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首页> 外文期刊>Journal of human kinetics. >The Reactive Bounding Coefficient as a Measure of Horizontal Reactive Strength to Evaluate Stretch-Shortening Cycle Performance in Sprinters
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The Reactive Bounding Coefficient as a Measure of Horizontal Reactive Strength to Evaluate Stretch-Shortening Cycle Performance in Sprinters

机译:反应界定系数作为水平反应强度的测量,以评估短跑运动员拉伸缩短循环性能的测量

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摘要

Plyometric exercises such as drop jumping and bounding offer athletes a substantiated means of enhancing athletic performance. Between the two exercises, reactive measurement using bounding (reactive bounding coefficient [RBC]) has received scant attention within the domain of training and conditioning. Therefore, this study aimed to identify the viability of utilising a speed-bounding exercise to assess horizontal reactive strength. Eleven young, male elite sprinters (age: 17.8 ± 1.3 yr; body height: 1.72 ± 0.06 m; body mass: 66.05 ± 6.10 kg; best 100 m sprint time: 10.77 ± 0.32 s) were tested for static jumps (SJ), drop jumps (DJ), 10 speed-bounding (RBC10), and 50 m sprint performance. Between-group comparisons based on sprint ability (fast [FSG] vs. slow [SSG] sprint-group) and correlation coefficients were computed subsequently. The FSG (n = 5; 50 m time: 5.82 ± 0.11 s; RBC10: 7.46 ± 0.27) performed significantly better in the RBC10 (p = 0.036) than the SSG (n = 5; 50 m time: 6.09 ± 0.13 s; RBC10: 7.09 ± 0.25). A very high correlation was attained between the RBC10 and the criterion measure, the SJ (r = 0.83). Additionally, RBC10 appeared to be correlated with 30, 50, 10-30 and 30-50 m sprint times (r = -0.52 to -0.60). This positive trend, however, was not observed for the DJ reactive strength index (trivial to moderate correlations). Good reliability was shown for the RBC10 and all sprint distances (“1.5% coefficient variation). Furthermore, all sprinters attained ground contact times of 0.12-0.18 s during the RBC10 which was indicative of fast stretch-shortening cycles during movement, suggesting that the RBC10 could be utilised to assess plyometric ability and enhance sprint performance. Overall, the RBC10 seems able to discriminate between the FSG and the SSG, indicating it has acceptable levels of validity and reliability.
机译:庞大的练习如下降跳跃和绑定提供运动员提高运动表现的实质手段。在两个练习之间,使用边界的反应测量(反应限制系数[RBC])在训练和调理领域内接受了很少的关注。因此,本研究旨在确定利用速度偏移运动来评估水平反应强度的可行性。十一个年轻的男性精英短跑运动员(年龄:17.8±1.3 Yr;体高:1.72±0.06米;体重:66.05±6.10公斤;最佳100 m Sprint Time:10.77±0.32秒进行静态跳跃(SJ),跌落跳跃(DJ),10速度界限(RBC10)和50米冲刺性能。基于Sprint能力(FAST [FSG]与慢速[SSG] SPRINT-GROUP)和相关系数的组间比较之间的组间比较。 FSG(n = 5; 50米次数:5.82±0.11s; RBC10:7.46±0.27)比SSG在RBC10(P = 0.036)中显着更好(n = 5; 50 m次数:6.09±0.13 s; RBC10:7.09±0.25)。在RBC10和标准测量之间实现了非常高的相关性,SJ(r = 0.83)。另外,RBC10似乎与30,50,10-30和30-50 m的冲刺次(R = -0.52至-0.60)相关。然而,对于DJ无反应强度指数(微不足道至中等相关性)没有观察到这种正趋势。 RBC10和所有Sprint距离(“1.5%系数变化)显示了良好的可靠性。此外,所有短跑者在RBC10期间达到了0.12-0.18秒的接地接触时间,这表明在运动过程中快速缩短速度循环,表明RBC10可用于评估锭素能力并增强冲刺性能。总的来说,RBC10似乎能够区分FSG和SSG,表明它具有可接受的有效性和可靠性。

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