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Cowin, S. C.
1
Remarks on the paper entitled "Fabric and elastic principal directions of cancellous bone are closely related"
J Biomech
. November–December 1997;30(11-12):1191-1192
©1997 Elsevier Science Ltd. All rights reserved
Affiliations
1
Department of Mechanical Engineering, The School of Engineering of
The City College
and The Graduate School of
The City University of New York
, New York, NY 10031, U.S.A.
Links
DOI:
10.1016/S0021-9290(97)85609-6
PubMed:
9456391
WoS:
000071459800019
Cited Works (4)
Year
Entry
1986
Cowin SC. Wolff’s law of trabecular architecture at remodeling equilibrium.
J Biomech Eng
. February 1986;108(1):83-88.
1985
Cowin SC. The relationship between the elasticity tensor and the fabric tensor.
Mech Mater
. 1985;4(2):137-147.
1996
van Rietbergen B, Odgaard A, Kabel J, Huiskes R. Direct mechanics assessment of elastic symmetries and properties of trabecular bone architecture.
J Biomech
. December 1996;29(12):1653-1657.
1997
Odgaard A, Kabel J, van Rietbergen B, Dalstra M, Huiskes R. Fabric and elastic principal directions of cancellous bone are closely related.
J Biomech
. 1997;30(5):487-495.
Cited By (14)
Year
Entry
2018
Levrero-Florencio F, Pankaj P. Using non-linear homogenization to improve the performance of macroscopic damage models of trabecular bone.
Front Physiol
. May 2018;9:545.
2001
Niebur GL, Yuen JC, Burghardt AJ, Keaveny TM. Sensitivity of damage predictions to tissue level yield properties and apparent loading conditions.
J Biomech
. May 2001;34(5):699-706.
2002
Jaasma MJ, Bayraktar HH, Niebur GL, Keaveny TM. Biomechanical effects of intraspecimen variations in tissue modulus for trabecular bone.
J Biomech
. 2002;35(2):237-246.
2012
Souzanchi MF, Palacio-Mancheno P, Borisov YA, Cardoso L, Cowin SC. Microarchitecture and bone quality in the human calcaneus: local variations of fabric anisotropy.
J Bone Miner Res
. December 2012;27(12):2562-2572.
2019
Alexander SL, Gunnarsson CA, Weerasooriya T. Influence of the mesostructure on the compressive mechanical response of adolescent porcine cranial bone.
J Mech Behav Biomed Mater
. August 2019;96:96-107.
2012
Moesen M, Cardoso L, Cowin SC. A symmetry invariant formulation of the relationship between the elasticity tensor and the fabric tensor.
Mech Mater
. November 2012;54:70-83.
2005
Yoon YJ.
Estimates of Bone Elastic Constants At Sequential Hierarchical Levels
[PhD thesis]. New York, NY: The City University of New York; 2005.
2008
Tommasini SM.
Phenotypic Integration Contributes to Skeletal Functionality and Fragility
[PhD thesis]. New York, NY: The City University of New York; 2008.
2013
Souzanchi MF.
The Effect of Microarchitecture and Fabric Anisotropy of Trabecular Bone on Its Mechanical Behavior
[PhD thesis]. New York, NY: The City University of New York; 2013.
2015
Ramcharan MA.
Development of Functional Interactions Among Cortical and Trabecular Traits During Growth of the Lumbar Vertebral Body
[PhD thesis]. New York, NY: The City University of New York; 2015.
2016
Florencio FL.
Multiscale Modelling of Trabecular Bone: From Micro to Macroscale
[PhD thesis]. Edinburgh, Scotland: University of Edinburgh; 2016.
2009
Moesen M.
Modeling of the Geometry and Mechanical Behavior of Bone Scaffolds
[PhD thesis]. Leuven, Belgium: Katholieke Universiteit Leuven; June 2009.
2006
Yang S.
Animal Experiment (rabbit) to Demonstrate Changes in Trabecular Bone Mechanical Properties Over Time Using Finite Element Analysis
[PhD thesis]. Louisville, KY: University of Louisville; December 2006.
2000
Niebur GL.
A Computational Investigation of Multiaxial Failure in Trabecular Bone
[PhD thesis]. Berkeley, CA: University of California; 2000.