Mechanical axial flow blood pump to support cavopulmonary circulation

被引:14
作者
Throckmorton, A. L. [1 ]
Kapadia, J. [1 ]
Madduri, D. [1 ]
机构
[1] Virginia Commonwealth Univ, Dept Mech Engn, Richmond, VA 23284 USA
基金
美国国家科学基金会;
关键词
Pediatric mechanical circulatory support; Pediatric ventricular assist device; Pediatric circulatory support; Ventricular assist device; Single ventricle physiology; Cavopulmonary assist device; Fontan conversion; Heart pump; Blood pump; Artificial right ventricle;
D O I
10.1177/039139880803101107
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
We are developing a collapsible, percutaneously inserted, axial flow blood pump to support the cavopulmonary circulation in infants with a failing single ventricle physiology. An initial design of the impeller for this axial flow blood pump was performed using computational fluid dynamics analysis, including pressure-flow characteristics, scalar stress estimations, blood damage indices, and fluid force predictions. A plastic prototype was constructed for hydraulic performance testing, and these experimental results were compared with the numerical predictions. The numerical predictions and experimental findings of the pump performance demonstrated a pressure generation of 2-16 mm Hg for 50-750 ml/min over 5,500-7,500 RPM with deviation found at lower rotational speeds. The axial fluid forces remained below 0.1 N, and the radial fluid forces were determined to be virtually zero due to the centered impeller case. The scalar stress levels remained below 250 Pa for all operating conditions. Blood damage analysis yielded a mean residence time of the released particles, which was found to be less than 0.4 seconds for both flow rates that were examined, and a maximum residence time was determined to be less than 0.8 seconds. We are in the process of designing a cage with hydrodynamically shaped filament blades to act as a diffuser and optimizing the impeller blade shape to reduce the flow vorticity at the pump outlet. This blood pump will improve the clinical treatment of patients with failing Fontan physiology and provide a unique catheter-based therapeutic approach as a bridge to recovery or transplantation. (Int J Artif Organs 2008; 31: 970-82)
引用
收藏
页码:970 / 982
页数:13
相关论文
共 42 条
[1]   Numerical analysis of blood flow in the clearance regions of a continuous flow artificial heart pump [J].
Anderson, J ;
Wood, HG ;
Allaire, PE ;
Olsen, DB .
ARTIFICIAL ORGANS, 2000, 24 (06) :492-500
[2]   Computational flow study of the continuous flow ventricular assist device, prototype number 3 blood pump [J].
Anderson, JB ;
Wood, HG ;
Allaire, PE ;
Bearnson, G ;
Khanwilkar, P .
ARTIFICIAL ORGANS, 2000, 24 (05) :377-385
[3]   Numerical studies of blood shear and washing in a continuous flow ventricular assist device [J].
Anderson, JB ;
Wood, HG ;
Allaire, PE ;
McDaniel, JC ;
Olsen, DB ;
Bearnson, G .
ASAIO JOURNAL, 2000, 46 (04) :486-494
[4]   Computational fluid dynamics and experimental validation of a microaxial blood pump [J].
Apel, J ;
Neudel, F ;
Reul, H .
ASAIO JOURNAL, 2001, 47 (05) :552-558
[5]   Conversion of the failed Fontan circulation [J].
Backer, Carl L. ;
Deal, Barbara J. ;
Mavroudis, Constantine ;
Franklin, Wayne H. ;
Stewart, Robert D. .
CARDIOLOGY IN THE YOUNG, 2006, 16 :85-91
[6]   3-DIMENSIONAL NUMERICAL PREDICTION OF STRESS LOADING OF BLOOD PARTICLES IN A CENTRIFUGAL PUMP [J].
BLUDSZUWEIT, C .
ARTIFICIAL ORGANS, 1995, 19 (07) :590-596
[7]  
BOYD J, 2004, 90 ANN CLIN C AM COL
[8]   Congenital heart disease in adults: First of two parts [J].
Brickner, ME ;
Hillis, LD ;
Lange, RA .
NEW ENGLAND JOURNAL OF MEDICINE, 2000, 342 (04) :256-263
[9]  
Christianson A., 2006, March of Dimes Global Report on Birth Defects: The Hidden Toll of Dying and Disabled Children
[10]  
DELEVAL MR, 1988, J THORAC CARDIOV SUR, V96, P682