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Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report

For facial abnormalities, recent developments in virtual surgical planning (VSP) and the virtual design of surgical splints are accessible. Software companies have worked closely with surgical teams for accurate outcomes, but they are only as reliable as the data provided to them. The current case’s...

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Autores principales: Onică, Neculai, Onică, Cezara Andreea, Tatarciuc, Monica, Baciu, Elena-Raluca, Vlasie, Georgiana-Lena, Ciofu, Mihai, Balan, Mihail, Gelețu, Gabriela Luminița
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10178701/
https://www.ncbi.nlm.nih.gov/pubmed/37174761
http://dx.doi.org/10.3390/healthcare11091219
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author Onică, Neculai
Onică, Cezara Andreea
Tatarciuc, Monica
Baciu, Elena-Raluca
Vlasie, Georgiana-Lena
Ciofu, Mihai
Balan, Mihail
Gelețu, Gabriela Luminița
author_facet Onică, Neculai
Onică, Cezara Andreea
Tatarciuc, Monica
Baciu, Elena-Raluca
Vlasie, Georgiana-Lena
Ciofu, Mihai
Balan, Mihail
Gelețu, Gabriela Luminița
author_sort Onică, Neculai
collection PubMed
description For facial abnormalities, recent developments in virtual surgical planning (VSP) and the virtual design of surgical splints are accessible. Software companies have worked closely with surgical teams for accurate outcomes, but they are only as reliable as the data provided to them. The current case’s aim was to show a fully digitized workflow using a combination of three digital software to correct predicted post–upward sliding genioplasty defects. To reach our goal, we presented a 28-year-old man with long-face syndrome for orthodontic treatment. Before orthognathic surgery, a clinical and paraclinical examination was performed. For a virtual surgical plan, we used the dedicated surgical planning software NemoFab (Nemotec, Madrid, Spain) and Autodesk MeshMixer (Autodesk Inc., San Rafael, CA, USA). To create the design of the digital guides, DentalCAD 3.0 Galway (exocad GmbH, Darmstadt, Germany) and Autodesk MeshMixer (Autodesk Inc., San Rafael, CA, USA) were used. The patient had undergone bilateral sagittal split osteotomy in addition to Le Fort 1 osteotomy and genioplasty, followed by mandible base recontouring ostectomy. Stable fixation was used for each osteotomy. Based on our case, the current orthognathic surgery planning software was not able to perform all the necessary operations autonomously; therefore, future updates are eagerly awaited.
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spelling pubmed-101787012023-05-13 Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report Onică, Neculai Onică, Cezara Andreea Tatarciuc, Monica Baciu, Elena-Raluca Vlasie, Georgiana-Lena Ciofu, Mihai Balan, Mihail Gelețu, Gabriela Luminița Healthcare (Basel) Case Report For facial abnormalities, recent developments in virtual surgical planning (VSP) and the virtual design of surgical splints are accessible. Software companies have worked closely with surgical teams for accurate outcomes, but they are only as reliable as the data provided to them. The current case’s aim was to show a fully digitized workflow using a combination of three digital software to correct predicted post–upward sliding genioplasty defects. To reach our goal, we presented a 28-year-old man with long-face syndrome for orthodontic treatment. Before orthognathic surgery, a clinical and paraclinical examination was performed. For a virtual surgical plan, we used the dedicated surgical planning software NemoFab (Nemotec, Madrid, Spain) and Autodesk MeshMixer (Autodesk Inc., San Rafael, CA, USA). To create the design of the digital guides, DentalCAD 3.0 Galway (exocad GmbH, Darmstadt, Germany) and Autodesk MeshMixer (Autodesk Inc., San Rafael, CA, USA) were used. The patient had undergone bilateral sagittal split osteotomy in addition to Le Fort 1 osteotomy and genioplasty, followed by mandible base recontouring ostectomy. Stable fixation was used for each osteotomy. Based on our case, the current orthognathic surgery planning software was not able to perform all the necessary operations autonomously; therefore, future updates are eagerly awaited. MDPI 2023-04-25 /pmc/articles/PMC10178701/ /pubmed/37174761 http://dx.doi.org/10.3390/healthcare11091219 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Case Report
Onică, Neculai
Onică, Cezara Andreea
Tatarciuc, Monica
Baciu, Elena-Raluca
Vlasie, Georgiana-Lena
Ciofu, Mihai
Balan, Mihail
Gelețu, Gabriela Luminița
Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title_full Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title_fullStr Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title_full_unstemmed Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title_short Managing Predicted Post-Orthognathic Surgical Defects Using Combined Digital Software: A Case Report
title_sort managing predicted post-orthognathic surgical defects using combined digital software: a case report
topic Case Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10178701/
https://www.ncbi.nlm.nih.gov/pubmed/37174761
http://dx.doi.org/10.3390/healthcare11091219
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