Brunel Institute for Bioengineering, Brunel University, Middlesex Royal Brompton Hospital, Imperial College, London, UK.
Artif Organs. 2012 Mar;36(3):E62-70. doi: 10.1111/j.1525-1594.2010.01071.x. Epub 2010 Oct 12.
A mock circulatory system (MCS) was designed to replicate a physiological environment for in vitro testing and was assessed with the intra-aortic balloon pump (IABP). The MCS was comprised of an artificial left ventricle (LV), connected to a 14-branch polyurethane-compound aortic model. Physiological distribution of terminal resistance and compliance according to published data was implemented with capillary tubes of different sizes and syringes of varying air volume, respectively, fitted at the outlets of the branches. The ends of the aortic branches were connected to a common tube representing the venous system and an overhead reservoir provided atrial pressure. An IABP operating a 40-cc balloon was set to counterpulsate with the LV. Total arterial compliance of the system was 0.94 mL/mm Hg and total arterial resistance was 20.3 ± 3.3 mm Hg/L/min. At control, physiological flow distribution was achieved and both mean and phasic aortic pressure and flow were physiological. With the IABP, aortic pressure exhibited the major features of counterpulsation: diastolic augmentation during inflation, inflection point at onset of deflation, and end-diastolic reduction at the end of deflation. The contribution of balloon inflation and deflation was also evident on the aortic flow pattern. This MCS was verified to be suitable for IABP testing and with further adaptations it could be used for studying other hemodynamic problems and ventricular assist devices.
设计了一个模拟循环系统 (MCS),以复制体外测试的生理环境,并使用主动脉内球囊泵 (IABP) 进行评估。MCS 由人工左心室 (LV) 组成,与 14 分支聚氨酯复合主动脉模型相连。根据公布的数据,通过使用不同尺寸的毛细血管和不同空气体积的注射器,分别在分支的出口处实现了终端阻力和顺应性的生理分布。主动脉分支的末端连接到一个代表静脉系统的公共管和一个提供心房压力的高架储液器。设置一个操作 40 毫升球囊的 IABP 与 LV 反搏。系统的总动脉顺应性为 0.94mL/mm Hg,总动脉阻力为 20.3±3.3mmHg/L/min。在对照条件下,实现了生理流量分布,平均和相位主动脉压力和流量均为生理。使用 IABP 时,主动脉压力表现出反搏的主要特征:充气时舒张期增强,放气开始时的拐点,以及放气结束时的舒张末期降低。球囊充气和放气对主动脉血流模式的影响也很明显。这个 MCS 被验证适合于 IABP 测试,并且通过进一步的调整,它可以用于研究其他血流动力学问题和心室辅助装置。