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贝勒全人工心脏。血流可视化研究。

The Baylor total artificial heart. Flow visualization studies.

作者信息

Orime Y, Takatani S, Tasai K, Ohara Y, Naito K, Mizuguchi K, Meier D, Wernicke J T, Damm G, Glueck J

机构信息

Department of Surgery, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

ASAIO J. 1994 Jul-Sep;40(3):M499-505. doi: 10.1097/00002480-199407000-00050.

Abstract

To analyze the flow patterns of the left blood chamber of the Baylor total artificial heart (TAH) and to evaluate influences of the inflow valve angle to the flow patterns, flow visualization studies were performed. The inflow valve angle of the left housing was changed by 20 degrees orthogonal to the inflow tube, and comparison studies of the modified and unmodified models were made. For evaluating sectional flow patterns, a laser light was used, the clear transparent housing was scanned segmentally, and flow patterns were recorded on high contrast film for measuring flow velocities. A signal was used that synchronized the timing of the camera shutter to the pusher-plate movement signal. With the modified 20 degree inflow valve direction, there were better closing characteristics of the inflow valve leaflets. At the same time, we could successfully reduce the vortex formation at the inflow port, which may cause thrombus formation. We also have improved the washout during the diastolic phase in not only the bottom area, but in the entire pumping chamber. This flow visualization setup is simple and inexpensive. It is useful not only for validation of global flow patterns, but also for validation of local flow velocities of various blood pumps.

摘要

为了分析贝勒全人工心脏(TAH)左心腔的血流模式,并评估流入阀角度对血流模式的影响,进行了流动可视化研究。左心室流入阀角度在与流入管正交的方向上改变20度,并对改进模型和未改进模型进行比较研究。为了评估截面血流模式,使用激光,对透明的外壳进行分段扫描,并将血流模式记录在高对比度胶片上以测量流速。使用了一个信号,使相机快门的时间与推板运动信号同步。在流入阀方向改变20度后,流入阀瓣叶的关闭特性更好。同时,我们成功减少了流入端口处可能导致血栓形成的涡流。我们还改善了舒张期不仅在底部区域,而且在整个泵腔的冲洗效果。这种流动可视化设置简单且成本低廉。它不仅有助于验证整体血流模式,也有助于验证各种血泵的局部流速。

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