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Biomechanical jumping differences among elite female handball players with and without previous anterior cruciate ligament reconstruction: a novel inertial sensor unit study

机译:精英女性手球运动员在有或没有前交叉韧带重建的情况下的生物力学跳跃差异:新型惯性传感器单元研究

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摘要

Persistent biomechanical and jumping capacity alterations have been observed among female athletes who have sustained anterior cruciate ligament (ACL) injuries. The purpose of this study was to examine if biomechanical jumping differences persist among a cohort of elite female handball players with previous ACL reconstruction several years after return to top-level competition. In order to achieve this goal, a direct mechanics simplified analysis by using a single Inertial Sensor Unit (IU) was used. Twenty-one elite female (6 anterior cruciate ligament reconstructed and 15 uninjured control players) handball players were recruited and evaluated 6.0 +/- 3.5years after surgical anterior cruciate ligament reconstruction. Bilateral and unilateral vertical jumps were performed to evaluate the functional performance and a single inertial sensor unit was employed in order to collect 3D acceleration and 3D orientation data. Previously ACL-reconstructed analysed athletes demonstrated significant (p<0.05) alterations in relation to the three-dimensional axis (X-Y-Z) supported accelerations and differing jump phase durations, including jumping performance values, in both bilateral and unilateral jumping manoeuvres several years after ACL reconstruction. Identification of the encountered deficits through the use of an IU devise could provide clinicians with a new reliable tool for movement analysis in a clinical setting.
机译:在遭受前十字韧带(ACL)损伤的女运动员中,观察到持久的生物力学和跳跃能力改变。这项研究的目的是研究在回到顶级比赛几年后,先前进行过ACL重建的一组精英女性手球运动员中,生物力学跳跃差异是否仍然存在。为了实现此目标,使用了通过使用单个惯性传感器单元(IU)进行的直接机械简化分析。在手术前交叉韧带重建后6.0 +/- 3.5年,招募了21名精英女性(重建了6个前交叉韧带和15个未受伤的控制球员)的手球运动员并进行了评估。进行了双向和单侧垂直跳动以评估功能性能,并使用单个惯性传感器单元以收集3D加速度和3D方向数据。先前进行ACL重建的分析运动员在ACL重建后的几年中,在双边和单边跳跃动作中,相对于三维轴(XYZ)支持的加速度和不同的跳跃阶段持续时间(包括跳跃性能值),均表现出显着(p <0.05)的变化。通过使用IU装置识别遇到的缺陷,可以为临床医生提供一种在临床环境中进行运动分析的新的可靠工具。

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