scholarly journals Estimation of pulsatile flow and differential pressure based on multi-layer perceptron using an axial flow blood pump

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Wang Shuai ◽  
Yu Zheqin ◽  
Wu Weiqiang ◽  
Wu Kun ◽  
...  
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Michael P. Macris ◽  
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John L. Robinson ◽  
Jeffrey W. Kolff ◽  
...  

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1998 ◽  
Vol 44 (5) ◽  
pp. M685-M690 ◽  
Author(s):  
Devin V. Amin ◽  
James F. Antaki ◽  
Philip Litwak ◽  
Douglas Thomas ◽  
Zhongjun J. Wu ◽  
...  

ASAIO Journal ◽  
1992 ◽  
Vol 38 (3) ◽  
pp. M679-M683 ◽  
Author(s):  
KENJI YAMAZAKI ◽  
MITUO UMEZU ◽  
HITOSHI KOYANAGI ◽  
MASAYA KITAMURA ◽  
KIYOYUKI EISHI ◽  
...  

2019 ◽  
Vol 58 (2) ◽  
pp. 401-418
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Vikas Kannojiya ◽  
Arup Kumar Das ◽  
Prasanta Kumar Das

1998 ◽  
pp. 396-400 ◽  
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Kenji Yamazaki ◽  
Robert L. Kormos ◽  
Osamu Tagusari ◽  
Philip Litwak ◽  
Toshio Mori ◽  
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pp. 366-370 ◽  
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Hirofumi Anai ◽  
Mitsuo Oshikawa ◽  
Kunihide Nakamura ◽  
Toshio Onitsuka

2020 ◽  
Vol 12 (5) ◽  
pp. 168781402092129
Author(s):  
Zheqin Yu ◽  
Jianping Tan ◽  
Shuai Wang

The splitter blade can effectively optimize pump performance, but there is still insufficient research in blood pumps that cover both hydraulic and hemolysis performance. Thus, the aim of this study was to investigate the effect of key factors related to splitter blade on the performance and flow field of axial flow blood pump. In this study, the number of splitter blades, the axial length, and the circumferential offset were chosen as three objects of study. An analysis of the flow field and performance of the pump by orthogonal array design using computational fluid mechanics was carried out. A set of hydraulic and particle image velocimetry experiments of the model pumps were performed. The result showed that the pump had greater hydraulic performance without sacrificing its hemolytic performance when it had two splitter blades, the axial length ratio was 0.6, and the circumferential offset was 15°. Based on these reference data, the splitter blade may contribute to greater hydraulic performance of the pump and cause no side effect on the velocity distribution of the flow field. This finding provides an effective method for the research, development, and application of structural improvement of the axial flow blood pump.


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