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RESEARCH ARTICLE

Effects of different distractor positions on the formation of expansion, stress and displacement patterns in surgically assisted rapid maxillary expansion without pterygomaxillary disjunction: a finite element analysis study

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Pages 56-66 | Received 14 Mar 2022, Accepted 10 Jan 2023, Published online: 01 Feb 2023

References

  • Ansys workbench 16.0, mesh quality advanced topics. [Accessed 2020 January 3]. w.academia.edu/16970000/mesh_qualıty_and_advenced_topıcs_ansys_workbench_16.0.
  • Bays RA, Greco JM. 1992. Surgically assisted rapid palatal expansion: an outpatient technique with long-term stability. J Oral Maxillofac Surg. 50(2):110–113.
  • Bi Z. 2018. Finite element analysis applications, a systematic and practical approach., In: Chapter 12-validation and verification. 1st ed. Cambridge: Academic Press; p. 455–494.
  • Gautam P, Valiathan A, Adhikari R. 2007. Stress and displacement patterns in the craniofacial skeleton with rapid maxillary expansion: a finite element method study. Am J Orthod Dentofac Orthop. 132(1):5.e1-5–e11.
  • Günbay T, Akay MC, Günbay S, Aras A, Koyuncu BÖ, Sezer B. 2008. Transpalatal distraction using bone-borne distractor: clinical observations and dental and skeletal changes. J Oral Maxillofac Surg. 66(12):2503–2514.
  • Han UA, Kim Y, Park JU. 2009. Three-dimensional finite element analysis of stress distribution and displacement of the maxilla following surgically assisted rapid maxillary expansion. J Craniomaxillofac Surg. 37(3):145–154.
  • Hartono N, Soegiharto BM, Widayati R. 2018. The difference of stress distribution of maxillary expansion using rapid maxillary expander (RME) and maxillary skeletal expander (MSE)—a finite element analysis. Prog Orthod. 19(1):1–10.
  • Holberg C, Steinhäuser S, Rudzki I. 2007. Surgically assisted rapid maxillary expansion: midfacial and cranial stress distribution. Am J Orthod Dentofacial Orthop. 132(6):776–782.
  • Jafari A, Shetty KS, Kumar M. 2003. Study of stress distribution and displacement of various craniofacial structures following application of transverse orthopedic forces—a three-dimensional FEM study. Angle Orthod. 73(1):12–20.
  • Koç O, Jacob HB. 2022. Surgically assisted rapid palatal expansion: is the pterygomaxillary disjunction necessary? A finite element study. Semin Orthod. 28:1–15.
  • Koudstaal MJ, Wolvius EB, Schulten AJM, Hop WCJ, Van der Wal KGH. 2009. Stability, tipping and relapse of bone-borne versus tooth-borne surgically assisted rapid maxillary expansion; a prospective randomized patient trial. Int J Oral Maxillofac Surg. 38(4):308–315.
  • Kunz F, Linz C, Baunach G, Böhm H, Meyer-Marcotty P. 2016. Expansion patterns in surgically assisted rapid maxillary expansion. J Orofac Orthop. 77(5):357–365.
  • Lee HK, Bayome M, Ahn CS, Kim SH, Kim KB, Mo SS, Kook YA. 2014. Stress distribution and displacement by different bone-borne palatal expanders with micro-implants: a three-dimensional finite-element analysis. Eur J Orthod. 36(5):531–540.
  • Lee RJ, Moon W, Hong C. 2017. Effects of monocortical and bicortical mini-implant anchorage on bone-borne palatal expansion using finite element analysis. Am J Orthod Dentofacial Orthop. 151(5):887–897.
  • Lee SC, Park JH, Bayome M, Kim KB, Araujo EA, Kook YA. 2014. Effect of bone-borne rapid maxillary expanders with and without surgical assistance on the craniofacial structures using finite element analysis. Am J Orthod Dentofac Orthop. 145:638–648.
  • Lo Giudice A, Barbato E, Cosentino L, Ferraro CM, Leonardi R. 2018. Alveolar bone changes after rapid maxillary expansion with tooth-born appliances: a systematic review. Eur J Orthod. 40(3):296–303.
  • MacGinnis M, Chu H, Youssef G, Wu KW, Machado AW, Moon W. 2014. The effects of micro-implant assisted rapid palatal expansion (MARPE) on the nasomaxillary complex—a finite element method (FEM) analysis. Prog Orthod. 15(1):52.
  • Matteini C, Mommaerts MY. 2001. Posterior transpalatal distraction with pterygoid disjunction: a short-term model study. Am J Orthod Dentofac Orthop. 120(5):498–502.
  • Möhlhenrich SC, Ernst K, Peters F, Kniha K, Chhatwani S, Prescher A, Danesh G, Hölzle F, Modabber A. 2021. Immediate dental and skeletal influence of distractor position on surgically assisted rapid palatal expansion with or without pterygomaxillary disjunction. Int J Oral Maxillofac Surg. 50(5):649–656.
  • Möhlhenrich SC, Heeg J, Raith S, Kniha K, Hölzle F, Wolf M, Fritz U, Modabber A. 2020. Effect of the pterygomaxillary disjunction on surgically assisted rapid palatal expansion in context of orthodontic treatment. Oral Surg Oral Med Oral Pathol Oral Radiol. 130(3):241–251.
  • Möhlhenrich SC, Modabber A, Kniha K, Peters F, Steiner T, Hölzle F, Fritz U, Raith S. 2017. Simulation of three surgical techniques combined with two different bone-borne forces for surgically assisted rapid palatal expansion of the maxillofacial complex: a finite element analysis. Int J Oral Maxillofac Surg. 46(10):1306–1314.
  • Mommaerts MY. 1999. Transpalatal distraction as a method of maxillary expansion. Br J Oral Maxillofac Surg. 37(4):268–272.
  • National bioscience database center. 2018. BodyParts3D, The database center for life science licensed under CC attribution-share alike 2.1 Japa. [accessed March 3] https://dbarchive.biosciencedbc.jp/en/bodyparts3d/desc.html.
  • Nowak R, Olejnik A, Gerber H, Frątczak R, Zawiślak E. 2021. Comparison of tooth- and bone-borne appliances on the stress distributions and displacement patterns in the facial skeleton in surgically assisted rapid maxillary expansion-a finite element analysis (FEA) study. Materials (Basel). 14(5):1152.
  • Peterson J, Dechow PC. 2003. Material properties of the human cranial vault and zygoma. Anat Rec A Discov Mol Cell Evol Biol. 274(1):785–797.
  • Peterson J, Wang Q, Dechow PC. 2006. Material properties of the dentate maxilla. Anat Rec A Discov Mol Cell Evol Biol. 288(9):962–972.
  • Suri L, Taneja P. 2008. Surgically assisted rapid palatal expansion: a literature review. Am J Orthod Dentofacial Orthop. 133(2):290–302.
  • Verlinden CR, Gooris PG, Becking AG. 2011. Complications in transpalatal distraction osteogenesis: a retrospective clinical study. J Oral Maxillofac Surg. 69(3):899–905.
  • Verstraaten J, Kuijpers-Jagtman AM, Mommaerts MY, Bergé SJ, Nada RM, Schols JG, Eurocran Distraction Osteogenesis Group 2010. A systematic review of the effects of bone-borne surgical assisted rapid maxillary expansion. J Craniomaxillofac Surg. 38(3):166–174.
  • Zandi M, Miresmaeili A, Heidari A, Lamei A. 2016. The necessity of pterygomaxillary disjunction in surgically assisted rapid maxillary expansion: a short-term, double-blind, historical controlled clinical trial. J Craniomaxillofac Surg. 44(9):1181–1186.
  • Zawiślak E, Olejnik A, Frątczak R, Nowak R. 2020. Impact of osteotomy in surgically assisted rapid maxillary expansion using tooth-borne appliance on the formation of stresses and displacement patterns in the facial skeleton—a study using finite element analysis (FEA). Appl Sci. 10(22):8261.

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