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Investigating the effects of knee joint motion schemes on knee joint injury: A finite element analysis

机译:研究膝关节运动方案对膝关节损伤的影响:有限元分析

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This study uses a three dimensional model of the knee joint to determine which knee joint motion schemes lead to ACL injury, while exploring the possible types of concomitant injuries associated with each motion scheme. The physical elements of the knee joint including bones, articular cartilage, meniscus and ligaments were obtained by reconstructing magnetic resonance images. A failure locus representing the relationship between motion schemes and knee joint injury was created from finite element simulations considering knee flexion, femoral axial rotation and both valgus and varus motion. The relationships between knee joint orientation and various tissue failures were examined and susceptibility spectrums for knee injuries were obtained. The posterolateral bundle demonstrated higher rupture susceptibility than the anteromedial bundle. The average varus angular displacement for ACL failure was 46.6% lower than the average valgus angular displacement. Femoral external rotation decreases overall ACL valgus/varus failure angle by 27.5% compared to internal rotation. Articular cartilage injury was shown to occur prior to ACL failure in all valgus simulations. A simplified and computationally efficient version of the full 3D model showed close correlation to the complete model with respect to ligament failure and shows that if only ligament failure is of interest, a simple model can be used. The results of this study highlight several detrimental joint motions and can aid in improved clinical diagnoses and improved training programs for athletes.
机译:这项研究使用了膝关节的三维模型来确定哪些膝关节运动方案导致了ACL损伤,同时探讨了每种运动方案可能引起的伴随伤害类型。膝关节的物理元素包括骨骼,关节软骨,半月板和韧带是通过重建磁共振图像获得的。通过考虑膝部屈曲,股骨轴向旋转以及外翻和内翻运动的有限元模拟,创建了代表运动方案与膝关节损伤之间关系的失效轨迹。检查了膝关节方向与各种组织衰竭之间的关系,并获得了膝关节损伤的敏感性谱。后外侧束比前内侧束表现出更高的破裂敏感性。 ACL失败的平均内翻角位移比平均外翻角位移低46.6%。与内部旋转相比,股骨外部旋转使整体ACL外翻/内翻失败角度降低了27.5%。在所有外翻模拟中,关节软骨损伤均发生在ACL失败之前。完整3D模型的简化且计算效率高的版本在韧带破坏方面显示出与完整模型紧密相关,并且表明如果仅关注韧带破坏,则可以使用简单模型。这项研究的结果突出了几种有害的关节运动,可以帮助改善运动员的临床诊断和训练计划。

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