单腿着地时矢状面体位的改变会影响非接触性前交叉韧带损伤的风险。

Yohei Shimokochi, Jatin P Ambegaonkar, Eric G Meyer, Sae Yong Lee, Sandra J Shultz
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引用次数: 113

摘要

目的:研究单腿着地时不同矢状面体位对前交叉韧带(ACL)损伤风险相关的生物力学和肌肉激活参数的影响。方法:20名参与者采用自行选择的前倾(LFL)和直立(URL)两种着陆方式进行单腿落在测力板上。采用运动分析和表面肌电图分别记录下肢和躯干三维生物力学和下肢肌肉活动。着陆方式的差异采用双向重复测量方差分析(性别×着陆条件),然后采用Bonferroni两两比较。结果:参与者表现出更大的峰值垂直地面反作用力,更大的峰值膝关节伸肌力矩,更小的足底屈曲,更小或没有髋关节伸肌力矩,以及更小的内侧和外侧腓骨肌和外侧股四头肌激活在URL期间比在LFL期间。男性和女性在不同着陆条件下下肢生物力学的变化相似。结论:着地时身体前倾可以增加前交叉韧带的减震能力和膝关节屈曲角度,减少膝关节压缩力和股四头肌激活所产生的前切力,从而保护前交叉韧带。相反,直立着地似乎对前交叉韧带有害,因为它增加了着地后的冲击力和股四头肌的活动,同时减少了膝关节屈曲角度,所有这些都会导致更大的胫骨前切力和前交叉韧带负荷。前交叉韧带损伤预防计划应包括锻炼方案,以提高在着陆运动中矢状面身体位置的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changing sagittal plane body position during single-leg landings influences the risk of non-contact anterior cruciate ligament injury.

Purpose: To examine the effects of different sagittal plane body positions during single-leg landings on biomechanics and muscle activation parameters associated with risk for anterior cruciate ligament (ACL) injury.

Methods: Twenty participants performed single-leg drop landings onto a force plate using the following landing styles: self-selected, leaning forward (LFL) and upright (URL). Lower extremity and trunk 3D biomechanics and lower extremity muscle activities were recorded using motion analysis and surface electromyography, respectively. Differences in landing styles were examined using 2-way Repeated-measures ANOVAs (sex × landing conditions) followed by Bonferroni pairwise comparisons.

Results: Participants demonstrated greater peak vertical ground reaction force, greater peak knee extensor moment, lesser plantar flexion, lesser or no hip extensor moments, and lesser medial and lateral gastrocnemius and lateral quadriceps muscle activations during URL than during LFL. These modifications of lower extremity biomechanics across landing conditions were similar between men and women.

Conclusions: Leaning forward while landing appears to protect the ACL by increasing the shock absorption capacity and knee flexion angles and decreasing anterior shear force due to the knee joint compression force and quadriceps muscle activation. Conversely, landing upright appears to be ACL harmful by increasing the post-impact force of landing and quadriceps muscle activity while decreasing knee flexion angles, all of which lead to a greater tibial anterior shear force and ACL loading. ACL injury prevention programmes should include exercise regimens to improve sagittal plane body position control during landing motions.

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