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首页> 外文期刊>Biomechanics and modeling in mechanobiology >About prestretch in homogenized constrained mixture models simulating growth and remodeling in patient-specific aortic geometries
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About prestretch in homogenized constrained mixture models simulating growth and remodeling in patient-specific aortic geometries

机译:关于均质约束混合物模型中的预拉伸,模拟患者特定主动脉几何形状的生长和重塑

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摘要

Evolution of mechanical and structural properties in the Ascending Thoracic Aorta (ATA) is the results of complex mechanobiological processes. In this work, we address some numerical challenges in order to elaborate computational models of these processes. For that, we extend the state of the art of homogenized constrained mixture (hCM) models. In these models, prestretches are assigned to the mixed constituents in order to ensure local mechanical equilibrium macroscopically, and to maintain a homeostatic level of tension in collagen fibers microscopically. Although the initial prestretches were assumed as homogeneous in idealized straight tubes, more elaborate prestretch distributions need to be considered for curved geometrical models such as patient-specific ATA. Therefore, we introduce prestretches having a three-dimensional gradient across the ATA geometry in the homeostatic reference state. We test different schemes with the objective to ensure stable growth and remodeling (GR) simulations on patient-specific curved vessels. In these simulations, aneurysm progression is triggered by tissue changes in the constituents such as mass degradation of intramural elastin. The results show that the initial prestretches are not only critical for the stability of numerical simulations, but they also affect the GR response. Eventually, we submit that initial conditions required for GR simulations need to be identified regionally for ensuring realistic patient-specific predictions of aneurysm progression.
机译:升胸主动脉 (ATA) 的机械和结构特性的演变是复杂的机械生物学过程的结果。在这项工作中,我们解决了一些数值挑战,以详细说明这些过程的计算模型。为此,我们扩展了均质约束混合物 (hCM) 模型的最新技术。在这些模型中,预拉伸被分配给混合成分,以确保宏观上的局部机械平衡,并在微观上保持胶原纤维的稳态张力水平。尽管在理想化的直管中,初始预拉伸被认为是均匀的,但对于弯曲的几何模型(例如患者特定的 ATA),需要考虑更精细的预拉伸分布。因此,我们引入了在稳态参考状态下在ATA几何结构上具有三维梯度的预拉伸。我们测试了不同的方案,目的是确保在患者特定的弯曲血管上进行稳定的生长和重塑(G&R)模拟。在这些模拟中,动脉瘤进展是由成分中的组织变化触发的,例如壁内弹性蛋白的质量降解。结果表明,初始预拉伸不仅对数值模拟的稳定性至关重要,而且对G&R响应也具有重要影响。最终,我们认为需要在区域范围内确定G&R模拟所需的初始条件,以确保对动脉瘤进展的现实患者特异性预测。

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