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Bonfield, W.
1
; Grynpas, M. D.
1
Anisotropy of the Young's modulus of bone
Nature
. December 1, 1977;270:453-454
©1977 Nature Publishing Group
Affiliations
1
Department of Materials, Queen Mary College, London E1, UK
Links
DOI:
10.1038/270453a0
PubMed:
593367
WoS:
A1977EC45900050
History
Received: 1977-06-24
Accepted: 1977-09-14
Cited Works (3)
Year
Entry
1969
Currey JD. The relationship between the stiffness and the mineral content of bone.
J Biomech
. October 1969;2(4):477-480.
1975
Reilly DT, Burstein AH. The elastic and ultimate properties of compact bone tissue.
J Biomech
. 1975;8(6):393-405.
1973
Evans FG.
Mechanical Properties of Bone
. Springfield, IL: Charles C. Thomas; 1973.
Cited By (46)
Year
Entry
1981
Katz JL. Composite material models for cortical bone. In: Cowin SC, ed.
Mechanical Properties of Bone
. The Joint ASME-ASCE Applied Mechnics, Fluids Engineering and Bioengineering Conference; June 22-24, 1981; Boulder, CO. New York, NY: American Society of Mechical Engineers; 1981:171-184.
2001
Lucchinetti E. Composite models of bone properties. In: Cowin SC, ed.
Bone Mechanics Handbook
. 2nd ed. Boca Raton, FL: CRC Press; 2001:12-1–12-19.
2002
Currey JD.
Bones: Structure and Mechanics
. Princeton, NJ: Princeton University Press; 2002.
2011
Novitskaya E, Chen P-Y, Lee S, Castro-Ceseña A, Hirata G, Lubarda VA, McKittrick J. Anisotropy in the compressive mechanical properties of bovine cortical bone and the mineral and protein constituents.
Acta Biomater
. August 2011;7(8):3170-3177.
1998
Weiner S, Wagner HD. The material bone: structure-mechanical function relations.
Ann Rev Mater Sci
. August 1998;28:271-298.
1995
Turner CH, Chandran A, Pidaparti RMV. The anisotropy of osteonal bone and its ultrastructural implications.
Bone
. July 1995;17(1):85-89.
1998
Wang XD, Masilamani NS, Mabrey JD, Alder ME, Agrawal CM. Changes in the fracture toughness of bone may not be reflected in its mineral density, porosity, and tensile properties.
Bone
. July 1998;23(1):67-72.
1994
Hasegawa K, Turner CH, Burr DB. Contribution of collagen and mineral to the elastic anisotropy of bone.
Calcif Tiss Int
. November 1994;55(5):381-386.
2020
Zhou Y, Kastner MJ, Tighe TB, Du J. Elastic modulus mapping for bovine cortical bone from submillimeter- to submicron-scales using PeakForce Tapping atomic force microscopy.
Extreme Mech Lett
. November 1, 2020;41:101031.
1978
Bonfield W, Grynpas MD, Young RJ. Crack velocity and the fracture of bone.
J Biomech
. 1978;11(10-12):473-479.
1984
Behiri JC, Bonfield W. Fracture mechanics of bone: the effects of density, specimen thickness and crack velocity on longitudinal fracture.
J Biomech
. 1984;17(1):25-34.
1984
Lipson SF, Katz JL. The relationship between elastic properties and microstructure of bovine cortical bone.
J Biomech
. 1984;17(4):231-240.
1986
Park HC, Lakes RS. Cosserat micromechanics of human bone: strain redistribution by a hydration sensitive constituent.
J Biomech
. 1986;19(5):385-397.
1989
Sasaki N, Matsushima N, Ikawa T, Yamamura H, Fukuda A. Orientation of bone mineral and its role in the anisotropic mechanical properties of bone: transverse anisotropy.
J Biomech
. 1989;22(2):157-164.
1989
Behiri JC, Bonfield W. Orientation dependence of the fracture mechanics of cortical bone.
J Biomech
. 1989;22(8-9):863-872.
1991
Sasaki N, Ikawa T, Fukuda A. Orientation of mineral in bovine bone and the anisotropic mechanical properties of plexiform bone.
J Biomech
. 1991;24(1):57-61.
1992
Wagner HD, Weiner S. On the relationship between the microstructure of bone and its mechanical stiffness.
J Biomech
. November 1992;25(11):1311-1320.
1993
Mammone JF, Hudson SM. Micromechanics of bone strength and fracture.
J Biomech
. April–May 1993;26(4-5):439-446.
1994
Currey JD, Brear K, Zioupos P. Dependence of mechanical properties on fibre angle in narwhal tusk, a highly oriented biological composite.
J Biomech
. July 1994;27(7):885-897.
1996
Pidaparti RMV, Chandran A, Takano Y, Turner CH. Bone mineral lies mainly outside collagen fibrils: predictions of a composite model for osternal bone.
J Biomech
. July 1996;29(7):909-916.
1999
Liu D, Weiner S, Wagner HD. Anisotropic mechanical properties of lamellar bone using miniature cantilever bending specimens.
J Biomech
. July 1999;32(7):647-654.
2004
Iyo T, Maki Y, Sasaki N, Nakata M. Anisotropic viscoelastic properties of cortical bone.
J Biomech
. September 2004;37(9):1433-1437.
2014
Faingold A, Cohen SR, Shahar R, Weiner S, Rapoport L, Wagner HD. The effect of hydration on mechanical anisotropy, topography and fibril organization of the osteonal lamellae.
J Biomech
. January 22, 2014;47(2):367-372.
2006
Dong XN, Guo XE. Prediction of cortical bone elastic constants by a two-level micromechanical model using a generalized self-consistent method.
J Biomech Eng
. June 2006;128(3):309-316.
1980
Behiri JC, Bonfield W. Crack velocity dependence of longitudinal fracture in bone.
J Mater Sci
. June 1980;15(7):1841-1849.
1998
Akiva U, Wagner HD, Weiner S. Modelling the three-dimensional elastic constants of parallel-fibred and lamellar bone.
J Mater Sci
. March 15, 1998;33(6):1497-1509.
2000
Liu D, Wagner HD, Weiner S. Bending and fracture of compact circumferential and osteonal lamellar bone of the baboon tibia.
J Mater Sci Mater Med
. January 2000;11(1):49-60.
2009
Espinoza Orías AA, Deuerling JM, Landrigan MD, Renaud JE, Roeder RK. Anatomic variation in the elastic anisotropy of cortical bone tissue in the human femur.
J Mech Behav Biomed Mater
. July 2009;2(3):255-263.
2012
Faingold A, Cohen SR, Wagner HD. Nanoindentation of osteonal bone lamellae.
J Mech Behav Biomed Mater
. May 2012;9:198-206.
2013
Li S, Demirci E, Silberschmidt VV. Variability and anisotropy of mechanical behavior of cortical bone in tension and compression.
J Mech Behav Biomed Mater
. May 2013;21:109-120.
1999
Weiner S, Traub W, Wagner HD. Lamellar bone: structure–function relations.
J Struct Biol
. June 1999;126(3):241-255.
2011
Bonney H, Colston BJ, Goodman AM. Regional variation in the mechanical properties of cortical bone from the porcine femur.
Med Eng Phys
. May 2011;33(4):513-520.
1980
Katz JL. Anisotropy of Young's modulus of bone.
Nature
. January 3, 1980;283(5742):106-107.
2001
Birnbaum K, Sindelar R, Gärtner JR, Wirtz DC. Material properties of trabecular bone structures.
Surg Radiol Anat
. 2001;23(6):399-407.
2005
Ho EY.
Engineering Bioactive Polymers for the Next Generation of Bone Repair
[PhD thesis]. Drexel University; April 2005.
2013
Li S.
Cutting of Cortical Bone Tissue: Analysis of Deformation and Fracture Process
[PhD thesis]. Loughborough University; June 2013.
2005
Shin G.
Viscoelastic Responses of the Lumbar Spine During Prolonged Stooping
[PhD thesis]. North Carolina State University; 2005.
2005
Espinoza Orias AA.
The Relationship Between the Mechanical Anisotropy of Human Cortical Bone Tissue and Its Microstructure
[PhD thesis]. University of Notre Dame; April 2005.
2001
Kim DG.
Micromechanical Analysis of Bone At a Bone-Implant Interface
[PhD thesis]. Troy, NY: Rensselaer Polytechnic Institute; April 2001.
2011
Reisinger AG.
Modeling and Validation of Multiscale Lamellar Bone Elasticity
[PhD thesis]. Vienna University of Technology; November 2011.
2010
Kulin RM.
On the Dynamic Behavior of Mineralized Tissues
[PhD thesis]. San Diego (UCSD), University of California; 2010.
2012
Evdokimenko E.
Investigation Into Mechanical Properties of Bone and Its Main Constituents
[PhD thesis]. San Diego (UCSD), University of California; 2012.
2020
Amromanoh OA.
An Experimental Study of the Effect of Bone Inorganic-Organic Composition on the Mechanical Properties
[Master's thesis]. Winnipeg, MB: University of Manitoba; April 2020.
2013
Faingold A.
Bone Elementary Units: Mechanical Properties and Structure
[PhD thesis]. Weizmann Institute of Science; February 2013.
1994
Kohles SS.
Elastic and Physiochemical Relationships Within Cortical Bone: Growth Hormone Treatment of a Dwarf Rat Model
[PhD thesis]. University of Wisconsin – Madison; 1994.
2001
Lee T.
Viscoelastic Properties of Biological and High-Damping Composite Materials
[PhD thesis]. University of Wisconsin – Madison; 2001.