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Computational Modeling of Human Left Ventricle to Assess the Effects of Trabeculae Carneae on the Diastolic and Systolic Functions

机译:人左心室的计算建模,评估小梁肠道对舒张和收缩功能的影响

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摘要

Trabeculae carneae are irregular structures that cover the endocardial surfaces of both ventricles and account for a significant portion of human ventricular mass. The role of trabeculae carneae in diastolic and systolic functions of the left ventricle (LV) is not well understood. Thus, the objective of this study was to investigate the functional role of trabeculae carneae in the LV. Finite element (FE) analyses of ventricular functions were conducted for three different models of human LV derived from high-resolution magnetic resonance imaging (MRI). The first model comprised trabeculae carneae and papillary muscles, while the second model had papillary muscles and partial trabeculae carneae, and the third model had a smooth endocardial surface. We customized these patient-specific models with myofiber architecture generated with a rule-based algorithm, diastolic material parameters of Fung strain energy function derived from biaxial tests and adjusted with the empirical Klotz relationship, and myocardial contractility constants optimized for average normal ejection fraction (EF) of the human LV. Results showed that the partial trabeculae cutting model had enlarged end-diastolic volume (EDV), reduced wall stiffness, and even increased end-systolic function, indicating that the absence of trabeculae carneae increased the compliance of the LV during diastole, while maintaining systolic function.
机译:Trabeculae Carneae是不规则的结构,其覆盖了脑室的内膜表面,并占人心室肿块的重要部分。 Trabecula肠道在左心室(LV)的舒张和收缩功能中的作用尚不清楚。因此,本研究的目的是研究Trabeculae Carneae在LV中的功能作用。对来自高分辨率磁共振成像(MRI)的三种不同模型的人LV进行心室功能的有限元素分析。第一款模型包括小胸肉和乳头状肌肉,而第二种模型具有乳头状肌肉和部分小梁肠道,第三种模型具有平滑的内膜表面。我们使用基于规则的算法产生的MyoFiber架构,舒张材料参数衍生自双轴试验的舒张材料参数,并用经验性Klotz关系调整,对平均正常喷射部分优化的心肌收缩性常数进行调整(EF )人类lv。结果表明,部分小梁切割模型具有扩大的端舒张性(EDV),降低壁刚度,甚至增加的末端收缩功能,表明没有小梁肠道在舒张期间增加了LV的依从性,同时保持收缩功能。

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