Vandenberghe S, Shu F, Arnold D K, Antaki J F
Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania, USA.
Proc Inst Mech Eng H. 2011 Jul;225(7):648-56. doi: 10.1177/0954411911402287.
Ventricular assist devices (VADs) and total artificial hearts have been in development for the last 50 years. Since their inception, simulators of the circulation with different degrees of complexity have been produced to test these devices in vitro. Currently, a new path has been taken with the extensive efforts to develop paediatric VADs, which require totally different design constraints. This paper presents the manufacturing details of an economical simulator of the systemic paediatric circulation. This simulator allows the insertion of a paediatric VAD, includes a pumping ventricle, and is adjustable within the paediatric range. Rather than focusing on complexity and physiological simulation, this simulator is designed to be simple and practical for rapid device testing. The simulator was instrumented with medical sensors and data were acquired under different conditions with and without the new PediaFlowTM paediatric VAD. The VAD was run at different impeller speeds while simulator settings such as vascular resistance and stroke volume were varied. The hydraulic performance of the VAD under pulsatile conditions could be characterized and the magnetic suspension could be tested via manipulations such as cannula clamping. This compact mock loop has proven to be valuable throughout the PediaFlow development process and has the advantage that it is uncomplicated and can be manufactured cheaply. It can be produced by several research groups and the results of different VADs can then be compared easily.
在过去的50年里,心室辅助装置(VAD)和全人工心脏一直在研发中。自其诞生以来,人们制造了不同复杂程度的循环模拟器,用于在体外测试这些装置。目前,随着开发儿科VAD的广泛努力,开启了一条新的道路,而儿科VAD需要完全不同的设计限制。本文介绍了一种经济的小儿体循环模拟器的制造细节。该模拟器允许插入儿科VAD,包括一个泵血心室,并且在儿科范围内是可调节的。该模拟器并非专注于复杂性和生理模拟,而是设计得简单实用,便于快速进行装置测试。该模拟器配备了医学传感器,并在使用和不使用新型PediaFlowTM儿科VAD的不同条件下采集数据。在改变模拟器设置(如血管阻力和每搏输出量)的同时,VAD以不同的叶轮速度运行。可以表征VAD在脉动条件下的水力性能,并通过诸如夹闭插管等操作来测试磁悬浮。这个紧凑的模拟回路在PediaFlow的整个开发过程中已证明是有价值的,其优点是简单且制造成本低。它可以由多个研究小组制造,然后可以轻松比较不同VAD的结果。