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MICROSTRUCTURALLY MOTIVATED CONSTITUTIVE MODELS FOR MOUSE ARTERIES

机译:小鼠动脉的微结构化本构模型

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Vascular remodeling occurs as cells sense changes in their mechanical environment. Thus, quantifying the cells' local environment in terms of stress and strain distributions is an important aspect in studies of vascular remodeling. Knowledge of the constitutive behavior of vessel will allow the local stresses and strains to be calculated given applied loads and geometry. The goal of this study is to determine material parameters for several constitutive models by fitting biaxial testing data from mouse carotid arteries cultured under different axial loading conditions [1].
机译:当细胞感觉到其机械环境的变化时,就会发生血管重塑。因此,根据压力和应变分布对细胞的局部环境进行量化是研究血管重塑的重要方面。了解船舶的本构行为将允许在给定施加的载荷和几何形状的情况下计算局部应力和应变。这项研究的目的是通过拟合在不同轴向载荷条件下培养的小鼠颈动脉的双轴测试数据来确定几种本构模型的材料参数[1]。

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