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用于肺下型Fontan循环支持的粘性叶轮泵的被动性能评估与验证

Passive Performance Evaluation and Validation of a Viscous Impeller Pump for Subpulmonary Fontan Circulatory Support.

作者信息

Yang Weiguang, Conover Timothy A, Figliola Richard S, Giridharan Guruprasad A, Marsden Alison L, Rodefeld Mark D

机构信息

Departments of Pediatrics (Cardiology), Stanford University.

Departments of Mechanical Engineering, Clemson University.

出版信息

Res Sq. 2023 Mar 1:rs.3.rs-2584661. doi: 10.21203/rs.3.rs-2584661/v1.

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 for 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 clinically insignificant 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 seconds. This study demonstrated the low resistance characteristic of current VIP designs in the failed condition that results in clinically acceptable minimal pressure loss with low risk of thrombosis.

摘要

接受Fontan手术的单心室缺陷患者最终会面临Fontan衰竭。目前正在研发使用旋转泵技术的长期腔肺辅助装置,作为肺下动力源来预防和治疗Fontan衰竭。在泵发生故障(转速为0转/分钟)时,低水力阻力是一项关键的安全要求,因为仅2 mmHg的腔肺压力降就可能损害患者的血流动力学。因此,本研究的目的是评估我们正在为Fontan患者研发的粘性叶轮泵(VIP)的被动性能,并根据体外数据验证血流模拟结果。使用模拟循环回路(MCL)对两种不同叶片高度(1.09 mm对1.62 mm)和一个空白外壳模型进行了测试,心输出量范围为3至11 L/分钟。进行了三维血流模拟,并与MCL数据进行了比较。计算机模拟和MCL结果表明,在7 L/分钟的心输出量下,两种叶片高度的压力降均<2 mmHg,在临床上无显著意义。模拟结果与MCL结果在压力损失方面具有良好的一致性(平均差异-0.23 mmHg,95%可信区间[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秒以内。本研究证明了当前VIP设计在故障状态下的低阻力特性,这导致临床上可接受的最小压力损失和较低的血栓形成风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26f2/10002834/043c41b0c1a6/nihpp-rs2584661v1-f0001.jpg

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