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A comparative study on the mechanical properties of the umbilical vein and umbilical artery under uniaxial loading

机译:单轴载荷下脐静脉和脐动脉力学特性的比较研究

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Purpose: Coronary Artery Disease (CAD) is the main cause of mortalities worldwide. The Saphenous Vein (SV) and Umbilical Vein (UV) are the most common veins using for treatment as a Coronary Artery Bypass Graft (CABG). The mechanical properties of UV owing to its long-term patency for CABG are deemed important. However, there is a lack of knowledge on the mechanical properties of UV. In this study, the linear (Young's modulus and maximum stress) and nonlinear (hyperelastic material coefficients) mechanical properties of 8 human umbilical vein and umbilical artery (UA) are investigated using a series of uniaxial tensile tests. The nonlinear mechanical behavior of UV/UA is computationally investigated using hyperelastic strain energy density functions, including Mooney-Rivlin and Ogden. A hyperelastic constitutive model is selected to best fit the axial behavior of the UV/UA. Results: The results reveal that the Young's modulus and maximum stress of UA are 342% and 19% more than that of UV, respectively. The Mooney-Rivlin material model is selected to represent the nonlinear behavior of the UV and UA which can be used in future biomechan-ical simulations of the umbilical vein and umbilical artery. Conclusions: The higher mechanical properties of umbilical artery compared to umbilical vein might have related to the amount of elastin and collagen content on the UA wall. The results of this study could be utilized to understand the extension and rupture mechanism of UV and UA, and has implications for interventions and surgeries, including balloon-angioplasty, bypass, and stenting.
机译:目的:冠状动脉疾病(CAD)是全球死亡的主要原因。隐静脉(SV)和脐静脉(UV)是最常用的静脉,可作为冠状动脉旁路移植术(CABG)进行治疗。由于紫外线对于CABG的长期开放性,其机械性能被认为很重要。但是,缺乏有关紫外线机械性能的知识。在这项研究中,使用一系列单轴拉伸试验研究了8条人体脐静脉和脐动脉(UA)的线性(杨氏模量和最大应力)和非线性(超弹性材料系数)力学性能。使用超弹性应变能密度函数(包括Mooney-Rivlin和Ogden)对UV / UA的非线性力学行为进行了计算研究。选择超弹性本构模型以最适合UV / UA的轴向行为。结果:结果表明,UA的杨氏模量和最大应力分别比UV高342%和19%。选择Mooney-Rivlin材料模型来表示UV和UA的非线性行为,这些模型可用于将来的脐静脉和脐动脉生物力学模拟。结论:脐动脉比脐静脉具有更高的力学性能可能与UA壁上的弹性蛋白含量和胶原蛋白含量有关。这项研究的结果可用于了解UV和UA的扩展和破裂机制,并且对包括球囊血管成形术,旁路和支架置入术在内的干预和手术具有重要意义。

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