Initial fixation of a finite element model of an AI-Hip cementless stem evaluated by micromotion and stress
Author:
Publisher
Elsevier BV
Subject
Orthopedics and Sports Medicine,Surgery
Link
http://www.springerlink.com/index/pdf/10.1007/s00776-009-1422-z
Reference14 articles.
1. A finite element analysis of hollow stemmed hip prostheses as a means of reducing stress of the femur;Gross;J Biomech,2001
2. Endurance testing of hip prostheses: a comparison between the load fixed in ISO 7206 standard and the physiological loads;Baleani;Clin Biomech,1999
3. Even a thin layer of soft tissue may compromise the primary stability of cementless hip stems;Viceconti;Clin Biomech,2001
4. Correlations between orthogonal mechanical properties and density of trabecular bone: use of different densitometric measures;Keyak;J Biomed Mater Res,1994
5. Determination of orthotropic bone elastic constants using FEA and modal analysis;Taylor;J Biomech,2002
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1. Tapered stem geometry provides superior initial fixation stability to cylindrical stem geometry in the setting of severe bone loss: A finite element analysis;Engineering Reports;2020-06-15
2. Measures of micromotion in cementless femoral stems-review of current methodologies;Biomaterials and Biomechanics in Bioengineering;2016-06-25
3. Initial stability analysis of cementless hemiarthroplasty using a rectangular cross-sectional stem for type A2 intertrochanteric fractures;Journal of Mechanical Science and Technology;2015-11
4. Correlation between the Bone Mineral Density and Stress on Femur around a Duetto SI Stem;The Scientific World Journal;2014
5. Internal-external circumferential crack behaviour in the cement layer of total hip replacement;Fatigue & Fracture of Engineering Materials & Structures;2013-03-11
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