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Analysis of Relationships between the Level of Errors in Leg and Monofin Movement and Stroke Parameters in Monofin Swimming

机译:单足游泳中腿部误差水平与单鳍运动与中风参数的关系分析

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摘要

The aim of this study was to analyze the error structure in propulsive movements with regard to its influence on monofin swimming speed. The random cycles performed by six swimmers were filmed during a progressive test (900m). An objective method to estimate errors committed in the area of angular displacement of the feet and monofin segments was employed. The parameters were compared with a previously described model. Mutual dependences between the level of errors, stroke frequency, stroke length and amplitude in relation to swimming velocity were analyzed. The results showed that proper foot movements and the avoidance of errors, arising at the distal part of the fin, ensure the progression of swimming speed. The individual stroke parameters distribution which consists of optimally increasing stroke frequency to the maximal possible level that enables the stabilization of stroke length leads to the minimization of errors. Identification of key elements in the stroke structure based on the analysis of errors committed should aid in improving monofin swimming technique.Key points class="unordered" style="list-style-type:disc">The monofin swimming technique was evaluated through the prism of objectively defined errors committed by the swimmers.The dependences between the level of errors, stroke rate, stroke length and amplitude in relation to swimming velocity were analyzed.Optimally increasing stroke rate to the maximal possible level that enables the stabilization of stroke length leads to the minimization of errors.Propriety foot movement and the avoidance of errors arising at the distal part of fin, provide for the progression of swimming speed.The key elements improving monofin swimming technique, based on the analysis of errors committed, were designated.
机译:这项研究的目的是分析推进运动中的误差结构对单鳍游泳速度的影响。在进行性测试(900m)期间,拍摄了由六名游泳者执行的随机循环。采用一种客观的方法来估计在脚和单鳍片的角位移区域中所犯的误差。将参数与先前描述的模型进行比较。分析了误差水平,行程频率,行程长度和幅度与游泳速度之间的相互依赖性。结果表明,适当的脚部运动和避免在鳍的远端发生错误,可确保游泳速度的发展。各个冲程参数分布包括将冲程频率最佳地增加到最大可能的水平,从而可以稳定冲程长度,从而使错误最小化。基于犯下的错误的分析,识别笔画结构中的关键元素,将有助于改善单鳍游泳技术。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-行为=无序前缀词=标记类型=光盘最大标签大小= 0-> 通过游泳者客观定义的错误棱镜来评估单鳍游泳技术。 分析了误差水平,行程速率,行程长度和幅度与游泳速度之间的相关性。 将行程速率最佳地增加到最大可能的水平,可以使行程长度稳定,从而将行程最小化 适当的脚部运动以及避免在鳍的远端发生错误,为泳速的发展提供了条件。 改善单鳍游泳技术的关键要素对所犯错误的分析进行了指定。

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