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Dive into the research topics where Edward K. Prem is active.

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Featured researches published by Edward K. Prem.


international conference on advanced intelligent mechatronics | 2005

Magnetic levitation design for the PediaFlow ventricular assist device

Myounggyu D. Noh; James F. Antaki; Michael A. Ricci; Jeff Gardiner; Edward K. Prem; Harvey S. Borovetz; Bradley E. Paden

Over the past few decades, we have seen a tremendous progress in the development of implantable ventricular assist devices (VAD). However, these devices are mainly developed for adult patients. For the patients under age 5 who have chronic heart failures, physicians must resort to extracorporeal circulatory support devices which often result in infection, thromboembolism, or excessive blood transfusions. In this paper, we describe a design process for a pediatric ventricular assist device (PVAD). The central part of the device is a magnetically levitated rotating pump which creates a pressure rise (~100 mmHg) at a required flow rate (~0.5 L/min) suitable for infants and small children. We have considered several different pump topologies, of which an axial mixed-flow pump configuration was chosen for further development. The pump impeller is supported by two radial permanent-magnet passive bearings. The rotor-dynamics analysis of the pump shows that the critical speeds of the pump are affected by the radial and yaw stiffnesses of the PM bearings. Hence, analytical expressions for the stiffnesses are derived and verified through FEA. In contrast to the radial suspension, the axial motion of the impeller is actively controlled using a voice-coil actuator. A toroidally-wound motor drives the pump with high efficiency and little additional negative radial stiffness. The design process relies heavily on optimization at the component-level and system-level. The preliminary results of the design optimization are presented in this paper


Archive | 1992

Biocompatible ventricular assist and arrhythmia control device including cardiac compression band-stay-pad assembly

Marlin S. Heilman; Steve A. Kolenik; Christopher D. Capone; Carl M. Parisi; Edward K. Prem; Vernon L. Speicher


Archive | 1990

Biocompatible ventricular assist and arrhythmia control device including cardiac compression pad and compression assembly

Marlin S. Heilman; Steve A. Kolenik; Christopher D. Capone; Carl M. Parisi; Edward K. Prem; Vernon L. Speicher


Archive | 1994

Cardiac compression band-stay-pad assembly and method of replacing the same

Marlin S. Heilman; Steve A. Kolenik; Christopher D. Capone; Carl M. Parisi; Edward K. Prem; Vernon L. Speicher


Archive | 1999

Single chamber blood pump

Marlin S. Heilman; Christopher D. Capone; Edward K. Prem; Richard Andrew Sofranko; Carl M. Parisi; Steve A. Kolenik; Daniel Richard Moore


Archive | 2005

Devices, systems and methods for assisting blood flow

Marlin S. Heilman; Douglas J. Koebler; Daniel Richard Moore; Edward K. Prem


Archive | 2002

Touch down of blood pump impellers

Christopher D. Capone; Ruey C. Dempsey; Marlin S. Heilman; Steve A. Kolenik; Daniel Richard Moore; Carl M. Parisi; Edward K. Prem; Richard Andrew Sofranko; David Borzelleca; Greg W. Burgreen; John A. Holmes; Zhongjun J. Wu; Ralph Scott Hebbert; James F. Antaki


Archive | 2003

Method and apparatus for providing limited back-flow in a blood pump during a non-pumping state

Marlin S. Heilman; Christopher D. Capone; Steve A. Kolenik; Daniel Richard Moore; Carl M. Parisi; Edward K. Prem; Richard Andrew Sofranko; James F. Antaki; Brad Paden; David Borzelleca; Greg W. Burgreen; John A. Holmes; Zhongjun J. Wu


Archive | 2003

Inflow conduit for ventricular assist device

Daniel Richard Moore; Christopher D. Capone; Marlin S. Heilman; Steve A. Kolenik; Carl M. Parisi; Edward K. Prem; Richard Andrew Sofranko


Archive | 2012

Continuous multi-fluid delivery system and method

Christopher D. Capone; Richard A. Seman; John A. Haury; Edward K. Prem; Joseph E. Bisegna; Ronald Heller; Glen P. Williams; Joseph C. Mator; Jason L. Bazala

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