Pediatric Cardiovascular Surgery, Department of Surgery, Pediatric Heart Center, University Children's Hospital Zurich, Zurich, Switzerland.
Children's Research Center, University Children's Hospital Zurich, Zurich, Switzerland.
Ann Biomed Eng. 2020 Jun;48(6):1821-1836. doi: 10.1007/s10439-020-02492-2. Epub 2020 Mar 30.
Treatment of heart failure with preserved ejection fraction (HFpEF) remains a major unmet medical need. An implantable valveless pulsatile pump with a single cannula-the CoPulse pump-may provide beneficial hemodynamic support for select HFpEF patients when connected to the failing ventricle. We aimed to demonstrate hemodynamic efficacy and hemocompatible design feasibility for this novel assist device. The hemodynamic effect of the pump was investigated with an in vitro circulatory mock loop and an ex vivo isolated porcine heart model. The hydraulic design was optimized using computational fluid dynamics (CFD), and validated by 4D-flow magnetic resonance imaging (MRI). The pump reduced left atrial pressure (> 27%) and increased cardiac output (> 14%) in vitro. Ex vivo experiments revealed elevated total stroke volume at increased end-systolic volume during pump support. Asymmetric cannula positioning indicated superior washout, decreased stagnation (8.06 mm vs. 31.42 mm), and marginal blood trauma potential with moderate shear stresses (< 24 Pa) in silico. Good agreement in flow velocities was evident among CFD and 4D-flow MRI data (r > 0.76). The CoPulse pump proved hemodynamically effective. Hemocompatibility metrics were comparable to those of a previously reported, typical pulsatile pump with two cannulae. The encouraging in vitro, ex vivo, and hemocompatibility results substantiate further development of the CoPulse pump.
治疗射血分数保留型心力衰竭(HFpEF)仍然是未满足的主要医疗需求。一种带有单根导管的植入式无阀脉动泵 - CoPulse 泵 - 当与衰竭的心室连接时,可能为特定的 HFpEF 患者提供有益的血液动力学支持。我们旨在证明这种新型辅助装置的血液动力学效果和血液相容性设计的可行性。使用体外循环模拟回路和离体猪心模型研究了泵的血液动力学效应。使用计算流体动力学(CFD)优化了水力设计,并通过 4D-flow 磁共振成像(MRI)进行了验证。该泵在体外降低了左心房压力(>27%)并增加了心输出量(>14%)。离体实验表明,在泵支持期间,终末期收缩容积增加时总冲程量增加。不对称的导管定位表明,在计算机模拟中,冲洗效果更好,停滞减少(8.06mm 对 31.42mm),血液创伤潜力较小(<24Pa)。CFD 和 4D-flow MRI 数据之间的流速吻合度良好(r>0.76)。CoPulse 泵被证明具有血液动力学效果。血液相容性指标与先前报道的具有两个导管的典型脉动泵相当。体外、离体和血液相容性的结果令人鼓舞,进一步证实了 CoPulse 泵的开发。