Department of Interventional Cardiology, John Paul II Hospital, Krakow, Malopolska, Poland
Department of Automatic Control and Robotics, AGH University of Science and Technology, Krakow, Poland.
Heart. 2022 Jun 10;108(13):1055-1062. doi: 10.1136/heartjnl-2021-320495.
Current generation left ventricular assist devices (LVADs) operate with a fixed rotation speed and no automated speed adjustment function. This study evaluates the concept of physiological pump speed optimisation based on aortic valve opening (AVO) imaging during a cardiopulmonary exercise test (CPET).
This prospective crossover study (NCT05063006) enrolled patients with implanted third-generation LVADs with hydrodynamic bearing. After resting speed optimisation, patients were randomised to a fixed-modified speed or modified-fixed speed CPET sequence. Fixed speed CPET maintained baseline pump settings. During the modified speed CPET, the LVAD speed was continuously altered to preserve periodic AVO.
We included 22 patients, the mean age was 58.4±7 years, 4.5% were women and 54.5% had ischaemic cardiomyopathy. Exertional AVO assessment was feasible in all subjects. Maintaining periodic AVO allowed to safely raise the pump speed from 2900 (IQR 2640-3000) to 3440 revolutions per minute (RPM) (IQR 3100-3700; p<0.001). As a result, peak oxygen consumption increased from 11.1±2.4 to 12.8±2.8 mL/kg/min (p<0.001) and maximum workload from 1.1 (IQR 0.9-1.5) to 1.2 W/kg (IQR 0.9-1.7; p=0.028). The Borg scale exertion level decreased from 15.2±1.5 to 13.5±1.2 (p=0.005).
Transthoracic AVO imaging is possible during CPETs in patients with LVAD. Dynamic echo-guided pump speed adjustment based on the AVO improves exercise tolerance and augments peak oxygen consumption and maximum workload.
目前的一代左心室辅助装置(LVAD)以固定转速运行,没有自动转速调整功能。本研究评估了基于心肺运动试验(CPET)中主动脉瓣开口(AVO)成像的生理泵速优化概念。
这项前瞻性交叉研究(NCT05063006)纳入了植入第三代具有液力轴承的 LVAD 的患者。在休息时优化转速后,患者被随机分配到固定-修改转速或修改-固定转速 CPET 序列。固定速度 CPET 保持基线泵设置。在修改后的速度 CPET 中,LVAD 速度连续改变以保持周期性 AVO。
我们纳入了 22 名患者,平均年龄为 58.4±7 岁,4.5%为女性,54.5%为缺血性心肌病。所有受试者均可行运动性 AVO 评估。保持周期性 AVO 可安全地将泵速从 2900(IQR 2640-3000)提高到 3440 转/分(IQR 3100-3700;p<0.001)。结果,峰值耗氧量从 11.1±2.4 增加到 12.8±2.8 毫升/公斤/分钟(p<0.001),最大工作量从 1.1(IQR 0.9-1.5)增加到 1.2 瓦/公斤(IQR 0.9-1.7;p=0.028)。Borg 量表的用力程度从 15.2±1.5 降低到 13.5±1.2(p=0.005)。
在 LVAD 患者的 CPET 中可以进行经胸 AVO 成像。基于 AVO 的动态超声引导泵速调整可提高运动耐量,并增加峰值耗氧量和最大工作量。