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Kristen, K.-H.; Berger, K.; Berger, C.; Kampla, W.; Anzböck, W.; Weitzel, S. H.
The first metatarsal bone under loading conditions: a finite element analysis
Foot and Ankle Clinics
. 2005;10(1):1-14
Links
DOI:
10.1016/j.fcl.2004.11.003
PubMed:
15831255
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J Orthop Res
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1998
Silva MJ, Keaveny TM, Hayes WC. Computed tomography-based finite element analysis predicts failure loads and fracture patterns for vertebral sections.
J Orthop Res
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2004
Bock P, Kristen K-H, Kröner A, Engel A. Hallux valgus and cartilage degeneration in the first metatarsophalangeal joint.
J Bone Joint Surg
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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
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2000
Couteau B, Payan Y, Lavallée S. The mesh-matching algorithm: an automatic 3d mesh generator for finite element structures.
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1997
Ahn T-K, Kitaoka HB, Luo Z-P, An K-N. Kinematics and contact characteristics of the first metatarsophalangel joint.
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1979
Stokes IAF, Hutton WC, Stott JRR. Forces acting on the metatarsals during normal walking.
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2000
Keyak J, Rossi S. Prediction of femoral fracture load using finite element models: an examination of stress- and strain-based failure theories.
J Biomech
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1995
Lotz JC, Cheal EJ, Hayes WC. Stress distributions within the proximal femur during gait and falls: implications for osteoporotic fracture.
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Lengsfeld M, Schmitt J, Alter P, Kaminsky J, Leppek R. Comparison of geometry-based and CT voxel-based finite element modelling and experimental validation.
Med Eng Phys
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1998
Duda GN, Heller M, Albinger J, Schulz O, Schneider E, Claes L. Influence of muscle forces on femoral strain distribution.
J Biomech
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1999
Nawoczenski DA, Baumhauer JF, Umberger BR. Relationship between clinical measurements and motion of the first metatarsophalangeal joint during gait.
J Bone Joint Surg
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1987
Cavanagh PR, Rodgers MM, Iiboshi A. Pressure distribution under symptom-free feet during barefoot standing.
Foot Ankle Int
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2001
Chen W-P, Tang F-T, Ju C-W. Stress distribution of the foot during mid-stance to push-off in barefoot gait: a 3-D finite element analysis.
Clin Biomech
(Bristol, Avon). August 2001;16(7):614-620.
2000
Gefen A, Megido-Ravid M, Itzchak Y, Arcan M. Biomechanical analysis of the three-dimensional foot structure during gait: a basic tool for clinical applications.
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Cited By (2)
Year
Entry
2016
Firminger CR.
Effects of Minimalist Footwear and Stride Length Reduction on Metatarsal Strains and the Probability of Stress Fracture in Running
[Master's thesis]. Calgary, AB: University of Calgary; July 2016.
2017
Fung A.
Experimental Validation of Finite Element Predicted Bone Strain in the Human Metatarsal
[Master's thesis]. Calgary, AB: University of Calgary; April 2017.