Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap

Head and neck reconstructive surgeons have recently explored new perspectives in bone restoration using periosteum carrier flaps. Following this idea, we explored the possibility of harvesting a galeo-pericranial flap. The present work studies the vascular supply of the pericranial temporo-parietal...

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Main Authors: Salvatore Battaglia, Stefano Ratti, Lucia Manzoli, Claudio Marchetti, Laura Cercenelli, Emanuela Marcelli, Achille Tarsitano, Alessandra Ruggeri
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Journal of Clinical Medicine
Subjects:
Online Access:https://www.mdpi.com/2077-0383/9/7/2211
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spelling doaj-d6981576d77f4239aecc1d19b4e5cbcb2020-11-25T03:48:31ZengMDPI AGJournal of Clinical Medicine2077-03832020-07-0192211221110.3390/jcm9072211Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial FlapSalvatore Battaglia0Stefano Ratti1Lucia Manzoli2Claudio Marchetti3Laura Cercenelli4Emanuela Marcelli5Achille Tarsitano6Alessandra Ruggeri7Oral and Maxillo-Facial Surgery Unit, IRCCS Policlinico di Sant’Orsola, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyHuman Anatomy, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyHuman Anatomy, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyOral and Maxillo-Facial Surgery Unit, IRCCS Policlinico di Sant’Orsola, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyBioengineering Lab, Department of Experimental, Diagnostic and Specialty Medicine—DIMES, University of Bologna, 40100 Bologna, ItalyBioengineering Lab, Department of Experimental, Diagnostic and Specialty Medicine—DIMES, University of Bologna, 40100 Bologna, ItalyOral and Maxillo-Facial Surgery Unit, IRCCS Policlinico di Sant’Orsola, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyHuman Anatomy, Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna, 40100 Bologna, ItalyHead and neck reconstructive surgeons have recently explored new perspectives in bone restoration using periosteum carrier flaps. Following this idea, we explored the possibility of harvesting a galeo-pericranial flap. The present work studies the vascular supply of the pericranial temporo-parietal region in order to assess the possibility of harvesting a galeo-pericranial flap based on the superficial temporalis vascularization. Anatomical dissections were performed at the Anatomical Institute of the University of Bologna on eight donor cadavers. Then we performed the harvesting of the flap in vivo on eight patients. We introduced augmented reality (AR) to facilitate anatomical visualisation during free flap harvesting. Augmented reality merges virtual and actual objects, allowing direct observation of patient anatomy and the surgical field. No post-operative major or minor complications occurred. We encountered no post-operative functional issues on the donor or recipient sites, and good clinical healing was observed in all patients. In conclusion, we believe that the galea-pericranium flap could represent a new donor site for the harvesting of a periosteum carrier flap.https://www.mdpi.com/2077-0383/9/7/2211reconstructionhead and neck reconstruction3D technologiesaugmented realitytemporalis flapperiosteum flap
collection DOAJ
language English
format Article
sources DOAJ
author Salvatore Battaglia
Stefano Ratti
Lucia Manzoli
Claudio Marchetti
Laura Cercenelli
Emanuela Marcelli
Achille Tarsitano
Alessandra Ruggeri
spellingShingle Salvatore Battaglia
Stefano Ratti
Lucia Manzoli
Claudio Marchetti
Laura Cercenelli
Emanuela Marcelli
Achille Tarsitano
Alessandra Ruggeri
Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
Journal of Clinical Medicine
reconstruction
head and neck reconstruction
3D technologies
augmented reality
temporalis flap
periosteum flap
author_facet Salvatore Battaglia
Stefano Ratti
Lucia Manzoli
Claudio Marchetti
Laura Cercenelli
Emanuela Marcelli
Achille Tarsitano
Alessandra Ruggeri
author_sort Salvatore Battaglia
title Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
title_short Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
title_full Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
title_fullStr Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
title_full_unstemmed Augmented Reality-Assisted Periosteum Pedicled Flap Harvesting for Head and Neck Reconstruction: An Anatomical and Clinical Viability Study of a Galeo-Pericranial Flap
title_sort augmented reality-assisted periosteum pedicled flap harvesting for head and neck reconstruction: an anatomical and clinical viability study of a galeo-pericranial flap
publisher MDPI AG
series Journal of Clinical Medicine
issn 2077-0383
publishDate 2020-07-01
description Head and neck reconstructive surgeons have recently explored new perspectives in bone restoration using periosteum carrier flaps. Following this idea, we explored the possibility of harvesting a galeo-pericranial flap. The present work studies the vascular supply of the pericranial temporo-parietal region in order to assess the possibility of harvesting a galeo-pericranial flap based on the superficial temporalis vascularization. Anatomical dissections were performed at the Anatomical Institute of the University of Bologna on eight donor cadavers. Then we performed the harvesting of the flap in vivo on eight patients. We introduced augmented reality (AR) to facilitate anatomical visualisation during free flap harvesting. Augmented reality merges virtual and actual objects, allowing direct observation of patient anatomy and the surgical field. No post-operative major or minor complications occurred. We encountered no post-operative functional issues on the donor or recipient sites, and good clinical healing was observed in all patients. In conclusion, we believe that the galea-pericranium flap could represent a new donor site for the harvesting of a periosteum carrier flap.
topic reconstruction
head and neck reconstruction
3D technologies
augmented reality
temporalis flap
periosteum flap
url https://www.mdpi.com/2077-0383/9/7/2211
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