Singh Narendra, Trajkovski Jovan, Matas Jose Felix Rodriguez, Kunc Robert
Chair of Modelling in Engineering Sciences and Medicine, Faculty of Mechanical Engineering, University of Ljubljana, Aškerčeva c. 6, 1000 Ljubljana, Slovenia.
Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Piazza Leonardo da Vinci, 32, 20133 Milano, Italy.
Bioengineering (Basel). 2024 Dec 24;12(1):5. doi: 10.3390/bioengineering12010005.
The Lateral Collateral Ligament (LCL), one of the four major ligaments in the knee joint, resides on the outer aspect of the knee. It forms a vital connection between the femur and the fibula. The LCL's primary role is to provide stability against Varus forces, safeguarding the knee from undue rotation and tibial displacement. Uniaxial mechanical testing was conducted on the dog bone (DB) samples in this study. The porcine of different ages, from 3 months to 48 months (4 years) old, were used to analyse the effect of age. A constant head speed of 200 mm/s was applied throughout the tests to mimic strain-stress and damage responses at an initial strain rate of 13.3/s. The mechanical properties of LCL were evaluated, with a specific focus on the effect of age. The LMM (Linear Mixed Model) analysis revealed a marginally significant positive slope for Young's modulus ( = 0.0512) and a significant intercept ( = 0.0016); for Maximum Stress, a negative slope ( = 0.0346) and significant intercept ( < 0.0001); while Maximum Stretch showed a significant negative slope ( = 0.0007) and intercept ( < 0.0001), indicating the muscle reduces compliance and load-bearing capacity with age.
外侧副韧带(LCL)是膝关节的四大主要韧带之一,位于膝关节外侧。它在股骨和腓骨之间形成了至关重要的连接。LCL的主要作用是提供抵抗内翻力的稳定性,保护膝关节免受过度旋转和胫骨移位的影响。本研究对狗骨(DB)样本进行了单轴力学测试。使用了3个月至48个月(4岁)不同年龄的猪来分析年龄的影响。在整个测试过程中,施加200毫米/秒的恒定头部速度,以模拟初始应变率为13.3/秒时的应变-应力和损伤反应。评估了LCL的力学性能,特别关注年龄的影响。线性混合模型(LMM)分析显示,杨氏模量的斜率略微显著为正(=0.0512),截距显著(=0.0016);对于最大应力,斜率为负(=0.0346),截距显著(<0.0001);而最大拉伸显示出显著的负斜率(=0.0007)和截距(<0.0001),表明肌肉随着年龄增长而降低顺应性和承载能力。