首页> 外文会议>Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE >Differences in local hemodynamics of bileaflet prosthetic heart valves: the effect of increased orifice area
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Differences in local hemodynamics of bileaflet prosthetic heart valves: the effect of increased orifice area

机译:双叶人工心脏瓣膜局部血流动力学的差异:孔口面积增加的影响

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Enlarging the orifice of a mechanical prosthetic heart valve reduces its resistance to flow, but could adversely affect local flow dynamics. Regions of high turbulent shear stress and flow stagnation have been correlated with thrombus initiation and hemolysis. This study used laser Doppler velocimetry to reveal the effects of an increase in valvular orifice area on the velocities and turbulent shear stresses just distal to bileaflet valves under similar flow conditions. A restricted central orifice jet adjacent to a relatively large region of flow stagnation was observed within three of the valves studied. Within all valves, turbulent shear stresses were largest along the edge of the central orifice jet and within the lateral orifice jet adjacent to the mating of the leaflet and valve housing. These stresses decreased with increasing valvular orifice area. These results indicate that while increasing valvular orifice area may decrease local turbulent stresses, this change may also result in regions of flow stagnation close to the valve.
机译:放大机械假体心脏瓣膜的孔口降低其流量的抵抗力,但可能对局部流动动态产生不利影响。高湍流剪切应力和流动停滞的区域与血栓引发和溶血相关。该研究使用了激光多普勒测速器,揭示在类似的流动条件下对BileAflet阀门速度和湍流剪切应力增加的振视区域上的效果。在研究的三个阀门内观察到与相对大的流动停滞区域相邻的限制中心孔射流。在所有阀门内,湍流剪切应力沿着中心孔射流的边缘和横向孔口内的横向孔射流,与小叶和阀壳体的配合相邻。随着瓣膜孔口的增加,这些应力降低。这些结果表明,在增加阀门区域可能降低局部湍流应力的同时,这种变化也可能导致靠近阀门的流动滞存区域的区域。

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