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首页> 外文期刊>Artificial Organs >Flow behavior within the 12-cc Penn State pulsatile pediatric ventricular assist device: an experimental study of the initial design.
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Flow behavior within the 12-cc Penn State pulsatile pediatric ventricular assist device: an experimental study of the initial design.

机译:12 cc Penn State脉动小儿心室辅助设备内的流动行为:初始设计的实验研究。

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Planar particle image velocimetry was used to explore the flow behavior of the newly designed 12-cc Penn State pneumatic pediatric assist pump. Wall shear maps complemented the velocity data. Bjork-Shiley Monostrut 17-mm mechanical heart valves were used in the inlet and outlet ports. In comparison with larger Penn State pumps, the 12-cc device is not only smaller but has reduced valve effective orifice areas and more highly angled valve ports. In contrast to results from the larger pumps, the flow field was highly three dimensional during early diastole with poorer penetration by the valve inlet jet. This led to a later start to a "wall washing" rotational pattern. A significant separation region, never before observed, was created upstream of the outlet valve leaflet during late diastole--effectively reducing the area and increasing the pressure drop through the valve. Wall shear maps suggest that regions of low shear might persist throughout the cycle at the bottom of the pump on the outlet side. Anattempt to improve the flow field characteristics by exploring different valves, valve orientations and inlet valve angles, systolic/diastolic flow timing, and perhaps a larger outlet valve was planned.
机译:平面粒子图像测速仪用于探索新设计的12 cc Penn State气动儿科辅助泵的流动特性。壁面剪切图补充了速度数据。在入口和出口使用Bjork-Shiley Monostrut 17毫米机械心脏瓣膜。与大型Penn State泵相比,该12 cc装置不仅体积更小,而且阀有效孔面积减少,阀口角度更大。与大型泵的结果相反,在舒张早期,流场是高度三维的,而阀入口射流的渗透性较差。这导致后来开始出现“洗墙”旋转模式。舒张末期在出口瓣膜小叶的上游形成了一个从未见过的明显的分离区域-有效地减小了面积并增加了通过瓣膜的压降。壁面剪切图表明,低剪切区域可能会在整个循环中持续存在于泵底部的出口侧。尝试通过探索不同的阀门,阀门方向和入口阀门角度,收缩/舒张时间,以及可能计划使用更大的出口阀门来改善流场特性。

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