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Inter-relationships between machine squat-jump strength, force, power and 10 m sprint times in trained sportsmen

机译:训练有素的运动员的机器深蹲跳跃强度,力量,力量与10 m冲刺时间之间的相互关系

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Strength and conditioning practitioners appear focussed on developing maximal strength based on the premise that it underpins explosive muscular performance. Investigation into the relationship between strength and a multitude of explosive power measures is limited though. Furthermore, the relationship of explosive force and power with functional performance is unclear. We examined the inter-relationships between maximal strength and explosive measures of force and power at different loads. Also investigated were the relationships between explosive measures and 10-m sprinting ability. Forty elite-level well-trained rugby union and league athletes performed 10-m sprints followed by bilateral concentric-only machine squat-jumps at 20 and 80% 1RM. The magnitudes of the inter-relationships between groups of force measures, power measures and sprint times were interpreted using Pearson correlation coefficients, which had uncertainty (90% confidence limits) of ~±0.25. Measures investigated included peak force, peak power, rate of force development, and some of Zatsiorsky's explosive measures, all expressed relative to body mass. The relationship between maximal strength and peak power was moderate at 20 % 1RM (r=0.32) but trivial at 80 % 1RM (r=-0.03). Practically no relationship between any of the explosive measures and 10-m sprint ability was observed (r=-0.01 to 0.06). Although correlations do not imply cause and effect, we speculate that the common practice of focussing on high levels of maximal strength in a machine squat to improve power output may be misguided. Our results also cast doubt on the efficacy of increasing explosive force and power in a machine squat-jump with the intention of improving sprint ability in well-trained athletes.
机译:力量和条件练习者似乎以开发最大的力量为基础,前提是它是爆发性肌肉性能的基础。但是,对力量与多种爆炸威力措施之间关系的研究是有限的。此外,爆炸力和动力与功能性能之间的关系尚不清楚。我们研究了最大强度与不同载荷下力和功率的爆炸性度量之间的相互关系。还研究了爆炸措施与10米短跑冲刺能力之间的关系。 40名受过良好训练的精英橄榄球联合会和联赛运动员进行了10分钟的短跑,然后进行了双同心圆机器蹲跳,分别为20%和80%1RM。使用Pearson相关系数解释了力测量,力量测量和冲刺时间之间的相互关系的大小,其不确定性(90%置信范围)为〜±0.25。研究的措施包括峰值力量,峰值功率,力量发展速度,以及Zatsiorsky的一些爆炸性措施,所有这些措施均相对于体重表达。最大强度与峰值功率之间的关系在20%1RM(r = 0.32)时适度,而在80%1RM(r = -0.03)时则微不足道。几乎没有观察到任何爆炸措施与10米冲刺能力之间的关系(r = -0.01至0.06)。尽管相关性并不意味着因果关系,但我们推测,集中注意力在机蹲中的最大强度上以提高功率输出的常见做法可能会被误导。我们的研究结果也使人们对提高机械式深蹲跳高的爆发力和爆发力的效果产生怀疑,目的是提高训练有素的运动员的短跑能力。

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    N. K. HARRIS 1, J. B. CRONIN 1, W. G. HOPKINS 1, K. T. HANSEN2Sport Performance Research Institute New ZealandAUT University, Auckland , New ZealandReceived on September 25, 2008.Accepted for publication on February 25, 2010.Corresponding author: Nigel Harris, Institute of Sport and Recreation Research New Zealand, AUT University, Private Bag 92006, Auckland 0627, New Zealand. E-mail: nigel.harris@aut.ac.nz;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
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  • 入库时间 2022-08-17 23:18:44

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