首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Poor Motor Coordination Elicits Altered Lower Limb Biomechanics in Young Football (Soccer) Players: Implications for Injury Prevention through Wearable Sensors
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Poor Motor Coordination Elicits Altered Lower Limb Biomechanics in Young Football (Soccer) Players: Implications for Injury Prevention through Wearable Sensors

机译:糟糕的电机协调引出在年轻足球(足球)球员中改变了下肢生物力学:通过可穿戴传感器预防伤害的影响

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摘要

Motor coordination and lower limb biomechanics are crucial aspects of anterior cruciate ligament (ACL) injury prevention strategies in football. These two aspects have never been assessed together in real scenarios in the young population. The present study aimed to investigate the influence of motor coordination on lower limb biomechanics in young footballers during an on-the-pitch training. Eighteen juvenile football players (10 y ± 2 m) were enrolled. Each player performed a training drill with sport-specific movements (vertical jump, agility ladders, change of direction) and the Harre circuit test (HCT) to evaluate players’ motor coordination. Wearable inertial sensors (MTw Awinda, Xsens) were used to assess lower limb joint angles and accelerations. Based on the results of the HCT, players were divided into poorly coordinated (PC) and well-coordinated (WC) on the basis of the literature benchmark. The PC group showed a stiffer hip biomechanics strategy (up to 40% lower flexion angle, ES = 2.0) and higher internal-external hip rotation and knee valgus (p < 0.05). Significant biomechanical limb asymmetries were found only in the PC group for the knee joint (31–39% difference between dominant and non-dominant limb, ES 1.6–2.3). Poor motor coordination elicited altered hip and knee biomechanics during sport-specific dynamic movements. The monitoring of motor coordination and on-field biomechanics might enhance the targeted trainings for ACL injury prevention.
机译:电机协调和下肢生物力学是足球中前十字韧带(ACL)损伤策略的关键方面。从未在年轻人的真实情景中一起评估这两个方面。本研究旨在探讨在播放在播种训练中对年轻足球运动员下肢生物力学对幼肢生物力学的影响。注册了十八少年足球运动员(10 y±2米)。每个玩家都进行了运动特定运动的训练钻(垂直跳跃,敏捷梯子,方向变化)和哈雷电路测试(HCT),以评估玩家的电机协调。可穿戴惯性传感器(MTW AWINDA,Xsens)用于评估下肢关节角度和加速度。根据HCT的结果,在文献基准的基础上,玩家分为良好协调(PC)和协调良好(WC)。 PC组展示了静髋骨生物力学策略(高达40%的屈曲角度,ES = 2.0)和更高的内部臀部旋转和膝关节旋流(P <0.05)。仅在PC组中发现了显着的生物力学肢体不对称,用于膝关节的PC组(主导和非显性肢体之间的31-39%,ES 1.6-2.3)。在运动特异性动态运动期间,电动机协调差引起改变的臀部和膝关节生物力学。监测电机协调和现场生物力学可能会增强ACL损伤预防的有针对性培训。

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