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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...

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Autores principales: 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
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dental Press International 2023
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.
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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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