Takano T, Schulte-Eistrup S, Yoshikawa M, Nakata K, Kawahito S, Maeda T, Nonaka K, Linneweber J, Glueck J, Fujisawa A, Makinouchi K, Yokokawa M, Nosé Y
Baylor College of Medicine, Department of Surgery, Houston, Texas 77030, USA.
Artif Organs. 2000 Oct;24(10):821-5. doi: 10.1046/j.1525-1594.2000.06630.x.
The impeller design for a miniature centrifugal blood pump is an important consideration since the small diameter impeller requires higher rotational speed, which may cause more blood trauma compared to the larger diameter impeller. Three different impeller vanes (straight vanes with a height of 4 mm and 8 mm, and 8 mm curved vanes) of which the diameter was 35 mm were subjected to hydraulic performance and hemolysis tests in the same pump housing. Both straight vane impellers attained left ventricular assist condition (5 L/min against 100 mm Hg) at 2,900 rpm while the curved vane required 3,280 rpm. There was no significant hemolysis difference between the tall and short vanes. The curved impeller vanes did not exhibit sufficient hydraulic performance when compared to the straight vanes. The straight vane impellers, even with different heights, were incorporated into the same pump housings, and the vane heights did not drastically change the hydraulic performance or hemolysis.
微型离心血泵的叶轮设计是一个重要的考量因素,因为小直径叶轮需要更高的转速,与大直径叶轮相比,这可能会导致更多的血液损伤。三种不同的叶轮叶片(高度为4毫米和8毫米的直叶片以及8毫米的弯曲叶片),其直径均为35毫米,在同一个泵壳中进行了水力性能和溶血测试。两个直叶片叶轮在2900转/分钟时达到左心室辅助状态(5升/分钟对抗100毫米汞柱),而弯曲叶片叶轮则需要3280转/分钟。高叶片和短叶片之间在溶血方面没有显著差异。与直叶片相比,弯曲的叶轮叶片没有表现出足够的水力性能。直叶片叶轮,即使高度不同,也被安装在同一个泵壳中,并且叶片高度并没有显著改变水力性能或溶血情况。