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Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series

It is known that visual feedback by fluoroscopy can detect electrode array (EA) misrouting within the cochlea while robotized EA-insertion (rob-EAI) permits atraumatic cochlear implantation. We report here our unique experience of both fluoroscopy feedback and rob-EAI in cochlear implant surgery. We...

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Autores principales: Mom, Thierry, Puechmaille, Mathilde, El Yagoubi, Mohamed, Lère, Alexane, Petersen, Jens-Erik, Bécaud, Justine, Saroul, Nicolas, Gilain, Laurent, Mirafzal, Sonia, Chabrot, Pascal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820833/
https://www.ncbi.nlm.nih.gov/pubmed/36615012
http://dx.doi.org/10.3390/jcm12010211
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author Mom, Thierry
Puechmaille, Mathilde
El Yagoubi, Mohamed
Lère, Alexane
Petersen, Jens-Erik
Bécaud, Justine
Saroul, Nicolas
Gilain, Laurent
Mirafzal, Sonia
Chabrot, Pascal
author_facet Mom, Thierry
Puechmaille, Mathilde
El Yagoubi, Mohamed
Lère, Alexane
Petersen, Jens-Erik
Bécaud, Justine
Saroul, Nicolas
Gilain, Laurent
Mirafzal, Sonia
Chabrot, Pascal
author_sort Mom, Thierry
collection PubMed
description It is known that visual feedback by fluoroscopy can detect electrode array (EA) misrouting within the cochlea while robotized EA-insertion (rob-EAI) permits atraumatic cochlear implantation. We report here our unique experience of both fluoroscopy feedback and rob-EAI in cochlear implant surgery. We retrospectively analyzed a cohort of consecutive patients implanted from November 2021–October 2022 using rob-EAI, with the RobOtol(®), to determine the quality of EA-insertion and the additional time required. Twenty-three patients (10 females, 61+/−19 yo) were tentatively implanted using robot assistance, with a rob-EAI speed < 1 mm/s. Only three cases required a successful revised insertion by hand. Under fluoroscopy (n = 11), it was possible to achieve a remote rob-EAI (n = 8), as the surgeon was outside the operative room, behind an anti-radiation screen. No scala translocation occurred. The additional operative time due to robot use was 18+/−7 min with about 4 min more for remote rob-EAI. Basal cochlear turn fibrosis precluded rob-EAI. In conclusion, Rob-EAI can be performed in almost all cases with a low risk of scala translocation, except in the case of partial cochlear obstruction such as fibrosis. Fluoroscopy also permits remote rob-EAI.
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spelling pubmed-98208332023-01-07 Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series Mom, Thierry Puechmaille, Mathilde El Yagoubi, Mohamed Lère, Alexane Petersen, Jens-Erik Bécaud, Justine Saroul, Nicolas Gilain, Laurent Mirafzal, Sonia Chabrot, Pascal J Clin Med Article It is known that visual feedback by fluoroscopy can detect electrode array (EA) misrouting within the cochlea while robotized EA-insertion (rob-EAI) permits atraumatic cochlear implantation. We report here our unique experience of both fluoroscopy feedback and rob-EAI in cochlear implant surgery. We retrospectively analyzed a cohort of consecutive patients implanted from November 2021–October 2022 using rob-EAI, with the RobOtol(®), to determine the quality of EA-insertion and the additional time required. Twenty-three patients (10 females, 61+/−19 yo) were tentatively implanted using robot assistance, with a rob-EAI speed < 1 mm/s. Only three cases required a successful revised insertion by hand. Under fluoroscopy (n = 11), it was possible to achieve a remote rob-EAI (n = 8), as the surgeon was outside the operative room, behind an anti-radiation screen. No scala translocation occurred. The additional operative time due to robot use was 18+/−7 min with about 4 min more for remote rob-EAI. Basal cochlear turn fibrosis precluded rob-EAI. In conclusion, Rob-EAI can be performed in almost all cases with a low risk of scala translocation, except in the case of partial cochlear obstruction such as fibrosis. Fluoroscopy also permits remote rob-EAI. MDPI 2022-12-27 /pmc/articles/PMC9820833/ /pubmed/36615012 http://dx.doi.org/10.3390/jcm12010211 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
Mom, Thierry
Puechmaille, Mathilde
El Yagoubi, Mohamed
Lère, Alexane
Petersen, Jens-Erik
Bécaud, Justine
Saroul, Nicolas
Gilain, Laurent
Mirafzal, Sonia
Chabrot, Pascal
Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title_full Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title_fullStr Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title_full_unstemmed Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title_short Robotized Cochlear Implantation under Fluoroscopy: A Preliminary Series
title_sort robotized cochlear implantation under fluoroscopy: a preliminary series
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820833/
https://www.ncbi.nlm.nih.gov/pubmed/36615012
http://dx.doi.org/10.3390/jcm12010211
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