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Impedance Pumping and Resonance in a Multi-Vessel System

机译:多容器系统中的阻抗泵浦和共振

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摘要

Impedance pumping is a mechanism that generates flow in a compliant vessel by repeatedly actuating the vessel asymmetrically, without employing any internal valves, blades, or other mechanisms. The net flow is obtained by establishing a constructive wave pattern. Elaborate studies of impedance pumping in a single vessel have shown that the flow rate strongly depends on the actuation frequency, as well as on other parameters, such as actuator location and amplitude, and that it operates best in the resonance mode. The present study extends these principles to a network of multiple compliant vessels, representing a cardiovascular system. The flow is modeled numerically by the one-dimensional approximation of the Navier-Stokes equations. Two configurations were examined, systems consisting of three and five compliant vessels. First, the natural frequencies of these configurations were identified. Then, the dependence of the net flow rate (NFR) on the actuating frequency was explored, showing that impedance pumping operates best in the resonance mode in the case of a network of vessels as well. The impact of other parameters were studied as well, such as the location of one or two actuators, actuation amplitude, actuator width, the duty cycle, and the phase lag between the actuators. The results show that impedance pumps can generate significant NFR and the obtained NFR can be manipulated by properly setting up one or more of the governing parameters. These findings indicate that impedance pumping principles may be applied to flow control of the cardiovascular system.
机译:阻抗泵是一种通过不对称地反复驱动容器而在顺应容器中产生流量的机制,而无需使用任何内部阀,叶片或其他机制。净流量是通过建立一个建设性的波型获得的。对单个容器中的阻抗泵进行的详尽研究表明,流速在很大程度上取决于致动频率以及其他参数,例如致动器的位置和幅度,并且在共振模式下其运行效果最佳。本研究将这些原理扩展到代表心血管系统的多个顺应性血管网络。通过Navier-Stokes方程的一维近似对流动进行数值建模。检查了两种配置,系统由三个和五个顺应性容器组成。首先,确定这些配置的固有频率。然后,研究了净流速(NFR)对致动频率的依赖性,表明在脉管网络的情况下,阻抗泵浦在共振模式下也能最好地工作。还研究了其他参数的影响,例如一个或两个执行器的位置,执行幅度,执行器宽度,占空比以及执行器之间的相位滞后。结果表明,阻抗泵可以产生显着的NFR,并且可以通过正确设置一个或多个控制参数来操纵获得的NFR。这些发现表明,阻抗泵浦原理可以应用于心血管系统的流量控制。

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