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A mixed finite element formulation for a non-linear, transversely isotropic material model for the cardiac tissue

机译:用于心脏组织的非线性横向各向同性材料模型的混合有限元公式

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In this paper we present a mixed finite element method for modeling the passive properties of the myocardium. The passive properties are described by a non-linear, transversely isotropic, hyperelastic material model, and the myocardium is assumed to be almost incompressible. Single-field, pure displacement-based formulations are known to cause numerical difficulties when applied to incompressible or slightly compressible material cases. This paper presents an alternative approach in the form of a mixed formulation, where a separately interpolated pressure field is introduced as a primary unknown in addition to the displacement field. Moreover, a constraint term is included in the formulation to enforce (almost) incompressibility. Numerical results presented in the paper demonstrate the difficulties related to employing a pure displacement-based method, applying a set of physically relevant material parameter values for the cardiac tissue. The same problems are not experienced for the proposed mixed method. We show that the mixed formulation provides reasonable numerical results for compressible as well as nearly incompressible cases, also in situations of large fiber stretches. There is good agreement between the numerical results and the underlying analytical models.
机译:在本文中,我们提出了一种用于建模心肌被动特性的混合有限元方法。被动特性由非线性,横观各向同性的超弹性材料模型描述,并且假定心肌几乎不可压缩。已知单场基于纯位移的配方在应用于不可压缩或轻微可压缩的材料箱时会造成数值困难。本文提出了一种混合配方形式的替代方法,其中除了位移场之外,还引入了一个单独的内插压力场作为主要未知数。而且,在配方中包括约束项以强制(几乎)不可压缩。本文中提供的数值结果证明了采用基于位移的纯方法,对心脏组织应用一组物理上相关的材料参数值时遇到的困难。所提出的混合方法没有遇到相同的问题。我们表明,混合配方为可压缩以及几乎不可压缩的情况提供了合理的数值结果,在较大的纤维拉伸情况下也是如此。数值结果与基础分析模型之间有很好的一致性。

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