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Theoretical study on the effects of pressure-induced remodeling on geometry and mechanical non-homogeneity of conduit arteries

机译:压力引起的重塑对导管动脉几何形状和机械非均匀性影响的理论研究

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摘要

A structure-based mathematical model for the remodeling of arteries in response to sustained hypertension is proposed. The model is based on the concepts of volumetric growth and constitutive modeling of the arterial tissue within the framework of the constrained mixture theory. The major novel result of this study is that remodeling is associated with a local change in the mass fractions of the wall constituents that ultimately leads to mechanical non-homogeneity of the arterial wall. In the new homeostatic state that develops after a sustained increase in arterial pressure, the mass fraction of elastin decreases from the intimal side to the adventitial side of arteries, while the collagen fraction manifests an opposite trend. The results obtained are supported by some experimental observations reported in the literature.
机译:提出了一种基于结构的数学模型,用于响应持续性高血压对动脉进行重塑。该模型基于受约束混合物理论框架内的动脉组织的体积增长和本构模型的概念。这项研究的主要新颖结果是,重塑与壁成分质量分数的局部变化有关,最终导致动脉壁机械不均匀。在动脉压持续升高后形成的新的体内平衡状态下,弹性蛋白的质量分数从动脉内膜侧到外膜侧降低,而胶原蛋白部分则呈现相反的趋势。所获得的结果得到文献报道的一些实验观察的支持。

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