Development of Inspired Therapeutics Pediatric VAD: Benchtop Evaluation of Impeller Performance and Torques for MagLev Motor Design
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Almond, C. S. D., et al. Waiting list mortality among children listed for heart transplantation in the United States. Circulation. 119(5):717–727, 2009.
Boës, S., G. Ochsner, R. Amacher, A. Petrou, M. Meboldt, and M. Schmid Daners. Control of the fluid viscosity in a mock circulation. Artif. Organs. 42(1):68–77, 2018.
Bourque, K., et al. HeartMate III: pump design for a centrifugal LVAD with a magnetically levitated rotor. ASAIO J. 47(4):401–405, 2001.
Dasse, K. A., et al. Assessment of hydraulic performance and biocompatibility of a MagLev centrifugal pump system designed for pediatric cardiac or cardiopulmonary support. ASAIO J. 53(6):771–777, 2007.
Electro-Craft Corporation USA. DC Motors, Speed Controls, Servo Systems: An Engineering Handbook, 3rd ed. Oxford: Pergamon Press, 1972.
Fleck, T., et al. First serial in vivo results of mechanical circulatory support in children with a new diagonal pump. Eur. J. Cardio-Thoracic Surg. 44(5):828–835, 2013.
Gross-Hardt, S., et al. Low-flow assessment of current ECMO/ECCO2R rotary blood pumps and the potential effect on hemocompatibility. Crit. Care. 23(1):1–9, 2019.
Göbel, C., et al. Development of the MEDOS/HIA DeltaStream extracorporeal rotary blood pump. Artif. Organs. 25(5):358–365, 2001.
Hijikata, W., et al. A magnetically levitated centrifugal blood pump with a simple-structured disposable pump head. Artif. Organs. 32(7):531–540, 2008.
Hosseinipour, M., R. Gupta, M. Bonnell, and M. Elahinia. Rotary mechanical circulatory support systems. J. Rehabil. Assist. Technol. Eng. 4:205566831772599, 2017.
Hughes, A., and B. Drury. Electric Motors and Drives. Amsterdam: Elsevier, 2013.
Larose, J. A., D. Tamez, M. Ashenuga, and C. Reyes. Design concepts and principle of operation of the heartware ventricular assist system. ASAIO J. 56(4):285–289, 2010.
Long, J. A., A. Ündar, K. B. Manning, and S. Deutsch. Viscoelasticity of pediatric blood and its implications for the testing of a pulsatile pediatric blood pump. ASAIO J. 51(5):563–566, 2005.
Masuzawa, T., M. Osa, and M. Mapley. Motor and suspension design. In: Mechanical Circulatory and Respiratory Support—Motor Design and Impeller Suspension, 1st ed., edited by S. D. Gregory, M. C. Stevens, and J. F. Fraser. New York: Academic Press, 2018, pp. 335–377.
Mendler, N., F. Podechtl, G. Feil, P. Hiltmann, and F. Sebening. Seal-less centrifugal blood pump with magnetically suspended rotor: rot-a-flot. Artif. Organs. 19(7):620–624, 1995.
Moazami, N., et al. Axial and centrifugal continuous-flow rotary pumps: a translation from pump mechanics to clinical practice. J. Hear. Lung Transplant. 32(1):1–11, 2013.
N. Barletta, Design of a bearingless blood pump, in 3rd International Symposium on Magnetic Suspension Technology, 1995, 1995, pp. 265–274.
Takami, Y., T. Nakazawa, K. Makinouchi, J. Glueck, R. Benkowski, and Y. Nosé. Mapping of pump efficiency on the pressure–flow curve of a centrifugal blood pump. Artif. Organs. 21(8):953–957, 1997.
Tompkins, L. H., et al. Design and initial computational evaluation of a pediatric MagLev rotary blood pump. ASAIO J. 2020. https://doi.org/10.1097/MAT.0000000000001323.
Wang, S., A. R. Kunselman, and A. Ündar. Novel pulsatile diagonal pump for pediatric extracorporeal life support system. Artif. Organs 37(1):37–47, 2013.
Wilmot, I., A. Lorts, and D. Morales. Pediatric mechanical circulatory support. Korean J. Thorac. Cardiovasc. Surg. 46(6):391–401, 2013.