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脊柱硬脑膜本构行为的泊松比和应变率依赖性。

Poisson's ratio and strain rate dependency of the constitutive behavior of spinal dura mater.

机构信息

School of Mechanical Engineering, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Ann Biomed Eng. 2010 Mar;38(3):975-83. doi: 10.1007/s10439-010-9924-6. Epub 2010 Jan 20.

Abstract

Knowledge of the mechanical behavior of spinal dura mater is important for a number of applications including the experimental and computational modeling of physiological phenomena and spinal cord trauma. However, mechanical characterization of dura mater is relatively sparse and is further compounded by the use of the tangent modulus as the sole measure of stiffness. This study aims to provide a more complete description of the mechanical properties of spinal dura mater, including the effect of strain rate. Bovine dura mater was tested under uniaxial tension in both the longitudinal and the circumferential directions at three different strain rates; 0.01, 0.1, and 1.0 s(-1). An Ogden model was fitted to the resulting stress-stretch data. The morphology of the dura mater was assessed using Sirius red and H&E staining. No significant effect of the strain rate was found for the Ogden model parameters. Longitudinal specimens were significantly stronger and more deformable than circumferential samples, probably due to the structural arrangement of the collagen fibers. At low strains, however, the circumferential specimens were stiffer than the longitudinal ones. The findings of this study will allow more complete representations of the spinal dura mater to be developed.

摘要

了解脊柱硬脑膜的力学行为对于许多应用都很重要,包括生理现象和脊髓创伤的实验和计算建模。然而,硬脑膜的力学特性描述相对较少,并且由于仅使用切线模量作为刚度的唯一度量而变得更加复杂。本研究旨在更全面地描述脊柱硬脑膜的力学性能,包括应变率的影响。在三个不同的应变率下(0.01、0.1 和 1.0 s(-1)),对牛硬脑膜进行了单轴拉伸测试,分别沿纵向和周向进行。用 Ogden 模型拟合得到的应力-应变数据。使用 Sirius red 和 H&E 染色评估硬脑膜的形态。Ogden 模型参数未发现应变率的显著影响。纵向标本比周向标本强度更高、变形更大,这可能是由于胶原纤维的结构排列所致。然而,在低应变下,周向标本比纵向标本更硬。本研究的结果将允许更全面地描述脊柱硬脑膜。

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