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Ledoux, William
;
Camacho, Daniel
;
Ching, Randal
;
Sangeorzan, Bruce
The development and validation of a computational foot and ankle model
Links
DOI:
10.1109/IEMBS.2000.901481
Cited Works (19)
Year
Entry
1999
Dubbeldam R, Nilson G, Pal B, Eriksson N, Owen C, Roberts A, Crandall J, Hall G, Manning P, Wallace A. A MADYMO model of the foot and leg for local impacts. In:
Proceedings of the 43rd Stapp Car Crash Conference
. October 25-27, 1999; San Diego, CA. Warrendale, PA: Society of Automotive Engineers:185-202. SAE 99SC12.
1994
Burk RT, Morgan J. Anatomy of the lateral ankle ligaments.
Am J Sports Med
. January–February 1994;22(1):72-77.
1996
Tannous RE, Bandak FA, Toridis TG, Eppinger RH. A three-dimensional finite element model of the human ankle: development and preliminary application to axial impulsive loading. In:
Proceedings of the 40th Stapp Car Crash Conference
. November 4-6, 1996; Albuquerque, NM. Warrendale, PA: Society of Automotive Engineers:219-238.219-238. SAE 962427.
1999
Beillas P, Lavaste F, Nicolopoulos D, Kayventash K, Yang KH, Robin S. Foot and ankle finite element modeling using CT-scan data. In:
Proceedings of the 43rd Stapp Car Crash Conference
. October 25-27, 1999; San Diego, CA. Warrendale, PA: Society of Automotive Engineers:171-184. SAE 99SC11.
1997
Lemmon D, Shiang TY, Hashmi A, Ulbrecht JS, Cavanagh PR. The effect of insoles in therapeutic footwear: a finite element approach.
J Biomech
. 1997;30(6):615-620.
1999
Bedewi PG, Digges KH. Investigating ankle injury mechanisms in offset frontal collisions utilizing computer modeling and case-study data. In:
Proceedings of the 43rd Stapp Car Crash Conference
. October 25-27, 1999; San Diego, CA. Warrendale, PA: Society of Automotive Engineers:217-242. SAE 99SC14.
1985
Attarian DE, McCrackin HJ, DeVito DP, McElhaney JH, Garrett WE Jr. Biomechanical characteristics of human ankle ligaments.
Foot Ankle
. 1985;6(2):54-58.
1996
Patil KM, Braak LH, Huson A. Analysis of stresses in two-dimensional models of normal and neuropathic feet.
Med Biol Eng Comput
. 1996;34(4):280-284.
1993
Scott SH, Winter DA. Biomechanical model of the human foot: kinematics and kinetics during the stance phase of walking.
J Biomech
. 1993;26(9):1091-1104.
1999
Jacob S, Patil MK. Stress analysis in three-dimensional foot models of normal and diabetic neuropathy.
Front Med Biol Eng
. 1999;9(3):211-227.
1991
Meglan DA.
Enhanced Analysis of Human Locomotion
[PhD thesis]. The Ohio State University; 1991.
1997
Ward KA, Soames RW. Morphology of the plantar calcaneocuboid ligaments.
Foot Ankle Int
. October 1997;18(10):649-653.
1988
Siegler S, Chen J, Schneck CD. The three-dimensional kinematics and flexibility characteristics of the human ankle and subtalar joints, I: kinematics.
J Biomech Eng
. November 1988;110(4):364-373.
1996
Forster H, Fisher J. The influence of loading time and lubricant on the friction of articular cartilage.
Proc Inst Mech Eng Part H-J Eng Med
. 1996;210(2):109-119.
1999
Ledoux WR II.
A Biomechanical Model of the Human Foot With Emphasis on the Plantar Soft Tissue
[PhD thesis]. Philadelphia, PA: University of Pennsylvania; 1999.
1996
Beaugonin M, Haug E, Cesari D. A numerical model of the human ankle/foot under impact loading in inversion and eversion. In:
Proceedings of the 40th Stapp Car Crash Conference
. November 4-6, 1996; Albuquerque, NM. Warrendale, PA: Society of Automotive Engineers:239-249. SAE 962428.
1997
Beaugonin M, Haug E, Cesari D. Improvement of numerical ankle/foot model: modeling of deformable bone. In:
Proceedings of the 41st Stapp Car Crash Conference
. November 13-14, 1997; Lake Buena Vista, FL. Warrendale, PA: Society of Automotive Engineers:225-237. SAE 973331.
1994
Kitaoka HB, Luo ZP, Growney ES, Berglund LJ, An K-N. Material properties of the plantar aponeurosis.
Foot Ankle Int
. 1994;15(10):557-560.
1988
Siegler S, Block J, Schenck CD. The mechanical characteristics of the collateral ligaments of the human ankle joint.
Foot Ankle
. April 1988;8(5):234-242.
Cited By (6)
Year
Entry
2008
Imhauser CW, Siegler S, Udupa JK, Toy JR. Subject-specific models of the hindfoot reveal a relationship between morphology and passive mechanical properties.
J Biomech
. 2008;41(6):1341-1349.
2009
Tao K, Wang D, Wang C, Wang X, Liu A, Nester CJ, Howard D. An in vivo experimental validation of a computational model of human foot.
J Bionic Eng
. 2009;6(4):387-397.
2005
Mkandawire C, Ledoux WR, Sangeorzan BJ, Ching RP. Foot and ankle ligament morphometry.
J Rehab Res Dev
. November–December 2005;42(6):809-819.
2004
Imhauser CW.
The Development and Evaluation of a 3-Dimensional, Image-Based, Patientspecific, Dynamic Model of the Hindfoot
[PhD thesis]. Philadelphia, PA: Drexel University; August 2004.
2011
Shin J.
Injury and Response of Human Ankle and Subtalar Joints Under Complex Loading
[PhD thesis]. Charlottesville, VA: University of Virginia; December 2011.
2002
Mkandawire C.
The Relationship Between Viscoelastic Relaxation and Ligament Morphometry
[PhD thesis]. Seattle, WA: University of Washington; 2002.