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用于心腔外机械循环辅助治疗 Fontan 生理衰竭患者。

Intravascular mechanical cavopulmonary assistance for patients with failing Fontan physiology.

机构信息

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

出版信息

Artif Organs. 2009 Nov;33(11):977-87. doi: 10.1111/j.1525-1594.2009.00940.x.

Abstract

To provide a viable bridge-to-transplant, bridge-to-recovery, or bridge-to-surgical reconstruction for patients with failing Fontan physiology, we are developing a collapsible, percutaneously inserted, magnetically levitated axial flow blood pump to support the cavopulmonary circulation in adolescent and adult patients. This unique blood pump will augment pressure and thus flow in the inferior vena cava through the lungs and ameliorate the poor hemodynamics associated with the univentricular circulation. Computational fluid dynamics analyses were performed to create the design of the impeller, the protective cage of filaments, and the set of diffuser blades for our axial flow blood pump. These analyses included the generation of pressure-flow characteristics, scalar stress estimations, and blood damage indexes. A quasi-steady analysis of the diffuser rotation was also completed and indicated an optimal diffuser rotational orientation of approximately 12 degrees. The numerical predictions of the pump performance demonstrated a pressure generation of 2-25 mm Hg for 1-7 L/min over 3000-8000 rpm. Scalar stress values were less than 200 Pa, and fluid residence times were found to be within acceptable ranges being less than 0.25 s. The maximum blood damage index was calculated to be 0.068%. These results support the continued design and development of this cavopulmonary assist device, building upon previous numerical work and experimental prototype testing.

摘要

为了为 Fontan 生理功能衰竭的患者提供可行的移植前、恢复前或手术重建前的桥梁,我们正在开发一种可折叠的经皮插入的磁悬浮轴向血流泵,以支持青少年和成年患者的腔肺循环。这种独特的血液泵将增加压力,从而增加下腔静脉通过肺部的血流量,并改善与单心室循环相关的血流动力学不良。进行了计算流体动力学分析,以创建我们的轴向血流泵的叶轮、纤维保护笼和一组扩散器叶片的设计。这些分析包括压力-流量特性的生成、标量应力估计和血液损伤指标。还完成了扩散器旋转的准稳态分析,表明扩散器的最佳旋转方向约为 12 度。泵性能的数值预测表明,在 3000-8000 rpm 下,流量为 1-7 L/min 时,压力生成为 2-25 mmHg。标量应力值小于 200 Pa,并且发现流体停留时间在可接受范围内,小于 0.25 s。最大血液损伤指数计算为 0.068%。这些结果支持在先前的数值工作和实验原型测试的基础上,继续设计和开发这种腔肺辅助装置。

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