Literature DB >> 24683580

A three-dimensional finite element analysis of short dental implants in the posterior maxilla.

Seijoong Kim, Sungtae Kim, Hyunmin Choi, Daegon Woo, Young-Bum Park, June-Sung Shim, Han Sung Kim, Keun-Woo Lee.   

Abstract

PURPOSE: This study evaluated the biomechanical behavior of short dental implants with different heights of residual bone and compared it with that of standard dental implants in 13 mm or less of residual bone by means of finite element analysis.
MATERIALS AND METHODS: It was assumed that the maxillary first and second molars had been replaced with splinted cast gold crowns supported by two implants. A total of five posterior edentulous maxilla models were fabricated with various residual bone heights (13 mm, 7 mm, 6 mm, 5 mm, and 4 mm). Residual bone height was 13 mm in the group 1 model (control) and 7, 6, 5, and 4 mm in group 2-1, group 2-2, group 2-3, and group 2-4 models, respectively. In the group 1 model, two identical implants (4.5 × 11 mm) and abutments (6 × 2.5 mm) were placed. In the group 2 models, two identical wide/short implants (6 × 5.7 mm) and abutments (6 × 5 mm) were placed. Off-axis (30 degrees) loading of 187 N was applied to the central fossae of the two implant-supported crowns.
RESULTS: Maximum von Mises stresses in crestal cortical bone were lower in group 2 models than in the group 1 model.
CONCLUSION: This numeric simulation confirmed that, without maxillary sinus bone graft, more effective stress distribution could be obtained in 4, 5, 6, or 7 mm of residual bone with short dental implants than in 13 mm of residual bone with standard dental implants.

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Year:  2014        PMID: 24683580     DOI: 10.11607/jomi.3210

Source DB:  PubMed          Journal:  Int J Oral Maxillofac Implants        ISSN: 0882-2786            Impact factor:   2.804


  4 in total

Review 1.  Finite element analysis of dental implants with validation: to what extent can we expect the model to predict biological phenomena? A literature review and proposal for classification of a validation process.

Authors:  Yuanhan Chang; Abhijit Anil Tambe; Yoshinobu Maeda; Masahiro Wada; Tomoya Gonda
Journal:  Int J Implant Dent       Date:  2018-03-08

2.  Comparison of Short and Standard Implants in the Posterior Mandible: A 3D Analysis Using Finite Element Method.

Authors:  Allahyar Geramy; Amirreza Rokn; Abbasali Keshtkar; Abbas Monzavi; Hamid Mahmood Hashemi; Tahereh Bitaraf
Journal:  J Dent (Tehran)       Date:  2018-03

Review 3.  Application of Finite Element Model in Implant Dentistry: A Systematic Review.

Authors:  M Sesha Reddy; Rajasekar Sundram; Hossam Abdelatty Eid Abdemagyd
Journal:  J Pharm Bioallied Sci       Date:  2019-05

4.  Biomechanical finite element analysis of short-implant-supported, 3-unit, fixed CAD/CAM prostheses in the posterior mandible.

Authors:  Lana Zupancic Cepic; Martin Frank; Andreas Reisinger; Dieter Pahr; Werner Zechner; Andreas Schedle
Journal:  Int J Implant Dent       Date:  2022-02-11
  4 in total

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