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A prospective comparison of lower extremity kinematics and kinetics between injured and non-injured collegiate cross country runners

机译:受伤与非受伤大学越野跑步者的下肢运动学和动力学的前瞻性比较

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摘要

Collegiate cross country runners are at risk for running related injuries (RRI) due to high training volume and the potential for aberrant lower extremity biomechanics. However, there is a need for prospective research to determine biomechanical risk factors for RRI. The purpose of this study was to prospectively compare ankle, knee, and hip kinematics and kinetics and ground reaction force characteristics between injured and non-injured cross country runners over a 14-week season. Biomechanical running analyses were conducted on 31 collegiate-cross country runners using a 3-dimensional motion capture system and force plate prior to the start of the season. Twelve runners were injured and 19 remained healthy during the course of the season. Peak external knee adduction moment (KAM), a surrogate for frontal plane knee loading, and peak ankle eversion velocity were greater in runners who sustained an injury compared to those who did not, and no differences were noted in ground reaction force characteristics, or hip kinematics and kinetics. Reducing the KAM and ankle eversion velocity may be an important aspect of preventing RRI. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于高训练量和异常下肢生物力学的潜力,合理的越野跑步者面临冒险受伤(RRI)的风险。然而,需要预期研究以确定RRI的生物力学危险因素。本研究的目的是在一个14周的季节前期比较脚踝,膝关节和髋关节运动学和动力学和动力学和动力学和接地反应力特性。在赛季开始前,使用三维运动捕获系统和力板在31个组合越野赛道上进行生物力学运行分析。十二名跑步者受伤,在本赛季期间有19岁左右。峰外膝盖内部膝盖内部(kam),前架膝关节加载的替代品,与没有损伤的跑步者的峰值踝关节转换速度更大,而与那些没有的人则在地面反作用力特征或臀部没有发现差异运动学和动力学。减少KAM和脚踝转化速度可能是预防rri的一个重要方面。 (c)2017 Elsevier B.v.保留所有权利。

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