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In Vitro Testing of a Novel Blood Pump Designed for Temporary Extracorporeal Support

机译:用于临时体外支持的新型血泵的体外测试

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摘要

Extracorporeal blood pumps are used as temporary ventricular assist devices or for extracorporeal membrane oxygenation. The ideal pump would be intrinsically self-regulating, carry no risk of cavitation or excessive inlet suction, be afterload insensitive, and valveless thus reducing thrombogenicity. Currently used technology, including roller, centrifugal, and pneumatic pulsatile pumps, does not meet these requirements. We studied a non-occlusive peristaltic pump (M-Pump) in two mock circulatory loops, and compared the performance to a frequently used centrifugal pump and a modified prototype of the M-Pump (the BioVAD). The simple resistance loop consisted of the investigated pump, a fixed height reservoir at 150 mmHg, and a variable inflow reservoir. The pulsatile circulation utilized a mock patient simulator with adjustable resistance elements connected to a pneumatic pulsatile pump. The M-Pump intrinsically regulated flow with changing preload, was afterload insensitive, and did not cavitate, unlike the centrifugal pump. The BioVAD also demonstrated these features, and could augment output with use of vacuum assistance. A non-occlusive peristaltic pump may be superior for short term extracorporeal circulatory assist by mitigating risks of excessive inlet suction, afterload sensitivity, and thrombosis.
机译:体外血液泵用作临时室心助助剂或体外膜氧合。理想泵将是本质上的自我调节,无携带空化或过度入口吸力的风险,不敏感,因此降低血栓形成性。目前使用的技术,包括滚子,离心和气动脉动泵,不符合这些要求。我们在两个模拟循环回路中研究了非闭塞蠕动泵(M泵),并将性能与常用的离心泵和M-泵(Biovad)的改进的原型进行了比较。简单的电阻环由调查泵,固定高度储存器为150 mmhg,以及可变流入储层。脉动循环利用模拟患者模拟器,该模拟器具有可调节的电阻元件,其连接到气动脉冲泵。与改变预载荷的M泵本质上调节的流量是后载不敏感的,并且与离心泵不同,没有气候。 Biovad还展示了这些功能,并且可以使用真空辅助来增加输出。非闭塞性蠕动泵可以通过减轻过度入口吸入,血压敏感性和血栓形成的风险来优异的短期体外循环辅助。

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