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Biophysical Journal
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October 7, 2019
A Mathematical Model of Bivalent Binding Suggests Physical Trapping of Thrombin within Fibrin Fibers
Michael Kelley, Karin Leiderman
Thrombosis Research
|
April 25, 2014
An overview of mathematical modeling of thrombus formation under flow
Karin Leiderman, Aaron Fogelson
Mathematics and Computers in Simulation
|
April 7, 2009
High-Resolution Models of Motion of Macromolecules in Cell Membranes
Karin Leiderman, Stanly Steinberg
International Journal for Numerical Methods in Biomedical Engineering
|
May 23, 2019
A density-dependent FEM-FCT algorithm with application to modeling platelet aggregation
Nicholas A Danes, Karin Leiderman
Mathematical Medicine and Biology : a Journal of the IMA
|
May 5, 2010
Grow with the flow: a spatial-temporal model of platelet deposition and blood coagulation under flow
Karin Leiderman, Aaron L Fogelson
Bulletin of Mathematical Biology
|
October 26, 2012
The influence of hindered transport on the development of platelet thrombi under flow
Karin Leiderman, Aaron L Fogelson
Plos Computational Biology
|
September 15, 2022
Mathematical modeling to understand the role of bivalent thrombin-fibrin binding during polymerization
Michael A Kelley, Karin Leiderman
Softwarex
|
October 6, 2023
clotFoam: An open-source framework to simulate blood clot formation under arterial flow
David Montgomery, Federico Municchi, Karin Leiderman
Arxiv
|
May 3, 2023
clotFoam: An Open-Source Framework to Simulate Blood Clot Formation Under Arterial Flow
David Montgomery, Federico Municchi, Karin Leiderman
Physical Review. E
|
October 20, 2020
Minimal model of the hydrodynamical coupling of flagella on a spherical body with application to Volvox
Forest O Mannan, Miika Jarvela, Karin Leiderman
Page
of 4
Search research articles
Search
Showing results (1-10 of 38) with videos related to
Sort By:
Page
of 4
Biophysical Journal
|
October 7, 2019
A Mathematical Model of Bivalent Binding Suggests Physical Trapping of Thrombin within Fibrin Fibers
Michael Kelley, Karin Leiderman
Thrombosis Research
|
April 25, 2014
An overview of mathematical modeling of thrombus formation under flow
Karin Leiderman, Aaron Fogelson
Mathematics and Computers in Simulation
|
April 7, 2009
High-Resolution Models of Motion of Macromolecules in Cell Membranes
Karin Leiderman, Stanly Steinberg
International Journal for Numerical Methods in Biomedical Engineering
|
May 23, 2019
A density-dependent FEM-FCT algorithm with application to modeling platelet aggregation
Nicholas A Danes, Karin Leiderman
Mathematical Medicine and Biology : a Journal of the IMA
|
May 5, 2010
Grow with the flow: a spatial-temporal model of platelet deposition and blood coagulation under flow
Karin Leiderman, Aaron L Fogelson
Bulletin of Mathematical Biology
|
October 26, 2012
The influence of hindered transport on the development of platelet thrombi under flow
Karin Leiderman, Aaron L Fogelson
Plos Computational Biology
|
September 15, 2022
Mathematical modeling to understand the role of bivalent thrombin-fibrin binding during polymerization
Michael A Kelley, Karin Leiderman
Softwarex
|
October 6, 2023
clotFoam: An open-source framework to simulate blood clot formation under arterial flow
David Montgomery, Federico Municchi, Karin Leiderman
Arxiv
|
May 3, 2023
clotFoam: An Open-Source Framework to Simulate Blood Clot Formation Under Arterial Flow
David Montgomery, Federico Municchi, Karin Leiderman
Physical Review. E
|
October 20, 2020
Minimal model of the hydrodynamical coupling of flagella on a spherical body with application to Volvox
Forest O Mannan, Miika Jarvela, Karin Leiderman
Page
of 4