Qian K X, Zheng M
Institute of Biomedical Engineering, Jiangsu University of Science and Technology, China.
Artif Organs. 1997 Jul;21(7):670-4. doi: 10.1111/j.1525-1594.1997.tb03720.x.
A permanent impeller heart that could work for years was once an idea. However, now this idea is turning into reality through the use of the magnetically suspended motor. Recently, with our implantable pulsatile impeller pump, 3 left ventricular assisted calves survived for about 2 months (62, 54, and 46 days, respectively). The termination of the experiments was related to wear of the mechanical bearing, which resulted in vibration of the rotor and pump failure. All the experimental animals were in good condition prior to pump failure. It seemed as if the experiments could have lasted indefinitely if the bearing had not failed. All the hematological and biochemical data of the calves remained in normal or acceptable ranges; neither blood damage nor organ dysfunction of any animal was detected. During autopsy, no severe thrombus formation was found in the pump or vessels although a low dose of heparin (0.5-0.8 g/h) was given to increase the activated coagulation time (ACT) to 1.5-2.0 times its normal value. To solve the problem of bearing wear, a magnetically suspended motor was investigated and applied to the impeller pump. On the opposite sides of a disc connected to the rotor, 2 permanent magnet rings were embedded, one for driving and the other for axial suspension. Because both the driving and suspending coils with iron cores attract the disc, no radial bearing was needed. This newly devised impeller heart promises to have long-term and permanent applications.
一种能够工作数年的永久性叶轮心脏曾经只是一个设想。然而,现在通过使用磁悬浮电机,这个设想正在变为现实。最近,借助我们可植入的搏动性叶轮泵,3头接受左心室辅助的小牛分别存活了约2个月(62天、54天和46天)。实验的终止与机械轴承的磨损有关,这导致了转子振动和泵故障。在泵发生故障之前,所有实验动物的状况良好。似乎如果轴承没有出现故障,实验本可以无限期持续下去。小牛的所有血液学和生化数据均保持在正常或可接受范围内;未检测到任何动物有血液损伤或器官功能障碍。尸检时,尽管给予了低剂量肝素(0.5 - 0.8克/小时)以使活化凝血时间(ACT)增加至正常值的1.5 - 2.0倍,但在泵或血管中未发现严重血栓形成。为了解决轴承磨损问题,对磁悬浮电机进行了研究并应用于叶轮泵。在与转子相连的圆盘相对两侧,嵌入了2个永磁环,一个用于驱动,另一个用于轴向悬浮。由于带铁芯的驱动线圈和悬浮线圈都吸引圆盘,因此无需径向轴承。这种新设计的叶轮心脏有望实现长期和永久性应用。