e.
Flight time is the most accurate and frequently used variable when assessing the height of vertical jumps. The purpose of this study was to analyze the validity and reliability of an alternative method (i.e., the HSC-Kinovea method) for measuring the flight time and height of vertical jumping using a low-cost high-speed Casio Exilim FH-25 camera (HSC). To this end, 25 subjects performed a total of 125 vertical jumps on an infrared (IR) platform while simultaneously being recorded with a HSC at 240 fps. Subsequently, 2 observers with no experience in video analysis analyzed the 125 videos independently using the open-license Kinovea 0.8.15 software. The flight times obtained were then converted into vertical jump heights, and the intraclass correlation coefficient (ICC), Bland-Altman plot, and Pearson correlation coefficient were calculated for those variables. The results showed a perfect correlation agreement (ICC = 1, p < 0.0001) between both observers' measurements of flight time and jump height and a highly reliable agreement (ICC = 0.997, p < 0.0001) between the observers' measurements of flight time and jump height using the HSC-Kinovea method and those obtained using the IR system, thus explaining 99.5% (p < 0.0001) of the differences (shared variance) obtained using the IR platform. As a result, besides requiring no previous experience in the use of this technology, the HSC-Kinovea method can be considered to provide similarly valid and reliable measurements of flight time and vertical jump height as more expensive equipment (i.e., IR). As such, coaches from many sports could use the HSC-Kinovea method to measure the flight time and height of their athlete's vertical jumps.
飞行时间是评估垂直跳跃高度最准确和常用的变量。本研究的目的是分析一种替代方法(即 HSC-Kinovea 方法)测量垂直跳跃飞行时间和高度的有效性和可靠性,该方法使用低成本高速 Casio Exilim FH-25 相机(HSC)。为此,25 名受试者在红外(IR)平台上总共进行了 125 次垂直跳跃,同时使用 HSC 以 240 fps 的速度进行记录。随后,2 名没有视频分析经验的观察者使用开源许可证 Kinovea 0.8.15 软件独立分析了这 125 个视频。然后将获得的飞行时间转换为垂直跳跃高度,并计算了这些变量的组内相关系数(ICC)、Bland-Altman 图和 Pearson 相关系数。结果表明,观察者对飞行时间和跳跃高度的测量具有完美的相关性(ICC=1,p<0.0001),观察者使用 HSC-Kinovea 方法对飞行时间和跳跃高度的测量与使用 IR 系统获得的测量具有高度可靠的一致性(ICC=0.997,p<0.0001),解释了使用 IR 平台获得的差异(共享方差)的 99.5%(p<0.0001)。因此,除了不需要使用该技术的先前经验外,HSC-Kinovea 方法可以被认为提供了与更昂贵设备(即 IR)类似的有效和可靠的飞行时间和垂直跳跃高度测量。因此,许多运动的教练可以使用 HSC-Kinovea 方法来测量运动员的垂直跳跃的飞行时间和高度。