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Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series

For decades, the advantages of rapid prototyping for clinical use have been recognized. However, demonstrations of potential solutions to treat spinal problems that cannot be solved otherwise are scarce. In this paper, we describe the development, regulatory process, and clinical application of two...

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Autores principales: Willemsen, Koen, Magré, Joëll, Mol, Jeroen, Noordmans, Herke Jan, Weinans, Harrie, Hekman, Edsko E. G., Kruyt, Moyo C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951204/
https://www.ncbi.nlm.nih.gov/pubmed/35330395
http://dx.doi.org/10.3390/jpm12030395
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author Willemsen, Koen
Magré, Joëll
Mol, Jeroen
Noordmans, Herke Jan
Weinans, Harrie
Hekman, Edsko E. G.
Kruyt, Moyo C.
author_facet Willemsen, Koen
Magré, Joëll
Mol, Jeroen
Noordmans, Herke Jan
Weinans, Harrie
Hekman, Edsko E. G.
Kruyt, Moyo C.
author_sort Willemsen, Koen
collection PubMed
description For decades, the advantages of rapid prototyping for clinical use have been recognized. However, demonstrations of potential solutions to treat spinal problems that cannot be solved otherwise are scarce. In this paper, we describe the development, regulatory process, and clinical application of two types of patient specific 3D-printed devices that were developed at an in-house 3D point-of-care facility. This 3D lab made it possible to elegantly treat patients with spinal problems that could not have been treated in a conventional manner. The first device, applied in three patients, is a printed nylon drill guide, with such accuracy that it can be used for insertion of cervical pedicle screws in very young children, which has been applied even in semi-acute settings. The other is a 3D-printed titanium spinal column prosthesis that was used to treat progressive and severe deformities due to lysis of the anterior column in three patients. The unique opportunity to control size, shape, and material characteristics allowed a relatively easy solution for these patients, who were developing paraplegia. In this paper, we discuss the pathway toward the design and final application, including technical file creation for dossier building and challenges within a point-of-care lab.
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spelling pubmed-89512042022-03-26 Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series Willemsen, Koen Magré, Joëll Mol, Jeroen Noordmans, Herke Jan Weinans, Harrie Hekman, Edsko E. G. Kruyt, Moyo C. J Pers Med Article For decades, the advantages of rapid prototyping for clinical use have been recognized. However, demonstrations of potential solutions to treat spinal problems that cannot be solved otherwise are scarce. In this paper, we describe the development, regulatory process, and clinical application of two types of patient specific 3D-printed devices that were developed at an in-house 3D point-of-care facility. This 3D lab made it possible to elegantly treat patients with spinal problems that could not have been treated in a conventional manner. The first device, applied in three patients, is a printed nylon drill guide, with such accuracy that it can be used for insertion of cervical pedicle screws in very young children, which has been applied even in semi-acute settings. The other is a 3D-printed titanium spinal column prosthesis that was used to treat progressive and severe deformities due to lysis of the anterior column in three patients. The unique opportunity to control size, shape, and material characteristics allowed a relatively easy solution for these patients, who were developing paraplegia. In this paper, we discuss the pathway toward the design and final application, including technical file creation for dossier building and challenges within a point-of-care lab. MDPI 2022-03-04 /pmc/articles/PMC8951204/ /pubmed/35330395 http://dx.doi.org/10.3390/jpm12030395 Text en © 2022 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 Article
Willemsen, Koen
Magré, Joëll
Mol, Jeroen
Noordmans, Herke Jan
Weinans, Harrie
Hekman, Edsko E. G.
Kruyt, Moyo C.
Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title_full Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title_fullStr Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title_full_unstemmed Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title_short Vital Role of In-House 3D Lab to Create Unprecedented Solutions for Challenges in Spinal Surgery, Practical Guidelines and Clinical Case Series
title_sort vital role of in-house 3d lab to create unprecedented solutions for challenges in spinal surgery, practical guidelines and clinical case series
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951204/
https://www.ncbi.nlm.nih.gov/pubmed/35330395
http://dx.doi.org/10.3390/jpm12030395
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