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Viscoelastic and failure properties of spine ligament collagen fascicles

机译:脊柱韧带胶原束的粘弹性和破坏特性

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摘要

The microstructural volume fractions, orientations, and interactions among components vary widely for different ligament types. If these variations are understood, however, it is conceivable to develop a general ligament model that is based on microstructural properties. This paper presents a part of a much larger effort needed to develop such a model. Viscoelastic and failure properties of porcine posterior longitudinal ligament (PLL) collagen fascicles were determined. A series of subfailure and failure tests were performed at fast and slow strain rates on isolated collagen fascicles from porcine lumbar spine PLLs. A finite strain quasi-linear viscoelastic model was used to fit the fascicle experimental data. There was a significant strain rate effect in fascicle failure strain (P < 0.05), but not in failure force or failure stress. The corresponding average fast-rate and slow-rate failure strains were 0.098 +/- 0.062 and 0.209 +/- 0.081. The average failure force for combined fast and slow rates was 2.25 +/- 1.17 N. The viscoelastic and failure properties in this paper were used to develop a microstructural ligament failure model that will be published in a subsequent paper.
机译:对于不同的韧带类型,微结构的体积分数,方向和组件之间的相互作用差异很大。但是,如果理解了这些变化,则可以考虑开发基于微结构特性的通用韧带模型。本文介绍了开发这种模型所需的大量工作的一部分。确定了猪后纵韧带(PLL)胶原束的粘弹性和破坏特性。对来自猪腰椎PLL的分离的胶原纤维束以快应变速率和慢应变速率进行了一系列亚失败和失败测试。有限应变准线性粘弹性模型用于拟合束实验数据。束破坏失效应变具有显着的应变率效应(P <0.05),但破坏力或破坏应力无明显影响。相应的平均快应变和慢应变破坏应变分别为0.098 +/- 0.062和0.209 +/- 0.081。组合的快速和慢速速率的平均破坏力为2.25 +/- 1.17N。本文的粘弹性和破坏特性用于建立微结构韧带破坏模型,该模型将在后续论文中发表。

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