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猪胸主动脉各向异性力学响应的实验研究。

Experimental Investigation of the Anisotropic Mechanical Response of the Porcine Thoracic Aorta.

机构信息

Department of Mechanical Engineering, Texas A&M University, 100 Mechanical Engineering Office Building, College Station, TX, 77843-3123, USA.

出版信息

Ann Biomed Eng. 2022 Apr;50(4):452-466. doi: 10.1007/s10439-022-02931-2. Epub 2022 Feb 28.

Abstract

Knowledge of the mechanical properties of blood vessels and determining appropriate constitutive relations are essential in developing methodologies for accurate prognosis of vascular diseases. We examine the directional variation of the mechanical properties of the porcine thoracic aorta by performing uniaxial extension tests on dumbbell-shaped specimens cut at five different orientations with respect to the circumferential direction of the aorta. Specimens in all the orientations considered exhibit a nonlinear constitutive response that is typical of collagenous soft tissues. Shear strain under uniaxial extension demonstrates clearly discernible anisotropy of the mechanical response of the porcine aorta, and samples oriented at 45[Formula: see text] and 60[Formula: see text] with respect to the circumferential direction show a peculiar crescent-shaped shear strain-nominal stretch response not displayed by axial and circumferential specimens. Failure stress indicates decreasing tensile strength of the porcine aortic wall from the circumferential direction to the longitudinal direction. Furthermore, we determine the material parameters for the four-fiber-family and Gasser-Holzapfel-Ogden models from the mechanical response data of the circumferential and longitudinal specimens. It is shown how the material parameters derived from the uniaxial tests on circumferential and longitudinal specimens are insufficient to characterize the response of off-axis specimens.

摘要

了解血管的力学性能并确定合适的本构关系对于开发准确预测血管疾病的方法至关重要。我们通过对沿主动脉周向以五个不同方向切割的哑铃形样本进行单轴拉伸试验,研究了猪胸主动脉力学性能的各向异性变化。所有考虑的方向的样本都表现出典型的胶原质软组织的非线性本构响应。单轴拉伸下的剪切应变清楚地显示了猪主动脉力学响应的各向异性,相对于周向方向以 45°和 60°取向的样本显示出特殊的新月形剪切应变-名义拉伸响应,而轴向和周向样本则没有显示这种响应。失效应力表明,从周向到纵向,猪主动脉壁的拉伸强度逐渐降低。此外,我们从周向和纵向样本的力学响应数据中确定了四纤维族和 Gasser-Holzapfel-Ogden 模型的材料参数。结果表明,从周向和纵向样本的单轴试验中得出的材料参数不足以描述偏轴样本的响应。

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