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划船运动中力的特征研究:50 多年来我们都了解了什么?

Over 50 Years of Researching Force Profiles in Rowing: What Do We Know?

机构信息

Exercise and Sports Science, Faculty of Health Sciences, The University of Sydney, Cumberland Campus, 75 East Street, Lidcombe, NSW, 2141, Australia.

出版信息

Sports Med. 2018 Dec;48(12):2703-2714. doi: 10.1007/s40279-018-0992-3.

Abstract

There has been substantial interest in the mechanisms underpinning the skilled movements of on-water rowing for more than 150 years. Contemporary attention from biomechanical research has focused on the important relationship between kinetics (such as force application at the oar) and performance. A range of instrumentation systems have been developed and used in both academic and applied training contexts to better understand this relationship. Both qualitative and quantitative analytical approaches have been used in conjunction with these instrumentation systems for observing differences in propulsive force patterns between rowers. Despite the use of these analytical approaches, there is still limited consensus surrounding which characteristics of force profiles are associated with better rowing performance. Newell's model of constraints is provided as a framework for understanding why this lack of clarity exists surrounding force profile characteristics and performance. Further to this, direction for further research is provided by a framework that outlines two main streams: (1) exploration of constraints and how they are related to force profile characteristics; and (2) after controlling for constraints, exploration of performance and how it is related to force profile characteristics. These two steps are sequential, with an understanding of constraints influencing how we understand the interaction of force profiles and performance.

摘要

150 多年来,人们对水上划船运动技能的机制产生了浓厚的兴趣。当代生物力学研究的重点是运动学(例如桨的力应用)和性能之间的重要关系。已经开发并在学术和应用培训环境中使用了一系列仪器系统,以更好地了解这种关系。这些仪器系统结合使用了定性和定量分析方法,以观察划桨者之间推进力模式的差异。尽管使用了这些分析方法,但对于哪些力廓线特征与更好的划船性能相关,仍然存在有限的共识。纽厄尔的约束模型为理解为什么围绕力廓线特征和性能存在这种不明确性提供了一个框架。除此之外,该框架还为进一步研究提供了方向,该框架概述了两个主要方向:(1)探索约束以及它们与力廓线特征的关系;(2)在控制了约束之后,探索性能以及它与力廓线特征的关系。这两个步骤是顺序进行的,对约束的理解影响我们对力廓线和性能之间相互作用的理解。

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