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Dive into the research topics where P. J. Miller is active.

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Featured researches published by P. J. Miller.


Asaio Journal | 1989

Chronic ovine evaluation of a totally implantable electrical left ventricular assist system

Narayanan Ramasamy; Herb Chen; P. J. Miller; Jal S. Jassawalla; B. A. Greene; Ocampo A; L. C. Siegel; Oyer Pe; Peer M. Portner

The totally implantable Novacor left ventricular assist system (LVAS) comprises a pump/drive unit (VAD), electronic control and power subsystem (ECP), variable volume compensator (VVC), and belt skin transformer (BST). The system is now undergoing chronic in vivo evaluation. Cumulative animal testing of VAD, VVC, and BST subsystems are 12.1, 4.9, and 43 years, respectively. The longest implants were 279 days for the VAD, 767 days for the VVC, and 1,148 days for the BST. A chronic implant of the total system was electively terminated at 260 days. The LVAS was powered via the BST. Continuously monitored hemodynamic and pump parameters have demonstrated normal hemodynamics and LVAS operation. Periodic VVC determinations suggest a 0.8 ml/day diffusive gas loss. Tether-free operation has been demonstrated with an Ag-Zn battery backpack. The animal was healthy and free of infection as indicated by routine hematologic, biochemical and serum enzyme determinations. Hemolysis is minimal (plasma free hemoglobin less than 5 mg%). Pump output ranged from 7 to 8 L/min. Severe valve calcification was the reason for elective termination at 260 days. This preclinical in vivo experience, and in vitro reliability studies, demonstrate efficacy of the total system.


Asaio Journal | 1994

Initial clinical experience with a wearable controller for the Novacor left ventricular assist system

P. J. Miller; T. J. Billich; D. H. Laforge; J. Lee; A. Naegeli; Narayanan Ramasamy; Jal S. Jassawalla; Peer M. Portner


American Society for Artificial Internal Organs. Meeting | 1991

Clinical evaluation of the novacor totally implantable ventricular assist system

M. A. Daniel; J. Lee; D. H. Laforge; H. Chen; J. Billich; P. J. Miller; Narayanan Ramasamy; L. R. Strauss; Jal S. Jassawalla; Peer M. Portner


Asaio Journal | 1983

In vivo evaluation of a compact, implantable left ventricular assist system (LVAS).

P. J. Miller; Green Gf; H. Chen; Narayanan Ramasamy; David H. LaForge; Jal S. Jassawalla; Ream Ak; Oyer Pe; Peer M. Portner


Asaio Journal | 2000

Next generation Novacor LVAS- A miniaturized pulsatile pump.

Jal S. Jassawalla; David H. LaForge; P. J. Miller; Peer M. Portner


Asaio Journal | 1991

Clinical evaluation of the Novacor totally implantable ventricular assist system. Current status.

Daniel Ma; James C. Lee; David H. LaForge; H. Chen; Billich J; P. J. Miller; Narayanan Ramasamy; Strauss Lr; Jal S. Jassawalla; Peer M. Portner


Archive | 2008

Vad implantable avec câble percutané remplaçable

Tim Maher; Jim Lee; Ron Ness; H. Chen; Jesse Hubbard; P. J. Miller; John Barr; Jim Long; Karl E. Nelson


Archive | 2008

Implantierbares vad-system mit austauschbarem perkutanen kabel

Tim Maher; Jim Lee; Ron Ness; H. Chen; Jesse Hubbard; P. J. Miller; John Barr; Jim Long; Karl E. Nelson


Asaio Journal | 2003

NEXT GENERATION PULSATILE VAD

P. J. Miller; David H. LaForge; Jal S. Jassawalla; T Mussivand; Peer M. Portner


Asaio Journal | 1997

SPRING-DECOUPLED LVAS AS A TIME-VARYING ELASTANCE, OPERATING ANALOGOUSLY TO THE NATURAL VENTRICLE

P. J. Miller; Jal S. Jassawalla; Peer M. Portner

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H. Chen

University of Wisconsin-Madison

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