Zobrazeno 1 - 10
of 22
pro vyhledávání: '"Frank, Nestler"'
Autor:
William E. Cohn, Michael C. Stevens, Frank Nestler, Matthias Kleinheyer, O.H. Frazier, Stephen J. Wilson, Andrew P. Bradley, Daniel Timms, Nigel H. Lovell
Publikováno v:
Artificial Organs. 44:584-593
With the incidence of end-stage heart failure steadily increasing, the need for a practical total artificial heart (TAH) has never been greater. Continuous flow TAHs (CFTAH) are being developed using rotary blood pumps (RBPs), leveraging their small
Publikováno v:
IEEE Spectrum. 56:22-29
FOR MORE THAN 50 YEARS, cardiac surgeons and biomedical engineers at the Texas Heart Institute (THI) have been questing for an artificial heart that can fully replace natural ones, which are in terribly short supply for transplant. They've seen their
Autor:
Michael C. Stevens, Frank Nestler, Shaun D. Gregory, Eric L. Wu, John F. Fraser, Jo P. Pauls, Matthias Kleinheyer
Publikováno v:
Artificial Organs. 42:31-40
Right ventricular failure is a common complication associated with rotary left ventricular assist device (LVAD) support. Currently, there is no clinically approved long-term rotary right ventricular assist device (RVAD). Instead, clinicians have impl
Autor:
Frank Nestler, Daniel Timms
Publikováno v:
Mechanical Support for Heart Failure ISBN: 9783030478087
The BiVACOR TAH is a cardiovascular device designed to replace the entire function of a failing human heart. It is a latest generation device that uses maglev and rotary blood pump technology to suspend a single wear-free spinning disc, in wide, bloo
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::22256ef5a2cb29ad56d7ee774710e70f
https://doi.org/10.1007/978-3-030-47809-4_35
https://doi.org/10.1007/978-3-030-47809-4_35
Autor:
John F. Fraser, Frank Nestler, Shaun D. Gregory, Jo P. Pauls, Andrew P. Bradley, Eric L. Wu, Geoff Tansley, Michael C. Stevens
Publikováno v:
Artificial organsREFERENCES. 44(3)
Due to improved durability and survival rates, rotary blood pumps (RBPs) are the preferred left ventricular assist device when compared to volume displacement pumps. However, when operated at constant speed, RBPs lack a volume balancing mechanism whi
Autor:
Geoffrey Tansley, William E. Cohn, O. Howard Frazier, Frank Nestler, Matthias Kleinheyer, Daniel Timms, Nicholas Greatrex
Publikováno v:
Artificial Organs. 40:824-833
Unlike the earlier reciprocating volume displacement-type pumps, rotary blood pumps (RBPs) typically operate at a constant rotational speed and produce continuous outflow. When RBP technology is used in constructing a total artificial heart (TAH), th
Publikováno v:
Annals of Biomedical Engineering. 45:567-579
The successful clinical applicability of rotary left ventricular assist devices (LVADs) has led to research interest in devising a total artificial heart (TAH) using two rotary blood pumps (RBPs). The major challenge when using two separately control
Autor:
Elke Czeslick, M. Bucher, Frank Nestler, Armin Sablotzki, Anja Leimert, C. Raspé, Patrick Kellner
Publikováno v:
Cytokine. 70:173-178
In order to examine the immunomodulatory effects of antithrombin III (AT-III) and C1 esterase inhibitor (C1-INH) in human monocytes, we investigated the intracellular expression of interleukin (IL)-6, IL-8, and tumor necrosis factor (TNF)-α in an ex
Autor:
O. Howard Frazier, William E. Cohn, Stephen J. Wilson, Andrew P. Bradley, Daniel Timms, Frank Nestler
Publikováno v:
Artificial Organs. 38:775-782
Rotary blood pumps are emerging as a viable technology for total artificial hearts, and the development of physiological control algorithms is accelerated with new evaluation environments. In this article, we present a novel hybrid mock circulation l
Autor:
Jivesh Choudhary, Shaun D. Gregory, B. Thomson, Michael C. Stevens, Frank Nestler, Daniel Timms, Jo P. Pauls, B. Garlick, John F. Fraser
Publikováno v:
Artificial Organs. 38:931-939
Dual rotary left ventricular assist devices (LVADs) have been used clinically to support patients with biventricular failure. However, due to the lower vascular resistance in the pulmonary circulation compared with its systemic counterpart, excessive