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Flow Visualization Study of a Pulsating Respiratory AssistCatheter

机译:脉动呼吸辅助的流量可视化研究导管

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摘要

Our group is currently developing an intravenous respiratory assist device that uses a centrally located pulsatile balloon within a hollow fiber bundle to enhance gas exchange rate via active mixing mechanism. We tested the hypothesis that the nonsymmetric inflation and deflation of the balloon lead to both nonuniform balloon‐generated secondary flow and nonuniform gas exchange rate in the fiber bundle. The respiratory catheter was placed in a 1‐in. internal diameter rigid test section of an in vitro flow loop (3 L/min deionized water). Particle image velocimetry (PIV), which was used to map the velocity vector field in the lateral cross‐section, showed that the balloon pulsation generated a nonuniform fluid flow surrounding the respiratory assist catheter. PIV was also used to characterize the fiber bundle movement, which was induced by the balloon pulsation. Gas permeability coefficient of the device was evaluated by using both the fluid velocity and the relative velocity between the fluid and the fiber bundle. The highest difference in the gas permeability coefficient predicted by using the relative velocity was about 17% to 23% (angular direction), which was moreuniform than the 49% to 59% variation predicted by using thefluid velocity. The movement of the fiber bundle was responsible for reducingthe variation in the fluid velocity passing through the bundle and forminimizing the nonuniformity of the gas permeability coefficient of therespiratory assist catheter.
机译:我们的小组目前正在开发一种静脉呼吸辅助设备,该设备在中空纤维束中使用位于中心的搏动气球,以通过主动混合机制提高气体交换率。我们测试了以下假设,即球囊的不对称膨胀和放气会导致纤维束中球囊产生的二次流不均匀,以及气体交换率不均匀。呼吸导管放置在1英寸长的容器中。体外流动回路的内径刚性测试部分(3 L / min去离子水)。粒子图像测速仪(PIV)用于绘制横截面上的速度矢量场,结果表明,气囊脉动在呼吸辅助导管周围产生了不均匀的流体流动。 PIV还用于表征由气球脉动引起的纤维束运动。通过同时使用流体速度和流体与纤维束之间的相对速度来评估设备的气体渗透系数。通过相对速度预测的透气系数的最高差约为17%至23%(角度方向),更大均比使用流体速度。纤维束的运动导致减少通过束流的流体速度的变化最小化气体渗透系数的不均匀性呼吸辅助导管。

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