Literature DB >> 1300115

Finite element stress and strain analysis of the bone surrounding a dental implant: effect of variations in bone modulus.

S E Clift1, J Fisher, C J Watson.   

Abstract

The long-term clinical performance of a dental implant is dependent upon the preservation of good quality bone surrounding the implant and a sound interface between the bone and the biomaterial. Good quality bone is itself dependent upon the appropriate level of bone remodelling necessary to maintain the bone density and the avoidance of bone microfracture and failure. Both processes are governed by the stress and strain distribution in the bone. In this study, a dental implant which had the same geometry as the Branemark system, but with a bioactive surface coating added to produce a direct bond to the bone, was analysed. A finite element stress and strain analysis has been carried out for a range of bone density distributions under axial and lateral loading. The predictions indicated that there was no evidence of strain shielding around the neck of the implant. With lateral loading, high values of von Mises stresses (18 M Pa) were predicted around the neck of the implant. A reduction in the elastic modulus of the bone around the neck of the implant by a factor of 16 only produced a twofold reduction in the peak stress. This resulted in stress levels capable of inducing fatigue failure in this much weaker bone. This analysis has demonstrated that it is extremely important to have good quality dense bone around the neck of the implant to withstand the predicted peak stresses of between 9 and 18 M Pa. Failure to achieve this after implantation and subsequent healing may result in local fatigue failure and resorption at the neck upon resumption of physiological loading.

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Year:  1992        PMID: 1300115     DOI: 10.1243/PIME_PROC_1992_206_295_02

Source DB:  PubMed          Journal:  Proc Inst Mech Eng H        ISSN: 0954-4119            Impact factor:   1.617


  8 in total

1.  Stress and strain distribution in three different mini dental implant designs using in implant retained overdenture: a finite element analysis study.

Authors:  W Aunmeungtong; P Khongkhunthian; P Rungsiyakull
Journal:  Oral Implantol (Rome)       Date:  2016-11-16

2.  3D finite element analysis to detect stress distribution: spiral family implants.

Authors:  Matteo Danza; Ilaria Zollino; Luigi Paracchini; Guidi Riccardo; Stefano Fanali; Francesco Carinci
Journal:  J Maxillofac Oral Surg       Date:  2010-04-24

3.  Three dimensional finite element analysis to detect stress distribution in spiral implants and surrounding bone.

Authors:  Matteo Danza; Annalisa Palmieri; Francesca Farinella; Giorgio Brunelli; Francesco Carinci; Ambra Girardi; Giuseppe Spinelli
Journal:  Dent Res J (Isfahan)       Date:  2009

4.  Investigation of the effects of graded models on the biomechanical behavior of a bone-dental implant system under osteoporotic conditions.

Authors:  Ying Li; Zhong Shuang Liu; Xiao Ming Bai; Bin Zhang
Journal:  Pak J Med Sci       Date:  2013-04       Impact factor: 1.088

5.  Comparative study of stress characteristics in surrounding bone during insertion of dental implants of three different thread designs: A three-dimensional dynamic finite element study.

Authors:  Chaiwat Udomsawat; Pimduen Rungsiyakull; Chaiy Rungsiyakull; Pathawee Khongkhunthian
Journal:  Clin Exp Dent Res       Date:  2018-12-26

6.  Finite element analysis of stress distribution around short and long implants in mandibular overdenture treatment.

Authors:  Yeghaneh Memari; Parisa Fattahi; Amir Fattahi; Solmaz Eskandarion; Vahid Rakhshan
Journal:  Dent Res J (Isfahan)       Date:  2020-01-21

7.  FEM Investigation of the Stress Distribution over Mandibular Bone Due to Screwed Overdenture Positioned on Dental Implants.

Authors:  Marco Cicciù; Gabriele Cervino; Dario Milone; Giacomo Risitano
Journal:  Materials (Basel)       Date:  2018-08-23       Impact factor: 3.623

8.  FEM Analysis Applied to OT Bridge Abutment with Seeger Retention System.

Authors:  Gabriele Cervino; Marco Cicciù; Simone Fedi; Dario Milone; Luca Fiorillo
Journal:  Eur J Dent       Date:  2020-08-31
  8 in total

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