wbldb
home
|
authors
|
theses
Camacho, Daniel L. A.
;
Ledoux, William R.
;
Rohr, Eric S.
;
Sangeorzan, Bruce J.
;
Ching, Randal P.
A three-dimensional, anatomically detailed foot model: a foundation for a finite element simulation and means of quantifying foot-bone position
J Rehab Res Dev
. 2002;39(3):401-410
Links
PubMed:
12173760
WoS:
000176955300011
Cited Works (13)
Year
Entry
1987
Cavanagh PR, Rodgers MM. The arch index: a useful measure from footprints.
J Biomech
. 1987;20(5):547-551.
1997
Lemmon D, Shiang TY, Hashmi A, Ulbrecht JS, Cavanagh PR. The effect of insoles in therapeutic footwear: a finite element approach.
J Biomech
. June 1997;30(6):615-620.
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.
1996
Patil KM, Braak LH, Huson A. Analysis of stresses in two-dimensional models of normal and neuropathic feet.
Med Biol Eng Comput
. July 1996;34(4):280-284.
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.
1991
Meglan DA.
Enhanced Analysis of Human Locomotion
[PhD thesis]. The Ohio State University; 1991.
1981
Nakamura S, Crowninshield RD, Cooper RR. An analysis of soft tissue loading in the foot: a preliminary report.
Bull Prosthet Res
. 1981;18(1):27-34.
1994
Gilchrist LA.
A Computer Simulation of Human Gait
[PhD thesis]. University of Waterloo; 1994.
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.
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.
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
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.
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.
Cited By (27)
Year
Entry
2007
Antunes PJ, Dias GR, Coelho AT, Rebelo F, Pereira T. Non-linear finite element modelling of anatomically detailed 3D foot model. 2007.
2007
Yang Y, Yu G, Niu W, Zhou J, Chen Y, Yuan F, Ding Z. Effect of the plantar ligaments injury on the longitudinal arch height of the human foot. In: Li K, li X, Irwin GW, He G, eds.
Life System Modeling and Simulation
. International Conference, LSMS 2007; September 2007; Shanghai, China. Berlin: Springer-Verlag:111-119.
Lecture Notes in Computer Science
; vol 4689.
2005
Cheung JT-M, Zhang M. A 3-dimensional finite element model of the human foot and ankle for insole design.
Arch Phys Med Rehabil
. 2005;86(2):353-358.
2004
Cheung JT-M, Zhang M, An K-N. Effects of plantar fascia stiffness on the biomechanical responses of the ankle–foot complex.
Clin Biomech
(Bristol, Avon). October 2004;19(8):839-846.
2006
Cheung JT-M, An K-N, Zhang M. Consequences of partial and total plantar fascia release: a finite element study.
Foot Ankle Int
. 2006;27(2):125-132.
2005
Cheung JT-M, Zhang M, Leung AK-L, Fan Y-B. Three-dimensional finite element analysis of the foot during standing: a material sensitivity study.
J Biomech
. May 2005;38(5):1045-1054.
2005
Erdemir A, Saucerman JJ, Lemmon D, Loppnow B, Turso B, Ulbrecht JS, Cavanagh PR. Local plantar pressure relief in therapeutic footwear: design guidelines from finite element models.
J Biomech
. September 2005;38(9):1798-1806.
2006
Erdemir A, Viveiros ML, Ulbrecht JS, Cavanagh PR. An inverse finite-element model of heel-pad indentation.
J Biomech
. 2006;39(7):1279-1286.
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.
2008
Cheng H-YK, Lin C-L, Wang H-W, Chou S-W. Finite element analysis of plantar fascia under stretch: the relative contribution of windlass mechanism and Achilles tendon force.
J Biomech
. 2008;41(9):1937-1944.
2011
Wei F, Braman JE, Weaver BT, Haut RC. Determination of dynamic ankle ligament strains from a computational model driven by motion analysis based kinematic data.
J Biomech
. October 13, 2011;44(15):2636-2641.
2007
Budhabhatti SP, Erdemir A, Petre M, Sferra J, Donley B, Cavanagh PR. Finite element modeling of the first ray of the foot: a tool for the design of interventions.
J Biomech Eng
. 2007;129(5):750-756.
2009
Erdemir A, Sirimamilla PA, Halloran JP, van den Bogert AJ. An elaborate data set characterizing the mechanical response of the foot.
J Biomech Eng
. 2009;131(9):094502.
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.
2007
Largey A, Bonnel F, Canovas F, Subsol G, Chemouny S, Banegas F. Three-dimensional analysis of the intrinsic anatomy of the metatarsal bones.
J Foot Ankle Surg
. 2007;46(6):434-441.
2017
Nie B, Panzer MB, Mane A, Mait AR, Donlon J-P, Forman JL, Kent RW. Determination of the in situ mechanical behavior of ankle ligaments.
J Mech Behav Biomed Mater
. January 2017;65:502-512.
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.
2009
Sirimamilla PA.
Elaborate Experimentation for Mechanical Characterization of Human Foot Using Inverse Finite Element Analysis
[Master's thesis]. Cleveland, OH: Case Western Reserve University; January 2009.
2007
Budhabhatti SP.
Enhanced Plantar Pressure Relief Using Computational Modeling: A Tool for Assisting Clinical Decision Making
[PhD thesis]. Cleveland State University; December 2007.
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.
2020
Ellison MA.
Beam Theory and Finite Element Approaches to Modelling the Stresses in the Second Metatarsal During Running
[PhD thesis]. Exeter, UK: University of Exeter; March 2020.
2005
Cheung TMJ.
Development of Knowledge-Based Criteria for Designing Foot Orthoses
[PhD thesis]. Hong Kong Polytechnic University; October 2005.
2016
Grigoriadis G.
Heel Biomechanics Under Blast Conditions
[PhD thesis]. Imperial College London; June 2016.
2012
Wei F.
Biomechanical Investigations and Computational Modeling of the Human Ankle
[PhD thesis]. East Lansing, MI: Michigan State University; 2012.
2017
Campbell B.
An Assessment of Hallux Valgus
[PhD thesis]. University of Pittsburgh; 2017.
2008
Lewis GS.
Computational Modeling of the Mechanics of Flatfoot Deformity and Its Surgical Corrections
[PhD thesis]. State College, PA: Pennsylvania State University; December 2008.
2017
Mait AR.
Syndesmotic Ankle Sprains in Large Males
[Master's thesis]. Charlottesville, VA: University of Virginia; August 2017.