Biomechanical Risk Factors of Injury-Related Single-Leg Movements in Male Elite Youth Soccer Players

Mathias Kolodziej, Steffen Willwacher, Kevin Nolte, Marcus Schmidt, T. Jaitner
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引用次数: 2

Abstract

Altered movement patterns during single-leg movements in soccer increase the risk of lower-extremity non-contact injuries. The identification of biomechanical parameters associated with lower-extremity injuries can enrich knowledge of injury risks and facilitate injury prevention. Fifty-six elite youth soccer players performed a single-leg drop landing task and an unanticipated side-step cutting task. Three-dimensional ankle, knee and hip kinematic and kinetic data were obtained, and non-contact lower-extremity injuries were documented throughout the season. Risk profiling was assessed using a multivariate approach utilising a decision tree model (classification and regression tree method). The decision tree model indicated peak knee frontal plane angle, peak vertical ground reaction force, ankle frontal plane moment and knee transverse plane angle at initial contact (in this hierarchical order) for the single-leg landing task as important biomechanical parameters to discriminate between injured and non-injured players. Hip sagittal plane angle at initial contact, peak ankle transverse plane angle and hip sagittal plane moment (in this hierarchical order) were indicated as risk factors for the unanticipated cutting task. Ankle, knee and hip kinematics, as well as ankle and hip kinetics, during single-leg high-risk movements can provide a good indication of injury risk in elite youth soccer players.
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青年优秀男子足球运动员单腿运动损伤的生物力学危险因素
在足球运动中单腿运动时改变的运动模式增加了下肢非接触性损伤的风险。识别与下肢损伤相关的生物力学参数可以丰富对损伤风险的认识,促进损伤预防。56名优秀的青少年足球运动员完成了单腿落地任务和意想不到的侧身切球任务。获得了三维踝关节、膝关节和髋关节的运动学和动力学数据,并记录了整个赛季的非接触性下肢损伤。采用决策树模型(分类和回归树方法)的多变量方法评估风险分析。决策树模型表明,单腿着地任务初始接触时膝关节正面角峰值、垂直地面反力峰值、踝关节正面力矩和膝关节横切面角(按此顺序)是区分受伤和未受伤运动员的重要生物力学参数。首次接触时髋矢状面角、踝关节横切面角峰值和髋矢状面力矩(按此顺序)是意外切割任务的危险因素。踝关节、膝关节和髋关节运动学,以及踝关节和髋关节动力学,在单腿高风险运动中,可以很好地指示精英青年足球运动员的受伤风险。
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