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对浸入水中1.3米时人体水上步态所施加的最大力进行测力分析。

Dynamometric analysis of the maximum force applied in aquatic human gait at 1.3m of immersion.

作者信息

Roesler Helio, Haupenthal Alessandro, Schütz Gustavo R, de Souza Patrícia V

机构信息

Aquatic Biomechanics Laboratory, Center of Physical Education, Physiotherapy and Sports of Santa Catarina State University, 358, Paschoal Simone Street, ZC 88080-350 Coqueiros, Florianopolis, Brazil.

出版信息

Gait Posture. 2006 Dec;24(4):412-7. doi: 10.1016/j.gaitpost.2005.09.014. Epub 2006 May 23.

Abstract

BACKGROUND

This work had the objective to analyze the values of the vertical and anteroposterior components of the ground reaction force (GRF) during the aquatic gait and the influence of the speed and the upper limb position on the GRF components values.

METHODS

Sixty subjects, with average height between 1.6 and 1.85m and average age of 23 years, were divided in three groups according to the immersion level. The citizens walked over a walking platform, which had two force plates attached. The platform was located at a depth of 1.3m. The subjects walked over the platform in four different situations, with speed and upper limb position variations. For data analysis, descriptive and inferential statistics were used.

FINDINGS

For the vertical component, the force values varied between 20% and 40% of the subjects' body weight according to the different data collection situations. For the anteroposterior component, the force values reached between 8% and 20% of the subjects' body weight corporal, also according with the data collection situation. INTERPRETATION (DISCUSSION): It was noted that for a given immersion level, the forces can vary according to the request that is imposed to the aquatic gait. It was concluded that either the speed as well as the position of the upper limb influence the values of the GRF components. An increase in the gait speed causes increase of the anteroposterior component (Fx), while an increase in the corporal mass out of the water causes increase mainly of the vertical component (Fy). Knowing the value of these alterations is important for the professional who prescribes activities in aquatic environment.

摘要

背景

这项研究旨在分析水上步态期间地面反作用力(GRF)的垂直和前后分量的值,以及速度和上肢位置对GRF分量值的影响。

方法

60名受试者,平均身高在1.6至1.85米之间,平均年龄23岁,根据浸入程度分为三组。受试者在一个装有两个测力板的步行平台上行走。平台位于1.3米深处。受试者在四种不同情况下在平台上行走,速度和上肢位置有所变化。数据分析采用描述性和推断性统计方法。

结果

对于垂直分量,根据不同的数据收集情况,力值在受试者体重的20%至40%之间变化。对于前后分量,力值也根据数据收集情况达到受试者体重的8%至20%。

解释(讨论):注意到对于给定的浸入程度,力可根据对水上步态的要求而变化。得出的结论是,速度以及上肢位置都会影响GRF分量的值。步态速度的增加会导致前后分量(Fx)增加,而身体在水面以上质量的增加主要会导致垂直分量(Fy)增加。了解这些变化的值对于在水环境中规定活动的专业人员很重要。

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