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胶原蛋白交联对通过用于应力松弛的半自动微压痕方案测定的双相多孔粘弹性软骨特性的影响。

The effect of collagen crosslinking on the biphasic poroviscoelastic cartilage properties determined from a semi-automated microindentation protocol for stress relaxation.

作者信息

McGann Megan E, Bonitsky Craig M, Ovaert Timothy C, Wagner Diane R

机构信息

Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556, USA.

Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

J Mech Behav Biomed Mater. 2014 Jun;34:264-72. doi: 10.1016/j.jmbbm.2014.02.013. Epub 2014 Feb 19.

Abstract

Given the important role of the collagenous structure in cartilage mechanics, there is considerable interest in the relationship between collagen crosslinking and the mechanical behavior of the cartilage matrix. While crosslink-induced alterations to the elastic modulus of cartilage have been described, changes to time-dependent behavior have not yet been determined. The objective of the study was to quantify changes to cartilage material properties, including viscoelastic coefficients, with crosslinking via indentation. To accomplish this, a semi-autonomous microindentation stress relaxation protocol was first developed, validated and then applied to cartilage specimens before and after crosslinking. The change in mechanical properties with crosslinking was analyzed both in the unloading portions of the test via the Oliver-Pharr method and in the holding portion with an inverse iterative finite element model that represented cartilage as a biphasic poroviscoelastic material. Although both techniques suggested a similar increase in equilibrium modulus in the crosslinked specimens as compared to the controls, distinct differences in the control specimens were apparent, suggesting that the two different techniques may be capturing different aspects of the material behavior. No differences in time-dependent properties were observed between the crosslinked and the control specimens. These results give further insight into the effects of crosslinking in cartilage mechanical behavior. Additionally, the microindentation stress relaxation protocol may enable increased automation for high-throughput testing.

摘要

鉴于胶原结构在软骨力学中发挥的重要作用,人们对胶原交联与软骨基质力学行为之间的关系颇感兴趣。虽然已有研究描述了交联对软骨弹性模量的影响,但尚未确定其对时间依赖性行为的影响。本研究的目的是通过压痕法量化交联对软骨材料特性(包括粘弹性系数)的影响。为此,首先开发并验证了一种半自动微压痕应力松弛方案,然后将其应用于交联前后的软骨标本。通过Oliver-Pharr方法在测试的卸载部分以及使用将软骨表示为双相多孔粘弹性材料的逆迭代有限元模型在保持部分分析交联引起的力学性能变化。尽管两种技术均表明交联标本的平衡模量与对照相比有类似增加,但对照标本中存在明显差异,这表明两种不同技术可能捕捉到了材料行为的不同方面。交联标本与对照标本在时间依赖性特性方面未观察到差异。这些结果进一步深入了解了交联对软骨力学行为的影响。此外,微压痕应力松弛方案可能会提高高通量测试的自动化程度。

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