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Richard A Malinauskas

Showing results (1-10 of 29) with videos related to

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Hemodialysis International. International Symposium on Home Hemodialysis|July 22, 2008
Decreased hemodialysis circuit pressures indicating postpump tubing kinks: a retrospective investigation of hemolysis in five patientsRichard A Malinauskas
Artificial Organs|October 16, 2010
Comparison of two platelet activation markers using flow cytometry after in vitro shear stress exposure of whole human bloodQijin Lu, Richard A Malinauskas
Artificial Organs|April 9, 2015
Working with the Food and Drug Administration's Center for Devices to Advance Regulatory Science and Medical Device InnovationRichard A Malinauskas, Anindita Saha, Murray I Sheldon
Artificial Organs|January 14, 2022
The effect of blood viscosity on shear-induced hemolysis using a magnetically levitated shearing deviceJames A Krisher, Richard A Malinauskas, Steven W Day
Artificial Organs|June 7, 2013
In vitro shear stress-induced platelet activation: sensitivity of human and bovine bloodQijin Lu, Bryan V Hofferbert, Grace Koo, et al.
Journal of Medical Devices|August 9, 2023
In Vitro Thrombogenicity Testing of Biomaterials in a Dynamic Flow Loop: Effects of Length and Quantity of Test SamplesMegan A Jamiolkowski, Madelyn D Golding, Richard A Malinauskas, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|February 27, 2019
An In Vitro Blood Flow Loop System for Evaluating the Thrombogenicity of Medical Devices and BiomaterialsMegan A Jamiolkowski, Matthew C Hartung, Richard A Malinauskas, et al.
Artificial Organs|April 19, 2016
A Reusable, Compliant, Small Volume Blood Reservoir for In Vitro Hemolysis TestingSalim E Olia, Luke H Herbertson, Richard A Malinauskas, et al.
Journal of Biomechanical Engineering|June 13, 2015
Verification Benchmarks to Assess the Implementation of Computational Fluid Dynamics Based Hemolysis Prediction ModelsPrasanna Hariharan, Gavin D'Souza, Marc Horner, et al.
Biomechanics and Modeling in Mechanobiology|March 1, 2019
A CFD-based Kriging surrogate modeling approach for predicting device-specific hemolysis power law coefficients in blood-contacting medical devicesBrent A Craven, Kenneth I Aycock, Luke H Herbertson, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Hemodialysis International. International Symposium on Home Hemodialysis|July 22, 2008
Decreased hemodialysis circuit pressures indicating postpump tubing kinks: a retrospective investigation of hemolysis in five patientsRichard A Malinauskas
Artificial Organs|October 16, 2010
Comparison of two platelet activation markers using flow cytometry after in vitro shear stress exposure of whole human bloodQijin Lu, Richard A Malinauskas
Artificial Organs|April 9, 2015
Working with the Food and Drug Administration's Center for Devices to Advance Regulatory Science and Medical Device InnovationRichard A Malinauskas, Anindita Saha, Murray I Sheldon
Artificial Organs|January 14, 2022
The effect of blood viscosity on shear-induced hemolysis using a magnetically levitated shearing deviceJames A Krisher, Richard A Malinauskas, Steven W Day
Artificial Organs|June 7, 2013
In vitro shear stress-induced platelet activation: sensitivity of human and bovine bloodQijin Lu, Bryan V Hofferbert, Grace Koo, et al.
Journal of Medical Devices|August 9, 2023
In Vitro Thrombogenicity Testing of Biomaterials in a Dynamic Flow Loop: Effects of Length and Quantity of Test SamplesMegan A Jamiolkowski, Madelyn D Golding, Richard A Malinauskas, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|February 27, 2019
An In Vitro Blood Flow Loop System for Evaluating the Thrombogenicity of Medical Devices and BiomaterialsMegan A Jamiolkowski, Matthew C Hartung, Richard A Malinauskas, et al.
Artificial Organs|April 19, 2016
A Reusable, Compliant, Small Volume Blood Reservoir for In Vitro Hemolysis TestingSalim E Olia, Luke H Herbertson, Richard A Malinauskas, et al.
Journal of Biomechanical Engineering|June 13, 2015
Verification Benchmarks to Assess the Implementation of Computational Fluid Dynamics Based Hemolysis Prediction ModelsPrasanna Hariharan, Gavin D'Souza, Marc Horner, et al.
Biomechanics and Modeling in Mechanobiology|March 1, 2019
A CFD-based Kriging surrogate modeling approach for predicting device-specific hemolysis power law coefficients in blood-contacting medical devicesBrent A Craven, Kenneth I Aycock, Luke H Herbertson, et al.
Pageof 3