From the Bioengineering Program, Department of Mechanical Engineering, San Diego State University, San Diego, California.
ASAIO J. 2021 Dec 1;67(12):1301-1311. doi: 10.1097/MAT.0000000000001523.
Improper left ventricular assist device (LVAD) inflow cannula (IC) positioning creates areas of stasis and low pulsatility that predispose thromboembolism, but may be mitigated with LVAD speed modulation. A mock loop study was performed to assess the sensitivity of left ventricle (LV) flow architecture to IC position and speed modulation during HeartMate3 support. System pressure, flow, and the time-resolved velocity field were measured within a transparent silicone LV for three IC angles and three IC insertion depths at matched levels of cardiac function and LVAD speed. Inflow cannula angulation towards the septum increased the resistance to LVAD flow as well as increasing the size and energy of the counter-clockwise (CCW) vortex. Apical velocity was reduced compared to IC angulation towards the mitral valve, but regional pulsatility was maintained across all angles and LVAD speeds. Increased IC protrusion decreased LVAD flow resistance, increasing velocity within the IC but reducing flow and pulsatility in the adjacent apical region. Increasing LVAD flow resistance improves aortic valve opening and strengthens the CCW vortex which directs inflow towards the septum, producing higher blood residence time and shear activation potential. Despite this impact on flow architecture, pulsatility reduction with increased LVAD speed was minimal with the HeartMate3 speed modulation feature.
不当的左心室辅助装置(LVAD)流入管(IC)位置会导致停滞和低脉动区域,从而增加血栓栓塞的风险,但可以通过 LVAD 速度调节来减轻。进行了模拟回路研究,以评估 HeartMate3 支持期间 IC 位置和速度调节对左心室(LV)流动结构的敏感性。在透明硅酮 LV 内测量了系统压力、流量和时变速度场,以匹配心脏功能和 LVAD 速度的水平,分别为三个 IC 角度和三个 IC 插入深度。向间隔方向倾斜的流入管会增加 LVAD 流动的阻力,并增加逆时针(CCW)涡流的大小和能量。与向二尖瓣倾斜的 IC 相比,心尖速度降低,但在所有角度和 LVAD 速度下,局部脉动性都得以维持。增加 IC 突出度会降低 LVAD 流动阻力,增加 IC 内的速度,但会减少相邻心尖区域的流量和脉动性。增加 LVAD 流动阻力可改善主动脉瓣开口并增强 CCW 涡流,从而将流入导向间隔,产生更高的血液停留时间和剪切激活潜力。尽管对流动结构有这种影响,但 HeartMate3 速度调节功能增加 LVAD 速度时,脉动性降低很小。