NBA控球后卫膝盖塌陷时如何避免前十字韧带损伤

Nathan D. Schilaty, Nathaniel A. Bates, A. Krych, T. Hewett
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引用次数: 6

摘要

非接触性前交叉韧带(ACL)损伤发生快速减速和旋转。最近,一名美国职业篮球协会(NBA)高水平球员的受伤表明,神经肌肉控制和损伤保护机制只导致了轻微的内侧副韧带损伤。我们通过公开的二维正交视频分析了生物力学机制,以证明如何避免潜在的前交叉韧带损伤。膝关节损伤机制分析表明,NBA球员经历了低地面反作用力,高矢状面屈曲,并在神经肌肉控制下维持额平面稳定性。这些因素的结果在整个跌倒过程中抑制了膝关节的动态外翻塌陷,避免了前交叉韧带损伤——一种潜在的改变职业生涯的损伤。许多运动员,无论是专业运动员还是休闲运动员,都会遭受类似的损伤机制,如果他们能够成功地利用神经肌肉控制的预防策略来限制损伤机制,将会有更好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How Anterior Cruciate Ligament Injury was averted during Knee Collapse in a NBA Point Guard
Summary Non-contact anterior cruciate ligament (ACL) injuries occur with rapid decelerations and pivoting. A recent injury to a high-level National Basketball Association (NBA) player demonstrated neuromuscular control and injury-sparing mechanisms that resulted in only minor ligament injury to the medial collateral ligament. We analyzed biomechanical mechanisms via publically available orthogonal 2-D video to demonstrate how this potential ACL injury was averted. Analysis of the knee injury mechanism demonstrated that the NBA player experienced low ground reaction force, high sagittal plane flexion, and maintenance of frontal plane stability with neuromuscular control. The outcome of these factors inhibited dynamic valgus collapse of the knee throughout the fall, avoiding ACL injury – a potentially career-altering injury. Many athletes, professional and recreational, will be subjected to similar mechanisms of injury and will have improved outcomes if they can successfully utilize preventive strategies of neuromuscular control to limit injury mechanisms.
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