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Quasi-linear viscoelastic properties of costal cartilage using atomic force microscopy

机译:原子力显微镜研究肋软骨的准线性粘弹性

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Costal cartilage (CC) is one of the load-bearing tissues of the rib cage. Literature on material characterisation of the CC is limited. Atomic force microscopy (AFM) has been extremely successful in characterising the elastic properties of soft biomaterials such as articular cartilage and hydrogels, which are often the material of choice for cartilage models. But AFM data on CC are absent in the literature. In this study, AFM indentations using spherical beaded tips were performed on human CC to isolate the mechanical properties. A novel method was developed for modelling the relaxation indentation experiments based on Fung's quasi-linear viscoelasticity and a continuous relaxation spectrum. This particular model has been popular for uniaxial compression test data analysis. Using the model, the mean Young's modulus of CC was found to be about 2.17, 4.11 and 5.49 MPa for three specimens. A large variation of modulus was observed over the tissue. Also, the modulus values decreased with distance from the costochondral junction.
机译:肋软骨(CC)是肋骨的承重组织之一。有关CC的材料表征的文献有限。原子力显微镜(AFM)在表征软生物材料(如关节软骨和水凝胶)的弹性特性方面非常成功,而弹性材料通常是软骨模型的首选材料。但是,文献中缺少有关CC的AFM数据。在这项研究中,在人CC上使用球形串珠尖端进行了AFM压痕,以隔离机械性能。基于冯氏准线性粘弹性和连续弛豫谱,开发了一种新的方法来模拟弛豫压痕实验。这种特殊的模型已经在单轴压缩测试数据分析中流行。使用该模型,发现三个样品的CC平均杨氏模量分别约为2.17、4.11和5.49 MPa。在整个组织上观察到模量的大变化。而且,模量值随着距肋软骨交界处的距离而减小。

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