Adaptive bone remodeling incorporating simultaneous density and anisotropy considerations.
暂无分享,去创建一个
J. C. Simo | G. Beaupré | C. Jacobs | D. Carter | J. Simo
[1] R. Griffiths,et al. A neutron diffraction study of the bones of the foot. , 1984, Journal of anatomy.
[2] D. Carter,et al. A unifying principle relating stress to trabecular bone morphology , 1986, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[3] S. Goldstein. The mechanical properties of trabecular bone: dependence on anatomic location and function. , 1987, Journal of biomechanics.
[4] A. Sadegh,et al. An evolutionary Wolff's law for trabecular architecture. , 1992, Journal of biomechanical engineering.
[5] M. Gurtin,et al. An introduction to continuum mechanics , 1981 .
[6] D P Fyhrie,et al. Trabecular bone density and loading history: regulation of connective tissue biology by mechanical energy. , 1987, Journal of biomechanics.
[7] W H Harris,et al. Limitations of the continuum assumption in cancellous bone. , 1988, Journal of biomechanics.
[8] D. Carter. Mechanical loading history and skeletal biology. , 1987, Journal of biomechanics.
[9] N. Sasaki,et al. Orientation of bone mineral and its role in the anisotropic mechanical properties of bone--transverse anisotropy. , 1989, Journal of biomechanics.
[10] S. Cowin,et al. Bone remodeling I: theory of adaptive elasticity , 1976 .
[11] J. Wolff. Das Gesetz der Transformation der Knochen , 1893 .
[12] J J Hamilton,et al. An analytical and numerical study of the stability of bone remodelling theories: dependence on microstructural stimulus. , 1992, Journal of biomechanics.
[13] H Roesler,et al. The history of some fundamental concepts in bone biomechanics. , 1987, Journal of biomechanics.
[14] J. C. Simo,et al. Strain- and stress-based continuum damage models—I. Formulation , 1987 .
[15] H. Frost. Bone “mass” and the “mechanostat”: A proposal , 1987, The Anatomical record.
[16] Y. Fung,et al. Biomechanics: Mechanical Properties of Living Tissues , 1981 .
[17] M E Levenston,et al. The role of loading memory in bone adaptation simulations. , 1994, Bone.
[18] C. Turner,et al. Functional determinants of bone structure: beyond Wolff's law of bone transformation. , 1992, Bone.
[19] G. Beaupré,et al. An approach for time‐dependent bone modeling and remodeling—application: A preliminary remodeling simulation , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[20] J. C. Simo,et al. Strain- and stress-based continuum damage models—II. Computational aspects , 1987 .
[21] H. Grootenboer,et al. The behavior of adaptive bone-remodeling simulation models. , 1992, Journal of biomechanics.
[22] H. Grootenboer,et al. Adaptive bone-remodeling theory applied to prosthetic-design analysis. , 1987, Journal of biomechanics.
[23] C H Turner,et al. Homeostatic control of bone structure: an application of feedback theory. , 1991, Bone.
[24] G S Beaupré,et al. An approach for time‐dependent bone modeling and remodeling—theoretical development , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[25] John D. Currey,et al. The Mechanical Adaptations of Bones , 1984 .
[26] D. Carter,et al. Relationships between loading history and femoral cancellous bone architecture. , 1989, Journal of biomechanics.
[27] R.M.V. Pidaparti,et al. Prediction of proximal femoral architecture using the isotropic strain criterion , 1993 .