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Journal of the Mechanical Behavior of Biomedical Materials|August 24, 2024
Development of a continuum-based, meshless, finite element modeling approach for representation of trabecular bone indentationRémy Benais, Aleksander Rycman, Stewart D McLachlin
Annals of Biomedical Engineering|October 1, 2022
Spinal Cord Boundary Conditions Affect Brain Tissue Strains in Impact SimulationsAleksander Rycman, Stewart D McLachlin, Duane S Cronin
Journal of Biomechanics|April 1, 2020
Optimization of muscle activation schemes in a finite element neck model simulating volunteer frontal impact scenariosMatheus A Correia, Stewart D McLachlin, Duane S Cronin
Journal of Biomechanical Engineering|August 28, 2014
A refined technique to calculate finite helical axes from rigid body trackersStewart D McLachlin, Louis M Ferreira, Cynthia E Dunning
Annals of Biomedical Engineering|May 4, 2021
Vestibulocollic and Cervicocollic Muscle Reflexes in a Finite Element Neck Model During Multidirectional ImpactsMatheus A Correia, Stewart D McLachlin, Duane S Cronin
Journal of Biomechanics|December 15, 2015
Use of the alpha shape to quantify finite helical axis dispersion during simulated spine movementsStewart D McLachlin, Christopher S Bailey, Cynthia E Dunning
International Journal for Numerical Methods in Biomedical Engineering|July 29, 2023
Effect of muscle pre-tension and pre-impact neck posture on the kinematic response of the cervical spine in simulated low-speed rear impactsMatheus A Correia, Miguel A Corrales, Stewart D McLachlin, et al.
Journal of Biomechanical Engineering|October 12, 2021
In-Situ Fracture Tolerance of the Metatarsals During Quasi-Static Compressive Loading of the Human FootMayank Kalra, Robert Bahensky, Stewart D McLachlin, et al.
The Journal of Trauma|January 11, 2011
Injury tolerance criteria for short-duration axial impulse loading of the isolated tibiaCheryl E Quenneville, Stewart D McLachlin, Gillian S Greeley, et al.
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