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首页> 外文期刊>Journal of Biomechanics >A novel porous mechanical framework for modelling the interaction between coronary perfusion and myocardial mechanics
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A novel porous mechanical framework for modelling the interaction between coronary perfusion and myocardial mechanics

机译:一种新型的多孔机械框架,用于建模冠状动脉灌注与心肌力学之间的相互作用

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摘要

The strong coupling between the flow in coronary vessels and the mechanical deformation of the myocardial tissue is a central feature of cardiac physiology and must therefore be accounted for by models of coronary perfusion. Currently available geometrically explicit vascular models fail to capture this interaction satisfactorily, are numerically intractable for whole organ simulations, and are difficult to parameterise in human contexts. To address these issues, in this study, a finite element formulation of an incompressible, poroelastic model of myocardial perfusion is presented. Using high-resolution ex vivo imaging data of the coronary tree, the permeability tensors of the porous medium were mapped onto a mesh of the corresponding left ventricular geometry. The resultant tensor field characterises not only the distinct perfusion regions that are observed in experimental data, but also the wide range of vascular length scales present in the coronary tree, through a multi-compartment porous model. Finite deformation mechanics are solved using a macroscopic constitutive law that defines the coupling between the fluid and solid phases of the porous medium. Results are presented for the perfusion of the left ventricle under passive inflation that show wall-stiffening associated with perfusion, and that show the significance of a non-hierarchical multi-compartment model within a particular perfusion territory.
机译:冠状血管中的血流与心肌组织的机械变形之间的强耦合是心脏生理的主要特征,因此必须通过冠状动脉灌注模型加以解释。当前可用的几何上明确的血管模型不能令人满意地捕获这种相互作用,对于整个器官模拟在数值上是棘手的,并且难以在人类环境中进行参数化。为了解决这些问题,在这项研究中,提出了心肌灌注的不可压缩的多孔弹性模型的有限元公式。使用冠状动脉树的高分辨率离体成像数据,将多孔介质的渗透性张量映射到相应左心室几何形状的网格上。通过多隔室多孔模型,所得张量场不仅表征实验数据中观察到的不同灌注区域,而且还表征冠状树中存在的大范围血管长度尺度。有限变形力学是使用宏观本构定律求解的,该定律定义了多孔介质的液相和固相之间的耦合。给出了在被动充气下左心室灌注的结果,该结果显示了与灌注相关的壁硬化,并且显示了在特定灌注区域内非分层多室模型的重要性。

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