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Effect of transmurally heterogeneous myocyte excitation-contraction coupling on canine left ventricular electromechanics.

机译:跨壁异种肌细胞兴奋-收缩偶联对犬左心室机电的影响。

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摘要

The excitation-contraction coupling properties of cardiac myocytes isolated from different regions of the mammalian left ventricular wall have been shown to vary considerably, with uncertain effects on ventricular function. We embedded a cell-level excitation-contraction coupling model with region-dependent parameters within a simple finite element model of left ventricular geometry to study effects of electromechanical heterogeneity on local myocardial mechanics and global haemodynamics. This model was compared with one in which heterogeneous myocyte parameters were assigned randomly throughout the mesh while preserving the total amount of each cell subtype. The two models displayed nearly identical transmural patterns of fibre and cross-fibre strains at end-systole, but showed clear differences in fibre strains at earlier points during systole. Haemodynamic function, including peak left ventricular pressure, maximal rate of left ventricular pressure development and stroke volume, were essentially identical in the two models. These results suggest that in the intact ventricle heterogeneously distributed myocyte subtypes primarily impact local deformation of the myocardium, and that these effects are greatest during early systole.
机译:从哺乳动物左心室壁的不同区域分离出的心肌细胞的兴奋收缩耦合特性已显示出很大的变化,对心室功能的影响尚不确定。我们在左心室几何的简单有限元模型中嵌入了具有区域相关参数的细胞水平的激发-收缩耦合模型,以研究机电异质性对局部心肌力学和整体血流动力学的影响。将该模型与其中在保留每个细胞亚型总量的同时在整个网格中随机分配异构肌细胞参数的模型进行了比较。两种模型在收缩末期显示出几乎相同的纤维应变和跨纤维应变的透壁模式,但在收缩期的较早点显示出明显的纤维应变差异。血流动力学功能,包括峰值左心室压力,最大左心室压力发生率和中风量,在两个模型中基本相同。这些结果表明,在完整的心室中,异质分布的心肌细胞亚型主要影响心肌的局部变形,并且这些作用在心脏收缩早期最为明显。

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