Sports Performance Research Institute New Zealand (SPRINZ), Auckland University of Technology, Auckland, New Zealand.
High Performance Sport New Zealand, Auckland, New Zealand.
Sports Biomech. 2022 Nov;21(10):1176-1188. doi: 10.1080/14763141.2020.1743349. Epub 2020 Apr 20.
The aim of this acute cross-sectional study was to quantify the kinematic and kinetic changes that occur during sprint acceleration when lower body WR is worn. Fifteen male rugby athletes (19 years; 181 cm; 91 kg) were assessed during maximal effort over-ground and treadmill sprinting over 20 m under three different loading conditions: 0%, 3% and 5% body mass (BM) added weight attached to the lower body. Treadmill data provided a convenient estimate of kinetic changes in the absence of in-ground force plates. The loaded conditions resulted in significantly increased ground contact time (5 to 6%) and decreased step frequency (-2 to -3%) during sprint accelerations (effect size = 0.32-0.72). Moderate WR loading (3% BM) resulted in increased (9%; effect size = 0.66) theoretical maximum horizontal force (relative to BM) and unchanged 20 m sprint times (p > 0.05). Heavier WR loading (5% BM) resulted in a significant decrease (-4%) in vertical ground reaction forces (relative to total system mass) and slower (1 to 2%) 20 m sprint times (effect size = 0.38-0.70). Lower body WR loading up to 5% BM can provide specific sprint training overload, while affecting sprint acceleration biomechanics by ≤ 6%.
本横断面研究旨在量化穿着下肢负重装备进行短跑加速时出现的运动学和动力学变化。15 名男性橄榄球运动员(19 岁;181 厘米;91 公斤)在三种不同的负重条件下进行了最大努力的地面和跑步机冲刺,20 米:0%、3%和 5%的体重附加在下半身。跑步机数据在没有地面力板的情况下提供了一个方便的动力学变化估计。在短跑加速过程中,负重条件导致地面接触时间显著增加(5%至 6%),步频降低(2%至 3%)(效应大小为 0.32-0.72)。适度的 WR 负重(3%的体重)导致理论上最大的水平力增加(相对于体重)(9%;效应大小为 0.66),20 米冲刺时间不变(p>0.05)。较重的 WR 负重(5%的体重)导致垂直地面反作用力显著下降(相对于总系统质量)(-4%),20 米冲刺时间变慢(1%至 2%)(效应大小为 0.38-0.70)。负重至 5%的体重可以提供特定的短跑训练过载,同时对短跑加速生物力学的影响不超过 6%。