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防护性护膝与半蹲式跳伞着陆的生物力学

Protective Knee Braces and the Biomechanics of the Half-Squat Parachute Landing.

作者信息

Wu Di, Zheng Chao, Wu Ji, Wang Longfeng, Wei Xiang, Wang Lizheng

出版信息

Aerosp Med Hum Perform. 2018 Jan 1;89(1):26-31. doi: 10.3357/AMHP.4887.2018.

Abstract

INTRODUCTION

Knee injuries are common among paratroopers and skydivers during landing maneuvers. The aim of this study was to investigate the effects of dropping height and the use of protective knee braces on parachute landing biomechanics.

METHODS

The study cohort consisted of 30 male elite paratroopers with formal parachute landing training and more than 2 yr of parachute jumping experience. Each participant was instructed to jump off a platform at two different heights (40 and 80 cm, respectively) and land on force plates in a half-squat posture. All participants tested three different knee brace conditions (no-brace, elastic brace, and semi-rigid brace) at each height.

RESULTS

With an increase in dropping height, peak vertical ground reaction forces (GRF), peak flexion angle, peak flexion angular displacement, peak abduction angle, peak abduction angular displacement, peak extorsion angle, and peak extorsion angular displacement of the knee joint all increased. As compared without the use of a brace, use of an elastic or semi-rigid knee brace significantly reduced peak flexion angle, peak flexion angular displacement, peak abduction angular displacement, and peak extorsion angle, while there were no significant differences in peak vertical GRF or peak extorsion angular displacement. The semi-rigid brace provided the greatest restriction against peak abduction angle (3-6°).

DISCUSSION

The elastic and semi-rigid knee braces both effectively restricted motion stability of the knee joint in the sagittal and coronal planes. The semi-rigid brace had a more marked effect, although the comfort of this device should be improved.Wu D, Zheng C, Wu J, Wang L, Wei X, Wang L. Protective knee braces and the biomechanics of the half-squat parachute landing. Aerosp Med Hum Perform. 2018; 89(1):26-31.

摘要

引言

空降兵和跳伞者在着陆动作过程中膝关节损伤很常见。本研究的目的是调查降落高度和使用防护性护膝对降落伞着陆生物力学的影响。

方法

研究队列由30名男性精英空降兵组成,他们接受过正规的降落伞着陆训练且有超过2年的跳伞经验。每位参与者被指示从两个不同高度(分别为40厘米和80厘米)的平台跳下,并以半蹲姿势落在测力板上。所有参与者在每个高度测试三种不同的护膝情况(不使用护膝、弹性护膝和半刚性护膝)。

结果

随着降落高度增加,膝关节的垂直地面反作用力峰值(GRF)、最大屈曲角度、最大屈曲角位移、最大外展角度、最大外展角位移、最大扭转角度和最大扭转角位移均增加。与不使用护膝相比,使用弹性或半刚性护膝显著降低了最大屈曲角度、最大屈曲角位移、最大外展角位移和最大扭转角度,而垂直地面反作用力峰值或最大扭转角位移没有显著差异。半刚性护膝对最大外展角度的限制最大(3 - 6°)。

讨论

弹性和半刚性护膝均有效限制了膝关节在矢状面和冠状面的运动稳定性。半刚性护膝的效果更显著,尽管该装置的舒适性有待提高。吴D,郑C,吴J,王L,魏X,王L。防护性护膝与半蹲姿势降落伞着陆的生物力学。航空航天医学与人类表现。2018;89(1):26 - 31。

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