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Burstein, A. H.
1
;
Reilly, D. T.
1
;
Frankel, V. H.
1
Failure characteristics of bone and bone tissue
Perspectives in Biomedical Engineering: Proceedings of a Symposium Organised in Association With the Biological Engineering Society and Held in the University of Strathclyde, Glasgow, June 1972
Affiliations
1
Case Western Reserve
, Cleveland, Ohio, U.S.A.
Cited Works (8)
Year
Entry
1958
Evans FG. Relations between the microscopic structure and tensile strength of human bone.
Acta Anat
. 1958;35(4):285-301.
1969
Lang SB. Elastic coefficients of animal bone.
Science
. July 18, 1969;165(3890):287-288.
1880
Messerer O. Über Elasticität und Festigkeit der menschlichen Knochen. Stuttgart, Germany: Cotta; 1880.
1971
Katz JL. Hard tissue as a composite material, I: bounds on the elastic behavior.
J Biomech
. October 1971;4(5):455-473.
1970
Chamay A. Mechanical and morphological aspect of experimental overload and fatigue in bone.
J Biomech
. May 1970;3(3):263-270.
1972
Burstein AH, Currey JD, Frankel VH, Reilly DT. The ultimate properties of bone tissue: the effects of yielding.
J Biomech
. January 1972;5(1):35-44.
1970
Piekarski K. Fracture of bone.
J Appl Phys
. January 1970;41(1):215-223.
1964
Currey JD. Three analogies to explain the mechanical properties of bone.
Biorheology
. 1964;2(1):1-10.
Cited By (27)
Year
Entry
2001
Davy DT, Jepsen KJ. Bone damage mechanics. In: Cowin SC, ed.
Bone Mechanics Handbook
. 2nd ed. Boca Raton, FL: CRC Press; 2001:18-1–18-25.
1996
Zioupos P, Wang XT, Currey JD. The accumulation of fatigue microdamage in human cortical bone of two different ages in vitro.
Clin Biomech
(Bristol, Avon). October 1996;11(7):365-375.
1978
Carter DR, Spengler DM. Mechanical properties and composition of cortical bone.
Clin Orthop Relat Res
. September 1978;135:192-217.
1974
Reilly DT, Burstein AH, Frankel VH. The elastic modulus for bone.
J Biomech
. May 1974;7(3):271-275.
1975
Reilly DT, Burstein AH. The elastic and ultimate properties of compact bone tissue.
J Biomech
. 1975;8(6):393-405.
1976
Saha S, Hayes WC. Tensile impact properties of human compact bone.
J Biomech
. 1976;9(4):243-251.
1977
Carter DR, Hayes WC. Compact bone fatigue damage, I: residual strength and stiffness.
J Biomech
. 1977;10(5-6):325-337.
1981
Wright TM, Vosburgh F, Burstein AH. Permanent deformation of compact bone monitored by acoustic emission.
J Biomech
. 1981;14(6):405-409.
1986
Corondan G, Haworth WL. A fractographic study of human long bone.
J Biomech
. 1986;19(3):207-218.
1994
Keaveny TM, Wachtel EF, Guo XE, Hayes WC. Mechanical behavior of damaged trabecular bone.
J Biomech
. November 1994;27(11):1309-1318.
1996
Zioupos P, Wang XT, Currey JD. Experimental and theoretical quantification of the development of damage in fatigue tests of bone and antler.
J Biomech
. August 1996;29(8):989-1002.
1997
Vashishth D, Behiri JC, Bonfield W. Crack growth resistance in cortical bone: concept of microcrack toughening.
J Biomech
. August 1997;30(8):763-769.
1999
Fondrk MT, Bahniuk EH, Davy DT. Inelastic strain accumulation in cortical bone during rapid transient tensile loading.
J Biomech Eng
. December 1999;121(6):616-621.
1974
Reilly DT, Burstein AH. The mechanical properties of cortical bone.
J Bone Joint Surg
. 1974;56A(5):1001-1022.
1975
Burstein AH, Zika JM, Heiple KG, Klein L. Contribution of collagen and mineral to the elastic-plastic properties of bone.
J Bone Joint Surg
. October 1975;57A(7):956-961.
1994
Zioupos P, Currey JD. The extent of microcracking and the morphology of microcracks in damaged bone.
J Mater Sci
. 1994;29(4):978-986.
2011
Szabó ME, Zekonyte J, Katsamenis OL, Taylor M, Thurner PJ. Similar damage initiation but different failure behavior in trabecular and cortical bone tissue.
J Mech Behav Biomed Mater
. November 2011;4(8):1787-1796.
2013
Ridha H, Thurner PJ. Finite element prediction with experimental validation of damage distribution in single trabeculae during three-point bending tests.
J Mech Behav Biomed Mater
. November 2013;27:94-106.
1976
Wright TM, Hayes WC. Tensile testing of bone over a wide range of strain rates: effects of strain rate, microstructure and density.
Med Biol Eng
. November 1976;14(6):671-680.
1994
Zioupos P, Currey JD, Sedman AJ. An examination of the micromechanics of failure of bone and antler by acoustic emission tests and laser scanning confocal microscopy.
Med Eng Phys
. May 1994;16(3):203-212.
1989
Fondrk MT.
An Experimental and Analytical Investigation Into the Nonlinear Constitutive Equations of Cortical Bone
[PhD thesis]. Cleveland, OH: Case Western Reserve University; May 1989.
2000
Niebur GL.
A Computational Investigation of Multiaxial Failure in Trabecular Bone
[PhD thesis]. Berkeley, CA: Berkeley, University of California; 2000.
2002
Morgan EF-i.
The Dependence on Anatomic Site of Trabecular Bone Structure-Function Relationships
[PhD thesis]. Berkeley, CA: Berkeley, University of California; 2002.
2018
Albert DL.
Biomechanical Responses of Human Surrogates Under Various Frontal Loading Conditions With an Emphasis on Thoracic Response and Injury Tolerance
[PhD thesis]. Virginia Polytechnic Institute and State University; April 19, 2018.
1985
Schaffler MB.
Stiffness and Fatigue of Compact Bone At Physiological Strains and Strain Rates
[PhD thesis]. West Virginia University; 1985.
2001
Parsamian GP.
Damage Mechanics of Human Cortical Bone
[PhD thesis]. West Virginia University; 2001.
1993
Sedman AJ.
Mechanical Failure and Antler: The Accumulation of Bone of Damage
[PhD thesis]. York, UK: University of York; September 1993.