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Advances in Hemodynamic Analysis in Cardiovascular Diseases Investigation of Energetic Characteristics of Adult and Pediatric Sputnik Left Ventricular Assist Devices during Mock Circulation Support

机译:心血管疾病血流动力学分析的进展研究成人和小儿丝绸左心室辅助装置在模拟循环载体中的大能特征研究

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The need to simulate the operating conditions of the human body is a key factor in every study and engineering process of a bioengineering device developed for implantation. In the present paper, we describe in detail the interaction between the left ventricle (LV) and our Sputnik left ventricular assist devices (LVADs). This research aims to evaluate the influence of different rotary blood pumps (RBPs) on the LV depending on the degree of heart failure (HF), in order to investigate energetic characteristics of the LV-LVAD interaction and to estimate main parameters of left ventricular unloading. We investigate energetic characteristics of adult Sputnik 1 and Sputnik 2 LVADs connected to a hybrid adult mock circulation (HAMC) and also for the Sputnik pediatric rotary blood pump (PRBP) connected to a pediatric mock circulation (PMC). A major improvement of the LV unloading is observed during all simulations for each particular heart failure state when connected to the LVAD, with sequential pump speed increased within 5000-10000 rpm for adult LVADs and 6000-13000 rpm for PRBP with 200 rpm step. Additionally, it was found that depending on the degree of heart failure, LVADs influence the LV in different ways and a significant support level cannot be achieved without the aortic valve closure. Furthermore, this study expands the information on LV-LVAD interaction, which leads to the optimization of the RBP speed rate control in clinics for adult and pediatric patients suffering from heart failure. Finally, we show that the implementation of control algorithms using the modulation of the RBP speed in order to open the aortic valve and unload the LV more efficiently is necessary and will be content of further research.
机译:在为植入而开发的生物工程设备的每项研究和工程过程中,模拟人体工作条件的需要都是一个关键因素。在本文中,我们详细描述了左心室(LV)和我们的人造卫星左心室辅助装置(LVAD)之间的相互作用。本研究旨在评估不同旋转式血泵(RBP)对心力衰竭(HF)程度不同的左室的影响,以研究LV-LVAD相互作用的能量特征,并估计左室负荷的主要参数。我们研究了连接到混合成人模拟循环(HAMC)的成人人造卫星1号和人造卫星2号LVAD的能量特征,以及连接到儿童模拟循环(PMC)的人造卫星儿童旋转血泵(PRBP)。在连接到LVAD的每个特定心力衰竭状态的所有模拟过程中,观察到LV卸载的主要改善,成人LVAD的顺序泵速在5000-10000 rpm范围内增加,PRBP的顺序泵速在6000-13000 rpm范围内增加,步进200 rpm。此外,研究发现,根据心力衰竭的程度,LVAD以不同的方式影响LV,如果没有主动脉瓣关闭,就无法达到显著的支持水平。此外,本研究扩展了LV-LVAD相互作用的信息,从而优化了成人和儿童心力衰竭患者临床上的RBP速度控制。最后,我们表明,为了更有效地打开主动脉瓣和卸载LV,我们需要使用RBP速度的调制来实现控制算法,这将是进一步研究的内容。

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