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Ted J Vaughan

Showing results (1-10 of 55) with videos related to

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Journal of the Mechanical Behavior of Biomedical Materials|March 3, 2024
Micromechanical modelling of transverse fracture behaviour of lamellar bone using a phase-field damage model: The role of non-collagenous proteins and mineralised collagen fibrilsHamid Alijani, Ted J Vaughan
Biophysical Journal|December 21, 2021
Energy dissipation of osteopontin at a HAp mineral interface: Implications for bone biomechanicsMahdi Tavakol, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|March 6, 2022
A multiscale finite element investigation on the role of intra- and extra-fibrillar mineralisation on the elastic properties of bone tissueHamid Alijani, Ted J Vaughan
Journal of the Royal Society, Interface|January 25, 2023
A coarse-grained molecular dynamics investigation of the role of mineral arrangement on the mechanical properties of mineralized collagen fibrilsMahdi Tavakol, Ted J Vaughan
Scientific Reports|October 15, 2020
The structural role of osteocalcin in bone biomechanics and its alteration in Type-2 DiabetesMahdi Tavakol, Ted J Vaughan
Nanoscale|January 23, 2024
Elucidating the role of diverse mineralisation paradigms on bone biomechanics - a coarse-grained molecular dynamics investigationMahdi Tavakol, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|March 8, 2024
Exploring the hierarchical structure of lamellar bone and its impact on fracture behaviour: A computational study using a phase field damage modelHamid Alijani, Ted J Vaughan
Cardiovascular Engineering and Technology|December 1, 2021
A Computational Framework Examining the Mechanical Behaviour of Bare and Polymer-Covered Self-Expanding Laser-Cut StentsCiara G McKenna, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|January 17, 2021
A finite element investigation on design parameters of bare and polymer-covered self-expanding wire braided stentsCiara G McKenna, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|November 30, 2019
An experimental evaluation of the mechanics of bare and polymer-covered self-expanding wire braided stentsCiara G McKenna, Ted J Vaughan
Pageof 6

Showing results (1-10 of 55) with videos related to

Sort By:
Pageof 6
Journal of the Mechanical Behavior of Biomedical Materials|March 3, 2024
Micromechanical modelling of transverse fracture behaviour of lamellar bone using a phase-field damage model: The role of non-collagenous proteins and mineralised collagen fibrilsHamid Alijani, Ted J Vaughan
Biophysical Journal|December 21, 2021
Energy dissipation of osteopontin at a HAp mineral interface: Implications for bone biomechanicsMahdi Tavakol, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|March 6, 2022
A multiscale finite element investigation on the role of intra- and extra-fibrillar mineralisation on the elastic properties of bone tissueHamid Alijani, Ted J Vaughan
Journal of the Royal Society, Interface|January 25, 2023
A coarse-grained molecular dynamics investigation of the role of mineral arrangement on the mechanical properties of mineralized collagen fibrilsMahdi Tavakol, Ted J Vaughan
Scientific Reports|October 15, 2020
The structural role of osteocalcin in bone biomechanics and its alteration in Type-2 DiabetesMahdi Tavakol, Ted J Vaughan
Nanoscale|January 23, 2024
Elucidating the role of diverse mineralisation paradigms on bone biomechanics - a coarse-grained molecular dynamics investigationMahdi Tavakol, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|March 8, 2024
Exploring the hierarchical structure of lamellar bone and its impact on fracture behaviour: A computational study using a phase field damage modelHamid Alijani, Ted J Vaughan
Cardiovascular Engineering and Technology|December 1, 2021
A Computational Framework Examining the Mechanical Behaviour of Bare and Polymer-Covered Self-Expanding Laser-Cut StentsCiara G McKenna, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|January 17, 2021
A finite element investigation on design parameters of bare and polymer-covered self-expanding wire braided stentsCiara G McKenna, Ted J Vaughan
Journal of the Mechanical Behavior of Biomedical Materials|November 30, 2019
An experimental evaluation of the mechanics of bare and polymer-covered self-expanding wire braided stentsCiara G McKenna, Ted J Vaughan
Pageof 6