Suppr超能文献

橄榄球运动员在非机动跑步机上的动力冲刺不对称性。

Kinetic Sprint Asymmetries on a non-motorised Treadmill in Rugby Union Athletes.

机构信息

Sports Performance Research Institute New Zealand (SPRINZ), Auckland University of Technology, Auckland, New Zealand.

Inter-University Laboratory of Human Movement Biology (LIBM), Université Savoie Mont Blanc, Le Bourget-du-Lac, France.

出版信息

Int J Sports Med. 2017 Nov;38(13):1017-1022. doi: 10.1055/s-0043-117607. Epub 2017 Oct 1.

Abstract

The purpose of this study was to present a potential link between sprint kinetic (vertical [F ] and horizontal force [F ]) asymmetries and athletic performance during acceleration and maximal velocity (v ) sprinting. Thirty un-injured male rugby athletes performed 8-s sprints on a non-motorised treadmill. Kinetic data were divided into 'strong' and 'weak' legs based on individually averaged peak values observed during sprinting and were analysed to evaluate asymmetry. Large differences were found between the strong and weak legs in F during acceleration (4.3 vs. 3.5 N·kg) and v (3.7 vs. 2.8 N·kg) sprinting (both ES=1.2), but not in F (21.8 vs. 20.8 N·kg, ES=- 0.6 for acceleration; 23.9 vs. 22.8 N·kg, ES=- 0.5 for v , respectively). Group mean asymmetry was lower in F compared to F during acceleration (1.6 vs. 6.8%) and v (1.6 vs. 8.2%). The range of asymmetry was much lower in F (0.03-4.3%) compared to F (0.2-28%). In un-injured rugby athletes, the magnitude and range of asymmetry scores in F , occurring during acceleration and v phases, where much greater than those found in F . These findings highlight the potential for some un-injured athletes to possess kinetic asymmetries known as crucial components for acceleration performance in sprinting.

摘要

本研究旨在展示短跑动力学(垂直 [F ] 和水平力 [F ])不对称性与加速和最大速度(v )冲刺时的运动表现之间的潜在联系。30 名未受伤的男性橄榄球运动员在非电动跑步机上进行了 8 次短跑。根据冲刺过程中观察到的个体平均峰值,将动力学数据分为“强”腿和“弱”腿,并对其进行分析以评估不对称性。在加速(4.3 对 3.5 N·kg)和 v (3.7 对 2.8 N·kg)冲刺中,“强”腿和“弱”腿之间存在较大差异(两种情况的 ES 均为 1.2),但 F 中不存在差异(21.8 对 20.8 N·kg,ES=-0.6 用于加速;23.9 对 22.8 N·kg,ES=-0.5 用于 v ,分别)。与加速(1.6%对 6.8%)和 v (1.6%对 8.2%)相比,组平均不对称性在 F 中较低。与 F 相比,在加速(0.03-4.3%)和 v (0.03-4.3%)阶段,F 中的不对称性范围要小得多。在未受伤的橄榄球运动员中,加速和 v 阶段 F 中不对称性的幅度和范围远大于 F 中发现的幅度和范围。这些发现强调了一些未受伤运动员可能具有动力学不对称性的潜力,这些不对称性是短跑加速性能的关键组成部分。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验