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旋转左心室辅助装置搏动运行时右心室功能的波强度分析。

Wave Intensity Analysis of Right Ventricular Function during Pulsed Operation of Rotary Left Ventricular Assist Devices.

机构信息

From the Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Canada.

Department of Surgery, Bonde Artificial Heart Laboratory, Yale School of Medicine, New Haven, CT.

出版信息

ASAIO J. 2019 Jul;65(5):465-472. doi: 10.1097/MAT.0000000000000835.

Abstract

Changing the speed of left ventricular assist devices (LVADs) cyclically may be useful to restore aortic pulsatility; however, the effects of this pulsation on right ventricular (RV) function are unknown. This study investigates the effects of direct ventricular interaction by quantifying the amount of wave energy created by RV contraction when axial and centrifugal LVADs are used to assist the left ventricle. In 4 anesthetized pigs, pressure and flow were measured in the main pulmonary artery and wave intensity analysis was used to identify and quantify the energy of waves created by the RV. The axial pump depressed the intensity of waves created by RV contraction compared with the centrifugal pump. In both pump designs, there were only minor and variable differences between the continuous and pulsed operation on RV function. The axial pump causes the RV to contract with less energy compared with a centrifugal design. Diminishing the ability of the RV to produce less energy translates to less pressure and flow produced, which may lead to LVAD-induced RV failure. The effects of pulsed LVAD operation on the RV appear to be minimal during acute observation of healthy hearts. Further study is necessary to uncover the effects of other modes of speed modulation with healthy and unhealthy hearts to determine if pulsed operation will benefit patients by reducing LVAD complications.

摘要

改变左心室辅助装置(LVAD)的速度周期性地可能有助于恢复主动脉搏动性;然而,这种搏动对右心室(RV)功能的影响尚不清楚。本研究通过量化轴向和离心式 LVAD 辅助左心室时 RV 收缩产生的波能来研究直接心室相互作用的影响。在 4 只麻醉猪中,在主肺动脉中测量压力和流量,并使用波强分析来识别和量化 RV 收缩产生的波的能量。与离心泵相比,轴向泵降低了 RV 收缩产生的波的强度。在这两种泵设计中,在 RV 功能的连续和脉冲操作之间只有微小的和可变的差异。与离心设计相比,轴向泵使 RV 收缩时产生的能量减少。RV 产生较少能量的能力下降转化为产生的压力和流量减少,这可能导致 LVAD 引起的 RV 衰竭。在对健康心脏进行急性观察期间,脉冲 LVAD 操作对 RV 的影响似乎很小。需要进一步研究以揭示其他速度调制模式对健康和不健康心脏的影响,以确定脉冲操作是否通过减少 LVAD 并发症使患者受益。

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