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单腿下蹲和落地任务中采集的生物力学变量的可靠性。

The reliability of biomechanical variables collected during single leg squat and landing tasks.

机构信息

Knee Biomechanics and Injury Research Programme, School of Health Sciences, University of Salford, Manchester, United Kingdom; General Directorate of Medical Rehabilitation, Ministry of Health, Riyadh, Saudi Arabia.

Knee Biomechanics and Injury Research Programme, School of Health Sciences, University of Salford, Manchester, United Kingdom.

出版信息

J Electromyogr Kinesiol. 2014 Oct;24(5):718-21. doi: 10.1016/j.jelekin.2014.07.007. Epub 2014 Jul 30.

Abstract

INTRODUCTION

The aim of this study was to determine the within- and between-day reliability of lower limb biomechanical variables collected during single leg squat (SLS) and single leg landing (SLL) tasks.

METHODS

15 recreational athletes took part in three testing sessions, two sessions on the same day and another session one week later. Kinematic and kinetic data was gathered using a ten-camera movement analysis system (Qualisys) and a force platform (AMTI) embedded into the floor.

RESULTS

The combined averages of within-day ICC values (ICCSLS=0.87; ICCSLL=0.90) were higher than between-days (ICCSLS=0.81; ICCSLL=0.78). Vertical GRF values (ICCSLS=0.90; ICCSLL=0.98) were more reliable than joint angles (ICCSLS=0.85; ICCSLL=0.82) and moments (ICCSLS=0.83; ICCSLL=0.87).

DISCUSSION

This study demonstrates that all joint angles, moments, and vertical ground reaction force (GRF) variables obtained during both tasks showed good to excellent consistency with relatively low standard error of measurement values. These findings would be of relevance to practitioners who are using such measures for screening and prospective studies of rehabilitative techniques.

摘要

引言

本研究旨在确定在单腿深蹲(SLS)和单腿落地(SLL)任务中采集的下肢生物力学变量的日内和日间可靠性。

方法

15 名休闲运动员参加了三次测试,其中两次在同一天,另一次在一周后。运动学和动力学数据使用由十个摄像头组成的运动分析系统(Qualisys)和嵌入在地板中的力平台(AMTI)收集。

结果

日内综合 ICC 值(ICCSLS=0.87;ICCSLL=0.90)高于日间(ICCSLS=0.81;ICCSLL=0.78)。垂直 GRF 值(ICCSLS=0.90;ICCSLL=0.98)比关节角度(ICCSLS=0.85;ICCSLL=0.82)和力矩(ICCSLS=0.83;ICCSLL=0.87)更可靠。

讨论

本研究表明,在这两个任务中获得的所有关节角度、力矩和垂直地面反作用力(GRF)变量均表现出良好到极好的一致性,测量值的标准误差相对较低。这些发现对于使用这些指标进行筛查和康复技术前瞻性研究的从业者具有相关性。

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