Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses

This study evaluated “in vitro”, the microstrain around three external hexagon implants linearly placed after static loadings on non-axial points of Co-Cr superstructures. The implants were inserted into a polyurethane block and their microunit prosthetic abutments were screwed with torque of 20 Nc...

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Main Authors: Talitha de Cássia Silva Sousa, Vanda De Lelis, Vivian Mayumi Miyazi Santos, Gabriela Nogueira de Melo Nishioka, Luis Gustavo de Oliveira Vasconcellos, Renato Sussumu Nishioka
Format: Article
Language:English
Published: Universidade Estadual Paulista 2013-06-01
Series:Brazilian Dental Science
Online Access:https://ojs.ict.unesp.br/index.php/cob/article/view/866
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author Talitha de Cássia Silva Sousa
Vanda De Lelis
Vivian Mayumi Miyazi Santos
Gabriela Nogueira de Melo Nishioka
Luis Gustavo de Oliveira Vasconcellos
Renato Sussumu Nishioka
author_facet Talitha de Cássia Silva Sousa
Vanda De Lelis
Vivian Mayumi Miyazi Santos
Gabriela Nogueira de Melo Nishioka
Luis Gustavo de Oliveira Vasconcellos
Renato Sussumu Nishioka
author_sort Talitha de Cássia Silva Sousa
collection DOAJ
description This study evaluated “in vitro”, the microstrain around three external hexagon implants linearly placed after static loadings on non-axial points of Co-Cr superstructures. The implants were inserted into a polyurethane block and their microunit prosthetic abutments were screwed with torque of 20 Ncm. Four strain gauges were linked to the block around the implants. Onto the abutments, Co-Cr superstructures (n = 5) were screwed with torque of 10 Ncm. The static vertical loads of 30 kg were applied for 10 s during 3 repetitions in four non-axial points located perpendicularly to the long axis (A and B) and another two points at the extremity of the superstructure (A` and B`). The data were recorded with the aid of a conditioner of electrical signals and the Strain-Smart software. The results obtained were submitted to Analysis of Variance (ANOVA). It could be concluded that there were no significant differences in the effects of the applications of non-axial loads of this present study (p = 0.6464). Also, there were no differences between the displacement means, 3 mm for A and B; 5 mm for A’ and B’ (p = 0.8731).   Keywords Biomechanics, Dental implant, Dental prosthesis. 
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publisher Universidade Estadual Paulista
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series Brazilian Dental Science
spelling doaj-art-d3438fa68ba24fe69828bae51ffee23a2025-08-22T17:55:45ZengUniversidade Estadual PaulistaBrazilian Dental Science2178-60112013-06-0116210.14295/bds.2013.v16i2.866Strain Gauge analysis of non-axial loads in three-element implant-supported prosthesesTalitha de Cássia Silva SousaVanda De LelisVivian Mayumi Miyazi SantosGabriela Nogueira de Melo NishiokaLuis Gustavo de Oliveira VasconcellosRenato Sussumu Nishioka This study evaluated “in vitro”, the microstrain around three external hexagon implants linearly placed after static loadings on non-axial points of Co-Cr superstructures. The implants were inserted into a polyurethane block and their microunit prosthetic abutments were screwed with torque of 20 Ncm. Four strain gauges were linked to the block around the implants. Onto the abutments, Co-Cr superstructures (n = 5) were screwed with torque of 10 Ncm. The static vertical loads of 30 kg were applied for 10 s during 3 repetitions in four non-axial points located perpendicularly to the long axis (A and B) and another two points at the extremity of the superstructure (A` and B`). The data were recorded with the aid of a conditioner of electrical signals and the Strain-Smart software. The results obtained were submitted to Analysis of Variance (ANOVA). It could be concluded that there were no significant differences in the effects of the applications of non-axial loads of this present study (p = 0.6464). Also, there were no differences between the displacement means, 3 mm for A and B; 5 mm for A’ and B’ (p = 0.8731).   Keywords Biomechanics, Dental implant, Dental prosthesis.  https://ojs.ict.unesp.br/index.php/cob/article/view/866
spellingShingle Talitha de Cássia Silva Sousa
Vanda De Lelis
Vivian Mayumi Miyazi Santos
Gabriela Nogueira de Melo Nishioka
Luis Gustavo de Oliveira Vasconcellos
Renato Sussumu Nishioka
Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
Brazilian Dental Science
title Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
title_full Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
title_fullStr Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
title_full_unstemmed Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
title_short Strain Gauge analysis of non-axial loads in three-element implant-supported prostheses
title_sort strain gauge analysis of non axial loads in three element implant supported prostheses
url https://ojs.ict.unesp.br/index.php/cob/article/view/866
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AT vandadelelis straingaugeanalysisofnonaxialloadsinthreeelementimplantsupportedprostheses
AT vivianmayumimiyazisantos straingaugeanalysisofnonaxialloadsinthreeelementimplantsupportedprostheses
AT gabrielanogueirademelonishioka straingaugeanalysisofnonaxialloadsinthreeelementimplantsupportedprostheses
AT luisgustavodeoliveiravasconcellos straingaugeanalysisofnonaxialloadsinthreeelementimplantsupportedprostheses
AT renatosussumunishioka straingaugeanalysisofnonaxialloadsinthreeelementimplantsupportedprostheses