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Anthropometry-driven block setting improves starting block performance in sprinters

机译:人体测量学驱动的块设置可提高短跑运动员的起始块性能

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摘要

This study tested the effect of two block setting conditions i.e., the usual block setting [US] and an anthropometry-driven block setting [AS] on the kinematic and kinetic parameters of the sprint start. Furthermore, we verified whether this effect is influenced by the relative lengths of the sprinter’s trunk and lower limbs i.e., the Cormic Index by subdividing sprinters into brachycormic, metricormic and macrocormic groups. Forty-two sprinters performed 6 maximal-effort 10 m sprints using the US and AS conditions. Dynamometric starting blocks measured forces generated by the sprinters. The times at 5 m and 10 m in the sprint trials were measured with photocells. Results showed that the anteroposterior block distances were significantly different between the two conditions (P<0.001). Across the sample, the horizontal block velocity, the rear peak force, the rear force impulse, the total force impulse, the horizontal block power, the ratio of horizontal to resultant impulse in the rear block, the first and second step lengths and the times at 5 m and 10 m improved in AS vs. US (P values from 0.05 to 0.001). Considering the interaction between the block setting condition and the Cormic Index, the rear peak force and the rear force impulse were significantly increased in the metricormic and brachycormic groups (P≤0.001) and the metricormic group (P<0.001), respectively. Kinetic variables in the rear block and the difference (Delta) in the front block/starting line distance between US and AS were related with each other (Adjusted R2 values from 0.07 to 0.36). In conclusion, AS was associated with improvement in the kinematic and kinetic parameters of the sprint start performance vs. US; however, AS is apparently best suited for metricormic sprinters. Further work is needed to verify how the sprint start kinetic and kinematic parameters are related to the front block/starting line distance and whether a block setting driven by the sprinter’s Cormic Index is able to improve sprint start performance.
机译:这项研究测试了两种障碍设置条件(即常规障碍设置[US]和人体测量学驱动的障碍设置[AS])对短跑起点运动学和动力学参数的影响。此外,我们通过将短跑运动员分为近距离皮层,中层皮层和大皮层组,验证了短跑运动员躯干和下肢的相对长度(即“皮质指数”)是否受到影响。在美国和美国条件下,四十二名短跑运动员进行了6次最大努力10 m短跑。测力起跑器测量了短跑运动员产生的力。在冲刺试验中,在5 m和10 m处的时间用光电管测量。结果表明,两种情况下前后阻滞距离均存在显着差异(P <0.001)。在整个样本中,水平块速度,后峰值力,后力脉冲,总力脉冲,水平块功率,后块中水平脉冲与合成脉冲的比率,第一和第二步长和时间与美国相比,AS在5m和10m时改善(P值从0.05到0.001)。考虑到阻滞设置条件与皮质指数之间的相互作用,在计量组和近距皮质组(P≤0.001)和计量组(P <0.001)中,后峰值力和后力冲动显着增加。后段的​​动力学变量与前段的距离/ US和AS之间的起点线之间的差异(Δ)相互关联(将R 2 的值从0.07调整为0.36)。总之,与美国短跑相比,短跑的运动学和动力学参数得到了改善。但是,AS显然是最适合度量短跑运动员的。需要做进一步的工作来验证短跑起始动力学和运动学参数如何与前段/起始线距离相关联,以及由短跑运动员的Cormic Index驱动的块设置是否能够改善短跑起始性能。

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