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Accounting for spatial variation of trabecular anisotropy with subject-specific finite element modeling moderately improves predictions of local subchondral bone stiffness at the proximal tibia
Nazemi, S. Majid, Kalajahi, S. Mehrdad Hosseini, Cooper, David M.L., Kontulainen, Saija A., Holdsworth, David W., Masri, Bassam A., Wilson, David R., Johnston, James D.
Published in Journal of biomechanics (05.07.2017)
Published in Journal of biomechanics (05.07.2017)
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Cam FAI and Smaller Neck Angles Increase Subchondral Bone Stresses During Squatting: A Finite Element Analysis
Ng, K. C. Geoffrey, Mantovani, Giulia, Lamontagne, Mario, Labrosse, Michel R., Beaulé, Paul E.
Published in Clinical orthopaedics and related research (01.05.2019)
Published in Clinical orthopaedics and related research (01.05.2019)
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