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游泳中的个体-环境相互作用:分析表现中协调动力学出现的最小单位?

Individual-Environment Interactions in Swimming: The Smallest Unit for Analysing the Emergence of Coordination Dynamics in Performance?

机构信息

Centre d'Etude des Transformations des Activités Physiques et Sportives (CETAPS), Normandie Univ, UNIROUEN, 76000, Rouen, France.

Laboratoire Interuniversitaire de Biologie de la Motricité (LIBM), University Savoie Mont Blanc, 73376, Le Bourget du Lac Cedex, France.

出版信息

Sports Med. 2017 Aug;47(8):1543-1554. doi: 10.1007/s40279-017-0684-4.

Abstract

Displacement in competitive swimming is highly dependent on fluid characteristics, since athletes use these properties to propel themselves. It is essential for sport scientists and practitioners to clearly identify the interactions that emerge between each individual swimmer and properties of an aquatic environment. Traditionally, the two protagonists in these interactions have been studied separately. Determining the impact of each swimmer's movements on fluid flow, and vice versa, is a major challenge. Classic biomechanical research approaches have focused on swimmers' actions, decomposing stroke characteristics for analysis, without exploring perturbations to fluid flows. Conversely, fluid mechanics research has sought to record fluid behaviours, isolated from the constraints of competitive swimming environments (e.g. analyses in two-dimensions, fluid flows passively studied on mannequins or robot effectors). With improvements in technology, however, recent investigations have focused on the emergent circular couplings between swimmers' movements and fluid dynamics. Here, we provide insights into concepts and tools that can explain these on-going dynamic interactions in competitive swimming within the theoretical framework of ecological dynamics.

摘要

在竞技游泳中,位移高度依赖于流体特性,因为运动员利用这些特性来推动自己。对于运动科学家和从业者来说,明确识别每个游泳运动员与水环境特性之间的相互作用至关重要。传统上,这些相互作用中的两个主角是分开研究的。确定每个游泳运动员的动作对水流的影响,反之亦然,是一个主要挑战。经典的生物力学研究方法侧重于游泳者的动作,将划水特征分解进行分析,而没有探索对水流的干扰。相反,流体力学研究试图记录流体行为,与竞技游泳环境的限制隔离开来(例如二维分析、在人体模型或机器人执行器上被动研究的流体流动)。然而,随着技术的进步,最近的研究集中在游泳者动作和流体动力学之间新兴的循环耦合上。在这里,我们提供了一些概念和工具的见解,可以在生态动力学的理论框架内解释竞技游泳中的这些动态相互作用。

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