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与完成变向切入动作所需时间相关的生物力学因素。

Biomechanical factors associated with time to complete a change of direction cutting maneuver.

作者信息

Marshall Brendan M, Franklyn-Miller Andrew D, King Enda A, Moran Kieran A, Strike Siobhán C, Falvey Éanna C

机构信息

1Sports Medicine Department, Sports Surgery Clinic, Santry Demesne, Dublin, Ireland; 2School of Health and Human Performance, Dublin City University, Dublin, Ireland; 3INSIGHT Research Centre, Dublin City University, Dublin, Ireland; 4Centre for Health, Exercise and Sports Medicine, University of Melbourne, Melbourne, Australia; and 5Department of Life Sciences, Roehampton University, London, United Kingdom.

出版信息

J Strength Cond Res. 2014 Oct;28(10):2845-51. doi: 10.1519/JSC.0000000000000463.

Abstract

Cutting ability is an important aspect of many team sports, however, the biomechanical determinants of cutting performance are not well understood. This study aimed to address this issue by identifying the kinetic and kinematic factors correlated with the time to complete a cutting maneuver. In addition, an analysis of the test-retest reliability of all biomechanical measures was performed. Fifteen (n = 15) elite multidirectional sports players (Gaelic hurling) were recruited, and a 3-dimensional motion capture analysis of a 75° cut was undertaken. The factors associated with cutting time were determined using bivariate Pearson's correlations. Intraclass correlation coefficients (ICCs) were used to examine the test-retest reliability of biomechanical measures. Five biomechanical factors were associated with cutting time (2.28 ± 0.11 seconds): peak ankle power (r = 0.77), peak ankle plantar flexor moment (r = 0.65), range of pelvis lateral tilt (r = -0.54), maximum thorax lateral rotation angle (r = 0.51), and total ground contact time (r = -0.48). Intraclass correlation coefficient scores for these 5 factors, and indeed for the majority of the other biomechanical measures, ranged from good to excellent (ICC >0.60). Explosive force production about the ankle, pelvic control during single-limb support, and torso rotation toward the desired direction of travel were all key factors associated with cutting time. These findings should assist in the development of more effective training programs aimed at improving similar cutting performances. In addition, test-retest reliability scores were generally strong, therefore, motion capture techniques seem well placed to further investigate the determinants of cutting ability.

摘要

切入能力是许多团队运动的一个重要方面,然而,人们对切入表现的生物力学决定因素了解并不充分。本研究旨在通过确定与完成一次切入动作所需时间相关的动力学和运动学因素来解决这一问题。此外,还对所有生物力学测量指标的重测信度进行了分析。招募了15名(n = 15)精英多向运动运动员(盖尔式曲棍球运动员),并对75°切入动作进行了三维运动捕捉分析。使用双变量皮尔逊相关性分析来确定与切入时间相关的因素。组内相关系数(ICC)用于检验生物力学测量指标的重测信度。有五个生物力学因素与切入时间(2.28±0.11秒)相关:踝关节峰值功率(r = 0.77)、踝关节跖屈肌峰值力矩(r = 0.65)、骨盆侧倾范围(r = -0.54)、胸廓最大侧转角(r = 0.51)和总地面接触时间(r = -0.48)。这5个因素以及大多数其他生物力学测量指标的组内相关系数得分从良好到优秀不等(ICC>0.60)。踝关节产生的爆发力、单腿支撑时的骨盆控制以及躯干向期望行进方向的旋转都是与切入时间相关的关键因素。这些发现应有助于制定更有效的训练计划,以提高类似的切入表现。此外,重测信度得分总体较高,因此,运动捕捉技术似乎非常适合进一步研究切入能力的决定因素。

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