Design and Computational Evaluation of a Pediatric MagLev Rotary Blood Pump

被引:11
作者
Tompkins, Landon H. [1 ]
Gellman, Barry N. [2 ]
Morello, Gino F. [3 ]
Prina, Steven R. [4 ]
Roussel, Thomas J. [1 ]
Kopechek, Jonathan A. [1 ]
Petit, Priscilla C. [2 ]
Slaughter, Mark S. [5 ]
Koenig, Steven C. [1 ,5 ]
Dasse, Kurt A. [1 ,2 ,5 ]
机构
[1] Univ Louisville, Dept Bioengn, Louisville, KY 40202 USA
[2] Inspired Therapeut LLC, 125 E Merritt Isl Cswy,107-341, Merritt Isl, FL 32925 USA
[3] Veritium Res LLC, Ft Lee, NJ USA
[4] BLDC Designs LLC, Rocklin, CA USA
[5] Univ Louisville, Dept Cardiovasc & Thorac Surg, Louisville, KY 40202 USA
基金
美国国家卫生研究院;
关键词
mechanical circulatory support; ventricular assist device; computational fluid dynamics; pediatric; centrifugal pump; VENTRICULAR ASSIST DEVICES; CIRCULATORY SUPPORT; CONTINUOUS-FLOW; FLUID-DYNAMICS; UNITED-STATES;
D O I
10.1097/MAT.0000000000001323
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Pediatric heart failure (HF) patients have been a historically underserved population for mechanical circulatory support (MCS) therapy. To address this clinical need, we are developing a low cost, universal magnetically levitated extracorporeal system with interchangeable pump heads for pediatric support. Two impeller and pump designs (pump V1 and V2) for the pediatric pump were developed using dimensional analysis techniques and classic pump theory based on defined performance criteria (generated flow, pressure, and impeller diameter). The designs were virtually constructed using computer-aided design (CAD) software and 3D flow and pressure features were analyzed using computational fluid dynamics (CFD) analysis. Simulated pump designs (V1, V2) were operated at higher rotational speeds (similar to 5,000 revolutions per minute [RPM]) than initially estimated (4,255 RPM) to achieve the desired operational point (3.5 L/min flow at 150 mm Hg). Pump V2 outperformed V1 by generating approximately 30% higher pressures at all simulated rotational speeds and at 5% lower priming volume. Simulated hydrodynamic performance (achieved flow and pressure, hydraulic efficiency) of our pediatric pump design, featuring reduced impeller size and priming volume, compares favorably to current commercially available MCS devices.
引用
收藏
页码:1026 / 1035
页数:10
相关论文
共 38 条
[1]  
Adachi Iki, 2011, Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu, V14, P38, DOI 10.1053/j.pcsu.2011.01.008
[2]   Impact of Pulsatile Flow Settings on Hemodynamic Energy Levels Using the Novel Diagonal Medos DP3 Pump in a Simulated Pediatric Extracorporeal Life Support System [J].
Adedayo, Pelumi ;
Wang, Shigang ;
Kunselman, Allen R. ;
Undar, Akif .
WORLD JOURNAL FOR PEDIATRIC AND CONGENITAL HEART SURGERY, 2014, 5 (03) :440-448
[3]   Flow-induced platelet activation and damage accumulation in a mechanical heart valve: Numerical studies [J].
Alemu, Yared ;
Bluestein, Danny .
ARTIFICIAL ORGANS, 2007, 31 (09) :677-688
[4]   Waiting List Mortality Among Children Listed for Heart Transplantation in the United States [J].
Almond, Christopher S. D. ;
Thiagarajan, Ravi R. ;
Piercey, Gary E. ;
Gauvreau, Kimberlee ;
Blume, Elizabeth D. ;
Bastardi, Heather J. ;
Fynn-Thompson, Francis ;
Singh, T. P. .
CIRCULATION, 2009, 119 (05) :717-727
[5]   Outcomes of children implanted with ventricular assist devices in the United States: First analysis of the Pediatric Interagency Registry for Mechanical Circulatory Support (PediMACS) [J].
Blume, Elizabeth D. ;
Rosenthal, David N. ;
Rossano, Joseph W. ;
Baldwin, J. Timothy ;
Eghtesady, Pirooz ;
Morales, David L. S. ;
Cantor, Ryan S. ;
Conway, Jennifer ;
Lorts, Angela ;
Almond, Christopher S. ;
Naftel, David C. ;
Kirklin, James K. .
JOURNAL OF HEART AND LUNG TRANSPLANTATION, 2016, 35 (05) :578-584
[6]  
Boville B., 2015, QUICK GUIDE CARDIOPU
[7]  
Burki S, 2017, VASC HEALTH RISK MAN, V13, P177, DOI 10.2147/VHRM.S82379
[8]   Development of a radial ventricular assist device using numerical predictions and experimental haemolysis [J].
Carswell, Dave ;
Hilton, Andy ;
Chan, Chris ;
McBride, Diane ;
Croft, Nick ;
Slone, Avril ;
Cross, Mark ;
Foster, Graham .
MEDICAL ENGINEERING & PHYSICS, 2013, 35 (08) :1197-1203
[9]  
Cattermole GN, 2017, PHYSIOL REP, V5, DOI 10.14814/phy2.13195
[10]  
Centers for Disease Control and Prevention, 2017, Growth charts-clinical growth charts