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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Blood Pump Design Variations and Their Influence on Hydraulic Performance and Indicators of Hemocompatibility
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Blood Pump Design Variations and Their Influence on Hydraulic Performance and Indicators of Hemocompatibility

机译:血液泵设计变化及其对水力性能的影响和血液振动性指标

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Patients with ventricular assist devices still suffer from high rates of adverse events. Since many of these complications are linked to the flow field within the pump, optimization of the device geometry is essential. To investigate design aspects that influence the flow field, we developed a centrifugal blood pump using industrial guidelines. We then systematically varied selected design parameters and investigated their effects on hemodynamics and hydraulic performance using computational fluid dynamics. We analysed the flow fields based on Eulerian and Lagrangian features, shear stress histograms and six indicators of hemocompatibility. Within the investigated range of clearance gaps (50-500 A mu m), number of impeller blades (4-7), and semi-open versus closed shroud design, we found association of potentially damaging shear stress conditions with larger gap size and more blades. The extent of stagnation and recirculation zones was reduced with lower numbers of blades and a semi-open impeller, but it was increased with smaller clearance. The Lagrangian hemolysis index, a metric commonly applied to estimate blood damage, showed a negative correlation with hydraulic efficiency and no correlation with the Eulerian threshold-based metric.
机译:患有心室辅助装置的患者仍然患有高不良事件的高率。由于许多这些并发症与泵内的流场相关联,因此设备几何形状的优化是必不可少的。为了调查影响流场的设计方面,我们使用工业指南开发了一种离心血泵。然后,我们系统地改变了选择的设计参数,并使用计算流体动力学研究了对血流动力学和液压性能的影响。我们分析了基于欧拉和拉格朗日特征,剪切应力直方图和六种血液化指示的流场。在调查范围内的间隙(50-500 a mu m)中,叶轮叶片数(4-7),和半开孔与闭合护罩设计,我们发现潜在损坏的剪切应力条件具有较大的间隙尺寸和更多刀片。叶片数量和半开叶轮数量减少了停滞和再循环区域的程度,但随着较小的间隙而增加。拉格朗日溶血指数,一种常用于估计血液损伤的度量,显示出与液压效率的负相关性,与基于欧拉阈值的度量无关。

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