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首页> 外文期刊>ASAIO journal >Mechanical cavopulmonary assist for the univentricular fontan circulation using a novel folding propeller blood pump.
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Mechanical cavopulmonary assist for the univentricular fontan circulation using a novel folding propeller blood pump.

机译:机械式心肺辅助使用新型折叠式螺旋桨式血泵来促进单室font门循环。

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摘要

A blood pump specifically designed to operate in the unique anatomic and physiologic conditions of a cavopulmonary connection has never been developed. Mechanical augmentation of cavopulmonary blood flow in a univentricular circulation would reduce systemic venous pressure, increase preload to the single ventricle, and temporarily reproduce a scenario analogous to the normal two-ventricle circulation. We hypothesize that a folding propeller blood pump would function optimally in this cavopulmonary circulation. The hydraulic performance of a two-bladed propeller prototype was characterized in an experimental flow loop using a blood analog fluid for 0.5-3.5 lpm at rotational speeds of 3,600-4,000 rpm. We also created five distinctive blood pump designs and evaluated their hydraulic performance using computational fluid dynamics (CFD). The two-bladed prototype performed well over the design range of 0.5-3.5 lpm, producing physiologic pressure rises of 5-18 mm Hg. Building upon this proof-of-concept testing, the CFD analysis of the five numerical models predicted a physiologic pressure range of 5-40 mm Hg over 0.5-4 lpm for rotational speeds of 3,000-7,000 rpm. These preliminary propeller designs and the two-bladed prototype achieved the expected hydraulic performance. Optimization of these configurations will reduce fluid stress levels, remove regions of recirculation, and improve the hydraulic performance of the folding propeller. This propeller design produces the physiologic pressures and flows that are in the ideal range to mechanically support the cavopulmonary circulation and represents an exciting new therapeutic option for the support of a univentricular Fontan circulation.
机译:从未开发过专门设计用于在腔肺连接的独特解剖和生理条件下运行的血泵。单心室循环中腔肺血流的机械增加会降低全身静脉压力,增加单心室的预负荷,并暂时重现类似于正常的双心室循环的情况。我们假设折叠式螺旋桨血泵将在这种心肺循环中发挥最佳功能。两叶螺旋桨原型的水力性能通过在3600-4000 rpm转速下使用0.5-3.5 lpm的血液模拟流体的实验流动回路进行了表征。我们还创建了五种独特的血泵设计,并使用计算流体力学(CFD)评估了它们的液压性能。两叶片原型在0.5-3.5 lpm的设计范围内表现良好,可产生5-18 mm Hg的生理压力升高。在此概念验证测试的基础上,对五个数值模型的CFD分析预测,对于3,000-7,000 rpm的转速,在0.5-4 lpm范围内的生理压力范围为5-40 mm Hg。这些初步的螺旋桨设计和两叶原型实现了预期的液压性能。这些配置的优化将降低流体应力水平,消除再循环区域,并改善折叠式螺旋桨的液压性能。这种螺旋桨设计产生的生理压力和流量均在理想范围内,以机械方式支持腔肺循环,并为支持单心室Fontan循环提供了令人兴奋的新治疗选择。

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