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首页> 外文期刊>Journal of Biomechanics >The effects of aneurysm on the biaxial mechanical behavior of human abdominal aorta
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The effects of aneurysm on the biaxial mechanical behavior of human abdominal aorta

机译:动脉瘤对人腹主动脉双轴力学行为的影响

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The biomechanical response of normal and pathologic human abdominal aortic tissue to uniaxial loading conditions is insufficient for the characterization of its three-dimensional (3D) mechanical behavior. Planar biaxial mechanical evaluation allows for 3D constitutive modeling of nearly incompressible tissues, as well as the investigation of the nature of mechanical anisotropy. In the current study, 26 abdominal aortic aneurysm (AAA) tissue samples and 8 age-matched (> 60 years of age) nonaneurysmal abdominal aortic (AA) tissue samples were obtained and tested using a tension-controlled biaxial testing protocol. Graphical response functions (Sun et al., 2003. J. Biomech. Eng. 125, 372-380) were used as a guide to describe the pseudo-elastic response of AA and AAA. Based on the observed pseudo-elastic response, a four-parameter exponential strain energy function developed by Vito (1990. J. Biomech. Eng. 112, 153-159) was used from which both an individual specimen and group material parameter sets were determined for both AA and AAA. Peak Green strain values in the circumferential (E-theta theta,E-max) and longitudinal (E-LL,E-max) directions under an equibiaxial tension of 120 N/m were also compared. The strain energy function fit all of the individual specimens well with an average R-2 of 0.95 +/- 0.02 and 0.90 +/- 0.02 (mean +/- SEM) for the AA and AAA groups, respectively. The average E-theta theta,E-max at 200 N/m equibiaxial tension was found to be significantly smaller for AAAs as compared to AAs (0.07 +/- 0.01 versus 0.13 +/- 0.03, respectively; p < 0.01). There was also a pronounced increase in the circumferential stiffness for AAA tissue as compared to AA tissue, indicating a larger degree of anisotropy for this tissue as compared to age-matched AA tissue. We also observed that the four-parameter Fung-elastic model was not able to fit the AAA tissue mechanical response using physically realistic material parameter values. It was concluded that aneurysmal degeneration of the abdominal aorta is associated with an increase in mechanical anisotropy, with preferential stiffening in the circumferential direction. (c) 2005 Elsevier Ltd. All rights reserved.
机译:正常和病理性人类腹主动脉组织对单轴负荷条件的生物力学响应不足以表征其三维(3D)力学行为。平面双轴力学评估允许对几乎不可压缩的组织进行3D本构模型,并研究机械各向异性的性质。在本研究中,获得了26例腹主动脉瘤(AAA)组织样本和8例年龄相匹配(> 60岁)的非动脉瘤性腹主动脉(AA)组织样本,并使用张力控制双轴测试方案进行了测试。图形响应函数(Sun et al。,2003. J. Biomech。Eng。125,372-380)被用作描述AA和AAA的拟弹性响应的指南。根据观察到的拟弹性响应,使用由Vito(1990. J. Biomech。Eng。112,153-159)开发的四参数指数应变能函数,从中确定单个样本和组材料参数集适用于AA和AAA。还比较了在120 N / m的等双轴张力下,周向(E-theta,E-max)和纵向(E-LL,E-max)的峰值Green应变值。应变能函数非常适合所有单个样本,AA和AAA组的平均R-2分别为0.95 +/- 0.02和0.90 +/- 0.02(平均+/- SEM)。发现与AA相比,对于AAA,在200 N / m等双轴张力下的平均E-theta,E-max显着较小(分别为0.07 +/- 0.01和0.13 +/- 0.03; p <0.01)。与AA组织相比,AAA组织的周向刚度也明显增加,这表明与年龄匹配的AA组织相比,该组织的各向异性程度更高。我们还观察到,使用物理现实的材料参数值,四参数的Fung弹性模型无法拟合AAA组织的机械响应。结论是,腹主动脉的动脉瘤变性与机械各向异性的增加有关,并在圆周方向上优先变硬。 (c)2005 Elsevier Ltd.保留所有权利。

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