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Prefailure and Failure Mechanics of the Porcine Ascending Thoracic Aorta: Experiments and a Multiscale Model

机译:猪升胸主动脉的失效前和失效机制:实验和多尺度模型

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摘要

Ascending thoracic aortic aneurysms (ATAA) have a high propensity for dissection, which occurs when the hemodynamic load exceeds the mechanical strength of the aortic media. Despite our recognition of this essential fact, the complex architecture of the media has made a predictive model of medial failure—even in the relatively simple case of the healthy vessel—difficult to achieve. As a first step towards a general model of ATAA failure, we characterized the mechanical behavior of healthy ascending thoracic aorta (ATA) media using uniaxial stretch-to-failure in both circumferential (n = 11) and axial (n = 11) orientations and equibiaxial extensions (n = 9). Both experiments demonstrated anisotropy, with higher tensile strength in the circumferential direction (2510 ± 439.3 kPa) compared to the axial direction (750 ± 102.6 kPa) for the uniaxial tests, and a ratio of 1.44 between the peak circumferential and axial loads in equibiaxial extension. Uniaxial tests for both orientations showed macroscopic tissue failure at a stretch of 1.9. A multiscale computational model, consisting of a realistically aligned interconnected fiber network in parallel with a neo-Hookean solid, was used to describe the data; failure was modeled at the fiber level, with an individual fiber failing when stretched beyond a critical threshold. The best-fit model results were within the 95% confidence intervals for uniaxial and biaxial experiments, including both prefailure and failure, and were consistent with properties of the components of the ATA media.
机译:升主动脉瘤(ATAA)具有较高的解剖倾向,这在血液动力学负荷超过主动脉介质的机械强度时发生。尽管我们认识到了这一基本事实,但复杂的介质结构已使介质失效的预测模型(即使在相对简单的健康血管情况下)也难以实现。作为建立ATAA失效一般模型的第一步,我们通过沿周向(n = 11)和轴向(n = 11)方向进行单轴拉伸至破坏来表征健康上升胸主动脉(ATA)的力学行为。等双轴扩展(n = 9)。两项实验均显示出各向异性,单轴测试的轴向拉伸强度比轴向方向的拉伸强度高(2510±439.3 kPa),轴向拉伸强度则为750±102.6 kPa,等轴伸长率与轴向载荷之比为1.44 。两种方向的单轴测试均显示宏观组织破坏为1.9。使用多尺度计算模型来描述数据,该模型由逼真的对齐的互连光纤网络与新霍克实心平行组成。失效是在光纤级别建模的,单个光纤在超过临界阈值时会失效。最佳拟合模型的结果在单轴和双轴实验的95%置信区间内,包括故障前和故障,并且与ATA介质组件的属性一致。

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