Literature DB >> 26478976

The effect of implant thread design on stress distribution in anisotropic bone with different osseointegration conditions: a finite element analysis.

Alireza Mosavar, Alireza Ziaei, Mahmoud Kadkhodaei.   

Abstract

PURPOSE: Whereas bone is anisotropic, nearly all previous mechanical analyses of implants assumed bone as an isotropic material. Another means to simplify a simulation of the biomechanics of the implant-bone interface is the assumption of complete or no osseointegration; in clinical reality, an implant never achieves 100% contact with the surrounding bone. This study evaluated different thread profiles while not taking into account these two common simplifications. This study sought to (1) investigate the effects of various implant thread designs on stress distribution in the peri-implant bone, (2) appraise previous efforts in this area, and (3) find an optimum basic thread-form design.
MATERIALS AND METHODS: Through finite element analysis, four different basic commercial thread-form configurations for a solid screw-type implant were modeled: buttress, reverse buttress, V, and square. Bone was assumed to be transversely isotropic, and various degrees of osseointegration were simulated.
RESULTS: Simulations showed that von Mises stresses were more distributed in the mesiodistal direction. Additionally, maximum stresses were concentrated at the cervical cortical bone region and the first thread. Moreover, in most of the models, von Mises stresses gradually increased in the supporting structure when the degree of osseointegration increased.
CONCLUSION: The use of different thread designs and various osseointegration conditions did not affect the stress distribution patterns in the supporting bone. In this study, square threads showed the most favorable results according to the predicted values of von Mises equivalent stress, pressure, different shear stresses, and micromotion.

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Year:  2015        PMID: 26478976     DOI: 10.11607/jomi.4091

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


  6 in total

1.  [Influence of thread shapes of custommade root-analogue implants on stress distribution of peri-implant bone: A three-dimensional finite element analysis].

Authors:  C P Lin; S H Lu; J X Zhu; H C Hu; Z G Yue; Z H Tang
Journal:  Beijing Da Xue Xue Bao Yi Xue Ban       Date:  2019-12-18

2.  Influence of three different implant thread designs on stress distribution: A three-dimensional finite element analysis.

Authors:  Mansi Manish Oswal; Ulhas N Amasi; Manish S Oswal; Ashish S Bhagat
Journal:  J Indian Prosthodont Soc       Date:  2016 Oct-Dec

3.  Introducing the "Bone-Screw-Fastener" for improved screw fixation in orthopedic surgery: a revolutionary paradigm shift?

Authors:  Philip F Stahel; Nicholas A Alfonso; Corey Henderson; Todd Baldini
Journal:  Patient Saf Surg       Date:  2017-03-20

4.  Effect of thread depth and implant shape on stress distribution in anterior and posterior regions of mandible bone: A finite element analysis.

Authors:  Falah A Hussein; Kareem N Salloomi; Besaran Y Abdulrahman; Abdulsalam R Al-Zahawi; Laith A Sabri
Journal:  Dent Res J (Isfahan)       Date:  2019 May-Jun

5.  A 3-D finite element analysis of the effect of dental implant thread angle on stress distribution in the surrounding bone.

Authors:  Katayoun Sadr; Seyyed Mahdi Vahid Pakdel
Journal:  J Dent Res Dent Clin Dent Prospects       Date:  2022-05-29

6.  A comparative study on the stress distribution around dental implants in three arch form models for replacing six implants using finite element analysis.

Authors:  Maryam Zarei; Mahmoud Jahangirnezhad; Hojatollah Yousefimanesh; Maryam Robati; Hossein Robati
Journal:  J Indian Soc Periodontol       Date:  2018 Mar-Apr
  6 in total

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