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Intramural Glycosaminoglycans Distribution vs. Residual Stress in Porcine Ascending Aorta: a Computational Study*

机译:猪升主动脉壁内糖胺聚糖分布与残余应力的关系:计算研究*

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In this computational modelling work, we explored the mechanical roles that various glycosaminoglycans (GAGs) distributions may play in the porcine ascending aortic wall, by studying both the transmural residual stress as well as the opening angle in aortic ring samples. A finite element (FE) model was first constructed and validated against published data generated from rodent aortic rings. The FE model was then used to simulate the response of porcine ascending aortic rings with different GAG distributions prescribed through the wall of the aorta. The results indicated that a uniform GAG distribution within the aortic wall did not induce residual stresses, allowing the aortic ring to remain closed when subjected to a radial cut. By contrast, a heterogeneous GAG distribution led to the development of residual stresses which could be released by a radial cut, causing the ring to open. The residual stresses and opening angle were shown to be modulated by the GAG content, gradient, and the nature of the transmural distribution.
机译:在此计算建模工作中,我们通过研究跨壁残余应力以及主动脉环样品中的张开角,探索了各种糖胺聚糖(GAG)分布在猪升主动脉壁中可能发挥的机械作用。首先构建了有限元(FE)模型,并针对由啮齿动物主动脉环生成的已发布数据进行了验证。然后,将FE模型用于模拟通过主动脉壁规定的具有不同GAG分布的猪升主动脉环的反应。结果表明,主动脉壁内均匀的GAG分布不会引起残余应力,从而使主动脉环在进行径向切割时保持闭合。相比之下,不均匀的GAG分布会导致残余应力的产生,而残余应力可能会通过径向切割释放,从而导致环打开。残余应力和张开角显示为受GAG含量,梯度和透壁分布的性质调节。

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