Suppr超能文献

用于支持腔肺循环的机械轴流血泵。

Mechanical axial flow blood pump to support cavopulmonary circulation.

作者信息

Throckmorton A L, Kapadia J, Madduri D

机构信息

Department of Mechanical Engineering, Virginia Commonwealth University, Richmond, Virginia 23284 - USA.

出版信息

Int J Artif Organs. 2008 Nov;31(11):970-82. doi: 10.1177/039139880803101107.

Abstract

We are developing a collapsible, percutaneously inserted, axial flow blood pump to support the cavopulmonary circulation in infants with a failing single ventricle physiology. An initial design of the impeller for this axial flow blood pump was performed using computational fluid dynamics analysis, including pressure-flow characteristics, scalar stress estimations, blood damage indices, and fluid force predictions. A plastic prototype was constructed for hydraulic performance testing, and these experimental results were compared with the numerical predictions. The numerical predictions and experimental findings of the pump performance demonstrated a pressure generation of 2-16 mm Hg for 50-750 ml/min over 5,500-7,500 RPM with deviation found at lower rotational speeds. The axial fluid forces remained below 0.1 N, and the radial fluid forces were determined to be virtually zero due to the centered impeller case. The scalar stress levels remained below 250 Pa for all operating conditions. Blood damage analysis yielded a mean residence time of the released particles, which was found to be less than 0.4 seconds for both flow rates that were examined, and a maximum residence time was determined to be less than 0.8 seconds. We are in the process of designing a cage with hydrodynamically shaped filament blades to act as a diffuser and optimizing the impeller blade shape to reduce the flow vorticity at the pump outlet. This blood pump will improve the clinical treatment of patients with failing Fontan physiology and provide a unique catheter-based therapeutic approach as a bridge to recovery or transplantation.

摘要

我们正在研发一种可折叠、经皮插入的轴流血液泵,以支持单心室功能衰竭婴儿的腔肺循环。使用计算流体动力学分析对该轴流血液泵的叶轮进行了初步设计,包括压力-流量特性、标量应力估计、血液损伤指数和流体力预测。构建了一个塑料原型用于水力性能测试,并将这些实验结果与数值预测进行了比较。泵性能的数值预测和实验结果表明,在5500-7500转/分钟的转速下,流量为50-750毫升/分钟时压力产生为2-16毫米汞柱,在较低转速下存在偏差。轴向流体力保持在0.1牛以下,由于叶轮外壳居中,径向流体力实际上被确定为零。在所有运行条件下,标量应力水平保持在250帕以下。血液损伤分析得出释放颗粒的平均停留时间,在所研究的两种流量下均发现其小于0.4秒,最大停留时间被确定为小于0.8秒。我们正在设计一个带有流体动力学形状细丝叶片的笼状物作为扩散器,并优化叶轮叶片形状以减少泵出口处的流动涡度。这种血液泵将改善Fontan功能衰竭患者的临床治疗,并提供一种独特的基于导管的治疗方法,作为恢复或移植的桥梁。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验