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首页> 外文期刊>ASAIO journal >Development and Validation of a Life-Sized Mock Circulatory Loop of the Human Circulation for Fluid-Mechanical Studies
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Development and Validation of a Life-Sized Mock Circulatory Loop of the Human Circulation for Fluid-Mechanical Studies

机译:流体机械研究人循环寿命模拟循环环的发展与验证

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Mock circulatory loops (MCLs) are usually developed for assessment of ventricular assist devices and consist of abstracted anatomical structures represented by connecting tubing pipes and controllable actuators which could mimic oscillating flow processes. However, with increasing use of short-term peripheral mechanical support (extracorporeal life support [ECLS]) and the upcoming evidence of even counteracting flow processes between the failing native circulation and ECLS, MCLs incorporating the peripheral vascular system and preserved anatomical structures are becoming more important for systematic assessment of these processes. For reproducible and standardized fluid-mechanical studies using magnetic resonance imaging, Doppler ultrasound, and computational fluid dynamics measurements, we developed a MCL of the human circulation. Silicon-based life-sized dummies of the human aorta and vena cava (vascular module) were driven by paracorporeal pneumatic assist devices. The vascular module is placed in a housing with all arterial branches merging into peripheral resistance and compliances modules, and blood-mimicking fluid returns to the heart module through the venous dummy. Compliance and resistance chambers provide for an adequate simulation of the capillary system. Extracorporeal life support cannulation can be performed in the femoral and subclavian arteries and in the femoral and jugular veins. After adjusting vessel diameters using variable Hoffmann clamps, physiologic flow rates were achieved in the supraaortic branches, the renal and mesenteric arteries, and the limb arteries with physiologic blood pressure and cardiac output (4 L/min). This MCL provides a virtually physiologic platform beyond conventional abstracted MCLs for simulation of flow interactions between the human circulation and external circulation generated by ECLS.
机译:模拟循环环(MCLS)通常开发用于评估心室辅助装置,包括由连接管管和可控致动器表示的抽象解剖结构,该辅助装置可以模仿振荡流程。然而,随着短期外围机械支撑的使用(体外寿命支持[ECLS])和即将到来的甚至在未发生的天然循环和ECL之间抵消流程的即将到来的证据,掺入外周血管系统和保存的解剖结构的MCL也变得越来越多对这些过程的系统评估很重要。对于使用磁共振成像,多普勒超声波和计算流体动力学测量的可再生和标准化的流体机械研究,我们开发了一种人类循环的MCL。人体主动脉和腔静脉(血管模块)的基于硅的寿命虚拟机由副气动辅助装置驱动。血管模块放置在壳体中,其所有动脉分支合并到外围电阻和可顺应模块中,并且通过静脉假人返回心脏模块的血液模拟。合规性和电阻室提供了足够的毛细管系统模拟。体外寿命支持插管可以在股骨和亚克拉夫动脉和股骨和颈静脉中进行。在使用可变霍夫曼夹具调节血管直径之后,在超引发分支,肾和肠系膜中达到生理流速,以及具有生理血压和心输出的肢体动脉(4升/分钟)。该MCL提供了几乎生理平台,超出了传统的抽象MCLS,用于模拟人循环和ECL产生的外部循环之间的流动相互作用。

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