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Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage

OBJECTIVE: The aim of his study was to evaluate the stress on tooth and alveolar bone caused by orthodontic intrusion forces in a supraerupted upper molar, by using a three-dimensional Finite Element Method (FEM). METHODS: A superior maxillary segment was modeled in the software SolidWorks 2010 (Sol...

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Autores principales: Sugii, Mari Miura, Barreto, Bruno de Castro Ferreira, Francisco, Waldemir, Simone, Katia Regina Izola, Bacchi, Ataís, Caldas, Ricardo Armini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dental Press International 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5962249/
https://www.ncbi.nlm.nih.gov/pubmed/29791686
http://dx.doi.org/10.1590/2177-6709.23.1.063-070.oar
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author Sugii, Mari Miura
Barreto, Bruno de Castro Ferreira
Francisco, Waldemir
Simone, Katia Regina Izola
Bacchi, Ataís
Caldas, Ricardo Armini
author_facet Sugii, Mari Miura
Barreto, Bruno de Castro Ferreira
Francisco, Waldemir
Simone, Katia Regina Izola
Bacchi, Ataís
Caldas, Ricardo Armini
author_sort Sugii, Mari Miura
collection PubMed
description OBJECTIVE: The aim of his study was to evaluate the stress on tooth and alveolar bone caused by orthodontic intrusion forces in a supraerupted upper molar, by using a three-dimensional Finite Element Method (FEM). METHODS: A superior maxillary segment was modeled in the software SolidWorks 2010 (SolidWorks Corporation, Waltham, MA, USA) containing: cortical and cancellous bone, supraerupted first molar, periodontal tissue and orthodontic components. A finite element model has simulated intrusion forces of 4N onto a tooth, directed to different mini-screw locations. Three different intrusion mechanics vectors were simulated: anchoring on a buccal mini-implant; anchoring on a palatal mini-implant and the association of both anchorage systems. All analyses were performed considering the minimum principal stress and total deformation. Qualitative analyses exhibited stress distribution by color maps. Quantitative analysis was performed with a specific software for reading and solving numerical equations (ANSYS Workbench 14, Ansys, Canonsburg, Pennsylvania, USA). RESULTS: Intrusion forces applied from both sides (buccal and palatal) resulted in a more homogeneous stress distribution; no high peak of stress was detected and it has allowed a vertical resultant movement. Buccal or palatal single-sided forces resulted in concentrated stress zones with higher values and tooth tipping to respective force side. CONCLUSION: Unilateral forces promoted higher stress in root apex and higher dental tipping. The bilateral forces promoted better distribution without evidence of dental tipping. Bilateral intrusion technique suggested lower probability of root apex resorption.
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spelling pubmed-59622492018-05-24 Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage Sugii, Mari Miura Barreto, Bruno de Castro Ferreira Francisco, Waldemir Simone, Katia Regina Izola Bacchi, Ataís Caldas, Ricardo Armini Dental Press J Orthod Original Article OBJECTIVE: The aim of his study was to evaluate the stress on tooth and alveolar bone caused by orthodontic intrusion forces in a supraerupted upper molar, by using a three-dimensional Finite Element Method (FEM). METHODS: A superior maxillary segment was modeled in the software SolidWorks 2010 (SolidWorks Corporation, Waltham, MA, USA) containing: cortical and cancellous bone, supraerupted first molar, periodontal tissue and orthodontic components. A finite element model has simulated intrusion forces of 4N onto a tooth, directed to different mini-screw locations. Three different intrusion mechanics vectors were simulated: anchoring on a buccal mini-implant; anchoring on a palatal mini-implant and the association of both anchorage systems. All analyses were performed considering the minimum principal stress and total deformation. Qualitative analyses exhibited stress distribution by color maps. Quantitative analysis was performed with a specific software for reading and solving numerical equations (ANSYS Workbench 14, Ansys, Canonsburg, Pennsylvania, USA). RESULTS: Intrusion forces applied from both sides (buccal and palatal) resulted in a more homogeneous stress distribution; no high peak of stress was detected and it has allowed a vertical resultant movement. Buccal or palatal single-sided forces resulted in concentrated stress zones with higher values and tooth tipping to respective force side. CONCLUSION: Unilateral forces promoted higher stress in root apex and higher dental tipping. The bilateral forces promoted better distribution without evidence of dental tipping. Bilateral intrusion technique suggested lower probability of root apex resorption. Dental Press International 2018 /pmc/articles/PMC5962249/ /pubmed/29791686 http://dx.doi.org/10.1590/2177-6709.23.1.063-070.oar Text en https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License
spellingShingle Original Article
Sugii, Mari Miura
Barreto, Bruno de Castro Ferreira
Francisco, Waldemir
Simone, Katia Regina Izola
Bacchi, Ataís
Caldas, Ricardo Armini
Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title_full Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title_fullStr Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title_full_unstemmed Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title_short Extruded upper first molar intrusion: Comparison between unilateral and bilateral miniscrew anchorage
title_sort extruded upper first molar intrusion: comparison between unilateral and bilateral miniscrew anchorage
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5962249/
https://www.ncbi.nlm.nih.gov/pubmed/29791686
http://dx.doi.org/10.1590/2177-6709.23.1.063-070.oar
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