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Microvascular Research|May 28, 2018
Sublethal mechanical trauma alters the electrochemical properties and increases aggregation of erythrocytesAntony P McNamee, Geoff D Tansley, Michael J Simmonds
Microcirculation (New York, N.Y. : 1994)|August 2, 2020
Sublethal mechanical shear stress increases the elastic shear modulus of red blood cells but does not change capillary transit velocityAntony P McNamee, Geoff D Tansley, Michael J Simmonds
Biophysical Journal|November 1, 2020
Sublethal Supraphysiological Shear Stress Alters Erythrocyte Dynamics in Subsequent Low-Shear FlowsAntony P McNamee, Tom Fitzpatrick, Geoff D Tansley, et al.
Artificial Organs|November 24, 2004
Experimental determination of dynamic characteristics of the VentrAssist implantable rotary blood pumpMichael K H Chung, Nong Zhang, Geoff D Tansley, et al.
Artificial Organs|March 30, 2004
Impeller behavior and displacement of the VentrAssist implantable rotary blood pumpMichael K H Chung, Nong Zhang, Geoff D Tansley, et al.
Artificial Organs|September 7, 2017
Oxidative Stress Increases Erythrocyte Sensitivity to Shear-Mediated DamageAntony P McNamee, Jarod T Horobin, Geoff D Tansley, et al.
Artificial Organs|January 30, 2013
Cell exclusion in couette flow: evaluation through flow visualization and mechanical forcesLaura J Leslie, Lindsay J Marshall, Andrew Devitt, et al.
Artificial Organs|September 20, 2014
Development of a numerical pump testing frameworkTim A S Kaufmann, Shaun D Gregory, Martin R Büsen, 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.
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