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Journal of Biomechanics|April 18, 2000
Relationships between femoral fracture loads for two load configurationsJ H KeyakMedical Engineering & Physics|June 19, 2001
Improved prediction of proximal femoral fracture load using nonlinear finite element modelsJ H KeyakJournal of Biomedical Engineering|November 1, 1992
Three-dimensional finite element modelling of bone: effects of element sizeJ H Keyak, H B SkinnerJournal of Biomechanics|February 1, 2000
Prediction of femoral fracture load using finite element models: an examination of stress- and strain-based failure theoriesJ H Keyak, S A RossiOsteoporosis International : a Journal Established As Result of Cooperation Between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA|June 20, 2008
Generation of a 3D proximal femur shape from a single projection 2D radiographic imageC M Langton, S Pisharody, J H KeyakOsteoarthritis and Cartilage|December 22, 2010
Individuals with patellofemoral pain exhibit greater patellofemoral joint stress: a finite element analysis studyS Farrokhi, J H Keyak, C M PowersThe Iowa Orthopaedic Journal|January 1, 1993
Effects of variation of cement thickness on bone and cement stress at the tip of a femoral implantI Y Lee, H B Skinner, J H KeyakMedical Engineering & Physics|February 24, 2009
Comparison of 3D finite element analysis derived stiffness and BMD to determine the failure load of the excised proximal femurC M Langton, S Pisharody, J H KeyakBone|February 7, 2006
Young-elderly differences in bone density, geometry and strength indices depend on proximal femur sub-region: a cross sectional study in Caucasian-American womenM Meta, Y Lu, J H Keyak, et al.The Journal of Bone and Joint Surgery. American Volume|June 1, 1992
Compressive mechanical properties of human cancellous bone after gamma irradiationM J Anderson, J H Keyak, H B SkinnerPageof 4