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踝关节背屈受限对落地时膝关节损伤风险的影响。

The effect of restricted ankle dorsiflexion on knee injury risk during landing.

作者信息

Zhang Zanni, Xu Datao, Wang Meizi, Zhou Huiyu, Liang Minjun, Baker Julien S, Gu Yaodong

机构信息

1Faculty of Sport Science, Ningbo University, Ningbo, China.

2Faculty of Engineering, University of Pannonia, Veszprem, Hungary.

出版信息

Acta Bioeng Biomech. 2025 Jun 16;27(1):93-109. doi: 10.37190/abb-02563-2024-03. Print 2025 Mar 1.

Abstract

: This study utilized a combination of musculoskeletal modeling and finite element analysis to investigate the effects of varying ankle dorsiflexion ranges on knee joint loading, soft tissue stress distribution, and the coactivation patterns of muscles surrounding the knee during landing. : Based on the Weight-Bearing Lunge Test (WBLT), a total of 32 basketball players into two groups: normal dorsiflexion (ND) and limited dorsiflexion (LD) and conducted six countermovement jumps (CMJ) while collecting motion and force data. Personalized musculoskeletal models were created using OpenSim to analyze kinematics and kinetics, and Helium-free MRI and CT scans were used for finite element modeling to assess internal tissue stress in the knee. : During landing, the patellofemoral joint contact force in LD was reduced compared to the ND. The coactivation of muscles around the knee joint decreased. The von Mises stress in the tibial cartilage, meniscus, anterior cruciate ligament and posterior cruciate ligament were elevated. : The results suggest that increased ankle dorsiflexion during landing may effectively reduce internal tissue stress in the knee joint while enhancing muscle coactivation around the knee joint and increasing patellofemoral joint contact force. These findings provide valuable theoretical support for strategies to reduce the risk of knee injuries during landing. Additionally, they offer reliable technical approaches and theoretical insights for studying injury mechanisms in other sports activities, such as running and lateral jumping.

摘要

本研究采用肌肉骨骼建模和有限元分析相结合的方法,来探究不同踝关节背屈范围对膝关节负荷、软组织应力分布以及落地过程中膝关节周围肌肉协同激活模式的影响。基于负重弓步试验(WBLT),将32名篮球运动员分为两组:正常背屈组(ND)和背屈受限组(LD),并让他们进行6次反向运动跳(CMJ),同时收集运动和力的数据。使用OpenSim创建个性化的肌肉骨骼模型以分析运动学和动力学,并使用无氦磁共振成像(MRI)和计算机断层扫描(CT)进行有限元建模,以评估膝关节内部组织应力。在落地过程中,与正常背屈组相比,背屈受限组的髌股关节接触力降低。膝关节周围肌肉的协同激活减少。胫骨软骨、半月板、前交叉韧带和后交叉韧带中的冯·米塞斯应力升高。结果表明,落地时增加踝关节背屈可能有效降低膝关节内部组织应力,同时增强膝关节周围肌肉的协同激活并增加髌股关节接触力。这些发现为降低落地时膝关节受伤风险的策略提供了有价值的理论支持。此外,它们为研究其他体育活动(如跑步和侧向跳跃)中的损伤机制提供了可靠的技术方法和理论见解。

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