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首页> 外文期刊>Physics of fluids >Effect of the prosthetic mitral valve on vortex dynamics and turbulence of the left ventricular flow
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Effect of the prosthetic mitral valve on vortex dynamics and turbulence of the left ventricular flow

机译:人工二尖瓣对左心室涡流动力学和湍流的影响

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Mechanical heart valves implanted in mitral position have a great effect on the ventricular flow. Changes include alteration of the dynamics of the vortical structures generated during the diastole and the onset of turbulence, possibly affecting the efficiency of the heart pump or causing blood cell damage. Modifications to the hemodynamics in the left ventricle, when the inflow through the mitral orifice is altered, were investigated in vitro using a silicone rubber, flexible ventricle model. Velocity fields were measured in space and time by means of an image analysis technique: feature tracking. Three series of experiments were performed: one with a top hat inflow velocity profile (schematically resembling physiological conditions), and two with mechanical prosthetic valves of different design, mounted in mitral position-one monoleaflet and the other bileaflet. In each series of runs, two different cardiac outputs have been examined by changing the stroke volume. The flow was investigated in terms of phase averaged velocity field and second order moments of turbulent fluctuations. Results show that the modifications in the transmitral flow change deeply the interaction between the coherent structures generated during the first phase of the diastole and the incoming jet during the second diastolic phase. Top hat inflow gives the coherent structures which are optimal, among the compared cases, for the systolic function. The flow generated by the bileaflet valve preserves most of the beneficial features of the top hat inflow, whereas the monoleaflet valve generates a strong jet which discourages the permanence of large coherent structures at the end of the diastole. Moreover, the average shear rate magnitudes induced by the smoother flow pattern of the case of top hat inflow are nearly halved in comparison with the values measured with the mechanical valves. Finally, analysis of the turbulence statistics shows that the monoleaflet valves yield higher turbulence intensity in comparison with the bileaflet and, with top hat inflow, there is not a complete transition to turbulence.
机译:机械心脏瓣膜植入二尖瓣位置对心室流量有很大影响。变化包括舒张期和湍流发作期间产生的旋涡结构的动力学改变,可能影响心脏泵的效率或引起血细胞损伤。当通过二尖瓣口的流入量改变时,使用硅橡胶柔性心室模型体外研究了左心室血流动力学的改变。速度场是通过图像分析技术(特征跟踪)在时空上进行测量的。进行了三个系列的实验:一个具有高顶帽流入速度曲线(在原理上类似于生理条件),两个具有不同设计的机械人工瓣膜,分别安装在二尖瓣位置,一个是单叶的,另一个是双叶的。在每个系列的运行中,通过更改每搏输出量检查了两个不同的心输出量。根据相平均速度场和湍流波动的二阶矩研究了流动。结果表明,传递流的改变深刻改变了在舒张期第一阶段产生的相干结构与第二舒张期阶段进入的射流之间的相互作用。在比较的情况下,高顶流提供的连贯结构对于收缩功能是最佳的。由双叶瓣产生的血流保留了顶帽入流的大多数有益特征,而单叶瓣产生的强力射流阻碍了舒张末期大型连贯结构的持久性。此外,与机械阀测得的值相比,高顶帽流入情况下较平稳的流型引起的平均剪切速率幅度几乎减半。最后,对湍流统计数据的分析表明,与双叶瓣相比,单叶瓣产生的湍流强度更高,并且随着大礼帽的流入,并没有完全过渡到湍流。

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