3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives

Introduction Malignant bone tumors of the sternum are rare. Their surgical treatment remains largely based on precise knowledge of preoperative imaging in order to define appropriate margins during tumor resection. We provide a practical 3-dimensional (3D) modeling method to better understand the re...

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Autores principales: Burgade, R., Uhl, J. F., Prat, Guillermo Daniel, Ruiz, Camilo, Lorea, Bárbara, Delmas, V., Rosset, P., Le Nail, L. R.
Formato: Articulo
Lenguaje:Inglés
Publicado: 2021
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/129916
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id I19-R120-10915-129916
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Ciencias Médicas
Sternum
Chondrosarcoma
Patient-specific modeling
3D printing
spellingShingle Ciencias Médicas
Sternum
Chondrosarcoma
Patient-specific modeling
3D printing
Burgade, R.
Uhl, J. F.
Prat, Guillermo Daniel
Ruiz, Camilo
Lorea, Bárbara
Delmas, V.
Rosset, P.
Le Nail, L. R.
3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
topic_facet Ciencias Médicas
Sternum
Chondrosarcoma
Patient-specific modeling
3D printing
description Introduction Malignant bone tumors of the sternum are rare. Their surgical treatment remains largely based on precise knowledge of preoperative imaging in order to define appropriate margins during tumor resection. We provide a practical 3-dimensional (3D) modeling method to better understand the relationships between these tumors and neighboring organs. Methods Axial view images from CT-scans were processed by the open source software Horos® after anonymization. A first surface reconstruction was carried out by the software to form a digital mesh. This raw model was processed by Meshmixer® software (Autodesk™) in order to remove artefacts. These models underwent a surface reduction of the mesh using Meshlab® software and were hosted on a secure private platform. Results Six angio CT-Scan were performed in three patients with chondrosarcomas of the sternum. The segmentation of organs and vessels has made it possible to create a real 3-D anatomical board. Each of these protected models can be viewed on our server and can be manipulated virtually on 360° using the secure links provided in this article. 3D vision was available using inexpensive cardboard virtual reality glasses. Conclusion The use of computer modeling could help in the teaching of anatomy, but also in the understanding of the disease by the patient himself. One of the perspectives would be the 3D printing of biocompatible materials in order to carry out tailor-made reconstructions.
format Articulo
Articulo
author Burgade, R.
Uhl, J. F.
Prat, Guillermo Daniel
Ruiz, Camilo
Lorea, Bárbara
Delmas, V.
Rosset, P.
Le Nail, L. R.
author_facet Burgade, R.
Uhl, J. F.
Prat, Guillermo Daniel
Ruiz, Camilo
Lorea, Bárbara
Delmas, V.
Rosset, P.
Le Nail, L. R.
author_sort Burgade, R.
title 3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
title_short 3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
title_full 3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
title_fullStr 3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
title_full_unstemmed 3D-modeling of sternal chondrosarcomas from angio-CT-Scan: Clinical application and surgical perspectives
title_sort 3d-modeling of sternal chondrosarcomas from angio-ct-scan: clinical application and surgical perspectives
publishDate 2021
url http://sedici.unlp.edu.ar/handle/10915/129916
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