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PMID: 28777391 Published · ppublish English Journal Article

Design and numerical evaluation of an axial partial-assist blood pump for Chinese and other heart failure patients.

The International journal of artificial organs ·Vol. 40 ·No. 9 ·2017-09-15 ·页码 489-497

Liu GM, Jin DH, Zhou JY, Jiang XH, Sun HS, Zhang Y, Chen HB, Hu SS, Gui XM

Abstract

A fully implantable axial left ventricular assist device LAP31 was developed for Chinese or other heart failure patients who need partial support. Based on the 5-Lpm total cardiac blood output of Chinese without heart failure disease, the design point of LAP31 was set to a flow rate of 3 Lpm with 100-mmHg pressure head. To achieve the required pressure head and good hemolytic performance, a structure that includes a spindly rotor hub and a diffuser with splitter and cantilevered main blades was developed. Computational fluid dynamics (CFD) was used to analyze the hydraulic and hemodynamic performance of LAP31. Then in vitro hydraulics experiments were conducted. The numerical simulation results show that LAP31 could generate a 1 to 8 Lpm flow rate with a 60.9 to 182.7 mmHg pressure head when the pump was rotating between 9,000 and 12,000 rpm. The average scalar shear stress of the blood pump was 21.7 Pa, and the average exposure time was 71.0 milliseconds. The mean hemolysis index of LAP31 obtained using Heuser's hemolysis model and Giersiepen's model was 0.220% and 3.89 × 10-5% respectively. After adding the splitter blades, the flow separation at the suction surface of the diffuser was reduced. The cantilever structure reduced the tangential velocity from 6.1 to 4.7-1.4 m/s within the blade gap by changing the blade gap from shroud to hub. Subsequently, the blood damage caused by shear stress was reduced. In conclusion, the hydraulic and hemolytic characteristics of the LAP31 are acceptable for partial support.

MeSH 主题词
Equipment Design Heart Failure/surgery Heart-Assist Devices Hemorheology Humans Models, Cardiovascular Numerical Analysis, Computer-Assisted
作者与单位
共 9 位作者,点击展开单位 / ORCID
Liu Guang-Mao
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Jin Dong-Hai
School of Energy and Power Engineering, Beihang University, Beijing - China. | Co-Innovation Center for Advanced Aero-Engine, Beijing - China.
Zhou Jian-Ye
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Jiang Xi-Hang
Beijing Power Machinery Research Institute, Beijing - China.
Sun Han-Song
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Zhang Yan
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Chen Hai-Bo
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Hu Sheng-Shou
State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing - China.
Gui Xing-Min
School of Energy and Power Engineering, Beihang University, Beijing - China. | Co-Innovation Center for Advanced Aero-Engine, Beijing - China.
Article Info
Journal
The International journal of artificial organs
Abbr.
Int J Artif Organs
ISSN
1724-6040
Published
2017-09-15
电子出版
2017-00-02
页码
489-497
Language
English
Country/Region
United States
NLM ID
7802649
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