Measurement of Cartilage Deformation in Intact Knee Joints under Compressive Loading

B. M. Rashid, S. Hamandi, E. Khalil
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Abstract

Many joints in the body depend on cartilage for their mechanical function. Since cartilage lacks the ability to self-heal when injured, treatments and replacements for damaged cartilage have been created in recent decades. The mechanical tests had an important role in the treatment and designing of the replaced cartilage. There are two types of cartilages in the knees: fibrocartilage (the meniscus, it is a special type of cartilage) and hyaline cartilage. Its mechanical properties are important because structural failure of cartilage is closely related with joint disorders. This study aimed to determine the stress-strain curve to give broader understanding of the material’s properties. The results of this study could help to develop computational models for evaluating mechanics of knee joint, predicting possible failure locations and disease progression in joints.The study involved two specimens taken from bovine, the first was the articular cartilage with subchondral bone and the second was the meniscus cartilage each one loaded on a compressive testing machine to compute the displacement, and the force applied, enabling the calculation of the stress-strain curve of the material.Specimen failure occurred in the articular cartilage surface at a force break of 73.8N and get force peak about 87.2 N. The meniscus cartilage failure had occurred at a force break of 29.2 N and get force peak about 34.9 N.
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压缩载荷作用下完整膝关节软骨变形的测量
人体许多关节的机械功能都依赖于软骨。由于软骨在受伤时缺乏自我愈合的能力,近几十年来,人们发明了治疗和替代受损软骨的方法。力学试验对置换软骨的治疗和设计具有重要意义。膝关节有两种软骨:纤维软骨(半月板,它是一种特殊类型的软骨)和透明软骨。它的力学性能很重要,因为软骨的结构失效与关节疾病密切相关。本研究旨在确定应力应变曲线,以便更广泛地了解材料的性能。这项研究的结果可以帮助开发评估膝关节力学的计算模型,预测关节可能的故障位置和疾病进展。本研究选取了两个牛关节软骨和半月板软骨标本,分别在压缩试验机上加载,计算其位移和受力,从而计算材料的应力应变曲线。在73.8N的力断下,试件在关节软骨表面发生破坏,得到87.2 N左右的力峰;在29.2 N的力断下,半月板软骨发生破坏,得到34.9 N左右的力峰。
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