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Scalable BDDC Algorithms for Cardiac Electromechanical Coupling

机译:心脏机电耦合的可扩展BDDC算法

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The spread of electrical excitation in the cardiac muscle and the subsequent contraction-relaxation process is quantitatively described by the cardiac electromechanical coupling model. The electrical model consists of the Bidomain system, which is a degenerate parabolic system of two nonlinear partial differential equations (PDEs) of reaction-diffusion type, describing the evolution in space and time of the intra- and extracellular electric potentials. The PDEs are coupled through the reaction term with a stiff system of ordinary differential equations (ODEs), the membrane model, which describes the flow of the ionic currents through the cellular membrane and the dynamics of the associated gating variables. The mechanical model consists of the quasi-static finite elasticity system, modeling the cardiac tissue as a nearly-incompressible transversely isotropic hyperelastic material, and coupled with a system of ODEs accounting for the development of biochemically generated active force.
机译:心脏机电耦合模型定量描述了心肌中电刺激的扩散以及随后的收缩松弛过程。电气模型由双域系统组成,该系统是两个具有反应扩散类型的非线性偏微分方程(PDE)的简并抛物线系统,描述了细胞内和细胞外电位的时空变化。 PDE通过反应项与常微分方程(ODE)的刚性系统,膜模型耦合,该模型描述了离子电流通过细胞膜的流动以及相关门控变量的动力学。力学模型由准静态有限弹性系统组成,将心脏组织建模为几乎不可压缩的横向各向同性超弹性材料,并与考虑到生化产生的主动力发展的ODE系统耦合。

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