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Study on regurgitation of a bearing-less mini axial aortic valvo-pump with closed impeller
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作者 Kun-Xi Qian 《Health》 2009年第3期173-175,共3页
The back-flow of an aortic valvo-pump will re-duce the pumping flow rate but can wash out the gap between the rotor and the stator, and thus can improve the antithrombogenicity of the de-vice. To investigate the regur... The back-flow of an aortic valvo-pump will re-duce the pumping flow rate but can wash out the gap between the rotor and the stator, and thus can improve the antithrombogenicity of the de-vice. To investigate the regurgitation of a 23mm OD aortic valvo-pump, its closed impeller was replaced by a cylinder and hereby the valvo- pump had lost its pumping function. The pres-sure head crossing the aortic valvo-pump was maintained by a locally made pulsatile centrifugal pump, beating rhythmically from 30 to 120mmHg. The back flow from outlet to inlet of valvo-pump via the above-mentioned gap was measured. Results demonstrated that this gap and the pressure head had remarkable effect on back- flow;a larger gap and/or a larger pressure head would lead to a larger back-flow. By 0,20mm gap and 100mmHg pressure head, the valvo-pump had ca. 0,8 l/min back-flow. Instantaneous meas-urement indicated that the back-flow had a pul-satile form with high rate during diastole while low rate during systole of the natural heart imi-tated by pulsatile centrifugal pump. The pump rotated at 12500rpm, 15000rpm and 17500rpm respectively, but it was found the rotating speed had no affection on back-flow. This investigation provides a basis for pump design seeking for both increase of the flow rate and improvement of the compatibility;the former is particularly important for a mini axial pump and the latter is extremely difficult for closed impeller. 展开更多
关键词 AORTIC valvo-pump REGURGITATION Measurement Different Air-Gap and Pressure Head Anti-Thrombogenicity
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人造心脏泵及心脏瓣膜泵研究 被引量:4
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作者 钱坤喜 曾培 +1 位作者 茹伟民 袁海宇 《中国医疗器械杂志》 CAS 2005年第4期238-240,共3页
自1995年以来,江苏大学医学工程所先后研制四种不同设计及用途的心脏泵及心脏瓣膜泵,分别在美国德州大学医学院及镇江市第一人民医院先后用于动物试验。最近研制的江大IV号泵是心室内辅助泵,用于急性病人的抢救。
关键词 人造心脏泵 左心室辅助叶轮泵 离心血泵 主动脉瓣泵 轴流血泵
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21毫米人造心脏瓣膜泵的设计及研制 被引量:2
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作者 钱坤喜 王颢 +4 位作者 王芳群 茹伟民 曾培 袁海宇 封志刚 《上海生物医学工程》 2005年第3期160-162,167,共4页
为了研究能够长期置入主动脉瓣环的左心室辅助装置,研制出直径21毫米重27克可植入的主动脉瓣膜泵。装置包括一个转子和一个定子。转子由驱动磁钢和叶轮组成;定子装有带铁心的电机线圈和出口导叶。装置被置於主动脉瓣位置,所以不占用额... 为了研究能够长期置入主动脉瓣环的左心室辅助装置,研制出直径21毫米重27克可植入的主动脉瓣膜泵。装置包括一个转子和一个定子。转子由驱动磁钢和叶轮组成;定子装有带铁心的电机线圈和出口导叶。装置被置於主动脉瓣位置,所以不占用额外的解剖空间。血泵能像自然心脏一样直接将血液由心室输送到主动脉,不需要连接管道和旁路,因此对自然生理循环的干扰可以减到最低。血泵流量由最大到零周期变化。血液动力学测试表明,当血泵转速为17500转/分钟时,可以产生流量5升/分钟、压力增益50毫米汞柱的血流;同一转速下,当流量为零时,血泵能保持主动脉舒张压为80毫米汞柱。 展开更多
关键词 主动脉瓣膜泵 无接管左心室辅助装置 无旁路循环辅助 血液动力学特性 人造心脏瓣膜 毫米 左心室辅助装置 研制 主动脉瓣膜 血泵流量 设计 主动脉舒张压 力学测试
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主动脉瓣膜泵的回流
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作者 钱坤喜 茹伟民 +3 位作者 曾培 王芳群 王颢 袁海宇 《江苏大学学报(自然科学版)》 EI CAS 北大核心 2006年第5期434-436,共3页
为了研究主动脉瓣膜泵的回流,将血泵内的叶轮换成圆柱体,使血泵失去泵血的作用,从而进行回流测试.测试中,血泵分别以15000r/min,17500r/min和20000r/min的转速旋转,出口与进口之间的压力差由一个离心泵提供,用流量计测出从... 为了研究主动脉瓣膜泵的回流,将血泵内的叶轮换成圆柱体,使血泵失去泵血的作用,从而进行回流测试.测试中,血泵分别以15000r/min,17500r/min和20000r/min的转速旋转,出口与进口之间的压力差由一个离心泵提供,用流量计测出从瓣膜泵出口经定、转子间气隙到进口的回流.试验结果表明气隙和压差对回流有明显影响:增大气隙或增大压差都会导致回流的增加.当气隙为0.20mm,进出口压差为13.3kPa时,瓣膜泵的回流为0.6—0.8L/min.回流随时间变化的曲线图表明,在自然心脏舒张期回流产生一个波峰,而在收缩期产生一个波谷.瓣膜泵的转速对回流无明显影响,当转速增大时回流只有略微的下降. 展开更多
关键词 主动脉瓣膜泵 回流测量 气隙和压差 抗血栓形成
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Initial hydrodynamic study on a new intraaortic axial flow pump: Dynamic aortic valve
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作者 李国荣 赵红 +4 位作者 胡盛寿 朱晓东 吴清玉 任兵 马维国 《Science China(Life Sciences)》 SCIE CAS 2001年第2期199-206,共8页
Rotary blood pumps have been researched as implantableventricular assist devices for years. To further reduce the complex of implanted axial pumps, the authors proposed a new concept of intraaortic axial pump, termed ... Rotary blood pumps have been researched as implantableventricular assist devices for years. To further reduce the complex of implanted axial pumps, the authors proposed a new concept of intraaortic axial pump, termed previously as "dynamic aortic valve (DAV)". Instead of being driven by an intraaortic micro-electric motor, it was powered by a magnetic field from outside of body. To ensure the perfusion of coronary artery, the axial flow pump is to be implanted in the position of aortic valve. It could serve as either a blood pump or a mechanical valve depending on the power input. This research tested the feasibility of the new concept in model study. A column, made from permanent magnet, is jointed to an impeller in a concentric way to form a "rotor-impeller". Supported by a hanging shaft cantilevered in the center of a rigid cage, the rotor-impeller can be turned by the magnetic field in the surrounding space. In the present prototype, the rotor is 8 mm in diameter and 15 mm in length, the impeller has 3 vanes with an outer diameter of 18 mm. The supporting cage is 22 mm in outer diameter and 20 mm in length. When tested, the DAV prototype is inserted into the tube of a mock circuit. The alternative magnetic field is produced by a rotating magnet placed side by side with the rotor-impeller at a distance of 30 mm. Once the alternative magnetic field is presented in the surrounding space, the DAV starts to turn, leading to a pressure difference and liquid flow in the tube. The flow rate or pressure difference is proportioned to rotary speed. At the maximal output of hydraulic power, the flow rate reached 5 L/min against an afterload of 100 mmHg. The maximal pressure difference generated by DAV at a rotation rate of 12600 r/min was 147 mmHg. The preliminary results demonstrated the feasibility of "DAV", further research on this concept is justifiable. 展开更多
关键词 rotary blood pump left ventricular assist device dynamic aortic valve valvo-pump.
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