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Hvid, Ivan
; Bentzen, Søren M.;
Linde, Frank
;
Mosekilde, Lis
; Pongsoipetch, Buntoing
X-ray quantitative computed tomography: the relations to physical properties of proximal tibial trabecular bone specimens
J Biomech
. 1989;22(8-9):837-844
Links
DOI:
10.1016/0021-9290(89)90067-5
PubMed:
2613719
WoS:
A1989CH07400009
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Bentzen SM, Hvid I, Jorgensen J. Mechanical strength of tibial trabecular bone evaluated by X-ray computed tomography.
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1985
Hvid I, Hansen SL. Trabecular bone strength patterns at the proximal tibial epiphysis.
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Mazess RB. Errors in measuring trabecular bone by computed tomography due to marrow and bone composition.
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Carter DR, Hayes WC. The compressive behavior of bone as a two-phase porous structure.
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1988
Linde F, Gøthgen CB, Hvid I, Pongsoipetch B, Bentzen S. Mechanical properties of trabecular bone by a non‐destructive compression testing approach.
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1985
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Linde F, Hvid I, Jensen NC. Material properties of cancellous bone in repetitive axial loading.
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1987
Linde F, Hvid I. Stiffness behaviour of trabecular bone specimens.
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1970
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1989
Odgaard A, Hvid I, Linde F. Compressive axial strain distributions in cancellous bone specimens.
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1987
Mosekilde L, Mosekilde L, Danielsen CC. Biomechanical competence of vertebral trabecular bone in relation to ash density and age in normal individuals.
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McBroom RJ, Hayes WC, Edwards WT, Goldberg RP, White AA III. Prediction of vertebral body compressive fracture using quantitative computed tomography.
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Cited By (66)
Year
Entry
1994
Linde F. Elastic and viscoelastic properties of trabecular bone by a compression testing approach.
Dan Med Bull
. April 1994;41(2):119-138.
2001
Boskey AL. Bone mineralization. In: Cowin SC, ed.
Bone Mechanics Handbook
. 2nd ed. Boca Raton, FL: CRC Press; 2001:5-1–5-33.
2001
Keaveny TM. Strength of trabecular bone. In: Cowin SC, ed.
Bone Mechanics Handbook
. 2nd ed. Boca Raton, FL: CRC Press; 2001:16-1–16-42.
2001
Arramon YP, Nauman EA. The intrinsic permeability of cancellous bone. In: Cowin SC, ed.
Bone Mechanics Handbook
. 2nd ed. Boca Raton, FL: CRC Press; 2001:25-1–25-17.
1990
Snyder BD, Hayes WC. Multiaxial structure-property relations in trabecular bone. In: Mow VC, Ratcliffe A, Woo SL-Y, eds.
Biomechanics of Diarthrodial Joints
. Vol 2. New York, NY: Springer-Verlag; 1990:31-59.
1996
Yang JK, Wittek A, Kajzer J. Finite element model of the human lower extremity skeleton system in a lateral impact. In:
Proceedings of the 1996 International IRCOBI Conference on the Biomechanics of Impact
. September 11-13, 1996; Dublin, Ireland.377-388.
2000
Ding M. Age variations in the properties of human tibial trabecular bone and cartilage.
Acta Orthop Scand
. 2000;71(suppl 292):1-45.
2001
Keaveny TM, Morgan EF, Niebur GL, Yeh OC. Biomechanics of trabecular bone.
Annu Rev Biomed Eng
. 2001;3:307-333.
2018
Zhao S, Arnold M, Ma S, Abel RL, Cobb JP, Hansen U, Boughton O. Standardizing compression testing for measuring the stiffness of human bone.
Bone Joint Res
. August 2018;7(8):524-538.
1994
Bonse U, Busch F, Günnewig O, Beckmann F, Pahl R, Delling G, Hahn M, Graeff W. 3D computed X-ray tomography of human cancellous bone at 8 μm spatial and 10
−4
energy resolution.
Bone Miner
. April 1994;25(1):25-38.
1994
Zysset PK, Sonny M, Hayes WC. Morphology-mechanical property relations in trabecular bone of the osteoarthritic proximal tibia.
J Arthoplast
. 1994;9(2):203-216.
1991
Linde F, Nørgaard P, Hvid I, Odgaard A, Søballe K. Mechanical properties of trabecular bone: dependency on strain rate.
J Biomech
. 1991;24(9):803-809.
1991
Røhl L, Larsen E, Linde F, Odgaard A, Jørgensen J. Tensile and compressive properties of cancellous bone.
J Biomech
. 1991;24(12):1143-1149.
1992
Linde F, Hvid I, Madsen F. The effect of specimen geometry on the mechanical behaviour of trabecular bone specimens.
J Biomech
. 1992;25(4):359-368.
1994
Keaveny TM, Wachtel EF, Ford CM, Hayes WC. Differences between the tensile and compressive strengths of bovine tibial trabecular bone depend on modulus.
J Biomech
. 1994;27(9):1137-1146.
1994
Keller TS. Predicting the compressive mechanical behavior of bone.
J Biomech
. September 1994;27(9):1159-1168.
1996
Ford CM, Keaveny TM. The dependence of shear failure properties of trabecular bone on apparent density and trabecular orientation.
J Biomech
. 1996;29(10):1309-1317.
1998
Kopperdahl DL, Keaveny TM. Yield strain behavior of trabecular bone.
J Biomech
. July 1998;31(7):601-608.
2000
Weinans H, Sumner DR, Igloria R, Natarajan RN. Sensitivity of periprosthetic stress-shielding to load and the bone density–modulus relationship in subject-specific finite element models.
J Biomech
. July 2000;33(7):809-817.
2005
Gibson LJ. Biomechanics of cellular solids.
J Biomech
. 2005;38(3):377-399.
2006
Guedes RM, Simões JA, Morais JL. Viscoelastic behaviour and failure of bovine cancellous bone under constant strain rate.
J Biomech
. 2006;39(1):49-60.
2006
Ün K, Bevill G, Keaveny TM. The effects of side-artifacts on the elastic modulus of trabecular bone.
J Biomech
. 2006;39(11):1955-1963.
2007
Laz PJ, Stowe JQ, Baldwin MA, Petrella AJ, Rullkoetter PJ. Incorporating uncertainty in mechanical properties for finite element-based evaluation of bone mechanics.
J Biomech
. 2007;40(13):2831-2836.
2008
Burgers TA, Mason J, Niebur G, Ploeg HL. Compressive properties of trabecular bone in the distal femur.
J Biomech
. 2008;41(5):1077-1085.
2010
Poukalova M, Yakacki CM, Guldberg RE, Lin A, Saing M, Gillogly SD, Gall K. Pullout strength of suture anchors: effect of mechanical properties of trabecular bone.
J Biomech
. April 19, 2010;43(6):1660-1665.
1993
Keaveny TM, Hayes WC. A 20-year perspective on the mechanical properties of trabecular bone.
J Biomech Eng
. November 1993;115(4B):534-542.
2001
Arthur Moore TL, Gibson LJ. Modeling modulus reduction in bovine trabecular bone damaged in compressio.
J Biomech Eng
. December 2001;123(6):613-622.
1996
Keyak JH, Lee IY, Nath DS, Skinner HB. Postfailure compressive behavior of tibial trabecular bone in three anatomic directions.
J Biomed Mater Res
. July 1996;31(3):373-378.
1994
Keyak JH, Lee IY, Skinner HB. Correlations between orthogonal mechanical properties and density of trabecular bone: use of different densitometric measures.
J Biomed Mater Res
. November 1994;A28(11):1329-1336.
1997
McCalden RW, McGeough JA, Court-Brown CM. Age-related changes in the compressive strength of cancellous bone: the relative importance of changes in density and trabecular architecture.
J Bone Joint Surg
. March 1997;79A(3):421-427.
1997
Ding M, Dalstra M, Danielsen CC, Kabel J, Hvid I, Linde F. Age variations in the properties of human tibial trabecular bone.
J Bone Joint Surg
. November 1997;79B(6):995-1002.
2000
Nafei A, Danielsen CC, Linde F, Hvid I. Properties of growing trabecular ovine bone, I: mechanical and physical properties.
J Bone Joint Surg
. August 2000;82B(6):910-920.
1996
Ford CM, Keaveny TM, Hayes WC. The effect of impact direction on the structural capacity of the proximal femur during falls.
J Bone Miner Res
. March 1996;11(3):377-383.
1999
Boskey AL, Wright TM, Blank RD. Collagen and bone strength.
J Bone Miner Res
. March 1999;14(3):330-335.
2020
Fleps I, Bahaloo H, Zysset PK, Ferguson SJ, Pálsson H, Helgason B. Empirical relationships between bone density and ultimate strength: a literature review.
J Mech Behav Biomed Mater
. October 2020;110:103866.
1991
Ciarelli MJ, Goldstein SA, Kuhn JL, Cody DD, Brown MB. Evaluation of orthogonal mechanical properties and density of human trabecular bone from the major metaphyseal regions with materials testing and computed tomography.
J Orthop Res
. May 1991;9(5):674-682.
1994
Skinner HB, Kim AS, Keyak JH, Mote CD Jr. Femoral prosthesis implantation induces changes in bone stress that depend on the extent of porous coating.
J Orthop Res
. July 1994;12(4):553-563.
1994
Les CM, Keyak JH, Stover SM, Taylor KT, Kaneps AJ. Estimation of material properties in the equine metacarpus with use of quantitative computed tomography.
J Orthop Res
. November 1994;12(6):822-833.
1995
Rho JY, Hobatho MC, Ashman RB. Relations of mechanical properties to density and CT numbers in human bone.
Med Eng Phys
. July 1995;17(5):347-355.
1997
Mitton D, Rumelhart C, Hans D, Meunier PJ. The effects of density and test conditions on measured compression and shear strength of cancellous bone from the lumbar vertebrae of ewes.
Med Eng Phys
. 1997;19(5):464-474.
2002
Nuzzo S, Peyrin F, Cloetens P, Baruchel J, Boivin G. Quantification of the degree of mineralization of bone in three dimensions using synchrotron radiation microtomography.
Med Phys
. November 2002;29(11):2672-2681.
2003
Kim CH.
In Vivo Trabecular Bone Response to Mechanical Loading and Parathyroid Hormone Stimulation
[PhD thesis]. Columbia University; 2003.
1991
Edidin AA.
Modeling of Bone Material Properties from CT Scans: Considerations in Biomechanical Structural Models
[PhD thesis]. Ithaca, NY: Cornell University; May 1991.
2005
Cook RB.
Non-Invasively Assessed Skeletal Bone Status and Its Relationship to the Biomechanical Properties and Condition of Cancellous Bone
[PhD thesis]. Cranfield, UK: Cranfield University; December 18, 2005.
1994
Zysset P.
A Constitutive Law for Trabecular Bone
[PhD thesis]. Lausanne, Switzerland: École Polytechnique Fédérale de Lausanne; 1994.
1999
Egi N.
Functional Morphology of the Limb Bones in Recent Carnivores and Its Application to North American Hyaenodontid Creodonta
[PhD thesis]. Johns Hopkins University; 1999.
1996
Ford CM.
Failure of the Human Proximal Femur: Material and Structural Perspectives
[PhD thesis]. Cambridge, MA: Massachusetts Institute of Technology; September 1996.
2001
Arthur Moore TL.
Microdamage Accumulation in Bovine Trabecular Bone
[PhD thesis]. Cambridge, MA: Massachusetts Institute of Technology; June 2001.
2010
Johnson TPM.
On the Rate-Dependent Constitutive Response of Cortical and Trabecular Bone
[PhD thesis]. Cambridge, MA: Massachusetts Institute of Technology; September 2010.
2015
Gargac J.
Evaluation of Bone Healing, Damage, and Adaptation Using Computational Modeling and Image Processing Techniques
[PhD thesis]. University of Notre Dame; July 2015.
1998
Hashemi SA.
Nonlinear Finite Element Studies of Cementless Knee Implants
[PhD thesis]. École polytechnique de Montréal; September 1998.
2008
Crookshank MCM.
Optimizing Fracture Management: Correlating the Physical and Mechanical Properties of Bone to Computed Tomography to Generate an Estimate of Bone Quality
[Master's thesis]. Queen's University; January 2008.
2009
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A Validated Finite Element Study of Stress Shielding in a Novel Hybrid Knee Implant
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2004
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Compressive Behavior of Trabecular Bone in the Proximal Tibia Using a Cellular Solid Model
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2002
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Hypothesis Testing of Glenoid Component Innovation in Total Shoulder Arthroplasty
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2010
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Development of a Non-Invasive Imaging Technique for Characterizing Subchondral Bone Density and Stiffness
[PhD thesis]. Vancouver, BC: University of British Columbia; December 2010.
2013
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Mapping Anisotropy of the Proximal Femur for Improved Image-Based Finite Element Analysis
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1996
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Prediction of Femoral Strength Using Automated Finite Element Modeling
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1998
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Structural Consequences of Damage on the Mechanical Behavior of the Human Vertebral Body
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2000
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The Analytical Design of a Hybrid Bone Substitute
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2008
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Micromechanical Modeling of Failure in Trabecular Bone
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2019
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Micromechanics of Human Bone: Role of Architecture and Tissue Material Properties
[PhD thesis]. Berkeley, CA: Berkeley, University of California; 2019.
1993
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The Quantification of the Structure and Mechanical Properties of Trabecular Bone
[PhD thesis]. University of Michigan; 1993.
2008
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Press-Fit Fixation and Viscoelastic Response of a Bone-Implant Interface in the Distal Femur
[PhD thesis]. University of Wisconsin – Madison; 2008.
2009
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Biomechanical Evaluation of a Stemmed Tibial Implant
[PhD thesis]. University of Wisconsin – Madison; 2009.
2011
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Physical and Computational Modeling of Subsidence of Anterior Interbody Fusion Devices
[PhD thesis]. University of Wisconsin – Madison; 2011.