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经导管主动脉瓣置换术左心室辅助装置在主动脉瓣位置的体外性能。

In vitro performance of trans-valve left ventricular assist device installed at aortic valve position.

机构信息

Sapporo Liberal Arts Center, Tokai University, Sapporo, Japan.

Graduate School of Science and Engineering, Hirosaki University, Hirosaki, Japan.

出版信息

Artif Organs. 2020 Oct;44(10):1067-1072. doi: 10.1111/aor.13687. Epub 2020 Apr 15.

Abstract

In this study, we developed a trans-valve left ventricular assist device (LVAD) that unites a rear-impeller axial-flow blood pump (AFBP) and a polymer membrane valve placed at the aortic valve position. The diameter and length of the rear impeller AFBP was 12 and 63 mm, respectively. The polymer membrane valve was similar to the jelly-fish valve consisting of a valve leaflet made of silicone rubber (thickness 0.5 mm), valve ring (diameter: 25 mm), and valve spokes. The trans-valve LVAD was examined in a mock circulation. An implantable pulsatile flow (PF) VAD was connected to an atrial reservoir to simulate the left ventricle (LV), and the Hall valve was worn in the inflow port, and the trans-valve LVAD was placed in the outflow port as an outflow valve. When the motor rotational speed increased to 26 400 rpm, the mean aortic flow increased from 4.2 to 5.3 L/min, mean aortic pressure increased from 83.4 to 100 mm Hg, and mean motor current of the implantable PF VAD decreased from 1.18 to 0.94 A (unloading effect on LV -21%). The energy equivalent pressure increased from 85.2 to 102 mm Hg, and surplus hemodynamic energy (SHE) decreased by -15.4% from the baseline. In conclusion, the trans-valve LVAD has an advantage of preserving pulsatility without any complicated mechanism and is a novel and promising LV support device.

摘要

在这项研究中,我们开发了一种经瓣左心室辅助装置(LVAD),它结合了后置叶轮轴流血泵(AFBP)和放置在主动脉瓣位置的聚合物膜瓣。后置叶轮 AFBP 的直径和长度分别为 12mm 和 63mm。聚合物膜瓣类似于水母瓣,由一片硅橡胶制成的瓣叶(厚度 0.5mm)、瓣环(直径:25mm)和瓣辐组成。经瓣 LVAD 在模拟循环中进行了检查。可植入脉动流(PF)VAD 连接到心房储液器以模拟左心室(LV),并在流入端口佩戴霍尔阀,经瓣 LVAD 放置在流出端口作为流出阀。当电机转速增加到 26400rpm 时,平均主动脉流量从 4.2 增加到 5.3L/min,平均主动脉压从 83.4 增加到 100mmHg,可植入 PF VAD 的平均电机电流从 1.18 减少到 0.94A(对 LV 的卸载效应为 21%)。能量等效压力从 85.2 增加到 102mmHg,剩余血液动力学能量(SHE)比基线减少了 15.4%。总之,经瓣 LVAD 具有不依赖任何复杂机制保留脉动性的优点,是一种新颖且有前途的 LV 支持装置。

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