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水中和陆地上静止跑步冲刺时的地面反作用力与步频

Ground Reaction Force and Cadence during Stationary Running Sprint in Water and on Land.

作者信息

Fontana H de Brito, Ruschel C, Haupenthal A, Hubert M, Roesler H

机构信息

Aquatic Biomechanics Research Laboratory, University of the State of Santa Catarina, Florianópolis, Brazil.

出版信息

Int J Sports Med. 2015 Jun;36(6):490-3. doi: 10.1055/s-0034-1398576. Epub 2015 Feb 20.

Abstract

This study was aimed at analyzing the cadence (Cadmax) and the peak vertical ground reaction force (Fymax) during stationary running sprint on dry land and at hip and chest level of water immersion. We hypothesized that both Fymax and Cadmax depend on the level of immersion and that differences in Cadmax between immersions do not affect Fymax during stationary sprint. 32 subjects performed the exercise at maximum cadence at each immersion level and data were collected with force plates. The results show that Cadmax and Fymax decrease 17 and 58% from dry land to chest immersion respectively, with no effect of cadence on Fymax. While previous studies have shown similar neuromuscular responses between aquatic and on land stationary sprint, our results emphasize the differences in Fymax between environments and levels of immersion. Additionally, the characteristics of this exercise permit maximum movement speed in water to be close to the maximum speed on dry land. The valuable combination of reduced risk of orthopedic trauma with similar neuromuscular responses is provided by the stationary sprint exercise in water. The results of this study support the rationale behind the prescription of stationary sprinting in sports training sessions as well as rehabilitation programs.

摘要

本研究旨在分析在干燥陆地以及髋部和胸部水平的水浸环境下进行静止跑步冲刺时的步频(Cadmax)和垂直地面反作用力峰值(Fymax)。我们假设Fymax和Cadmax均取决于浸水程度,并且在静止冲刺过程中,不同浸水程度下的Cadmax差异不会影响Fymax。32名受试者在每个浸水程度下以最大步频进行运动,并使用测力板收集数据。结果表明,从干燥陆地到胸部浸水,Cadmax和Fymax分别下降了17%和58%,步频对Fymax没有影响。虽然先前的研究表明,水上和陆地静止冲刺之间存在相似的神经肌肉反应,但我们的结果强调了不同环境和浸水程度下Fymax的差异。此外,该运动的特点使得水中的最大运动速度接近干燥陆地上的最大速度。水中静止冲刺运动提供了降低骨科创伤风险与相似神经肌肉反应的宝贵组合。本研究结果支持了在体育训练课程以及康复计划中进行静止冲刺训练的基本原理。

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