Virtual surgical planning (VSP) has recently been introduced in craniomaxillofacial surgery with the goal of improving efficiency and precision for complex surgical operations. Among many indications, VSP can also be applied for the treatment of congenital and acquired craniofacial defects, including orbital fractures. VSP permits the surgeon to visualize the complex anatomy of craniofacial region, showing the relationship between bone and neurovascular structures. It can be used to design and print using three-dimensional (3D) printing technology and customized surgical models. Additionally, intraoperative navigation may be useful as an aid in performing the surgery. Navigation is useful for both the surgical dissection as well as to confirm the placement of the implant. Navigation has been found to be especially useful for orbit and sinus surgery. The present paper reports a case describing the use of VSP and computerized navigation for the reconstruction of a large orbital floor defect with a custom implant.

The use of virtual surgical planning and navigation in the treatment of orbital trauma / A.S. Herford, M. Miller, F. Lauritano, G. Cervino, F. Signorino, C. Maiorana. - In: CHINESE JOURNAL OF TRAUMATOLOGY. - ISSN 1008-1275. - 20:1(2017), pp. 9-13. [10.1016/j.cjtee.2016.11.002]

The use of virtual surgical planning and navigation in the treatment of orbital trauma

C. Maiorana
2017

Abstract

Virtual surgical planning (VSP) has recently been introduced in craniomaxillofacial surgery with the goal of improving efficiency and precision for complex surgical operations. Among many indications, VSP can also be applied for the treatment of congenital and acquired craniofacial defects, including orbital fractures. VSP permits the surgeon to visualize the complex anatomy of craniofacial region, showing the relationship between bone and neurovascular structures. It can be used to design and print using three-dimensional (3D) printing technology and customized surgical models. Additionally, intraoperative navigation may be useful as an aid in performing the surgery. Navigation is useful for both the surgical dissection as well as to confirm the placement of the implant. Navigation has been found to be especially useful for orbit and sinus surgery. The present paper reports a case describing the use of VSP and computerized navigation for the reconstruction of a large orbital floor defect with a custom implant.
Neuronavigation; Orbital implants; Orbital trauma; Virtual surgical planning; Adult; Female; Humans; Ketones; Orbit; Polyethylene Glycols; Printing, Three-Dimensional; Reconstructive Surgical Procedures; Surgery, Computer-Assisted; Tomography, X-Ray Computed; Surgery; Orthopedics and Sports Medicine
Settore MED/29 - Chirurgia Maxillofacciale
2017
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/607201
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