The PediaFlow ™ Pediatric Ventricular Assist Device
The very limited options available to treat ventricular failure in patients with congenital and acquired heart diseases have motivated the development of a pediatric ventricular assist device (VAD). Our effort involves a consortium consisting of the University of Pittsburgh, Carnegie Mellon Universi...
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Veröffentlicht in: | Seminars in thoracic and cardiovascular surgery. Pediatric cardiac surgery annual 2006, Vol.9 (1), p.92-98 |
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creator | Wearden, Peter D. Morell, Victor O. Keller, Bradley B. Webber, Steven A. Borovetz, Harvey S. Badylak, Stephen F. Boston, J. Robert Kormos, Robert L. Kameneva, Marina V. Simaan, Marwan Snyder, Trevor A. Tsukui, Hiro Wagner, William R. Antaki, James F. Diao, Chenguang Vandenberghe, Stijn Gardiner, Jeff Li, Chung M. Noh, Daniel Paden, Dave Paden, Bradley Wu, Jingchun Bearnson, Gill B. Jacobs, Gordon Kirk, John Khanwilkar, Pratap Long, James W. Miles, Scott Hawkins, John A. Kouretas, Peter C. Shaddy, R.E. |
description | The very limited options available to treat ventricular failure in patients with congenital and acquired heart diseases have motivated the development of a pediatric ventricular assist device (VAD). Our effort involves a consortium consisting of the University of Pittsburgh, Carnegie Mellon University, Children’s Hospital of Pittsburgh, World Heart Corporation, and LaunchPoint Technologies, LLC. The overall aim of our program is to develop a highly reliable, biocompatible VAD for chronic support (6 months) of the unique and high-risk population of children between 3 kg and 15 kg (patients from birth to 2 years of age). The innovative pediatric VAD we are developing (PediaFlow™) is based on a miniature mixed-flow turbodynamic pump featuring magnetic levitation, with the design goal being to assure minimal blood trauma and risk of thrombosis. This article discusses the limitations of current pediatric cardiac assist treatment options and the work to date by our consortium toward the development of a pediatric VAD. |
doi_str_mv | 10.1053/j.pcsu.2006.02.001 |
format | Article |
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Robert ; Kormos, Robert L. ; Kameneva, Marina V. ; Simaan, Marwan ; Snyder, Trevor A. ; Tsukui, Hiro ; Wagner, William R. ; Antaki, James F. ; Diao, Chenguang ; Vandenberghe, Stijn ; Gardiner, Jeff ; Li, Chung M. ; Noh, Daniel ; Paden, Dave ; Paden, Bradley ; Wu, Jingchun ; Bearnson, Gill B. ; Jacobs, Gordon ; Kirk, John ; Khanwilkar, Pratap ; Long, James W. ; Miles, Scott ; Hawkins, John A. ; Kouretas, Peter C. ; Shaddy, R.E.</creator><creatorcontrib>Wearden, Peter D. ; Morell, Victor O. ; Keller, Bradley B. ; Webber, Steven A. ; Borovetz, Harvey S. ; Badylak, Stephen F. ; Boston, J. Robert ; Kormos, Robert L. ; Kameneva, Marina V. ; Simaan, Marwan ; Snyder, Trevor A. ; Tsukui, Hiro ; Wagner, William R. ; Antaki, James F. ; Diao, Chenguang ; Vandenberghe, Stijn ; Gardiner, Jeff ; Li, Chung M. ; Noh, Daniel ; Paden, Dave ; Paden, Bradley ; Wu, Jingchun ; Bearnson, Gill B. ; Jacobs, Gordon ; Kirk, John ; Khanwilkar, Pratap ; Long, James W. ; Miles, Scott ; Hawkins, John A. ; Kouretas, Peter C. ; Shaddy, R.E.</creatorcontrib><description>The very limited options available to treat ventricular failure in patients with congenital and acquired heart diseases have motivated the development of a pediatric ventricular assist device (VAD). Our effort involves a consortium consisting of the University of Pittsburgh, Carnegie Mellon University, Children’s Hospital of Pittsburgh, World Heart Corporation, and LaunchPoint Technologies, LLC. The overall aim of our program is to develop a highly reliable, biocompatible VAD for chronic support (6 months) of the unique and high-risk population of children between 3 kg and 15 kg (patients from birth to 2 years of age). The innovative pediatric VAD we are developing (PediaFlow™) is based on a miniature mixed-flow turbodynamic pump featuring magnetic levitation, with the design goal being to assure minimal blood trauma and risk of thrombosis. 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Pediatric cardiac surgery annual</title><addtitle>Semin Thorac Cardiovasc Surg Pediatr Card Surg Annu</addtitle><description>The very limited options available to treat ventricular failure in patients with congenital and acquired heart diseases have motivated the development of a pediatric ventricular assist device (VAD). Our effort involves a consortium consisting of the University of Pittsburgh, Carnegie Mellon University, Children’s Hospital of Pittsburgh, World Heart Corporation, and LaunchPoint Technologies, LLC. The overall aim of our program is to develop a highly reliable, biocompatible VAD for chronic support (6 months) of the unique and high-risk population of children between 3 kg and 15 kg (patients from birth to 2 years of age). The innovative pediatric VAD we are developing (PediaFlow™) is based on a miniature mixed-flow turbodynamic pump featuring magnetic levitation, with the design goal being to assure minimal blood trauma and risk of thrombosis. 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source | MEDLINE; ScienceDirect Journals (5 years ago - present) |
subjects | Biocompatible Materials - therapeutic use Child, Preschool Computer Simulation Equipment Design Extracorporeal membrane oxygenation (ECMO) Heart Defects, Congenital - complications Heart Diseases - complications Heart Failure - etiology Heart Failure - surgery Heart-Assist Devices Humans Infant Magnetic levitation Models, Cardiovascular Turbodynamic pump Ventricular assist device (VAD) |
title | The PediaFlow ™ Pediatric Ventricular Assist Device |
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