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被动性能评估和验证一种用于亚肺静脉 Fontan 循环支持的粘性叶轮泵。

Passive performance evaluation and validation of a viscous impeller pump for subpulmonary fontan circulatory support.

机构信息

Department of Pediatrics (Cardiology), Stanford University, Stanford, CA, USA.

Departments of Mechanical Engineering, Clemson University, Clemson, SC, USA.

出版信息

Sci Rep. 2023 Aug 4;13(1):12668. doi: 10.1038/s41598-023-38559-y.

Abstract

Patients with single ventricle defects undergoing the Fontan procedure eventually face Fontan failure. Long-term cavopulmonary assist devices using rotary pump technologies are currently being developed as a subpulmonary power source to prevent and treat Fontan failure. Low hydraulic resistance is a critical safety requirement in the event of pump failure (0 RPM) as a modest 2 mmHg cavopulmonary pressure drop can compromise patient hemodynamics. The goal of this study is therefore to assess the passive performance of a viscous impeller pump (VIP) we are developing for Fontan patients, and validate flow simulations against in-vitro data. Two different blade heights (1.09 mm vs 1.62 mm) and a blank housing model were tested using a mock circulatory loop (MCL) with cardiac output ranging from 3 to 11 L/min. Three-dimensional flow simulations were performed and compared against MCL data. In-silico and MCL results demonstrated a pressure drop of < 2 mmHg at a cardiac output of 7 L/min for both blade heights. There was good agreement between simulation and MCL results for pressure loss (mean difference - 0.23 mmHg 95% CI [0.24-0.71]). Compared to the blank housing model, low wall shear stress area and oscillatory shear index on the pump surface were low, and mean washout times were within 2 s. This study demonstrated the low resistance characteristic of current VIP designs in the failed condition that results in clinically acceptable minimal pressure loss without increased washout time as compared to a blank housing model under normal cardiac output in Fontan patients.

摘要

患有单心室缺陷并接受 Fontan 手术的患者最终会面临 Fontan 衰竭。目前正在开发使用旋转泵技术的长期腔肺辅助装置作为肺下动力源,以预防和治疗 Fontan 衰竭。在泵故障(0 RPM)的情况下,低液压阻力是一个关键的安全要求,因为适度的 2 mmHg 腔肺压力下降可能会影响患者的血液动力学。因此,本研究的目的是评估我们正在为 Fontan 患者开发的粘性叶轮泵(VIP)的被动性能,并根据体外数据验证流量模拟。使用心脏输出量为 3 至 11 L/min 的模拟循环回路(MCL)测试了两种不同叶片高度(1.09 mm 与 1.62 mm)和空白外壳模型。进行了三维流模拟,并与 MCL 数据进行了比较。体内和 MCL 结果表明,两种叶片高度的心脏输出量为 7 L/min 时,压降均<2 mmHg。模拟结果与 MCL 结果之间的压力损失具有良好的一致性(平均差值为-0.23mmHg 95%CI [0.24-0.71])。与空白外壳模型相比,泵表面的低壁面切应力区域和振荡切应力指数较低,平均冲洗时间在 2 s 以内。本研究表明,当前 VIP 设计在故障条件下具有低阻力特性,与正常心脏输出下的空白外壳模型相比,在 Fontan 患者中可导致临床可接受的最小压力损失,而冲洗时间不会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/795a/10403595/6ef9f660d61b/41598_2023_38559_Fig1_HTML.jpg

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