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Analysis of left ventricular behaviour in diastole by means of finite element method.

机译:心脏舒张期左心室行为的有限元分析。

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摘要

The human left ventricle in diastole can be modelled as a passive structure with incremental internal pressure change being considered as the load. Recent developments in engineering stress analysis provide techniques for predicting the behaviour of structures with complex geometry and material properties, as is the case with the left ventricle. That which is most appropriate is the finite element method which requires the use of a large digital computer. The ventricles of 2 patients have been studied during diastole, the geometries having been derived from cineangiographic data (biplane), and the pressure by means of catheter-tip manometers. Various descriptions of myocardial stress/strain relations have been assumed and applied to the left ventricular wall in order to obtain the best match between the calculated and observed deformation patterns. The manner in which the value and distribution of stiffness in the left ventricle influences the shape change can therefore be determined, and possible clinical implications deduced.
机译:可以将舒张期中的人类左心室建模为被动结构,并以增加的内部压力变化作为负荷。工程应力分析的最新发展提供了预测具有复杂几何形状和材料特性的结构行为的技术,左心室就是这种情况。最合适的是需要使用大型数字计算机的有限元方法。在舒张期对2名患者的心室进行了研究,其几何形状是根据血管造影数据(双翼飞机)和导管尖端压力计得出的压力得出的。为了获得计算出的和观察到的变形模式之间的最佳匹配,已经假定了各种心肌应力/应变关系的描述,并将其应用于左心室壁。因此,可以确定左心室的硬度值和分布影响形状变化的方式,并推断出可能的临床意义。

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