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Energetics of blood flow in Fontan circulation under VAD support

机译:VAD支持下的Fontan循环中血流的能量学

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摘要

Abstract The need to simulate the normal operating conditions of the human body is the key factor in every study and engineering process of bioelectronic devices designed for implantation. The Fontan procedure is an example of such a?process aimed to support the human body function. It is a standard treatment method for patients with a functionally univentricular heart. However, it has significant drawbacks such as overload of the only functional heart ventricle that often leads to the necessity of the heart transplantation. In this study, we analyze the total cavopulmonary connection (TCPC) influence on the blood with and without connected auxiliary blood circulation pump. We investigate four different types of TCPC configurations, analyze blood pressure and different flow rate, study the turbulent kinetic energy distribution, and evaluate hydraulic and power losses for various cases. Finally, we calculate volumetric scalar shear stresses distribution and demonstrate the high potential of TCPC configuration with connected rotary pump as a tool for the load redistribution in the functional heart ventricle. This work is particularly relevant for improving existing TCPCs’ quality that can extend the life of Fontan patients. Moreover, it also applies to the reduction of morbidity and mortality of the patients waiting for the heart transplantation.
机译:摘要模拟人体正常运行条件的需要是专为植入设计的生物电子设备的每个研究和工程过程的关键因素。 Fontan程序是这样的一个例子?旨在支持人体功能的过程。它是一种功能小心核心的患者的标准治疗方法。然而,它具有显着的缺点,例如唯一的功能性心室的过载,通常导致心脏移植的必要性。在这项研究中,我们分析了具有和无连接辅助血液循环泵的血液对血液的总抗肺血管连接(TCPC)。我们调查四种不同类型的TCPC配置,分析血压和不同的流速,研究湍流动能分布,并评估各种情况的液压和功率损耗。最后,我们计算体积标量剪切应力分布,并用连接的旋转泵作为功能性心室中负载再分布的工具,证明了TCPC配置的高电位。这项工作特别相关,可提高现有的TCPCS质量,以延长Fontan患者的寿命。此外,它还适用于等待心脏移植的患者的发病率和死亡率的降低。

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