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Cifuentes, A. O.; Kalbag, A.
A performance study of tetrahedral and hexahedral elements in 3-D finite element structural analysis
Finite Elem Anal Des
. 1992;12(3-4):313-318
Links
DOI:
10.1016/0168-874X(92)90040-J
Cited Works (1)
Year
Entry
1970
Timoshenko SP, Goodier JN.
Theory of Elasticity
. 3rd ed. New York, NY: McGraw-Hill Book Co; 1970.
Cited By (19)
Year
Entry
1995
Benzley SE, Perry E, Merkley K, Clark B, Sjaardema G. A comparison of all-hexahedral and all-tetrahedral finite element meshes for elastic and elasto-plastic analysis. Proceedings of the 4th International Meshing Roundtable; October 16-17, 1995; Albuquerque, NM.
2009
Schonning A, Oommen B, Ionescu I, Conway T. Hexahedral mesh development of free-formed geometry: the human femur exemplified.
Comput-Aided Des
. 2009;41(8):566-572.
2010
Shivanna KH, Tadepalli SC, Grosland NM. Feature-based multiblock finite element mesh generation.
Comput-Aided Des
. December 2010;42(12):1108-1116.
2004
Li Z, Kim J-E, Eberhardt AW. Nonlinear viscoelastic finite element modeling of a female pubic symphysis. In:
Proceedings of the 32nd International Workshop on Human Subjects for Biomechanical Research
. 2004.179-188.
2011
Ramme AJ, Shivanna KH, Magnotta VA, Grosland NM. Gaussian curvature analysis allows for automatic block placement in multi-block hexahedral meshing.
Comput Methods Biomech Biomed Eng
. 2011;14(10):893-904.
2013
Lievers WB, Kent RW. Patient-specific modelling of the foot: automated hexahedral meshing of the bones.
Comput Methods Biomech Biomed Eng
. 2013;16(12):1287-1297.
2010
Staten ML, Kerr RA, Owen SJ, Blacker TD, Stupazzini M, Shimada K. Unconstrained plastering: hexahedral mesh generation via advancing-front geometry decomposition.
Int J Num Meth Eng
. 2010;81(2):135-171.
2011
Tadepalli SC, Erdemir A, Cavanagh PR. Comparison of hexahedral and tetrahedral elements in finite element analysis of the foot and footwear.
J Biomech
. August 11, 2011;44(12):2337-2343.
2013
Burkhart TA, Andrews DM, Dunning CE. Finite element modeling mesh quality, energy balance and validation methods: a review with recommendations associated with the modeling of bone tissue.
J Biomech
. May 31, 2013;46(9):1477-1488.
2006
Ramos A, Simões JA. Tetrahedral versus hexahedral finite elements in numerical modelling of the proximal femur.
Med Eng Phys
. November 2006;28(9):916.
2020
Bennison MBL.
The Role of Cancellous Bone Architecture in Misalignment and Side Effect Errors
[Master's thesis]. Sudbury, ON: Laurentian University; 2020.
2007
Wickwire AC.
Development of Experimental and Computational Methodologies for Construction of a Subject-Specific Knee Finite Element Model
[Master's thesis]. University of Pittsburgh; 2007.
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
Galibarov PE.
Stochastic Failure Modelling of Total Hip Replacement
[PhD thesis]. Trinity College Dublin; October 2009.
2017
Maas S.
Development of a Nonlinear Finite Element Code for Computational Biomechanics and Biophysics
[PhD thesis]. University of Utah; May 2017.
2011
Howarth SJ.
Mechanical Response of the Porcine Cervical Spine to Acute and Repetitive Anterior-Posterior Shear
[PhD thesis]. University of Waterloo; 2011.
2018
Reeves JM.
An in-Silico Assessment of Stemless Shoulder Arthroplasty: From CT to Predicted Bone Response
[PhD thesis]. London, ON: Western University; 2018.
2019
Knowles NK.
Improving Material Mapping in Glenohumeral Finite Element Models: A Multi-Level Evaluation
[PhD thesis]. University of Western Ontario; 2019.
2020
Tavakoli A.
The Effect of Humeral Short Stem Positioning, Humeral Head Contact, and Head Positioning on Bone Stress Following Total Shoulder Arthroplasty
[Master's thesis]. University of Western Ontario; 2020.