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在高度受限的任务中——短跑游泳中,上半身运动学的可变性。

Variability of upper body kinematics in a highly constrained task - sprint swimming.

机构信息

Faculty of Health Sciences, The University of Sydney, Sydney, Australia.

School of Physical Education, Sport and Exercise Science, University of Otago, Dunedin, New Zealand.

出版信息

Eur J Sport Sci. 2020 Jun;20(5):624-632. doi: 10.1080/17461391.2019.1658808. Epub 2019 Sep 19.

Abstract

Before examining the effect of changing constraints on skill adaptation, it is useful to know the tolerable variability of a movement pattern for optimal performance. Tolerable variability may vary throughout the period of task performance as some parts of the movement pattern may be more important than others. The purpose of this study was to quantify the inter-trial variability of performance variables, and hand path as the task-relevant parameter, of skilled front crawl swimmers during 25 m sprints. It was hypothesised that the wrist paths would have smaller inter-trial variability during the below water phase than during the above water phase. Twelve skilled swimmers performed four 25 m front crawl sprints which were recorded by six phased locked video cameras for three-dimensional analysis. Standard deviations and time series repeatability ( ) of the right and left wrist displacement were determined. On average, swimmers varied their sprint speed between trials by <1.5%. The spatio-temporal patterns of wrist paths varied by <3 cm in all directions (horizontal, vertical & lateral). There was no significant difference in inter-trial variability between above and below water phases. Swimmers increased wrist path consistency at the critical events of water entry in the horizontal and lateral directions and at exit for the horizontal direction. This study established levels of variability in spatio-temporal movement patterns of the paths of the wrist in sprint swimming and provided evidence that swimmers minimise variability for key events, in this case, the position of the wrists at water entry and exit.

摘要

在研究改变约束条件对技能适应的影响之前,了解运动模式的可容忍变化对于实现最佳表现是很有用的。可容忍的变化可能会在任务执行的整个过程中发生变化,因为运动模式的某些部分可能比其他部分更重要。本研究的目的是量化熟练的自由泳运动员在 25 米冲刺过程中,表现变量和手部轨迹(作为任务相关参数)的试验间变异性。假设在水下阶段,手腕轨迹的试验间变异性会比水上阶段小。12 名熟练游泳运动员进行了 4 次 25 米自由泳冲刺,由 6 台相位锁定摄像机记录进行三维分析。确定了左右手腕位移的标准差和时间序列可重复性()。平均而言,游泳运动员在试验之间的冲刺速度变化<1.5%。手腕轨迹的时空模式在所有方向(水平、垂直和侧向)上的变化都<3 厘米。水上和水下阶段之间的试验间变异性没有显著差异。游泳运动员在水平和侧向的入水关键事件以及水平方向的出水处增加了手腕轨迹的一致性。本研究确定了自由泳冲刺中手腕路径的时空运动模式的变异性水平,并提供了证据表明,游泳运动员会将关键事件(此处为手腕在入水和出水时的位置)的变异性最小化。

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