Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses
This systematic review was aimed at gathering technical and clinical applications of CAD/CAM technology for the preoperative planning of craniofacial implants placement, designing of molds and substructures and fabrication of orbital prostheses. Following the Preferred Reporting Items for Systematic...
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MDPI AG
2021
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oai:doaj.org-article:6679b5154e014a9f958b9a789049897c2021-11-11T16:28:52ZSystematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses10.3390/ijerph1821113491660-46011661-7827https://doaj.org/article/6679b5154e014a9f958b9a789049897c2021-10-01T00:00:00Zhttps://www.mdpi.com/1660-4601/18/21/11349https://doaj.org/toc/1661-7827https://doaj.org/toc/1660-4601This systematic review was aimed at gathering technical and clinical applications of CAD/CAM technology for the preoperative planning of craniofacial implants placement, designing of molds and substructures and fabrication of orbital prostheses. Following the Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA) guidelines, an electronic search was executed. Human studies that utilized digital planning systems for the prosthetic rehabilitation of orbital defects were included. A total of 16 studies of 30 clinical cases, which were virtually planned through various digital planning and designing software, were included. The most common preoperative data required for digital planning were CT scans in 15 cases, the 3DSS-STD-II scanning system in 5 cases, an Artec Color 3D scanner in 3 cases and a NextEngine Desktop 3D laser scanner in 2 cases. Meanwhile, the digital designing software were Ease Orbital Implant Planning EOIPlan software in eight cases, Geomagic software in eight cases, Simplant software in four cases and Artec Studio 12 Professional in three cases. Surgical templates were fabricated for 12 cases to place 41 craniofacial implants in the orbital defect area. An image-guided surgical navigation system was utilized for the placement of five orbital implants in two cases. Digital designing and printing systems were reported for the preoperative planning of craniofacial implants placement, designing of molds and substructures and fabrication of orbital prostheses. The studies concluded that the digital planning, designing and fabrication of orbital prostheses reduce the clinical and laboratory times, reduces patient visits and provide a satisfactory outcome; however, technical skills and equipment costs are posing limitations on the use of these digital systems.Waqas TanveerAngela Ridwan-PramanaPedro Molinero-MourelleTymour ForouzanfarMDPI AGarticleorbital prosthesisdigital planningdigital workflowcraniofacial implantsguided implants surgeryMedicineRENInternational Journal of Environmental Research and Public Health, Vol 18, Iss 11349, p 11349 (2021) |
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orbital prosthesis digital planning digital workflow craniofacial implants guided implants surgery Medicine R |
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orbital prosthesis digital planning digital workflow craniofacial implants guided implants surgery Medicine R Waqas Tanveer Angela Ridwan-Pramana Pedro Molinero-Mourelle Tymour Forouzanfar Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
description |
This systematic review was aimed at gathering technical and clinical applications of CAD/CAM technology for the preoperative planning of craniofacial implants placement, designing of molds and substructures and fabrication of orbital prostheses. Following the Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA) guidelines, an electronic search was executed. Human studies that utilized digital planning systems for the prosthetic rehabilitation of orbital defects were included. A total of 16 studies of 30 clinical cases, which were virtually planned through various digital planning and designing software, were included. The most common preoperative data required for digital planning were CT scans in 15 cases, the 3DSS-STD-II scanning system in 5 cases, an Artec Color 3D scanner in 3 cases and a NextEngine Desktop 3D laser scanner in 2 cases. Meanwhile, the digital designing software were Ease Orbital Implant Planning EOIPlan software in eight cases, Geomagic software in eight cases, Simplant software in four cases and Artec Studio 12 Professional in three cases. Surgical templates were fabricated for 12 cases to place 41 craniofacial implants in the orbital defect area. An image-guided surgical navigation system was utilized for the placement of five orbital implants in two cases. Digital designing and printing systems were reported for the preoperative planning of craniofacial implants placement, designing of molds and substructures and fabrication of orbital prostheses. The studies concluded that the digital planning, designing and fabrication of orbital prostheses reduce the clinical and laboratory times, reduces patient visits and provide a satisfactory outcome; however, technical skills and equipment costs are posing limitations on the use of these digital systems. |
format |
article |
author |
Waqas Tanveer Angela Ridwan-Pramana Pedro Molinero-Mourelle Tymour Forouzanfar |
author_facet |
Waqas Tanveer Angela Ridwan-Pramana Pedro Molinero-Mourelle Tymour Forouzanfar |
author_sort |
Waqas Tanveer |
title |
Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
title_short |
Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
title_full |
Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
title_fullStr |
Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
title_full_unstemmed |
Systematic Review of Clinical Applications of CAD/CAM Technology for Craniofacial Implants Placement and Manufacturing of Orbital Prostheses |
title_sort |
systematic review of clinical applications of cad/cam technology for craniofacial implants placement and manufacturing of orbital prostheses |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/6679b5154e014a9f958b9a789049897c |
work_keys_str_mv |
AT waqastanveer systematicreviewofclinicalapplicationsofcadcamtechnologyforcraniofacialimplantsplacementandmanufacturingoforbitalprostheses AT angelaridwanpramana systematicreviewofclinicalapplicationsofcadcamtechnologyforcraniofacialimplantsplacementandmanufacturingoforbitalprostheses AT pedromolineromourelle systematicreviewofclinicalapplicationsofcadcamtechnologyforcraniofacialimplantsplacementandmanufacturingoforbitalprostheses AT tymourforouzanfar systematicreviewofclinicalapplicationsofcadcamtechnologyforcraniofacialimplantsplacementandmanufacturingoforbitalprostheses |
_version_ |
1718432299944509440 |