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首页> 外文期刊>Journal of strength and conditioning research >Do force-time and power-time measures in a loaded jump squat differentiate between speed performance and playing level in elite and elite junior rugby union players?
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Do force-time and power-time measures in a loaded jump squat differentiate between speed performance and playing level in elite and elite junior rugby union players?

机译:跳高举重动作中的力量时间和力量时间措施在精英球员和精英橄榄球少年球员中的速度表现和比赛水平之间有区别吗?

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The purpose of this study was to investigate the discriminative ability of rebound jump squat force-time and power-time measures in differentiating speed performance and competition level in elite and elite junior rugby union players. Forty professional rugby union players performed 3 rebound jump squats with an external load of 40 kg from which a number of force-time and power-time variables were acquired and analyzed. Additionally, players performed 3 sprints over 30 m with timing gates at 5, 10, and 30 m. Significant differences (p < 0.05) between the fastest 20 and slowest 20 athletes, and elite (n = 25) and elite junior (n = 15) players in speed and force-time and power-time variables were determined using independent sample t-tests. The fastest and slowest sprinters over 10 m differed in peak power (PP) expressed relative to body weight. Over 30 m, there were significant differences in peak velocity and relative PP and rate of power development. There was no significant difference in speed over any distance between elite and elite junior rugby union players; however, a number of force and power variables including peak force, PP, force at 100 milliseconds from minimum force, and force and impulse 200 milliseconds from minimum force were significantly (p < 0.05) different between playing levels. Although only power values expressed relative to body weight were able to differentiate speed performance, both absolute and relative force and power values differentiated playing levels in professional rugby union players. For speed development in rugby union players, training strategies should aim to optimize the athlete's power to weight ratio, and lower body resistance training should focus on movement velocity. For player development to transition elite junior players to elite status, adding lean mass is likely to be most beneficial.
机译:这项研究的目的是调查回弹跳深蹲力时间和力量时间量度在区分精英和精英青少年橄榄球联盟运动员的速度表现和比赛水平方面的判别能力。 40名职业橄榄球联盟运动员进行了3次反弹跳跳深蹲,其外部负荷为40 kg,从中获得并分析了许多作用时间和力量时间变量。此外,玩家在30 m上进行了3次短跑,计时门分别为5、10和30 m。使用独立样本t-确定了最快20名运动员和最慢20名运动员以及精英(n = 25)和精英初中(n = 15)运动员在速度,力时间和力量时间变量上的显着差异(p <0.05)。测试。超过10 m的最快和最慢的短跑运动员相对于体重的峰值功率(PP)有所不同。在30 m以上,峰值速度,相对PP和功率发展速率存在显着差异。精英和初级橄榄球联盟的球员之间在任何距离上的速度差异均无统计学意义。但是,在演奏级别之间,包括峰值力,PP,距最小力100毫秒的力以及距最小力200毫秒的力和冲量在内的许多力和功率变量存在显着差异(p <0.05)。尽管只有相对于体重表达的力量值才能够区分速度表现,但是绝对和相对力和力量值都可以区分职业橄榄球联盟运动员的比赛水平。为了提高橄榄球联盟运动员的速度,训练策略应旨在优化运动员的力量与体重比,而降低身体阻力的训练应着眼于运动速度。对于将精英初级球员提升为精英地位的球员发展而言,增加精益质量可能是最有益的。

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