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Concurrent validity of vertical jump performance assessment systems

机译:垂直跳成绩评估系统的并发有效性

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Castagna, C, Ganzetti, M, Ditroilo, M, Giovannelli, M, Rocchetti, A, and Manzi, V. Concurrent validity of vertical jump performance assessment systems. J Strength Cond Res 27(3): 761-768, 2013-The aim of this study was to examine the concurrent validity of 2 portable systems for vertical jump (VJ) assessment under field conditions. The VJ flight times assessed using an optical mat (Optojump) and an accelerometer-based (Myotest) system were compared with that of a force platform. The flight times recorded during a countermovement jump (CMJ) were collected from 20 rugby players (n = 86 jumps) concurrently using the 3 tracking systems. Significant bias between the Force platform and either the Optojump (bias = 0.006 ± 0.007; 95% confidence interval [CI] 0.004-0.007 seconds) and Myotest (bias = 20.031 ± 0.021; 95% CI 0.035 to 20.026s; p < 0.0001) occurred. A nearly perfect correlation was found between force platform and Optojump (r = 0.99; 95% CI 0.098-0.99; p < 0.0001). Force platform and Myotest (r = 0.89; 95% CI 0.084-0.93; p < 0.0001) flight times showed very large association. Difference between Optojump and Myotest systems was significant (20.036 6 0.021 seconds; 95% CI 20.041 to 20.032; p < 0.0001), which results in Myotest mean flight time being approximately 7.2% longer than the Optojump flight time. The association between Optojump and Myotest was nearly perfect (r = 0.91, 95% CI 0.86-0.94; p < 0.0001). This study showed that the Optojump and Myotest systems possess convergent validity and can be successfully used under field conditions to assess VJ while performing a CMJ. However, caution should be exercised when interpreting data obtained from different portable systems for field measurement.
机译:Castagna,C,Ganzetti,M,Ditroilo,M,Giovannelli,M,Rocchetti,A和Manzi,V。垂直跳成绩评估系统的并行有效性。 J Strength Cond Res 27(3):761-768,2013年-本研究的目的是检验两种便携式系统在田间条件下进行垂直跳跃(VJ)评估的同时有效性。将使用光学垫(Optojump)和基于加速度计(Myotest)的系统评估的VJ飞行时间与测力平台的飞行时间进行了比较。在反向移动跳跃(CMJ)期间记录的飞行时间是同时使用3个跟踪系统从20个橄榄球运动员(n = 86个跳跃)中收集的。 Force平台与Optojump(偏差= 0.006±0.007; 95%置信区间[CI] 0.004-0.007秒)和Myotest(bias = 20.031±0.021; 95%CI 0.035至20.026s; p <0.0001)之间存在显着偏差发生了。在力平台和Optojump之间发现了几乎完美的相关性(r = 0.99; 95%CI 0.098-0.99; p <0.0001)。力量平台和Myotest(r = 0.89; 95%CI 0.084-0.93; p <0.0001)飞行时间显示出非常大的关联。 Optojump和Myotest系统之间的差异非常大(20.036 6 0.021秒; 95%CI 20.041至20.032; p <0.0001),这导致Myotest平均飞行时间比Optojump飞行时间长约7.2%。 Optojump和Myotest之间的关联几乎是完美的(r = 0.91,95%CI 0.86-0.94; p <0.0001)。这项研究表明,Optojump和Myotest系统具有收敛的有效性,可以在执行CMJ的现场条件下成功用于评估VJ。但是,在解释从不同便携式系统获得的数据进行现场测量时应格外小心。

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