a Centre for Sport Studies , King Juan Carlos University , Madrid , Spain.
b Catholic University of San Antonio, Physical Activity and Sports Science , Murcia , Spain.
Eur J Sport Sci. 2019 Jun;19(5):585-594. doi: 10.1080/17461391.2018.1542032. Epub 2018 Nov 8.
This study aimed to analyse fatigue-induced changes in mechanical sprinting properties during a specific repeated-sprint test in elite rugby sevens athletes. Twenty elite rugby sevens players performed ten 40 m sprints on a 30 s cycle with participant's running back and forth in a marked lane. Radar was used to assess maximal overground sprint performance over each 40 m. Macroscopic mechanical properties (maximal horizontal force (F), maximal horizontal power (P), maximal ratio of horizontal force (RF), decrease in the ratio of horizontal-to-total force (D), total force and maximal sprinting velocity (v)) were drawn from horizontal force velocity relationships, using a validated method applied to the speed-time data. Fatigue-induced changes were analysed comparing the first sprint to an average of 2-4, 5-7 and 8-10. Repeated-sprint ability (RSA) testing induced substantial changes in the maximal velocity component, with a decrease (-15%) in v (effect size (ES) = -2.46 to -4.98), and to a lower extent (-5.9%) in the maximal force component F (ES = -0.59). D moderately decreased (14%; ES=-0.76-1.11), and RF largely decreased in the later sprints (ES = -0.32 to -1.27). Fatigue observed in this RSA test appeared to have a greater effect on the technical ability to produce horizontal force at high velocities, likely due to an alteration in the ability to maintain horizontally oriented force application when velocity increases rather than during the initial acceleration phase, but also the overall force production capacity. The ability to maintain forward-oriented force at high velocities is of central importance for identifying fatigue and monitoring load.
本研究旨在分析在特定的重复冲刺测试中,精英七人制橄榄球运动员在机械冲刺性能方面的疲劳变化。20 名精英七人制橄榄球运动员在 30 秒的周期内进行了 10 次 40 米冲刺,参与者在标记的车道上来回奔跑。雷达用于评估每个 40 米的最大地面冲刺速度。宏观机械性能(最大水平力 (F)、最大水平功率 (P)、水平力比的最大值 (RF)、水平力与总力比的降低 (D)、总力和最大冲刺速度 (v))是从水平力速度关系中得出的,使用一种经过验证的方法应用于速度时间数据。通过比较第一次冲刺与 2-4、5-7 和 8-10 的平均值来分析疲劳引起的变化。重复冲刺能力 (RSA) 测试引起了最大速度分量的显著变化,v 下降了(-15%,ES=-2.46 到-4.98),最大力分量 F 下降幅度较小(-5.9%,ES=-0.59)。D 适度下降(14%,ES=-0.76 到-1.11),而 RF 在后面的冲刺中大幅下降(ES=-0.32 到-1.27)。在这个 RSA 测试中观察到的疲劳似乎对以高速产生水平力的技术能力有更大的影响,这可能是由于当速度增加时,保持水平力施加的能力发生改变,而不是在初始加速阶段,而且还对整体力产生能力产生影响。在高速下保持向前力的能力对于识别疲劳和监测负荷至关重要。