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Reliability of Sprint Force-Velocity-Power Profiles Obtained with KiSprint System

机译:采用基苏印刷系统获得的冲刺力 - 速度 - 功率分布的可靠性

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摘要

This study aimed to assess the within- and between-session reliability of the KiSprint system for determining force-velocity-power (FVP) profiling during sprint running. Thirty (23 males, 7 females; 18.7 ± 2.6 years;) young high-level sprinters performed maximal effort sprints in two sessions separated by one week. Split times (5, 10, 20 and 30 m), which were recorded with a laser distance meter (a component of the KiSprint system), were used to determine the horizontal FVP profile using the Samozino’s field-based method. This method assesses the FVP relationships through estimates of the step-averaged ground reaction forces in sagittal plane during sprint acceleration using only anthropometric and spatiotemporal (split times) data. We also calculated the maximal theoretical power, force and velocity capabilities and the slope of the FV relationship, the maximal ratio of horizontal-to-resultant force (RF), and the decrease in the RF (DRF). Overall, the results showed moderate or good to excellent within- and between-session reliability for all variables (ICC > 0.75; CV < 10 %), with the exception of FV slope and DRF that showed low relative reliability (ICC = 0.47-0.48 within session, 0.31-0.33 between-session) and unacceptable between-session absolute reliability values (CV = 10.9-11.1 %). Future studies are needed to optimize the protocol in order to maximize the reliability of the FVP variables, especially when practitioners are interested in the FV slope and DRF. In summary, our results question the utility of the sprint-based FVP profiling for individualized training prescription, since the reliability of the FV slope and D RF variables is highly questionable.
机译:本研究旨在评估KISPrint系统的与间歇性可靠性,以确定冲刺运行期间的力 - 速度 - 功率(FVP)分析。三十(23名男性,7名女性; 18.7±2.6岁;)年轻的高级短跑运动员在一个分隔一周的两场会议上进行最大努力冲刺。用激光距离计(KISPrint系统的组件)记录的分流时间(5,10,20和30m),用于使用Samozino的基于场的方法来确定水平FVP轮廓。该方法通过仅使用仅使用人体测量和时空(分流时间)数据的Sprint加速期间通过矢状平面中的阶梯平均接地反作用力的估计来评估FVP关系。我们还计算出最大的理论力,力和速度能力和Fv关系的斜率,水平与所得到的力(RF)的最大比率和RF(DRF)的减少。总体而言,结果表明,所有变量的良好和会话之间的可靠性(ICC> 0.75; CV <10%)表现出中等或良好,但FV斜率和DRF显示出低相对可靠性(ICC = 0.47-0.48在会话中,会议之间的0.31-0.33),会话与会话之间的不可接受的绝对可靠性值(CV = 10.9-11.1%)。需要未来的研究来优化协议,以最大限度地提高FVP变量的可靠性,特别是当从业者对FV斜率和DRF感兴趣时。总之,我们的结果质疑基于Sprint的FVP分析的效用,用于个性化训练处方,因为FV斜率和D射频变量的可靠性非常可疑。

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