Campos Arias Daimé, Londono Francisco, Rodríguez Moliner Tania, Georgakopoulos Dimitrios, Stergiopulos Nikos, Segers Patrick
IBiTech-bioMMeda, Ghent University, Ghent, Belgium.
Universidad Tecnológica de La Habana José Antonio Echeverría (Cujae), Biomechanics and Biomaterials Research Group, Havana, Cuba.
Artif Organs. 2017 Oct;41(10):E141-E154. doi: 10.1111/aor.12922. Epub 2017 May 26.
The C-Pulse is a novel extra-aortic counter-pulsation device to unload the heart in patients with heart failure. Its impact on overall hemodynamics, however, is not fully understood. In this study, the function of the C-Pulse heart assist system is implemented in a one-dimensional (1-D) model of the arterial tree, and central and peripheral pressure and flow waveforms with the C-Pulse turned on and off were simulated. The results were studied using wave intensity analysis and compared with in vivo data measured non-invasively in three patients with heart failure and with invasive data measured in a large animal (pig). In all cases the activation of the C-Pulse was discernible by the presence of a diastolic augmentation in the pressure and flow waveforms. Activation of the device initiates a forward traveling compression wave, whereas a forward traveling expansion wave is associated to the device relaxation, with waves exerting an action in the coronary and the carotid vascular beds. We also found that the stiffness of the arterial tree is an important determinant of action of the device. In settings with reduced arterial compliance, the same level of aortic compression demands higher values of external pressure, leading to stronger hemodynamic effects and enhanced perfusion. We conclude that the 1-D model may be used as an efficient tool for predicting the hemodynamic impact of the C-Pulse system in the entire arterial tree, complementing in vivo observations.
C-Pulse是一种新型的主动脉外反搏装置,用于减轻心力衰竭患者的心脏负担。然而,其对整体血流动力学的影响尚未完全明确。在本研究中,C-Pulse心脏辅助系统的功能在动脉树的一维模型中得以实现,并模拟了C-Pulse开启和关闭时的中心和外周压力及血流波形。使用波强度分析对结果进行研究,并与在三名心力衰竭患者中无创测量的体内数据以及在大型动物(猪)中测量的有创数据进行比较。在所有情况下,通过压力和血流波形中舒张期增强的存在都可识别C-Pulse的激活。该装置的激活引发一个向前传播的压缩波,而向前传播的膨胀波与装置的舒张相关,这些波在冠状动脉和颈动脉血管床中发挥作用。我们还发现动脉树的硬度是该装置作用的一个重要决定因素。在动脉顺应性降低的情况下,相同程度的主动脉压缩需要更高的外部压力值,从而导致更强的血流动力学效应和增强的灌注。我们得出结论,一维模型可作为预测C-Pulse系统对整个动脉树血流动力学影响的有效工具,对体内观察起到补充作用。