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A modified Holzapfel-Ogden law for a residually stressed finite strain model of the human left ventricle in diastole

机译:修正的Holzapfel-Ogden定律用于舒张期人左心室的残余应力有限应变模型

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In this work, we introduce amodified Holzapfel- Ogden hyperelastic constitutive model for ventricular myocardium that accounts for residual stresses, and we investigate the effects of residual stresses in diastole using a magnetic resonance imaging–derived model of the human left ventricle (LV). We adopt an invariant-based constitutive modelling approach and treat the left ventricular myocardium as a non-homogeneous, fibre-reinforced, incompressible material. Because in vivo images provide the configuration of the LV in a loaded state even in diastole, an inverse analysis is used to determine the corresponding unloaded reference configuration. The residual stress in this unloaded state is estimated by two different methods. One is based on three-dimensional strain measurements in a local region of the canine LV, and the other uses the opening angle method for a cylindrical tube. We find that including residual stress in the model changes the stress distributions across the myocardium and that whereas both methods yield qualitatively similar changes, there are quantitative differences between the two approaches. Although the effects of residual stresses are relatively small in diastole, the model can be extended to explore the full impact of residual stress on LV mechanical behaviour for the whole cardiac cycle as more experimental data become available. In addition, although not considered here, residual stresses may also play a larger role in models that account for tissue growth and remodelling.
机译:在这项工作中,我们介绍了一种修正的Holzapfel-Ogden室壁心肌超弹性本构模型,该模型考虑了残余应力,并使用磁共振成像衍生的人左心室(LV)模型研究了舒张压中残余应力的影响。我们采用基于不变的本构模型方法,并将左心室心肌视为非均质的,纤维增强的不可压缩材料。由于体内图像即使在舒张期也能在负载状态下提供LV的构型,因此使用逆分析来确定相应的未负载参考构型。在这种卸载状态下的残余应力可以通过两种不同的方法进行估算。一种基于犬LV局部区域的三维应变测量,另一种基于圆柱管的开角法。我们发现,在模型中包括残余应力会改变整个心肌的应力分布,虽然两种方法在质量上都有相似的变化,但两种方法之间存在定量差异。尽管舒张压中残余应力的影响相对较小,但随着更多实验数据的获得,可以扩展该模型以探索残余应力对整个心动周期对左室机械行为的完全影响。此外,尽管此处未考虑,但残余应力在考虑组织生长和重塑的模型中也可能发挥更大的作用。

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