205
Views
2
CrossRef citations to date
0
Altmetric
Original Articles

Maxillary expansion treatment using bone anchors: development and validation of a 3D finite element model

, , , &
Pages 137-149 | Received 15 Aug 2006, Accepted 27 Oct 2006, Published online: 10 Mar 2011

References

  • Albrektsson , T. and Johansson , C. 2001 . Osteoinduction, osteoconduction and osseointegration . Eur. Spine J. , 10 ( Suppl 2 ) : S96 – S101 .
  • Bell , R.A. 1982 . A review of maxillary expansion in relation to rate of expansion and patient's age . Am. J. Orthod. , 81 : 32 – 37 .
  • Bernhart , T. , Vollgruber , A. , Gahleitner , A. , Dortbudak , O. and Haas , R. 2000 . Alternative to the median region of the palate for placement of an orthodontic implant . Clin. Oral Implants Res. , 11 : 595 – 601 .
  • Bernhart , T. , Freudenthaler , J. , Dortbudak , O. , Bantleon , H.P. and Watzek , G. 2001 . Short epithetic implants for orthodontic anchorage in the paramedian region of the palate. A clinical study . Clin. Oral Implants Res. , 12 : 624 – 631 .
  • Bhatti , M.A. 2005 . Fundamental Finite Element Analysis and Applications: With Mathematica and Matlab Computations , Hoboken, NJ : John Wiley .
  • Block , M.S. and Hoffman , D.R. 1995 . A new device for absolute anchorage for orthodontics . Am. J. Orthod. Dentofacial Orthop. , 107 : 251 – 258 .
  • Borchers , L. and Reichart , P. 1983 . Three-dimensional stress distribution around a dental implant at different stages of interface development . J. Dent. Res. , 62 : 155 – 159 .
  • Branemark , P.I. , Aspegren , K. and Breine , U. 1964 . Microcirculatory studies in man by high resolution vital microscopy . Angiology , 15 : 329 – 332 .
  • Branemark , P.I. , Adell , R. , Breine , U. , Hansson , B.O. , Lindstrom , J. and Ohlsson , A. 1969 . Intra-osseous anchorage of dental prostheses. I. Experimental studies . Scand. J. Plast. Reconstr. Surg. , 3 : 81 – 100 .
  • Branemark , P.I. , Breine , U. , Hallen , O. , Hanson , B. and Lindstrom , J. 1970 . Repair of defects in mandible . Scand. J. Plast. Reconstr. Surg. , 4 : 100 – 108 .
  • Branemark , P.I. , Lindstrom , J. , Hallen , O. , Breine , U. , Jeppson , P.H. and Ohman , A. 1975 . Reconstruction of the defective mandible . Scand. J. Plast. Reconstr. Surg. , 9 : 116 – 128 .
  • Branemark , P.I. , Hansson , B.O. , Adell , R. , Breine , U. , Lindstrom , J. , Hallen , O. and Ohman , A. 1977 . Osseointegrated implants in the treatment of the edentulous jaw. Experience from a 10-year period . Scand. J. Plast. Reconstr. Surg. Suppl. , 16 : 1 – 132 .
  • Breine , U. and Branemark , P.I. 1980 . Reconstruction of alveolar jaw bone. An experimental and clinical study of immediate and preformed autologous bone grafts in combination with osseointegrated implants . Scand. J. Plast. Reconstr. Surg. , 14 : 23 – 48 .
  • Buser , D. , Nydegger , T. , Oxland , T. , Cochran , D.L. , Schenk , R.K. , Hirt , H.P. , Snetivy , D. and Nolte , L.P. 1999 . Interface shear strength of titanium implants with a sandblasted and acid-etched surface: a biomechanical study in the maxilla of miniature pigs . J. Biomed. Mater. Res. , 45 : 75 – 83 .
  • Cattaneo , P.M. , Dalstra , M. and Frich , L.H. 2001 . A three-dimensional finite element model from computed tomography data: a semi-automated method . Proc. Inst. Mech. Eng. [H] , 215 : 203 – 213 .
  • Chen , X. and Chen , H. 1998 . The influence of alveolar structures on the torsional strain field in a gorilla corporeal cross-section . J. Hum. Evol. , 35 : 611 – 633 .
  • Coleman , J.C. , Hart , R.T. , Owan , I. , Tankano , Y. and Burr , D.B. 2002 . Characterization of dynamic three-dimensional strain fields in the canine radius . J. Biomech. , 35 : 1677 – 1683 .
  • Erverdi , N. , Okar , I. , Kucukkeles , N. and Arbak , S. 1994 . A comparison of two different rapid palatal expansion techniques from the point of root resorption . Am. J. Orthod. Dentofacial Orthop. , 106 : 47 – 51 .
  • Ficarelli , J.P. 1978 . A brief review of maxillary expansion . J. Pedod. , 3 : 29 – 35 .
  • Glatzmaier , J. , Wehrbein , H. and Diedrich , P. 1995 . The development of a resorbable implant system for orthodontic anchorage. The BIOS implant system. Bioresorbable implant anchor for orthodontic systems . Fortschr. Kieferorthop. , 56 : 175 – 181 .
  • Gray , J.B. , Steen , M.E. , King , G.J. and Clark , A.E. 1983 . Studies on the efficacy of implants as orthodontic anchorage . Am. J. Orthod. , 83 : 311 – 317 .
  • Hansson , H.A. , Albrektsson , T. and Branemark , P.I. 1983 . Structural aspects of the interface between tissue and titanium implants . J. Prosthet. Dent. , 50 : 108 – 113 .
  • Harzer , W. , Schneider , M. and Gedrange , T. 2004 . Rapid maxillary expansion with palatal anchorage of the hyrax expansion screw–pilot study with case presentation . J. Orofac. Orthop. , 65 : 419 – 424 .
  • Holberg , C. 2005 . Effects of rapid maxillary expansion on the cranial base-an FEM-analysis* . J. Orofac. Orthop. , 66 : 54 – 66 .
  • Iseri , H. , Tekkaya , A.E. , Oztan , O. and Bilgic , S. 1998 . Biomechanical effects of rapid maxillary expansion on the craniofacial skeleton, studied by the finite element method . Eur. J. Orthod. , 20 : 347 – 356 .
  • Jafari , A. , Shetty , K.S. and 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 : 12 – 20 .
  • Johnson , E.A. and Young , P.G. 2005 . On the use of a patient-specific rapid-prototyped model to simulate the response of the human head to impact and comparison with analytical and finite element models . J. Biomech. , 38 : 39 – 45 .
  • M.O. Lagravère, Y. Fang, J. Carey and P.W. Major, “Density conversion factor determined from cone-beam computer tomographer NewTom 9000”, Dentomaxillofac. Radiol., In Press 2006
  • Movassaghi , K. , Altobelli , D.E. and Zhou , H. 1995 . Frontonasal suture expansion in the rabbit using titanium screws . J. Oral. Maxillofac. Surg. , 53 : 1033 – 1042 .
  • Peterson , J. and Dechow , P.C. 2003 . Material properties of the human cranial vault and zygoma . Anat. Rec. A Discov. Mol. Cell. Evol. Biol. , 274 : 785 – 797 .
  • C. Provatidis, B. Georgiopoulos, A. Kotinas and J.P. McDonald, “Simplified finite element model for the simulation of relaxation during rapid maxillary expansion”, Integrated systems in dental healthcare, European Symposium. May 29–31. 2003a
  • Provatidis , C. , Georgiopoulos , B. , Kotinas , A. and McDonald , J.P. 2003b . “ In vitro validation of a FEM model for craniofacial effects during rapid maxillary expansion ” . In Proceedings of the IASTED International Conference on Biomechanics 68 – 73 .
  • Rho , J.Y. , Hobatho , M.C. and Ashman , R.B. 1995 . Relations of mechanical properties to density and CT numbers in human bone . Med. Eng. Phys. , 17 : 347 – 355 .
  • Roberts , W.E. , Smith , R.K. , Zilberman , Y. , Mozsary , P.G. and Smith , R.S. 1984 . Osseous adaptation to continuous loading of rigid endosseous implants . Am. J. Orthod. , 86 : 95 – 111 .
  • Roberts , W.E. , Helm , F.R. , Marshall , K.J. and Gongloff , R.K. 1989 . Rigid endosseous implants for orthodontic and orthopedic anchorage . Angle Orthod. , 59 : 247 – 256 .
  • Schiel , H.J. , Klein , J. and Widmer , B. 1996 . Das enossale implantat als kieferorthopadisches verankerungselement . Z. Zahnarztl. Implantol. , 12 : 183 – 188 .
  • Shapiro , P.A. and Kokich , V.G. 1988 . Uses of implants in orthodontics . Dent. Clin. North Am. , 32 : 539 – 550 .
  • Smalley , W.M. , Shapiro , P.A. , Hohl , T.H. , Kokich , V.G. and Branemark , P.I. 1988 . Osseointegrated titanium implants for maxillofacial protraction in monkeys . Am. J. Orthod. Dentofacial Orthop. , 94 : 285 – 295 .
  • Strait , D.S. , Wang , Q. , Dechow , P.C. , Ross , C.F. , Richmond , B.G. , Spencer , M.A. and Patel , B.A. 2005 . Modeling elastic properties in finite-element analysis: how much precision is needed to produce an accurate model? . Anat. Rec. A Discov. Mol. Cell. Evol. Biol. , 283 : 275 – 287 .
  • Tanne , K. 1991 . Biomechanical responses of craniofacial and alveolar bones to mechanical forces in orthodontics . Interfaces Med. Mech. , 2 : 299 – 308 .
  • Tanne , K. , Miyasaka , J. , Yamagata , Y. , Sachdeva , R. , Tsutsumi , S. and Sakuda , M. 1988 . Three-dimensional model of the human craniofacial skeleton: method and preliminary results using finite element analysis . J. Biomed. Eng. , 10 : 246 – 252 .
  • Tanne , K. , Hiraga , J. , Kakiuchi , K. , Yamagata , Y. and Sakuda , M. 1989 . Biomechanical effect of anteriorly directed extraoral forces on the craniofacial complex: a study using the finite element method . Am. J. Orthod. Dentofacial Orthop. , 95 : 200 – 207 .
  • Triaca , A. , Antonini , M. and Wintermantel , E. 1992 . Ein neues titan-flachschrauben-implantat zur orthodontischen verankerung am anterioren gaumen . Inf. Orthod. Kieferorthop. , 24 : 251 – 257 .
  • Ulrich , D. , Rietbergen , B. , Laib , A. and Ruegsegger , P. 1998 . Mechanical analysis of bone and its microarchitecture based on in vivo voxel images . Technol. Health Care , 6 : 421 – 427 .
  • Watanabe , F. , Hata , Y. , Komatsu , S. , Ramos , T.C. and Fukuda , H. 2003 . Finite element analysis of the influence of implant inclination, loading position, and load direction on stress distribution . Odontology , 91 : 31 – 36 .
  • Wehrbein , H. , Glatzmaier , J. , Mundwiller , U. and Diedrich , P. 1996 . The orthosystem—a new implant system for orthodontic anchorage in the palate . J. Orofac. Orthop. , 57 : 142 – 153 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.