From the Department of Cardiac Surgery, Medical University of Vienna, Vienna, Austria.
Division of Control and Process Automation, Institute of Mechanics and Mechatronics, TU Wien, Vienna, Austria.
ASAIO J. 2024 Feb 1;70(2):107-115. doi: 10.1097/MAT.0000000000002074. Epub 2023 Oct 13.
Effective treatment of heart failure with preserved ejection fraction (HFpEF) remains an unmet medical need. Although left atrial decompression using mechanical circulatory support devices was previously suggested, the heterogeneous HFpEF population and the lack of tailored devices have prevented the translation into clinical practice. This study aimed to evaluate the feasibility of left atrial decompression in HFpEF patients with a HeartMate 3 (HM3, Abbott Inc, Chicago, USA) in silico and in vitro . Anatomic compatibility of the HM3 pump was assessed by virtual device implantation into the left atrium through the left atrial appendage (LAA) and left atrial posterior wall (LAPW) of 10 HFpEF patients. Further, the efficacy of left atrial decompression was investigated experimentally in a hybrid mock loop, replicating the hemodynamics of an HFpEF phenotype at rest and exercise conditions. Virtual implantation without substantial intersection with surrounding tissues was accomplished through the LAA in 90% and 100% through the LAPW. Hemodynamic analysis in resting conditions demonstrated normalization of left atrial pressures without backflow at a pump speed of around 5400 rpm, whereas a range of 6400-7400 rpm was required during exercise. Therefore, left atrial decompression with the HM3 may be feasible in terms of anatomic compatibility and hemodynamic efficacy.
有效治疗射血分数保留的心衰(HFpEF)仍然是未满足的医疗需求。尽管先前有研究提出使用机械循环支持装置进行左心房减压,但 HFpEF 人群的异质性和缺乏定制设备阻止了其转化为临床实践。本研究旨在评估使用 HeartMate 3(HM3,美国雅培公司,芝加哥)在心衰患者的左心房中进行左心房减压的可行性,该研究在体内和体外进行。通过将 HM3 泵虚拟植入 10 名 HFpEF 患者的左心耳(LAA)和左心房后壁(LAPW),评估 HM3 泵的解剖学兼容性。此外,在混合模拟回路中进行实验,研究左心房减压的效果,该模拟回路复制了休息和运动状态下 HFpEF 表型的血液动力学。通过 LAA 可实现 90%、通过 LAPW 可实现 100%的无实质与周围组织交叉的虚拟植入。在休息状态下的血液动力学分析表明,在泵速约为 5400rpm 时,左心房压力正常化而无反流,而在运动时需要 6400-7400rpm 的范围。因此,HM3 进行左心房减压在解剖学兼容性和血液动力学效果方面可能是可行的。