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Depth-dependent ratcheting strains of young and adult articular cartilages by experiments and predictions

机译:通过实验和预测的深度依赖的年轻和成人关节软骨棘轮菌株

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Ratcheting strain is produced due to the repeated accumulation of compressive strain in cartilage and may be a precursor to osteoarthritis. The aim of this study was to investigate the ratcheting behaviors of young and adult articular cartilages under cyclic compression by experiments and theoretical predictions. A series of uniaxial cyclic compression tests were conducted for young and adult cartilage, and the effects of different loading conditions on their ratcheting behaviors were probed. A theoretical ratcheting model was constructed and applied to predict the ratcheting strains of young and adult cartilages with different loading conditions. Ratcheting strains of young and adult cartilages rapidly increased at the initial stage, followed by a slower increase in subsequent stages. The strain accumulation value and its rate for young cartilage were greater than them for adult cartilage. The ratcheting strains of the two groups of cartilage samples decreased with increasing stress rate, while they increased with increasing stress amplitude. As the stress amplitude increased, the gap between the ratcheting strains of young and adult cartilages increased gradually. The ratcheting strains of young and adult cartilages decreased along the cartilage depth from the surface to the deep layer. The ratcheting strains of different layers increased with the compressive cycle, and the difference among the three layers was noticeable. Additionally, the theoretical predictions agreed with the experimental data. Overall, the ratcheting behavior of articular cartilage is affected by the degree of articular cartilage maturation.
机译:棘轮应变是由于压缩应力在软骨中的反复积累而产生的,并且可能是骨关节炎的先兆。这项研究的目的是通过实验和理论预测来研究年轻和成人关节软骨在循环压缩下的棘轮行为。对年轻人和成年人的软骨进行了一系列的单轴循环压缩试验,并探讨了不同载荷条件对其棘轮行为的影响。建立了理论上的棘轮模型并将其应用于预测不同载荷条件下的年轻和成年软骨的棘轮应变。幼年和成年软骨的棘轮应变在开始阶段迅速增加,随后在随后阶段缓慢增加。幼年软骨的应变累积值及其应变率大于成年软骨。两组软骨样品的棘轮应变随应力率的增加而降低,而随应力幅值的增加而升高。随着应力振幅的增加,年轻和成年软骨的棘轮应变之间的间隙逐渐增大。从表面到深层,年轻和成年软骨的棘轮应变沿软骨深度降低。不同层的棘轮应变随压缩循环的增加而增加,三层之间的差异明显。此外,理论预测与实验数据一致。总体而言,关节软骨的棘轮行为受关节软骨成熟度的影响。

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