Literature DB >> 21271040

Influence of high insertion torque on implant placement: an anisotropic bone stress analysis.

Bruno Salles Sotto-Maior1, Eduardo Passos Rocha, Erika Oliveira de Almeida, Amilcar Chagas Freitas-Júnior, Rodolfo Bruniera Anchieta, Altair Antoninha Del Bel Cury.   

Abstract

The aim of this study was to evaluate the influence of the high values of insertion torques on the stress and strain distribution in cortical and cancellous bones. Based on tomography imaging, a representative mathematical model of a partial maxilla was built using Mimics 11.11 and Solid Works 2010 softwares. Six models were built and each of them received an implant with one of the following insertion torques: 30, 40, 50, 60, 70 or 80 Ncm on the external hexagon. The cortical and cancellous bones were considered anisotropic. The bone/implant interface was considered perfectly bonded. The numerical analysis was carried out using Ansys Workbench 10.0. The convergence of analysis (6%) drove the mesh refinement. Maximum principal stress (δmax) and maximum principal strain (εmax) were obtained for cortical and cancellous bones around to implant. Pearson's correlation test was used to determine the correlation between insertion torque and stress concentration in the periimplant bone tissue, considering the significance level at 5%. The increase in the insertion torque generated an increase in the δmax and εmax values for cortical and cancellous bone. The δmax was smaller for the cancellous bone, with greater stress variation among the insertion torques. The εmax was higher in the cancellous bone in comparison to the cortical bone. According to the methodology used and the limits of this study, it can be concluded that higher insertion torques increased tensile and compressive stress concentrations in the periimplant bone tissue.

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Year:  2010        PMID: 21271040     DOI: 10.1590/s0103-64402010000600005

Source DB:  PubMed          Journal:  Braz Dent J        ISSN: 0103-6440


  2 in total

1.  Evaluation of dental implant insertion torque using a manual ratchet.

Authors:  M M Goswami; Mukul Kumar; Abhinav Vats; A S Bansal
Journal:  Med J Armed Forces India       Date:  2013-09-24

2.  Mechanical stability assessment of novel orthodontic mini-implant designs: Part 2.

Authors:  Christine Hong; Peter Truong; Ha Na Song; Benjamin M Wu; Won Moon
Journal:  Angle Orthod       Date:  2011-06-29       Impact factor: 2.079

  2 in total

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