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人体腹主动脉瘤和非动脉瘤性腹主动脉的极限力学性能测量与分析、应力-应变曲线拟合及弹性模量公式

Measurement and analysis of ultimate mechanical properties, stress-strain curve fit, and elastic modulus formula of human abdominal aortic aneurysm and nonaneurysmal abdominal aorta.

作者信息

Xiong Jiang, Wang Shen Ming, Zhou Wei, Wu Jan Guo

机构信息

Department of Vascular Surgery, Institute of Vascular Surgery, The First Affiliated Hospital, Sun Yet-sen University, Guangzhou, China PR.

出版信息

J Vasc Surg. 2008 Jul;48(1):189-95. doi: 10.1016/j.jvs.2007.12.053. Epub 2008 Apr 14.

Abstract

OBJECTIVE

The maximal strain, stress, elastic modulus, and stress-strain curve fitting of abdominal aortic aneurysms (AAA) and bidirectional nonaneurysmal abdominal aorta (NAA) were measured and analyzed to obtain the ultimate mechanical properties, the more approximate stress-strain curve-fitting, and the elastic modulus formula of AAA and NAA.

METHODS

Fourteen human AAA samples were harvested from patients undergoing elective aneurysm repair. Twelve NAA samples comprised of six longitudinal-circumferential pairs of NAA from six cadaveric organ donors were used as controls. Samples were mounted on a tensile-testing machine and force was applied until breakage occurred. The maximal strain, stress, and elastic modulus were calculated and a stress-strain curve was plotted for each sample. Exponential and second-order polynomial curves were used to fit the stress-strain curve, and the means were estimated by comparing the R2 (coefficient of determination that represents the strength of a curve fitting). Coefficients of elastic modulus were calculated and analyzed, and the incremental tendency of each modulus was evaluated by comparing the difference of coefficients.

RESULTS

There was no significant difference in maximal stress among AAA, circumferential aortic aneurysms (CAA), and longitudinal aortic aneurysms (LAA). However, AAA maximal strain was significantly less (P < .01) than that of bidirectional NAA. AAA maximal elastic modulus was significantly greater than that of CAA and LAA (P < .01 and .05, respectively). R2 of AAA for second-order polynomial curve was significantly greater (P < .05) than that for the exponential curve. For the elastic modulus formula from the second-order polynomial curve, E = 2ax + b, the average value of a for the AAA was significantly greater (P < .01) than that for the bidirectional NAA, but there was no significant difference (P > .05) among the three groups for the average value of b.

CONCLUSIONS

Tensile test measurements can successfully analyze ultimate mechanical properties of AAA and NAA. AAA is stiffer and less distensible than NAA under the same maximal stress. Second-order polynomial curve fitting provides a more approximate description for AAA stress-strain curve than exponential curve fitting does. Formula variables a of the elastic modulus formula from second-order polynomial curve fitting can determine the incremental tendency of the elastic modulus, while b has negligible effect on the incremental tendency of the elastic modulus.

摘要

目的

测量并分析腹主动脉瘤(AAA)和双向非动脉瘤性腹主动脉(NAA)的最大应变、应力、弹性模量以及应力-应变曲线拟合情况,以获取AAA和NAA的极限力学性能、更近似的应力-应变曲线拟合以及弹性模量公式。

方法

从接受择期动脉瘤修复手术的患者身上获取14个人类AAA样本。12个NAA样本由来自6名尸体器官捐赠者的6对纵向-周向NAA组成,用作对照。将样本安装在拉伸试验机上,施加力直至发生断裂。计算每个样本的最大应变、应力和弹性模量,并绘制应力-应变曲线。使用指数曲线和二阶多项式曲线拟合应力-应变曲线,并通过比较R2(代表曲线拟合强度的决定系数)来估计平均值。计算并分析弹性模量系数,并通过比较系数差异评估每个模量的增量趋势。

结果

AAA、周向主动脉瘤(CAA)和纵向主动脉瘤(LAA)之间的最大应力无显著差异。然而,AAA的最大应变显著小于双向NAA(P <.01)。AAA的最大弹性模量显著大于CAA和LAA(分别为P <.01和.05)。AAA的二阶多项式曲线的R2显著大于指数曲线(P <.05)。对于二阶多项式曲线的弹性模量公式E = 2ax + b,AAA的a平均值显著大于双向NAA(P <.01),但三组之间b的平均值无显著差异(P>.05)。

结论

拉伸试验测量能够成功分析AAA和NAA的极限力学性能。在相同的最大应力下,AAA比NAA更硬且更不易扩张。二阶多项式曲线拟合比指数曲线拟合能更近似地描述AAA应力-应变曲线。二阶多项式曲线拟合的弹性模量公式中的变量a可确定弹性模量的增量趋势,而b对弹性模量的增量趋势影响可忽略不计。

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