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Ün, Kerem;
Bevill, Grant
;
Keaveny, Tony M.
The effects of side-artifacts on the elastic modulus of trabecular bone
J Biomech
. 2006;39(11):1955-1963
Links
DOI:
10.1016/j.jbiomech.2006.05.012
PubMed:
16824533
WoS:
000240166900001
Cited Works (25)
Year
Entry
2006
Hernandez CJ, Keaveny TM. A biomechanical perspective on bone quality.
Bone
. December 2006;39(6):1173-1181.
2000
Day JS, Ding M, Odgaard A, Sumner DR, Hvid I, Weinans H. Parallel plate model for trabecular bone exhibits volume fraction-dependent bias.
Bone
. November 2000;27(5):715-720.
1993
Keaveny TM, Borchers RE, Gibson LJ, Hayes WC. Theoretical analysis of the experimental artifact in trabecular bone compressive modulus [published correction appears in
J Biomech
. 1993;26(9):1143].
J Biomech
. April–May 1993;26(4-5):599-607.
1997
Keaveny TM, Pinilla TP, Crawford RP, Kopperdahl DL, Lou A. Systematic and random errors in compression testing of trabecular bone [published correction appears in
J Orthop Res
. 1995;17(1):151].
J Orthop Res
. 1997;15(1):101-110.
2001
Keyak JH. Improved prediction of proximal femoral fracture load using nonlinear finite element models.
Med Eng Phys
. April 2001;23(3):165-173.
1994
Keaveny TM, Guo XE, Wachtel EF, McMahon TA, Hayes WC. Trabecular bone exhibits fully linear elastic behavior and yields at low strains.
J Biomech
. 1994;27(9):1127-1136.
2002
Kopperdahl DL, Morgan EF, Keaveny TM. Quantitative computed tomography estimates of the mechanical properties of human vertebral trabecular bone.
J Orthop Res
. July 2002;20(4):801-805.
1991
Faulkner KG, Cann CE, Hasegawa BH. Effect of bone distribution on vertebral strength: assessment with patient-specific nonlinear finite element analysis.
Radiology
. June 1991;179(3):669-674.
2003
Ding M, Day JS, Burr DB, Mashiba T, Hirano T, Weinans H, Sumner DR, Hvid I. Canine cancellous bone microarchitecture after one year of high-dose bisphosphonates.
Calcif Tiss Int
. June 2003;72(6):737-744.
2004
Bayraktar HH, Morgan EF, Niebur GL, Morris GE, Wong EK, Keaveny TM. Comparison of the elastic and yield properties of human femoral trabecular and cortical bone tissue.
J Biomech
. January 2004;37(1):27-35.
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.
1994
Zhu M, Keller TS, Spengler DM. Effects of specimen load-bearing and free surface layers on the compressive mechanical properties of cellular materials.
J Biomech
. 1994;27(1):57-66.
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.
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.
1989
Hvid I, Bentzen SM, Linde F, Mosekilde L, Pongsoipetch B. X-ray quantitative computed tomography: the relations to physical properties of proximal tibial trabecular bone specimens.
J Biomech
. 1989;22(8-9):837-844.
1988
Harrigan TP, Jasty M, Mann RW, Harris WH. Limitations of the continuum assumption in cancellous bone.
J Biomech
. 1988;21(4):269-275.
1988
Mosekilde L. Age-related changes in vertebral trabecular bone architecture—assessed by a new method.
Bone
. 1988;9(4):247-250.
2004
Adams MF, Bayraktar HH, Keaveny TM, Papadopoulos P. Ultrascalable implicit finite element analyses in solid mechanics with over a half a billion degrees of freedom. In:
SC '04: Proceedings of the 2004 ACM/IEEE Conference on Supercomputing
. November 6-12, 2004; Pittsburgh, PA.
1999
Hildebrand T, Laib A, Müller R, Dequeker J, Rüegsegger P. Direct three-dimensional morphometric analysis of human cancellous bone: microstructural data from spine, femur, iliac crest, and calcaneus.
J Bone Miner Res
. July 1999;14(7):1167-1174.
2003
Crawford RP, Cann CE, Keaveny TM. Finite element models predict in vitro vertebral body compressive strength better than quantitative computed tomography.
Bone
. 2003;33(4):744-750.
1999
Cody DD, Gross GJ, Hou FJ, Spencer HJ, Goldstein SA, Fyhrie DP. Femoral strength is better predicted by finite element models than QCT and DXA.
J Biomech
. October 1999;32(10):1013-1020.
1991
Odgaard A, Linde F. The underestimation of Young's modulus in compressive testing of cancellous bone specimens.
J Biomech
. 1991;24(8):691-698.
2001
Morgan EF, Keaveny TM. Dependence of yield strain of human trabecular bone on anatomic site.
J Biomech
. 2001;34(5):569-577.
1983
Huiskes R, Chao EYS. A survey of finite element analysis in orthopedic biomechanics: the first decade.
J Biomech
. 1983;16(6):385-409.
1999
Jacobs CR, Davis BR, Rieger CJ, Francis JJ, Saad M, Fyhrie DP. The impact of boundary conditions and mesh size on the accuracy of cancellous bone tissue modulus determination using large-scale finite-element modeling.
J Biomech
. November 1999;32(11):1159-1164.
Cited By (50)
Year
Entry
2018
Mazurkiewicz A. The effect of trabecular bone storage method on its elastic properties.
Acta Bioeng Biomech
. 2018;20(1):21-27.
2007
Kim D-G, Hunt CA, Zauel R, Fyhrie DP, Yeni YN. The effect of regional variations of the trabecular bone properties on the compressive strength of human vertebral bodies.
Ann Biomed Eng
. November 2007;35(11):1907-1913.
2010
Harrison NM, McHugh PE. Comparison of trabecular bone behavior in core and whole bone samples using high-resolution modeling of a vertebral body.
Biomech Model Mechanobiol
. 2010;9(4):469-480.
2006
Bevill G, Eswaran SK, Gupta A, Papadopoulos P, Keaveny TM. Influence of bone volume fraction and architecture on computed large-deformation failure mechanisms in human trabecular bone.
Bone
. December 2006;39(6):1218-1225.
2009
Bevill G, Eswaran SK, Farahmand F, Keaveny TM. The influence of boundary conditions and loading mode on high-resolution finite element-computed trabecular tissue properties.
Bone
. April 2009;44(4):573-578.
2010
Lievers WB, Petryshyn AC, Poljsak AS, Waldman SD, Pilkey AK. Specimen diameter and "side artifacts" in cancellous bone evaluated using end-constrained elastic tension.
Bone
. August 2010;47(2):371-377.
2008
Helgason B, Perilli E, Schileo E, Taddei F, Brynjólfsson S, Viceconti M. Mathematical relationships between bone density and mechanical properties: a literature review.
Clin Biomech
(Bristol, Avon). 2008;23(2):135-146.
2017
Tsirigotis A, Deligianni DD. Combining digital image correlation and acoustic emission for monitoring of the strain distribution until yielding during compression of bovine cancellous bone.
Front Mater
. December 20, 2017;4:44.
2007
Schileo E, Taddei F, Malandrino A, Cristofolini L, Viceconti M. Subject-specific finite element models can accurately predict strain levels in long bones.
J Biomech
. 2007;40(13):2982-2989.
2007
Bevill G, Easley SK, Keaveny TM. Side-artifact errors in yield strength and elastic modulus for human trabecular bone and their dependence on bone volume fraction and anatomic site.
J Biomech
. 2007;40(15):3381-3388.
2009
Liu XS, Bevill G, Keaveny TM, Sajda P, Guo XE. Micromechanical analyses of vertebral trabecular bone based on individual trabeculae segmentation of plates and rods.
J Biomech
. February 9, 2009;42(3):249-256.
2009
Eswaran SK, Bevill G, Nagarathnam P, Allen MR, Burr DB, Keaveny TM. Effects of suppression of bone turnover on cortical and trabecular load sharing in the canine vertebral body.
J Biomech
. March 11, 2009;42(4):517-523.
2009
Mc Donnell P, Harrison N, Liebschner MAK, Mc Hugh PE. Simulation of vertebral trabecular bone loss using voxel finite element analysis.
J Biomech
. 2009;42(16):2789-2796.
2010
Cory E, Nazarian A, Entezari V, Vartanians V, Müller R, Snyder BD. Compressive axial mechanical properties of rat bone as functions of bone volume fraction, apparent density and micro-CT based mineral density.
J Biomech
. March 22, 2010;43(5):953-960.
2011
Vanderoost J, Jaecques SVN, Perre GVd, Boonen S, D'hooge J, Lauriks W, Lenthe GHv. Fast and accurate specimen-specific simulation of trabecular bone elastic modulus using novel beam–shell finite element models.
J Biomech
. May 17, 2011;44(8):1566-1572.
2014
Aiyangar AK, Vivanco J, Au AG, Anderson PA, Smith EL, Ploeg H-L. Dependence of anisotropy of human lumbar vertebral trabecular bone on quantitative computed tomography-based apparent density.
J Biomech Eng
. September 2014;136(9):091003.
2015
Oftadeh R, Perez-Viloria M, Villa-Camacho JC, Vaziri A, Nazarian A. Biomechanics and mechanobiology of trabecular bone: a review.
J Biomech Eng
. January 2015;137(1):010802.
2007
Keaveny TM, Donley DW, Hoffmann PF, Mitlak BH, Glass EV, San Martin JA. Effects of teriparatide and alendronate on vertebral strength as assessed by finite element modeling of qct scans in women with osteoporosis.
J Bone Miner Res
. January 2007;22(1):149-157.
2008
Keaveny TM, Hoffmann PF, Singh M, Palermo L, Bilezikian JP, Greenspan SL, Black DM. Femoral bone strength and its relation to cortical and trabecular changes after treatment with PTH, alendronate, and their combination as assessed by finite element analysis of quantitative CT scans.
J Bone Miner Res
. December 2008;23(12):1974-1982.
2009
Orwoll ES, Marshall LM, Nielson CM, Cummings SR, Lapidus J, Cauley JA, Ensrud K, Lane N, Hoffmann PR, Kopperdahl DL, Keaveny TM; Osteoporotic Fractures in Men (MrOS) Study Group. Finite element analysis of the proximal femur and hip fracture risk in older men.
J Bone Miner Res
. March 2009;24(3):475-483.
2012
Wang X, Sanyal A, Cawthon PM, Palermo L, Jekir M, Christensen J, Ensrud KE, Cummings SR, Orwoll E, Black DM, Keaveny TM; Osteoporotic Fractures in Men (MrOS) Research Group. Prediction of new clinical vertebral fractures in elderly men using finite element analysis of CT scans.
J Bone Miner Res
. April 2012;27(4):808-816.
2010
Lievers WB, Waldman SD, Pilkey AK. Minimizing specimen length in elastic testing of end-constrained cancellous bone.
J Mech Behav Biomed Mater
. January 2010;3(1):22-30.
2012
Wolfram U, Gross T, Pahr DH, Schwiedrzik J, Wilke H-J, Zysset PK. Fabric-based Tsai-Wu yield criteria for vertebral trabecular bone in stress and strain space.
J Mech Behav Biomed Mater
. November 2012;15:218-228.
2016
Wen X-X, Xua C, Zong C-L, Feng Y-F, Ma X-Y, Wang F-Q, Yan Y-B, Lei W. Relationship between sample volumes and modulus of human vertebral trabecular bone in micro-finite element analysis.
J Mech Behav Biomed Mater
. July 2016;60:468-475.
2019
Knowles NK, Langohr GDG, Faieghi M, Nelson A, Ferreira LM. Development of a validated glenoid trabecular density-modulus relationship.
J Mech Behav Biomed Mater
. February 2019;90:140-145.
2021
Bennison MBL, Pilkey AK, Lievers WB. Evaluating a theoretical and an empirical model of "side effects" in cancellous bone.
Med Eng Phys
. August 2021;94:8-15.
2011
Larrue A, Rattner A, Peter Z-A, Olivier C, Laroche N, Vico L, Peyrin F. Synchrotron radiation micro-CT at the micrometer scale for the analysis of the three-dimensional morphology of microcracks in human trabecular bone.
PLoS One
. 2011;6(7):e21297.
2019
Colombo C, Libonati F, Rinaudo L, Bellazzi M, Ulivieri FM, Vergani L. A new finite element based parameter to predict bone fracture.
PLoS One
. December 5, 2019;14(12):e0225905.
2013
Vivanco J, Garcia S, Ploeg HL, Alvarez G, Cullen D, Smith EL. Apparent elastic modulus of ex vivo trabecular bovine bone increases with dynamic loading.
Proc Inst Mech Eng Part H-J Eng Med
. August 2013;227(8):904-912.
2013
Hussein Ali AI.
3-D Visualization and Prediction of Spine Fractures Under Axial Loading
[PhD thesis]. Boston University; 2013.
2007
Liu XS.
High-Resolution Image Based Micro-Mechanical Modeling of Trabecular Bone
[PhD thesis]. Columbia University; 2007.
2009
Chan M.
Mechanobiology of 3D Co-Culture Trabecular Explant Model
[PhD thesis]. Columbia University; 2009.
2008
Nazarian A.
Relative Interaction of Material and Structure in Normal and Pathologic Bone
[PhD thesis]. Swiss Federal Institute of Technology Zürich; 2008.
2020
Bennison MBL.
The Role of Cancellous Bone Architecture in Misalignment and Side Effect Errors
[Master's thesis]. Sudbury, ON: Laurentian University; 2020.
2015
Oftadeh R.
Hierarchical Analysis and Multiscale Modelling of Cellular Structures: From Meta Materials to Bone Structure
[PhD thesis]. Northeastern University; December 2015.
2018
Peña Fernández M.
X-Ray Biomechanical Imaging and Digital Volume Correlation of Bone: From Regeneration to Structure
[PhD thesis]. Portsmouth, England: University of Portsmouth; December 2018.
2009
Lievers WB.
Effects of Geometric and Material Property Changes on the Apparent Elastic Properties of Cancellous Bone
[PhD thesis]. Queen's University; April 2009.
2009
Lancianese SL.
Modeling the Effect of Obesity and Related Biomechanical Risk Factors on the Onset of Knee Osteoarthritis
[PhD thesis]. University of Rochester; 2009.
2007
Tang SY-C.
Effects of Non-Enzymatic Glycation on the Biomechanical Behavior of Bone
[PhD thesis]. Troy, NY: Rensselaer Polytechnic Institute; 2007.
2016
Gustafson HM.
Quantifying the Response of Vertebral Bodies to Compressive Loading Using Digital Image Correlation
[PhD thesis]. Vancouver, BC: University of British Columbia; October 2016.
2007
MacNeil JAM.
Clinical Assessment of Bone Quality
[PhD thesis]. Calgary, AB: University of Calgary; June 2007.
2008
Bevill GR.
Micromechanical Modeling of Failure in Trabecular Bone
[PhD thesis]. Berkeley, CA: Berkeley, University of California; 2008.
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
Iori G.
Micro-FEM Models Based on Micro-CT Reconstructions for the in Vitro Characterization of the Elastic Properties of Trabecular Bone Tissue
[Master's thesis]. University of Bologna; 2013.
2010
Schwen LO.
Composite Finite Elements for Trabecular Bone Microstructures
[PhD thesis]. Bonn, Germany: Rheinische Friedrich-Wilhelms-Universität Bonn; July 2010.
2019
Martig S.
Compressive Fatigue Life and Micromorphology of Equine Metacarpal Subchondral Bone
[PhD thesis]. University of Melbourne; June 2019.
2020
Belda González R.
Mechanical and Morphometric Characterization of Cancellous Bone
[PhD thesis]. Universität Politècnica de València; March 2020.
2019
Knowles NK.
Improving Material Mapping in Glenohumeral Finite Element Models: A Multi-Level Evaluation
[PhD thesis]. University of Western Ontario; 2019.
2011
Aiyangar AK.
Physical and Computational Modeling of Subsidence of Anterior Interbody Fusion Devices
[PhD thesis]. University of Wisconsin – Madison; 2011.
2011
Vivanco Morales JF.
Investigation of Fabrication and Environmental Effects on Bioceramic Bone Scaffolds
[PhD thesis]. University of Wisconsin – Madison; 2011.