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Finite element method (FEM) analysis of the force systems produced by asymmetric inner headgear bows Cover

Finite element method (FEM) analysis of the force systems produced by asymmetric inner headgear bows

Open Access
|Aug 2023

References

  1. Kingsley NW. Orthodontics, historical review in Weinberger BW: History of Orthodontia, St Louis 1926, the CV Mosby Company Vol II; pp. 490, Figure 215.
  2. Oppenheim A. Biologic orthodontic therapy and reliability. Angle Orthod 1936;6:69-116.
  3. Oppenheim A. Possibility for physiologic orthodontic movement. Am J Orthod and Oral Surgery1944;30:277-328.
  4. Gould IE. Mechanical principles in extra oral anchorage. Am J Orthod 1957;43:319-33.
  5. Haack DC, Weinstein S. The mechanics of centric and eccentric cervical traction. Am J Orthod1958;44:346-57.
  6. Armstrong MM. Controlling the magnitude, direction, and duration of the extraoral force. Am J Orthod 1971;59:217-43.
  7. Oosthuizen L, Dijkman JF, Evans WG. A mechanical appraisal of the Kloehn extraoral assembly. Angle Orthod 1973;43:221-32.
  8. Worms FW, Isaacson RJ, Speidle TM. A concept and classification of rotation and extraoral force systems. Am J Orthod 1973;43:384-401.
  9. Jacobson A. A key to the understanding of extraoral forces. Am J Orthod 1979;75:361-86.
  10. Hershey HG, Houghton CW, Burstone CJ. Unilateral face bows: A theoretical and laboratory analysis. Am J Orthod 1981;79:229-49.
  11. Contasti GA, Legan HL. Biomechanical guidelines for the headgear application. J Clin Orthod 1982;16:308-12.
  12. Kubein-Meesenburg D, Jager A, Bormann V. Kloehn headgear force analysis. J Clin Orthod 1984;18:882-90.
  13. Hayder S, Uner O. Comparison of Jones Jig molar distalization appliance with extraoral traction. Am J Orthod Dentofacial Orthop 2000;117:49-53.
  14. Bondemark L, Karlson I. Extraoral vs Intraoral appliance for distal movement of maxillary first molars: a randomized controlled trial. Angle Orthod 2005;75:699-706.
  15. Geramy A. Alveolar bone resorption and the center of resistance modification: 3D analysis by means of the finite element method. Am J Orthod Dentofacial Orthop 2000;117:399-405.
  16. Geramy A. Stresses around a mini screw. 3D analysis with the finite element method (FEM). Aust Orthod J 2009;25:104-9.
  17. Geramy A. Optimization of unilateral overjet management: 3D analysis using finite element method. Angle Orthod 2002;72:585-92.
  18. Geramy A, Morgano S. Finite element analysis of three designs of an implant-supported molar crown. J Prosthetic Dent2004;92:434-40.
  19. Geramy A, Ghadirian H. Comparison of methods used to correct a lingually tilted mandibular molar: 3-D analysis using the finite element method (FEM). Aust Orthod J 2008;24:96-101.
  20. Geramy A, Faghihi Sh. Secondary trauma from occlusion: 3D analysis using finite element method. Quintessence Intl. 2004;35:835-43.
  21. Weinstein S. Minimal forces in tooth movement. Am J Orthod 1967;53:881-903.
DOI: https://doi.org/10.2478/aoj-2011-0016 | Journal eISSN: 2207-7480 | Journal ISSN: 2207-7472
Language: English
Page range: 125 - 131
Submitted on: Apr 1, 2010
Accepted on: Dec 1, 2010
Published on: Aug 1, 2023
Published by: Australian Society of Orthodontists Inc.
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2023 Allahyar Geramy, Natalya Kizilova, Leonid Terekhov, published by Australian Society of Orthodontists Inc.
This work is licensed under the Creative Commons Attribution 4.0 License.