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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The Biaxial Biomechanical Behavior of Abdominal Aortic Aneurysm Tissue
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The Biaxial Biomechanical Behavior of Abdominal Aortic Aneurysm Tissue

机译:腹主动脉瘤组织的双轴生物力学行为

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Rupture of the abdominal aortic aneurysm (AAA) occurs when the local wall stress exceeds the local wall strength. Knowledge of AAA wall mechanics plays a fundamental role in the development and advancement of AAA rupture risk assessment tools. Therefore, the aim of this study is to evaluate the biaxial mechanical properties of AAA tissue. Multiple biaxial test protocols were performed on AAA samples harvested from 28 patients undergoing open surgical repair. Both the Tangential Modulus (TM) and stretch ratio (lambda) were recorded and compared in both the circumferential (I ') and longitudinal (L) directions at physiologically relevant stress levels, the influence of patient specific factors such as sex, age AAA diameter and status were examined. The biomechanical response was also fit to a hyperplastic material model. The AAA tissue was found to be anisotropic with a greater tendency to stiffen in the circumferential direction compared to the longitudinal direction. An anisotropic hyperelastic constitutive model represented the data well and the properties were not influenced by the investigated patient specific factors however, a future study utilizing a larger cohort of patients is warranted to confirm these findings. This work provides further insights on the biomechanical behavior of AAA and may be useful in the development of more reliable rupture risk assessment tools.
机译:当局部壁应力超过局部壁强度时,发生腹主动脉瘤(AAA)破裂。 AAA墙体力学知识对AAA破裂风险评估工具的开发和发展起着至关重要的作用。因此,本研究的目的是评估AAA组织的双轴力学性能。对从28例接受开放式外科手术修复的患者收集的AAA样品进行了多个双轴测试方案。记录切向模量(TM)和拉伸比(λ)并在生理相关的应力水平下在圆周(I')和纵向(L)方向上进行比较,并比较患者特定因素(例如性别,AAA直径)的影响和状态进行了检查。生物力学响应也适合增生材料模型。发现AAA组织是各向异性的,与纵向相比,其在周向上变硬的趋势更大。各向异性的超弹性本构模型很好地表示了数据,并且其性能不受所研究的患者特定因素的影响,但是,有必要利用大量患者进行进一步的研究以证实这些发现。这项工作提供了有关AAA的生物力学行为的进一步见解,可能对开发更可靠的破裂风险评估工具很有用。

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