[HTML][HTML] Using discrete multiphysics modelling to assess the effect of calcification on hemodynamic and mechanical deformation of aortic valve

AM Mohammed, M Ariane, A Alexiadis - ChemEngineering, 2020 - mdpi.com
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

[PDF][PDF] Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - academia.edu
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane… - …, 2020 - research.birmingham.ac.uk
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

[PDF][PDF] Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - ngc.digitallibrary.co.in
The global crisis arising from the current COVID-19 pandemic has resulted in a surge in the
magnitude of global waste from used Personal Protective Equipment with special emphasis …

Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - 2020 - preprints.org
This study proposes a 3D particle-base (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

[PDF][PDF] Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - Discrete Multiphysics - mdpi.com
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

MM Adamu, M Ariane, A Alexiadis - ChemEngineering, 2020 - search.proquest.com
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - ChemEngineering, 2020 - go.gale.com
This study proposes a 3D particle-based (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - 2020 - europepmc.org
This study proposes a 3D particle-base (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …

[PDF][PDF] Using Discrete Multiphysics Modelling to Assess the Effect of Calcification on Hemodynamic and Mechanical Deformation of Aortic Valve

AM Mohammed, M Ariane, A Alexiadis - 2020 - scholar.archive.org
This study proposes a 3D particle-base (discrete) multiphysics approach for modelling
calcification in the aortic valve. Different stages of calcification (from mild to severe) were …