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运动变异性对运动生物力学专家来说重要吗?

Is movement variability important for sports biomechanists?

作者信息

Bartlett Roger, Wheat Jon, Robins Matthew

机构信息

School of Physical Education, University of Otago, Dunedin, New Zealand.

出版信息

Sports Biomech. 2007 May;6(2):224-43. doi: 10.1080/14763140701322994.

Abstract

This paper overviews the importance for sports biomechanics of movement variability, which has been studied for some time by cognitive and ecological motor skills specialists but, until quite recently, had somewhat been overlooked by sports biomechanists. The paper considers biomechanics research reporting inter- and intra-individual movement variability in javelin and discus throwing, basketball shooting, and locomotion. The overview does not claim to be comprehensive and we exclude such issues as the theoretical background to movement and coordination variability and their measurement. We overview evidence, both theoretical and empirical, of inter-individual movement variability in seeking to achieve the same task goal, in contrast to the concept of "optimal" movement patterns. Furthermore, even elite athletes cannot reproduce identical movement patterns after many years of training, contradicting the ideas of motor invariance and "representative" trials. We contend that movement variability, far from being solely due to neuromuscular system or measurement "noise"--as sports biomechanists may have previously supposed--is, or could be, functional. Such functionality could allow environmental adaptations, reduce injury risk, and facilitate changes in coordination patterns. We conclude by recommending that sports biomechanists should focus more of their research on movement variability and on important related topics, such as control and coordination of movement, and implications for practice and skill learning.

摘要

本文概述了运动变异性对运动生物力学的重要性,认知和生态运动技能专家对其进行研究已有一段时间,但直到最近,运动生物力学专家在一定程度上忽视了它。本文探讨了生物力学研究中对标枪和铁饼投掷、篮球投篮及移动中个体间和个体内运动变异性的报道。本概述并不声称全面,我们排除了诸如运动和协调变异性的理论背景及其测量等问题。与“最佳”运动模式的概念相反,我们概述了在试图实现相同任务目标时个体间运动变异性的理论和实证证据。此外,即使是精英运动员,经过多年训练也无法再现完全相同的运动模式,这与运动不变性和“代表性”试验的观点相矛盾。我们认为,运动变异性远非如运动生物力学专家之前所认为的那样,仅仅是由于神经肌肉系统或测量“噪声”所致,它是或可能是功能性的。这种功能性可以实现环境适应、降低受伤风险并促进协调模式的改变。我们在结论中建议,运动生物力学专家应将更多研究重点放在运动变异性以及重要的相关主题上,如运动的控制与协调,以及对实践和技能学习的影响。

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