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Prediction model of influence of force on land and performance in fin swimming: A pilot study

机译:脚蹼游泳中力对陆地和性能影响的预测模型:初步研究

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The purpose of this research is the determination of a prediction model that could predict 50m and 100m n swimming results on surface. The sample of this research consisted of 9 n swimmers of competitive level. All participants swam 50 and 100 meters on the water surface with monofin and a snorkel with maximum intensity. In two next sessions, force of the leg extensors and ankle extensors were measured in the workout gym with a dynamometer. The results of this study concluded in a potential statistical significance of regression analysis for 50m fin swimming with snorkel on the surface of the water. Relative force values of ankle and leg extensors are better predictors of 50m fin swimming. No similar results were found for 100m fin swimming. These findings probably suggest that in shorter distance of 50m fin swimming, force variables of extensor muscles play a greater role in comparison to longer distance of 100m n swimming. The measurement of force of legs in n swimming is of particular interest because legs are mostly responsible for the propulsion in fin swimming and should further be studied with other force protocols, different exercises and larger sample.
机译:这项研究的目的是确定可以预测50m和100m n地面游泳结果的预测模型。这项研究的样本由9名具有竞争水平的游泳者组成。所有参与者都用单鳍和最大强度的浮潜在水面上游泳50和100米。在接下来的两次会议中,在健身馆中使用测力计测量腿部伸肌和踝部伸肌的力量。这项研究的结果得出结论,对于在水面浮潜的50m鳍游泳而言,回归分析具有潜在的统计学意义。脚踝和腿部伸肌的相对力值是50m鳍游泳的更好预测指标。 100m鳍游泳没有类似的结果。这些发现可能表明,在短距离游泳50m n的情况下,与长距离游泳100m n的情况相比,伸肌的力变量起更大的作用。在n游泳中测量腿的力量特别受关注,因为在fin游泳中,腿主要负责推进力,应进一步研究其他力量方案,不同的练习和较大的样本。

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