The effect of strain rate on the mechanical properties of human cortical bone.
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Peter Zioupos | David Hynd | Ulrich Hansen | John D Currey | U. Hansen | Peter Zioupos | J. Currey | D. Hynd | Rebecca Simpson | R. Simpson
[1] W. Hayes,et al. Relations between tensile impact properties and microstructure of compact bone , 1977, Calcified Tissue Research.
[2] A. Burstein,et al. The elastic modulus for bone. , 1974, Journal of biomechanics.
[3] J. Currey,et al. The effects of strain rate, reconstruction and mineral content on some mechanical properties of bovine bone. , 1975, Journal of biomechanics.
[4] A. Goodship,et al. Bone deformation recorded in vivo from strain gauges attached to the human tibial shaft. , 1975, Acta orthopaedica Scandinavica.
[5] W C Hayes,et al. Tensile impact properties of human compact bone. , 1976, Journal of biomechanics.
[6] A. Burstein,et al. The elastic and ultimate properties of compact bone tissue. , 1975, Journal of biomechanics.
[7] W. Hayes,et al. Bone compressive strength: the influence of density and strain rate. , 1976, Science.
[8] Subrata Saha,et al. Instrumented tensile-impact tests of bone , 1974 .
[9] M. H. Pope,et al. The response of compact bone in tension at various strain rates , 1974, Annals of Biomedical Engineering.
[10] J W SMITH,et al. Factors affecting the elasticity of bone. , 1959, Journal of anatomy.
[11] James H. McElhaney,et al. Dynamic response of biological materials. , 1965 .
[12] D. Smith,et al. Compressive strength of mandibular bone as a function of microstructure and strain rate. , 1978, Journal of biomechanics.
[13] D Subit,et al. Comparison of compact bone failure under two different loading rates: experimental and modelling approaches. , 2004, Medical engineering & physics.
[14] J. Mcelhaney,et al. Dynamic response of bone and muscle tissue. , 1966, Journal of applied physiology.
[15] G. Evans,et al. The response of equine cortical bone to loading at strain rates experienced in vivo by the galloping horse. , 1992, Equine veterinary journal.
[16] P Zioupos,et al. An examination of the micromechanics of failure of bone and antler by acoustic emission tests and Laser Scanning Confocal Microscopy. , 1994, Medical engineering & physics.
[17] L. Lanyon,et al. Limb mechanics as a function of speed and gait: a study of functional strains in the radius and tibia of horse and dog. , 1982, The Journal of experimental biology.
[18] W. C. Hayes,et al. Tensile testing of bone over a wide range of strain rates: effects of strain rate, microstructure and density , 1976, Medical and biological engineering.
[19] D B Burr,et al. In vivo measurement of human tibial strains during vigorous activity. , 1996, Bone.
[21] F. G. Evans,et al. Relations of the compressive properties of human cortical bone to histological structure and calcification. , 1974, Journal of biomechanics.