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Sensitivity of left ventricular mechanics to myofiber architecture: A finite element study

机译:左心室力学对肌纤维结构的敏感性:有限元研究

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摘要

The goal of this study was to investigate the sensitivity of computational models of the heart to their incorporated myofiber architecture during diastole. This architecture plays a critical role in the mechanical and electrical function of the heart and changes after myocardial tissue remodeling, which is associated with some of the most common heart diseases. In this study, a left ventricular finite element model of the porcine heart was created using magnetic resonance imaging, which represents the in vivo geometry. Various myofiber architectures were assigned to the finite element mesh, in the form of fiber and sheet angles. A structural-based material law was used to model the behavior of passive myocardium and its parameters were estimated using measured in vivo strains and cavity volume from magnetic resonance imaging. The final results showed noticeable sensitivity of the stress distribution to both the fiber and sheet angle distributions. This implies that a structural-based material law that takes into account the effect of both fiber and sheet angle distributions should be used. The results also show that although the simulation results improve using available data from histological studies of myocardial structure, the need for individualized myofiber architecture data is crucial.
机译:这项研究的目的是调查心脏的计算模型对其舒张期合并的肌纤维结构的敏感性。这种结构在心脏的机械和电功能中起着至关重要的作用,并且在心肌组织重塑后会发生变化,这与一些最常见的心脏病有关。在这项研究中,使用磁共振成像创建了猪心脏的左心室有限元模型,该模型代表了体内几何形状。将各种肌纤维结构以纤维和板角的形式分配给有限元网格。使用基于结构的材料定律对被动心肌的行为进行建模,并使用磁共振成像中测得的体内应变和腔体积估算其参数。最终结果表明,应力分布对纤维和板角分布均具有明显的敏感性。这意味着应该使用同时考虑纤维和片材角度分布影响的基于结构的材料定律。结果还表明,尽管使用心肌结构组织学研​​究获得的数据可以改善模拟结果,但个性化肌纤维结构数据的需求至关重要。

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