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在水中和陆地上以不同生理强度进行静止跑步时的水平地面反作用力。

Horizontal ground reaction forces to stationary running performed in the water and on dry land at different physiological intensities.

作者信息

Alberton Cristine Lima, Pinto Stephanie Santana, Nunes Gabriela Neves, Rau Douglas Guerreiro Dos Santos, Finatto Paula, Antunes Amanda Haberland, Tartaruga Marcus Peikriszwili, Bergamin Marco, Cadore Eduardo Lusa, Kruel Luiz Fernando Martins

机构信息

a Department of Sports, Physical Education School , Federal University of Pelotas , Pelotas , RS , Brazil.

b Physical Education School , Federal University of Rio Grande do Sul , Porto Alegre , RS , Brazil.

出版信息

Eur J Sport Sci. 2017 Sep;17(8):1013-1020. doi: 10.1080/17461391.2017.1337814. Epub 2017 Jun 13.

Abstract

The aim of the present study was to compare the peak anterior-posterior (Fy) and medio-lateral (Fx) ground reaction forces (GRFs) of women performing stationary running at different intensities in aquatic and dry land environments. Fourteen young women performed the stationary running exercise at three cadences (first ventilatory threshold, second ventilatory threshold and maximum effort, as determined during exercise in water) in aquatic and dry land environments. Two-way repeated measures ANOVA was used to analyse the data (α = .05). As a result, significantly lower peak Fy anterior, Fy posterior, Fx medial and Fx lateral values were observed for the aquatic environment, except for the Fy posterior at the first ventilatory threshold. Significant differences were observed between cadences in the peak Fy anterior, Fy posterior, Fx medial and Fx lateral values, with higher values for the cadence corresponding to maximum effort compared to the first ventilatory threshold, except for the Fy posterior and Fx medial in the aquatic environment. The results indicate that the horizontal GRFs are reduced in the aquatic environment and depend on the intensity of stationary running exercise performance.

摘要

本研究的目的是比较女性在水上和陆地环境中以不同强度进行原地跑步时的前后向(Fy)和内外侧(Fx)地面反作用力(GRF)峰值。14名年轻女性在水上和陆地环境中以三种节奏(第一次通气阈值、第二次通气阈值和最大努力,如在水中运动时所确定)进行原地跑步运动。采用双向重复测量方差分析来分析数据(α = 0.05)。结果显示,除了第一次通气阈值时的后向Fy外,水上环境中观察到的前向Fy、后向Fy、内侧Fx和外侧Fx的峰值显著更低。在前向Fy、后向Fy、内侧Fx和外侧Fx的峰值方面,不同节奏之间存在显著差异,与第一次通气阈值相比,最大努力节奏下的值更高,但水上环境中的后向Fy和内侧Fx除外。结果表明,水上环境中水平GRF会降低,并且取决于原地跑步运动表现的强度。

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