Qian K X, Wang D F, Topaz S, Ru W M, Zeng P, Yuan H Y, Zwischenberg J B
Biomedical Engineering Institute of Jiangsu University, Zhenjiang, China.
J Med Eng Technol. 2007 May-Jun;31(3):181-4. doi: 10.1080/03091900500285445.
To investigate the feasibility of a long-term left ventricular assist device (LVAD) placed in the aortic valve annulus, an implantable aortic valve pump (21 mm outer diameter, weighing 27 g) was developed. The device consists of a central rotor and a stator. The rotor assembly incorporates driven magnets and an impeller. The stator assembly has a motor coil with an iron core and outflow guide vanes. The device is to be implanted identically to an aortic valve replacement, occupying no additional anatomic space. The pump delivers the blood directly from left ventricle to the aortic root, like a natural ventricle, therefore causing less physiologic disturbance to the natural circulation. Neither connecting conduits nor 'bypass' circuits are necessary. The pump is designed to cycle between a peak flow and zero net flow to approximate systole and diastole. Bench testing indicates that the pump can produce a blood flow of 5 l min(-1) with 50 mmHg pressure increase at 17,500 rpm. At zero net flow rate, the pump can maintain a diastole aortic pressure against 80 mmHg at the same rotating speed.
为研究将长期左心室辅助装置(LVAD)置于主动脉瓣环的可行性,研发了一种可植入式主动脉瓣泵(外径21毫米,重27克)。该装置由一个中心转子和一个定子组成。转子组件包括从动磁体和一个叶轮。定子组件有一个带铁芯的电机线圈和流出导向叶片。该装置的植入方式与主动脉瓣置换完全相同,不占用额外的解剖空间。该泵像自然心室一样将血液直接从左心室输送到主动脉根部,因此对自然循环造成的生理干扰较小。既不需要连接管道也不需要“旁路”回路。该泵设计为在峰值流量和零净流量之间循环,以模拟收缩期和舒张期。台架测试表明,该泵在17500转/分钟时可产生5升/分钟的血流,压力升高50毫米汞柱。在零净流量时,该泵在相同转速下可维持80毫米汞柱的舒张期主动脉压力。