Characteristics of a blood pump combining the centrifugal and axial pumping principles: The spiral pump

被引:25
作者
Andrade, A [1 ]
Biscegli, J [1 ]
Dinkhuysen, J [1 ]
Sousa, JE [1 ]
Ohashi, Y [1 ]
Hemmings, S [1 ]
Glueck, J [1 ]
Kawahito, K [1 ]
Nose, Y [1 ]
机构
[1] INST DANTE PAZZANESE CARDIOL,DEPT BIOENGN,SAO PAULO,BRAZIL
关键词
centrifugal pump; blood pump; ventricular assist device; extracorporeal circulation; index of hemolysis; blood trauma;
D O I
10.1111/j.1525-1594.1996.tb04489.x
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Two well-known centrifugal and axial pumping principles are used simultaneously in a new blood pump design. Inside the pump housing is a spiral impeller, a conically shaped structure with threads on the surface. The worm gears provide an axial motion of the blood column through the threads of the central cone. The rotational motion of the conical shape generates the centrifugal pumping effect and improves the efficiency of the pump without increasing hemolysis. The hydrodynamic performance of the pump was examined with a 40% glycerin-water solution at several rotation speeds. The gap between the housing and the top of the thread is a very important factor: when the gap increases, the hydrodynamic performance decreases. To determine the optimum gap, several in vitro hemolysis tests were performed with different gaps using bovine blood in a closed circuit loop under two conditions. The first simulated condition was a left ventricular assist device (LVAD) with a flow rate of 5 L/min against a pressure head of 100 mm Hg, and the second was a cardiopulmonary bypass (CPB) simulation with a flow rate of 5 L/min against 350 mm Hg of pressure. The best hemolysis results were seen at a gap of 1.5 mm with the normalized index of hemolysis (NIH) of 0.0063 +/- 0.0020 g/100 L and 0.0251 +/- 0.0124 g/100 L (mean +/- SD; n = 4) for LVAD and CPB conditions, respectively.
引用
收藏
页码:605 / 612
页数:8
相关论文
共 25 条
[11]   DEVELOPMENT OF THE BAYLOR NASA AXIAL-FLOW VENTRICULAR ASSIST DEVICE - IN-VITRO PERFORMANCE AND SYSTEMATIC HEMOLYSIS TEST-RESULTS [J].
MIZUGUCHI, K ;
DAMM, GA ;
BOZEMAN, RJ ;
AKKERMAN, JW ;
ABER, GS ;
SVEJKOVSKY, PA ;
BACAK, JW ;
ORIME, Y ;
TAKATANI, S ;
NOSE, Y ;
NOON, GP ;
DEBAKEY, ME .
ARTIFICIAL ORGANS, 1994, 18 (01) :32-43
[12]   THE NEED FOR STANDARDIZING THE INDEX OF HEMOLYSIS [J].
NAITO, K ;
MIZUGUCHI, K ;
NOSE, Y .
ARTIFICIAL ORGANS, 1994, 18 (01) :7-10
[13]  
NISHIDA H, 1993, ARTIF ORGANS, V17, P323
[14]  
NOSE YUKIHIKO, 1967, J BIOMED MAT RES, V1, P151, DOI 10.1002/jbm.820010114
[15]   DEVELOPMENT AND EVALUATION OF ANTITHROMBOGENIC CENTRIFUGAL PUMP - THE BAYLOR-C-GYRO-PUMP-ECCENTRIC-INLET-PORT-MODEL [J].
OHARA, Y ;
MAKINOUCHI, K ;
GLUECK, J ;
SUTHERLAND, B ;
SHIMONO, T ;
NAITO, K ;
TASAI, K ;
ORIME, Y ;
TAKATANI, S ;
NOSE, Y .
ARTIFICIAL ORGANS, 1994, 18 (09) :673-679
[16]  
OHARA Y, 1993, ARTIF ORGANS, V17, P599
[17]   AN ULTIMATE, COMPACT, SEALLESS CENTRIFUGAL VENTRICULAR ASSIST DEVICE - BAYLOR C-GYRO PUMP [J].
OHARA, Y ;
MAKINOUCHI, K ;
ORIME, Y ;
TASAI, K ;
NAITO, K ;
MIZUGUCHI, K ;
SHIMONO, T ;
DAMM, G ;
GLUECK, J ;
TAKATANI, S ;
NOON, GP ;
NOSE, Y .
ARTIFICIAL ORGANS, 1994, 18 (01) :17-24
[18]  
OKU T, 1988, T AM SOC ART INT ORG, V34, P500
[19]   CARDIOPULMONARY BYPASS WITH NIKKISO AND BIOMEDICUS CENTRIFUGAL PUMPS [J].
ORIME, Y ;
TAKATANI, S ;
SASAKI, T ;
AIZAWA, T ;
OHARA, Y ;
NAITO, K ;
GLUECK, J ;
NOON, GP ;
NOSE, Y ;
DEBAKEY, ME .
ARTIFICIAL ORGANS, 1994, 18 (01) :11-16
[20]   MINIMIZATION OF HEMOLYSIS IN CENTRIFUGAL BLOOD PUMPS - INFLUENCE OF DIFFERENT GEOMETRIES [J].
SCHIMA, H ;
MULLER, MR ;
PAPANTONIS, D ;
SCHLUSCHE, C ;
HUBER, L ;
SCHMIDT, C ;
TRUBEL, W ;
THOMA, H ;
LOSERT, U ;
WOLNER, E .
INTERNATIONAL JOURNAL OF ARTIFICIAL ORGANS, 1993, 16 (07) :521-529