Liu Guang-Mao, Jin Dong-Hai, Jiang Xi-Hang, Zhou Jian-Ye, Zhang Yan, Chen Hai-Bo, Hu Sheng-Shou, Gui Xing-Min
From the *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; †School of Energy and Power Engineering, Beihang University, Beijing, China; and ‡Beijing Power Machinery Research Institute, Beijing, China.
ASAIO J. 2016 Nov/Dec;62(6):657-665. doi: 10.1097/MAT.0000000000000429.
The ventricular assist pumps do not always function at the design point; instead, these pumps may operate at unfavorable off-design points. For example, the axial ventricular assist pump FW-2, in which the design point is 5 L/min flow rate against 100 mm Hg pressure increase at 8,000 rpm, sometimes works at off-design flow rates of 1 to 4 L/min. The hemolytic performance of the FW-2 at both the design point and at off-design points was estimated numerically and tested in vitro. Flow characteristics in the pump were numerically simulated and analyzed with special attention paid to the scalar sheer stress and exposure time. An in vitro hemolysis test was conducted to verify the numerical results. The simulation results showed that the scalar shear stress in the rotor region at the 1 L/min off-design point was 70% greater than at the 5 L/min design point. The hemolysis index at the 1 L/min off-design point was 3.6 times greater than at the 5 L/min design point. The in vitro results showed that the normalized index of hemolysis increased from 0.017 g/100 L at the 5 L/min design point to 0.162 g/100 L at the 1 L/min off-design point. The hemolysis comparison between the different blood pump flow rates will be helpful for future pump design point selection and will guide the usage of ventricular assist pumps. The hemolytic performance of the blood pump at the working point in the clinic should receive more focus.
心室辅助泵并不总是在设计点运行;相反,这些泵可能在不利的非设计点运行。例如,轴流心室辅助泵FW - 2的设计点是在8000转/分钟时流量为5升/分钟,压力增加100毫米汞柱,有时会在1至4升/分钟的非设计流量下工作。对FW - 2在设计点和非设计点的溶血性能进行了数值估算并在体外进行了测试。对泵内的流动特性进行了数值模拟和分析,特别关注标量剪切应力和暴露时间。进行了体外溶血试验以验证数值结果。模拟结果表明,在1升/分钟非设计点时转子区域的标量剪切应力比在5升/分钟设计点时大70%。在1升/分钟非设计点时的溶血指数比在5升/分钟设计点时大3.6倍。体外结果表明,溶血归一化指数从5升/分钟设计点时的0.017克/100升增加到1升/分钟非设计点时的0.162克/100升。不同血泵流速之间的溶血比较将有助于未来泵设计点的选择,并将指导心室辅助泵的使用。血泵在临床工作点的溶血性能应受到更多关注。