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Journal of Biomechanics|May 21, 1998
Prediction of femoral fracture load using automated finite element modelingJ H Keyak, S A Rossi, K A Jones, et al.Bone|December 23, 2008
Reduction in proximal femoral strength due to long-duration spaceflightJ H Keyak, A K Koyama, A LeBlanc, et al.Equine Veterinary Journal|June 11, 1998
Ex vivo simulation of in vivo strain distributions in the equine metacarpusC M Les, S M Stover, K T Taylor, et al.Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|November 1, 1994
Estimation of material properties in the equine metacarpus with use of quantitative computed tomographyC M Les, J H Keyak, S M Stover, et al.Journal of Spinal Disorders|April 1, 1994
Three-dimensional finite element modeling of a cervical vertebra: an investigation of burst fracture mechanismK J Bozic, J H Keyak, H B Skinner, et al.Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|June 1, 2002
Stiff and strong compressive properties are associated with brittle post-yield behavior in equine compact bone materialC M Les, S M Stover, J H Keyak, et al.Medical Engineering & Physics|January 5, 2002
Prediction of fracture location in the proximal femur using finite element modelsJ H Keyak, S A Rossi, K A Jones, et al.Clinical Orthopaedics and Related Research|April 1, 1998
Cementless implant composition and femoral stress. A finite element analysisR S Namba, J H Keyak, A S Kim, et al.Journal of Biomechanics|April 1, 1997
The distribution of material properties in the equine third metacarpal bone serves to enhance sagittal bendingC M Les, S M Stover, J H Keyak, et al.Bone|July 1, 1997
Volumetric quantitative computed tomography of the proximal femur: precision and relation to bone strengthT F Lang, J H Keyak, M W Heitz, et al.Pageof 4