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在自由泳中,入水伸展阶段在不同比赛速度下所起的作用。

The role of the entry-and-stretch phase at the different paces of race in front crawl swimming.

作者信息

Samson Mathias, Monnet Tony, Bernard Anthony, Lacouture Patrick, David Laurent

机构信息

a Institut P' , CNRS - University of Poitiers - ENSMA , UPR 3346, 11 Boulevard Marie et Pierre Curie, Téléport 2, BP 30179, 86962 Futuroscope Cedex , France.

出版信息

J Sports Sci. 2015;33(15):1535-43. doi: 10.1080/02640414.2014.1003584. Epub 2015 Feb 5.

Abstract

The aim of this study was to determine the role played by the entry-and-stretch phase in the coordination of swimming, at the different paces of race. Three national level swimmers (two men and one woman) were recorded, in lateral and bottom views, in three swimming paces: sprint (50 m and 100 m), middle-distance (200 m and 400 m) and long-distance (800 m and 1500 m). Anatomical landmark positions were obtained by manual digitalisation of the videos. Computational fluid dynamics and experimental studies (with a strain gauge balance and particle image velocimetry method) were used to measure and to calculate the external forces applied to the hand and to the forearm and to visualise the flow around the profile. Entry-and-stretch is the phase which varies the most according to the swimming pace. This phase can be decomposed into two sub-phases: one, the extension forward coordinated with the insweep of the opposite arm, and another one, the rotation downward coordinated with the upsweep. Results show that, at the three paces, this phase is not propulsive and could contribute essentially to maintain the horizontal balance of the body.

摘要

本研究的目的是确定入水伸展阶段在不同比赛速度下游泳协调中所起的作用。记录了三名国家级游泳运动员(两名男性和一名女性)在三种游泳速度下的侧面和底面视图,这三种速度分别是:短距离冲刺(50米和100米)、中距离(200米和400米)和长距离(800米和1500米)。通过对视频进行手动数字化获取解剖学标志点的位置。利用计算流体动力学和实验研究(采用应变片天平及粒子图像测速法)来测量和计算施加于手部和前臂的外力,并可视化绕身体轮廓的水流。入水伸展阶段是根据游泳速度变化最大的阶段。该阶段可分解为两个子阶段:一个是与对侧手臂内划协调的向前伸展,另一个是与上划协调的向下旋转。结果表明,在这三种速度下,该阶段不产生推进力,主要作用可能是维持身体的水平平衡。

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