心脏周期中不同形状心脏瓣膜血流速度和二尖瓣位移的预测

Mohd Azrul Hisham Mohd Adib, Faradila Naim, N. Hasni, K. Osman
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引用次数: 7

摘要

尽管医疗技术一直在进步和进步,但心脏病病例的数量每天都在增加。在本文中,研究的目的是探讨不同形状的简化二维心脏瓣膜小叶在舒张状态下对血流速度和小叶位移的影响。建立了四种不同形状的心脏瓣膜,并利用流固耦合(FSI)进行了仿真。从得到的结果来看,与其他三种形状相比,三角形小叶在一秒钟内的血流速度变化和小叶位移变化最大。结果模拟结果表明,血液进入左心室时,小叶后形成大涡,小叶变形,与文献结果一致。本文研究了四种不同形状的二尖瓣二维模型,以期在今后的人工瓣膜设计中应用最合适的形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction on Behaviour of Blood Velocity and Mitral Leaflet Displacement in the Different Shapes of Heart Valve during Cardiac Cycle
The number of cases for heart diseases is increasing every day, even though medication technologies are always improving and moving forward. In this paper, the objectives of the study are to investigate the effect of blood flow velocity and leaflet displacement using different shapes of simplified two dimensional heart valve leaflets in the diastole condition. Four different shapes of heart valve were created and the simulation was performed by using Fluid Structure Interaction (FSI). From the results obtained, the triangle shaped leaflet showed it had the highest blood velocity changes and leaflets displacement changes in a one second period when compared to the other three shapes. The outcome simulation result shows that a large vortex formed behind the leaflet and leaflet deformed when the blood flow into left ventricle is agreed with the results in literature. In conclusion, four different shapes of two dimensional model of mitral valve has been developed and investigated for applying the most suitable shape in future artificial valve design.
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