[Finite element analysis of the correlation between lateral collateral ligament injury of the ankle joint and subtalar articular cartilage injury].

Q4 Medicine
Hai-Yang Zhang, Bo Lou, Zheng Liu, Zhe Zhu, Huan Wang
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引用次数: 0

Abstract

Objective: To establish foot and ankle models of different lateral collateral ligament injuries of ankle joint, and conduct finite element analysis on, and to explore the force conditions of subtalar articular cartilage during foot inversion movements under different gait stages and under different loads.

Methods: A normal ankle CT scan of a 30-year-old male healthy volunteer (heighted 175 cm and weighted 60 kg) was selected. The CT images were imported into software such as Mimics 21.0, Geomajic 2017, and Solidworks 2017 respectively, extract the normal ankle bone model. Then, the foot and ankle finite element models of different lateral collateral ligament injuries of ankle joint were constructed and divided into anterior talofibular ligament(ATFL) rupture group, ATFL and calcaneo fibular ligament (CFL) rupture group, ATFL, CFL and posterior talofibular ligament (PTFL) rupture group, and control group with intact ligament function by ANSYS 2021. Corresponding horizontal and vertical loads and torques were applied respectively on tibia and talus according to the force conditions of different phases to simulate landing phase, neutral and off-ground phase in walking gait. The changes in stress distribution area and stress peak of subtalar articular cartilage in the loading phase, neutral phase and off-ground phase gaits among four groups were observed. Simulate varus sprain action, apply different loads of 600, 1, 800, and 4, 200 N respectively, and changes in stress distribution area and the stress peak of subtalar articular cartilage among four groups of models were observed.

Results: In the gait simulation, the stress results of loading phase in ATFL fracture group, ATFL and CFL fracture groups, ATFL, CFL and PTFL fracture groups, and control group were 0.889 54, 0.960 89, 1.139 20, and 0.722 64 MPa, respectively. The neutral response force results were 1.250 60, 1.358 50, 1.363 70, 1.246 40 MPa respectively;the results of corresponding forces off-ground phase were 1.029 90, 1.138 70, 1.145 90 and 0.832 40 MPa respectively. In the inversion simulation, the stresses of ATFL fracture group, ATFL and CFL fracture groups, ATFL, CFL and PTFL fracture groups, and control group under load of 600 N were 2.191 3, 2.208 5, 2.215 7, and 2.156 6 MPa respectively. The stresses under a load of 1 800 N were 7.134 7, 9.715 2, 10.064 0, and 7.107 0 MPa respectively;the stresses under a load of 4 200 N were 17.435 0, 25.309 0, 26.119 0 and 16.010 0 MPa respectively.

Conclusion: The lateral collateral ligament of ankle joint plays an important role in the stability of the subtalar joint, especially CFL plays an important role in restricting calcaneal varus. If these ligaments are damaged, it will cause instability of the subtalar joint and further lead to lesions in the subtalar articular cartilage. Relevant exercises should be reduced or the ligament injuries should be treated in a timely manner.

[踝关节外侧副韧带损伤与距下关节软骨损伤相关性的有限元分析]。
目的:建立不同踝关节外侧副韧带损伤的足踝关节模型,进行有限元分析,探讨不同步态阶段、不同负荷下足倒置运动时距下关节软骨受力情况。方法:选择30岁男性健康志愿者(身高175 cm,体重60 kg),正常踝部CT扫描。将CT图像分别导入Mimics 21.0、Geomajic 2017、Solidworks 2017等软件,提取正常踝骨模型。然后建立踝关节不同外侧副韧带损伤的足踝关节有限元模型,通过ANSYS 2021将其分为距腓骨前韧带(ATFL)断裂组、距腓骨前韧带(ATFL)与跟腓骨韧带(CFL)断裂组、距腓骨前韧带、距腓骨后韧带(PTFL)断裂组和韧带功能完好的对照组。根据不同阶段的受力情况,分别对胫骨和距骨施加相应的水平和垂直载荷和扭矩,模拟行走步态的落地阶段、中性阶段和离地阶段。观察四组小鼠在负重期、中性期和离地期步态时距下关节软骨应力分布面积和应力峰值的变化。模拟内翻扭伤作用,分别施加600、1、800和4、200 N的不同载荷,观察四组模型距下关节软骨应力分布面积和应力峰值的变化。结果:在步态模拟中,ATFL骨折组、ATFL + CFL骨折组、ATFL + CFL + PTFL骨折组和对照组的加载阶段应力结果分别为0.889 54、0.960 89、1.139 20和0.722 64 MPa。中性响应力结果分别为1.250 60、1.358 50、1.363 70、1.246 40 MPa,离地阶段对应力结果分别为1.029 90、1.138 70、1.145 90、0.832 40 MPa。在反演模拟中,在600 N载荷下,ATFL裂缝组、ATFL - CFL裂缝组、ATFL - CFL - PTFL裂缝组和对照组的应力分别为2.191 3、2.208 5、2.215 7和2.156 6 MPa。1 800 N荷载下的应力分别为7.134 7、9.715 2、10.064 0和7.107 0 MPa, 4 200 N荷载下的应力分别为17.435 0、25.309 0、26.119 0和16.010 0 MPa。结论:踝关节外侧副韧带对距下关节的稳定起着重要的作用,尤其是CFL对跟骨关节内翻有重要的限制作用。如果这些韧带受损,会导致距下关节不稳定,进而导致距下关节软骨病变。应减少相关运动或及时治疗韧带损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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