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Material properties of different layers of aorta

机译:主动脉不同层的材料特性

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The arterial wall has been considered as a single homogeneous layer vessel in a wide range of biomechanical modeling of aorta from traumatic injury to stent grafts, ignoring the fact that arteries are composed of distinct anatomical layers with different mechanical characteristics. In this study, changes in the mechanical properties of porcine thoracic aorta wall in the radial direction were characterized using a custom-made nanoindentation technique and a quasi-linear viscoelastic model. Two layers of equal thickness were mechanically distinguishable based on the radial variations in the instantaneous Young's modulus E and reduced relaxation function G(t). The results showed that the outer half layer was stiffer and showed less relaxation than the inner half one. These layers may correspond to media and adventitia in the specimens.
机译:在从创伤到支架移植的各种主动脉生物力学建模中,动脉壁均被视为单一的均质层血管,而忽略了动脉由具有不同机械特性的独特解剖层组成的事实。在这项研究中,使用定制的纳米压痕技术和准线性粘弹性模型表征了猪胸主动脉壁在径向上的力学性能变化。基于瞬时杨氏模量E和减小的松弛函数G(t)的径向变化,可以在机械上区分两个相等厚度的层。结果表明,外层比内层更硬,显示的松弛较小。这些层可能对应于样本中的中膜和外膜。

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