Division of Cardiology, Children's National Hospital, Washington, DC, USA.
Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD, USA.
Eur J Cardiothorac Surg. 2024 Jan 2;65(1). doi: 10.1093/ejcts/ezad413.
The 2 opposing inflows and 2 outflows in a total cavopulmonary connection make mechanical circulatory support (MCS) extremely challenging. We have previously reported a novel convergent cavopulmonary connection (CCPC) Fontan design that improves baseline characteristics and provides a single inflow and outflow, thus simplifying MCS. This study aims to assess the feasibility of MCS of this novel configuration using axial flow pumps in an in vitro benchtop model.
Three-dimensional segmentations of 12 single-ventricle patients (body surface area 0.5-1.75 m2) were generated from cardiovascular magnetic resonance images. The CCPC models were designed by connecting the inferior vena cava and superior vena cava to a shared conduit ascending to the pulmonary arteries, optimized in silico. The 12 total cavopulmonary connection and their corresponding CCPC models underwent in vitro benchtop characterization. Two MCS devices were used, the Impella RP® and the PediPump.
MCS successfully and symmetrically reduced the pressure in both vena cavae by >20 mmHg. The devices improved the hepatic flow distribution balance of all CCPC models (Impella RP®P = 0.045, PediPump P = 0.055).
The CCPC Fontan design provides a feasible MCS solution for a failing Fontan by balancing hepatic flow distribution and symmetrically decompressing the central venous pressure. Cardiac index may also improve with MCS. Additional studies are needed to evaluate this concept for managing Fontan failure.
全腔肺动脉连接中有 2 个流入道和 2 个流出道,这使得机械循环支持(MCS)极具挑战性。我们之前报道了一种新颖的会聚腔肺动脉连接(CCPC)Fontan 设计,该设计改善了基线特征并提供了单一的流入道和流出道,从而简化了 MCS。本研究旨在使用轴流泵在体外台式模型中评估这种新型构型的 MCS 的可行性。
从心血管磁共振图像生成了 12 名单心室患者(体表面积 0.5-1.75 m2)的三维分割。通过将下腔静脉和上腔静脉连接到通向肺动脉的共享导管,对 CCPC 模型进行了连接和优化。对 12 个全腔肺动脉连接及其相应的 CCPC 模型进行了体外台式特征描述。使用了两种 MCS 装置,即 Impella RP®和 PediPump。
MCS 成功且对称地将两个腔静脉的压力降低了>20mmHg。该设备改善了所有 CCPC 模型的肝血流分布平衡(Impella RP®P=0.045,PediPump P=0.055)。
CCPC Fontan 设计通过平衡肝血流分布和对称地降低中心静脉压,为衰竭的 Fontan 提供了一种可行的 MCS 解决方案。MCS 还可能改善心指数。需要进一步的研究来评估该概念在管理 Fontan 衰竭方面的应用。