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A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model
INTRODUCTION: Superposing 3D models is an imminent need. However, current methods rely on marking multiple points on the maxilla and mandible, which could increase point marking and overlapping errors. OBJECTIVE: This study aimed at developing a method for superimposing 3D models of the maxillary an...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dental Press International
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10564451/ https://www.ncbi.nlm.nih.gov/pubmed/37820226 http://dx.doi.org/10.1590/2177-6709.28.4.e232333.oar |
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author | de SOUZA, Rodrigo Xavier Silveira de SOUZA, Gustavo Almeida Silveira COLARES, João Pacheco IANNI, Tânia Mara de Souza de MAGALHÃES, Cláudia Silami GUERRERO-VARGAS, José Alejandro MONTALVANY-ANTONUCCI, Carina Cristina MACARI, Soraia |
author_facet | de SOUZA, Rodrigo Xavier Silveira de SOUZA, Gustavo Almeida Silveira COLARES, João Pacheco IANNI, Tânia Mara de Souza de MAGALHÃES, Cláudia Silami GUERRERO-VARGAS, José Alejandro MONTALVANY-ANTONUCCI, Carina Cristina MACARI, Soraia |
author_sort | de SOUZA, Rodrigo Xavier Silveira |
collection | PubMed |
description | INTRODUCTION: Superposing 3D models is an imminent need. However, current methods rely on marking multiple points on the maxilla and mandible, which could increase point marking and overlapping errors. OBJECTIVE: This study aimed at developing a method for superimposing 3D models of the maxillary and mandibular arches with Autodesk Inventor® engineering software, using a single universal coordinate system (UCS) point superposition. METHODS: A total of 104 STL (stereolithography) models of the maxillary and mandibular arches exported from My iTero® platform were retrospectively selected, in which T0 and T1 were the initial and refinement periods, respectively (n=26 per group). The X, Y, and Z coordinates associated with a single point in each arch were inserted into the models with SlicerCMF® software for model orientation. The arch models with UCS registration were transferred to Autodesk Inventor® for superimposition and to measure tooth movements performed during Invisalign® treatment. Arch expansion, intrusion and rotation were analyzed by two examiners. The statistics were performed using intraclass correlation coefficients (ICC), Dahlberg’s formula, and t-test (p<0.05). RESULTS: A reliable method of superimposing 3D digital models using a single UCS point in the maxilla and mandible was developed. ICC showed excellent intra- and inter-examiner correlation (ICC>0.90). A systematic error was not found concerning linear and angular measurements (<1mm and <1.5°, respectively). Digital dental movements could be analyzed, including arch expansion, dental intrusion, and tooth rotation. CONCLUSIONS: The developed method was proven reliable and reproducible for superimposing 3D models of the maxillary and mandibular arches by using UCS system. |
format | Online Article Text |
id | pubmed-10564451 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Dental Press International |
record_format | MEDLINE/PubMed |
spelling | pubmed-105644512023-10-11 A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model de SOUZA, Rodrigo Xavier Silveira de SOUZA, Gustavo Almeida Silveira COLARES, João Pacheco IANNI, Tânia Mara de Souza de MAGALHÃES, Cláudia Silami GUERRERO-VARGAS, José Alejandro MONTALVANY-ANTONUCCI, Carina Cristina MACARI, Soraia Dental Press J Orthod Original Article INTRODUCTION: Superposing 3D models is an imminent need. However, current methods rely on marking multiple points on the maxilla and mandible, which could increase point marking and overlapping errors. OBJECTIVE: This study aimed at developing a method for superimposing 3D models of the maxillary and mandibular arches with Autodesk Inventor® engineering software, using a single universal coordinate system (UCS) point superposition. METHODS: A total of 104 STL (stereolithography) models of the maxillary and mandibular arches exported from My iTero® platform were retrospectively selected, in which T0 and T1 were the initial and refinement periods, respectively (n=26 per group). The X, Y, and Z coordinates associated with a single point in each arch were inserted into the models with SlicerCMF® software for model orientation. The arch models with UCS registration were transferred to Autodesk Inventor® for superimposition and to measure tooth movements performed during Invisalign® treatment. Arch expansion, intrusion and rotation were analyzed by two examiners. The statistics were performed using intraclass correlation coefficients (ICC), Dahlberg’s formula, and t-test (p<0.05). RESULTS: A reliable method of superimposing 3D digital models using a single UCS point in the maxilla and mandible was developed. ICC showed excellent intra- and inter-examiner correlation (ICC>0.90). A systematic error was not found concerning linear and angular measurements (<1mm and <1.5°, respectively). Digital dental movements could be analyzed, including arch expansion, dental intrusion, and tooth rotation. CONCLUSIONS: The developed method was proven reliable and reproducible for superimposing 3D models of the maxillary and mandibular arches by using UCS system. Dental Press International 2023-10-09 /pmc/articles/PMC10564451/ /pubmed/37820226 http://dx.doi.org/10.1590/2177-6709.28.4.e232333.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 de SOUZA, Rodrigo Xavier Silveira de SOUZA, Gustavo Almeida Silveira COLARES, João Pacheco IANNI, Tânia Mara de Souza de MAGALHÃES, Cláudia Silami GUERRERO-VARGAS, José Alejandro MONTALVANY-ANTONUCCI, Carina Cristina MACARI, Soraia A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title | A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title_full | A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title_fullStr | A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title_full_unstemmed | A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title_short | A new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3D model |
title_sort | new way of analyzing tooth movement using universal coordinate system geometry single point superposition in a 3d model |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10564451/ https://www.ncbi.nlm.nih.gov/pubmed/37820226 http://dx.doi.org/10.1590/2177-6709.28.4.e232333.oar |
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