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Daniel Timms

Showing results (21-30 of 32) with videos related to

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Artificial Organs|December 31, 2013
Starling-like flow control of a left ventricular assist device: in vitro validationNicholas R Gaddum, Michael Stevens, Einly Lim, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|August 22, 2025
In Vitro Hemocompatibility of the BiVACOR Total Artificial Heart Near the Boundaries of Clinical OperationAntony P McNamee, Daniel Timms, Frank Nestler, et al.
Artificial Organs|March 7, 2013
Anatomic fitting of total artificial hearts for in vivo evaluationShaun D Gregory, Nicole Loechel, Mark J Pearcy, et al.
Artificial Organs|September 17, 2025
In Vitro Hemocompatibility of the BiVACOR Total Artificial Heart in Continuous and Pulsatile FlowAntony P McNamee, Daniel Timms, Frank Nestler, et al.
Annals of Biomedical Engineering|August 19, 2015
In Vitro Comparison of Active and Passive Physiological Control Systems for Biventricular Assist DevicesJo P Pauls, Michael C Stevens, Emma Schummy, et al.
Artificial Organs|July 6, 2011
Assessment of right pump outflow banding and speed changes on pulmonary hemodynamics during biventricular support with two rotary left ventricular assist devicesDaniel Timms, Einar Gude, Nicholas Gaddum, et al.
Artificial Organs|October 23, 2010
Flow analysis of ventricular assist device inflow and outflow cannula positioning using a naturally shaped ventricle and aortic branchMarco Laumen, Tim Kaufmann, Daniel Timms, et al.
Artificial Organs|September 28, 2021
Anatomical human fitting of the BiVACOR total artificial heartSam Emmanuel, Paul Jansz, David McGiffin, et al.
Artificial Organs|March 26, 2014
In vitro and in vivo characterization of three different modes of pump operation when using a left ventricular assist device as a right ventricular assist deviceMichael C Stevens, Shaun D Gregory, Frank Nestler, et al.
Artificial Organs|January 11, 2016
In Vivo Evaluation of Active and Passive Physiological Control Systems for Rotary Left and Right Ventricular Assist DevicesShaun D Gregory, Michael C Stevens, Jo P Pauls, et al.
Pageof 4

Showing results (21-30 of 32) with videos related to

Sort By:
Pageof 4
Artificial Organs|December 31, 2013
Starling-like flow control of a left ventricular assist device: in vitro validationNicholas R Gaddum, Michael Stevens, Einly Lim, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|August 22, 2025
In Vitro Hemocompatibility of the BiVACOR Total Artificial Heart Near the Boundaries of Clinical OperationAntony P McNamee, Daniel Timms, Frank Nestler, et al.
Artificial Organs|March 7, 2013
Anatomic fitting of total artificial hearts for in vivo evaluationShaun D Gregory, Nicole Loechel, Mark J Pearcy, et al.
Artificial Organs|September 17, 2025
In Vitro Hemocompatibility of the BiVACOR Total Artificial Heart in Continuous and Pulsatile FlowAntony P McNamee, Daniel Timms, Frank Nestler, et al.
Annals of Biomedical Engineering|August 19, 2015
In Vitro Comparison of Active and Passive Physiological Control Systems for Biventricular Assist DevicesJo P Pauls, Michael C Stevens, Emma Schummy, et al.
Artificial Organs|July 6, 2011
Assessment of right pump outflow banding and speed changes on pulmonary hemodynamics during biventricular support with two rotary left ventricular assist devicesDaniel Timms, Einar Gude, Nicholas Gaddum, et al.
Artificial Organs|October 23, 2010
Flow analysis of ventricular assist device inflow and outflow cannula positioning using a naturally shaped ventricle and aortic branchMarco Laumen, Tim Kaufmann, Daniel Timms, et al.
Artificial Organs|September 28, 2021
Anatomical human fitting of the BiVACOR total artificial heartSam Emmanuel, Paul Jansz, David McGiffin, et al.
Artificial Organs|March 26, 2014
In vitro and in vivo characterization of three different modes of pump operation when using a left ventricular assist device as a right ventricular assist deviceMichael C Stevens, Shaun D Gregory, Frank Nestler, et al.
Artificial Organs|January 11, 2016
In Vivo Evaluation of Active and Passive Physiological Control Systems for Rotary Left and Right Ventricular Assist DevicesShaun D Gregory, Michael C Stevens, Jo P Pauls, et al.
Pageof 4