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Published in: International Journal of Implant Dentistry 1/2020

Open Access 01-12-2020 | Research

Ideal placement of an implant considering the positional relationship to an opposing tooth in the first molar region: a three-dimensional finite element analysis

Authors: Jun Morita, Masahiro Wada, Tomoaki Mameno, Yoshinobu Maeda, Kazunori Ikebe

Published in: International Journal of Implant Dentistry | Issue 1/2020

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Abstract

Background

Excessive loading from the occlusion is known as a major pathological factor in implant failure. The force applied to the implant varies depending on the positional relationship to an opposing tooth in clinical cases. However, no studies have clarified the relationship between the discrepancy and mechanical complications.

Materials and methods

The study enrolled patients whose mandibular first molar was missing and was opposed by a natural maxillary first molar. The horizontal and vertical distance between the residual ridge and the occlusal surface of the maxillary first molar were measured from computerized tomograms. Subsequently, four finite element models were constructed in combinations of horizontal and vertical discrepancies. Additionally, the effect of inclined implantation and angled abutments were examined in a large clearance model. Maximum von Mises stress values generated in abutments under 90° or 60° loading vectors were compared with a three-dimensional finite element method.

Results

Data from 123 subjects (39 males and 84 females, average age 55.2 ± 11.4 (SD) years) were collected for the analyses. Under all conditions, the stress on the load side (the buccal side) was concentrated on the platform, and the stress on the opposite side (the lingual side) was concentrated on the top of the abutment tube inserted into the implant. In comparison to 90° loading vectors, the maximum von Mises stresses of each model were 1.20 to 2.67 times under 60° loading vectors. For inclined implantation, the maximum stress was 8.4% less at a 90° load and 9.7% less at a 60° load compared with vertical implantation. With angled abutments, the maximum stress was 15.7% less at a 90° load and 30.0% less at a 60° load compared with vertical implantation.

Conclusion

In cases of progressive alveolar resorption with a large clearance between the implant and the opposing teeth, a higher stress concentration was observed at the joint between the implant and the abutment. Our findings also showed that stress concentration around this area can be reduced by the use of inclined implantation and angled abutments under the condition of a horizontal offset between the implant and opposing teeth.
Literature
1.
go back to reference Misch CE, Judy KWM. Classification of partially edentulous arches for implant dentistry. Int J Oral Implantol. 1987;4:7–12.PubMed Misch CE, Judy KWM. Classification of partially edentulous arches for implant dentistry. Int J Oral Implantol. 1987;4:7–12.PubMed
2.
go back to reference Misch CE. Divisions of available bone in implant dentistry. Int J Oral Implantol. 1990;7:9–17.PubMed Misch CE. Divisions of available bone in implant dentistry. Int J Oral Implantol. 1990;7:9–17.PubMed
3.
go back to reference Bornstein MM, Schmid B, Belser UC, Lussi A, Buser D. Early loading of non-submerged titanium implants with a sandblasted and acid-etched surface: 5-year results of a prospective study in partially edentulous patients. Clin Oral Implants Res. 2005;16:631–8.CrossRef Bornstein MM, Schmid B, Belser UC, Lussi A, Buser D. Early loading of non-submerged titanium implants with a sandblasted and acid-etched surface: 5-year results of a prospective study in partially edentulous patients. Clin Oral Implants Res. 2005;16:631–8.CrossRef
4.
go back to reference Roccuzzo M, Aglietta M, Bunino M, Bonino L. Early loading of sandblasted and acid-etched implants: a randomized-controlled double-blind split-mouth study. Five-year results. Clin Oral Implants Res. 2008;19:148–52.CrossRef Roccuzzo M, Aglietta M, Bunino M, Bonino L. Early loading of sandblasted and acid-etched implants: a randomized-controlled double-blind split-mouth study. Five-year results. Clin Oral Implants Res. 2008;19:148–52.CrossRef
5.
go back to reference Sullivan D, Vincenzi G, Feldman S. Early loading of Osseotite implants 2 months after placement in the maxilla and mandible: a 5-year report. Int J Oral Maxillofac Implants. 2005;20:905–12.PubMed Sullivan D, Vincenzi G, Feldman S. Early loading of Osseotite implants 2 months after placement in the maxilla and mandible: a 5-year report. Int J Oral Maxillofac Implants. 2005;20:905–12.PubMed
6.
go back to reference Pjetursson BE, Tan K, Lang NP, Brägger U, Egger M, Zwahlen M. A systematic review of the survival and complication rates of fixed partial dentures (FPDs) after an observation period of at least 5 years. I: implant-supported FDPs. Clin Oral Implants Res. 2004;15:625–42.CrossRef Pjetursson BE, Tan K, Lang NP, Brägger U, Egger M, Zwahlen M. A systematic review of the survival and complication rates of fixed partial dentures (FPDs) after an observation period of at least 5 years. I: implant-supported FDPs. Clin Oral Implants Res. 2004;15:625–42.CrossRef
7.
go back to reference Pjetursson BE, Brägger U, Lang NP, Zwahlen M. Comparison of survival and complication rates of tooth supported fixed dental prostheses (FDPs) and implant supported FDPs and single crowns (SCs). Clin Oral Implants Res. 2007;18(suppl3):97–113.CrossRef Pjetursson BE, Brägger U, Lang NP, Zwahlen M. Comparison of survival and complication rates of tooth supported fixed dental prostheses (FDPs) and implant supported FDPs and single crowns (SCs). Clin Oral Implants Res. 2007;18(suppl3):97–113.CrossRef
8.
go back to reference Esposito M, Hirsch J, Lekholm U. Differential diagnosis and treatment strategies for biologic complications and failing oral implants: a review of the literature. Int J Oral Maxillofac Implants. 1999;14:473–90.PubMed Esposito M, Hirsch J, Lekholm U. Differential diagnosis and treatment strategies for biologic complications and failing oral implants: a review of the literature. Int J Oral Maxillofac Implants. 1999;14:473–90.PubMed
9.
go back to reference Rangert B, Sullivan R, Jemt T. Load factor control for implants in the posterior partially edentulous segment. Int J Oral Maxillofac Implants. 1997;12:360–70.PubMed Rangert B, Sullivan R, Jemt T. Load factor control for implants in the posterior partially edentulous segment. Int J Oral Maxillofac Implants. 1997;12:360–70.PubMed
10.
go back to reference Keyak JH, Rossi SA, Jones KA, Skinner HB. Prediction of femoral fracture load using automated finite element modeling. J Biomech. 1998;31:125–33.CrossRef Keyak JH, Rossi SA, Jones KA, Skinner HB. Prediction of femoral fracture load using automated finite element modeling. J Biomech. 1998;31:125–33.CrossRef
11.
go back to reference Pietrokovski J, Massler M. Alveolar ridge resorption following tooth extraction. J Prosthet Dent. 1967;17:21–7.CrossRef Pietrokovski J, Massler M. Alveolar ridge resorption following tooth extraction. J Prosthet Dent. 1967;17:21–7.CrossRef
12.
go back to reference Araújo MG, Lindhe J. Dimensional ridge alterations following tooth extraction. An experimental study in the dog. J Clin Periodontol. 2005;32:212–8.CrossRef Araújo MG, Lindhe J. Dimensional ridge alterations following tooth extraction. An experimental study in the dog. J Clin Periodontol. 2005;32:212–8.CrossRef
13.
go back to reference Nevins M, Camelo M, De Paoli S, Friedland B, Schenk RK, Parma-Benfenati S, Simion M, Tinti C, Wagenberg B. A study of the fate of the buccal wall of extraction sockets of teeth with prominent roots. Int J Periodontics Restorative Dent. 2006;26:19–29.PubMed Nevins M, Camelo M, De Paoli S, Friedland B, Schenk RK, Parma-Benfenati S, Simion M, Tinti C, Wagenberg B. A study of the fate of the buccal wall of extraction sockets of teeth with prominent roots. Int J Periodontics Restorative Dent. 2006;26:19–29.PubMed
14.
go back to reference Ackermann KL. Extraction site management using a natural bone mineral containing collagen. Rationale and retrospective case study. Int J Periodontics Restrative Dent. 2009;29:489–97. Ackermann KL. Extraction site management using a natural bone mineral containing collagen. Rationale and retrospective case study. Int J Periodontics Restrative Dent. 2009;29:489–97.
15.
go back to reference Sertgoz A, Guvener S. Finite element analysis of the effect of cantilever and implant length on stress distribution on implant supported prosthesis. J Prosthet Dent. 1996;75:165–9.CrossRef Sertgoz A, Guvener S. Finite element analysis of the effect of cantilever and implant length on stress distribution on implant supported prosthesis. J Prosthet Dent. 1996;75:165–9.CrossRef
16.
go back to reference Rangert B, Jemt T, Jörneus L. Forces and moments on Brånemark implants. Int J Oral Maxillofac Implants. 1989;4:241–7.PubMed Rangert B, Jemt T, Jörneus L. Forces and moments on Brånemark implants. Int J Oral Maxillofac Implants. 1989;4:241–7.PubMed
17.
go back to reference Yoshitani M, Takayama Y, Yokoyama A. Significance of mandibular molar replacement with a dental implant: a theoretical study with nonlinear finite element analysis. Int J Implant Dent. 2018;4(1):4.CrossRef Yoshitani M, Takayama Y, Yokoyama A. Significance of mandibular molar replacement with a dental implant: a theoretical study with nonlinear finite element analysis. Int J Implant Dent. 2018;4(1):4.CrossRef
18.
go back to reference Lan TH, Pan CY, Lee HE, Huang HL, Wang CH. Bone stress analysis of various angulations of mesiodistal implants with splinted crowns in the posterior mandible: a three-dimensional finite element study. Int J Oral Maxillofac Implants. 2010;25(4):763–70.PubMed Lan TH, Pan CY, Lee HE, Huang HL, Wang CH. Bone stress analysis of various angulations of mesiodistal implants with splinted crowns in the posterior mandible: a three-dimensional finite element study. Int J Oral Maxillofac Implants. 2010;25(4):763–70.PubMed
19.
go back to reference Weinberg LA, Kruger B. An evaluation of torque on implant/prosthesis with staggered buccal and lingual offset. Int J Oral Maxillofac Implants. 1996;16:252–65. Weinberg LA, Kruger B. An evaluation of torque on implant/prosthesis with staggered buccal and lingual offset. Int J Oral Maxillofac Implants. 1996;16:252–65.
20.
go back to reference Inagaki R, Yoda M, Kikuchi M, Kimura K, Okuno O. Strength of porcelain fused to pure titanium made by CAD/CAM. Interface Oral Health Science. 2007:347–8. Inagaki R, Yoda M, Kikuchi M, Kimura K, Okuno O. Strength of porcelain fused to pure titanium made by CAD/CAM. Interface Oral Health Science. 2007:347–8.
21.
go back to reference Binon PP, McHugh MJ. The effect of eliminating implant/abutment rotational misfit on screw joint stability. Int J Prosthodont. 1996;9:511–09.PubMed Binon PP, McHugh MJ. The effect of eliminating implant/abutment rotational misfit on screw joint stability. Int J Prosthodont. 1996;9:511–09.PubMed
22.
go back to reference Weinberg LA. Therapeutic biomechanics concepts and clinical procedures to reduce implant loading. Part I. J Oral Implantol. 2001;27:293–301.CrossRef Weinberg LA. Therapeutic biomechanics concepts and clinical procedures to reduce implant loading. Part I. J Oral Implantol. 2001;27:293–301.CrossRef
23.
go back to reference Canay S, Hersek N, Akpinar I, Aşik Z. Comparison of stress distribution around vertical and angled implants with finite-element analysis. Quintessence Int. 1996;27:591–8.PubMed Canay S, Hersek N, Akpinar I, Aşik Z. Comparison of stress distribution around vertical and angled implants with finite-element analysis. Quintessence Int. 1996;27:591–8.PubMed
24.
go back to reference Clelland NL, Lee JK, Bimbenet OC, Brantley WA. A three-dimensional finite element stress analysis of angled abutments for an implant placed in the anterior maxilla. J Prosthodont. 1995;4:95–100.CrossRef Clelland NL, Lee JK, Bimbenet OC, Brantley WA. A three-dimensional finite element stress analysis of angled abutments for an implant placed in the anterior maxilla. J Prosthodont. 1995;4:95–100.CrossRef
Metadata
Title
Ideal placement of an implant considering the positional relationship to an opposing tooth in the first molar region: a three-dimensional finite element analysis
Authors
Jun Morita
Masahiro Wada
Tomoaki Mameno
Yoshinobu Maeda
Kazunori Ikebe
Publication date
01-12-2020
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Implant Dentistry / Issue 1/2020
Electronic ISSN: 2198-4034
DOI
https://doi.org/10.1186/s40729-020-00223-9

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