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Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction

This study aimed to validate the role of 3D segmentation in measuring the volume of the vestibular aqueduct (VAD), and the inner ear, and to study the correlation between VAD volume and VAD linear measurements at the midpoint and operculum. The correlation with other cochlear metrics was also studie...

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Autores principales: Alahmadi, Asma, Abdelsamad, Yassin, Almuhawas, Fida, Hamed, Nezar, Salamah, Marzouqi, Alsanosi, Abdulrahman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961179/
https://www.ncbi.nlm.nih.gov/pubmed/36836405
http://dx.doi.org/10.3390/jpm13020171
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author Alahmadi, Asma
Abdelsamad, Yassin
Almuhawas, Fida
Hamed, Nezar
Salamah, Marzouqi
Alsanosi, Abdulrahman
author_facet Alahmadi, Asma
Abdelsamad, Yassin
Almuhawas, Fida
Hamed, Nezar
Salamah, Marzouqi
Alsanosi, Abdulrahman
author_sort Alahmadi, Asma
collection PubMed
description This study aimed to validate the role of 3D segmentation in measuring the volume of the vestibular aqueduct (VAD), and the inner ear, and to study the correlation between VAD volume and VAD linear measurements at the midpoint and operculum. The correlation with other cochlear metrics was also studied. We retrospectively recruited 21 children (42 ears) diagnosed with Mondini dysplasia (MD) plus enlarged vestibular aqueduct (EVA) from 2009 to 2021 and who underwent cochlear implantation (CI). Patients’ sociodemographic data were collected, and linear cochlear metrics were measured using Otoplan. Vestibular aqueduct width and vestibular aqueduct and inner ear volumes were measured by two independent neuro-otologists using 3D segmentation software (version 4.11.20210226) and high-resolution CT. We also conducted a regression analysis to determine the association between these variables and CT VAD and inner ear volumes. Among the 33 cochlear implanted ears, 13 ears had a gusher (39.4%). Regarding CT inner ear volume, we found that gender, age, A-value, and VAD at the operculum were statistically significant (p-Value = 0.003, <0.001, 0.031, and 0.027, respectively) by regression analysis. Moreover, we found that Age, H value, VAD at the midpoint, and VAD at the operculum were significant predictors of CT VAD volume (p-Value < 0.04). Finally, gender (OR: 0.092; 95%CI: 0.009–0.982; p-Value = 0.048) and VAD at the midpoint (OR: 0.106; 95%CI: 0.015–0.735; p-Value = 0.023) were significant predictors of gusher risk. Patients’ gusher risk was significantly differentiated by gender and VAD width at the midpoint.
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spelling pubmed-99611792023-02-26 Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction Alahmadi, Asma Abdelsamad, Yassin Almuhawas, Fida Hamed, Nezar Salamah, Marzouqi Alsanosi, Abdulrahman J Pers Med Article This study aimed to validate the role of 3D segmentation in measuring the volume of the vestibular aqueduct (VAD), and the inner ear, and to study the correlation between VAD volume and VAD linear measurements at the midpoint and operculum. The correlation with other cochlear metrics was also studied. We retrospectively recruited 21 children (42 ears) diagnosed with Mondini dysplasia (MD) plus enlarged vestibular aqueduct (EVA) from 2009 to 2021 and who underwent cochlear implantation (CI). Patients’ sociodemographic data were collected, and linear cochlear metrics were measured using Otoplan. Vestibular aqueduct width and vestibular aqueduct and inner ear volumes were measured by two independent neuro-otologists using 3D segmentation software (version 4.11.20210226) and high-resolution CT. We also conducted a regression analysis to determine the association between these variables and CT VAD and inner ear volumes. Among the 33 cochlear implanted ears, 13 ears had a gusher (39.4%). Regarding CT inner ear volume, we found that gender, age, A-value, and VAD at the operculum were statistically significant (p-Value = 0.003, <0.001, 0.031, and 0.027, respectively) by regression analysis. Moreover, we found that Age, H value, VAD at the midpoint, and VAD at the operculum were significant predictors of CT VAD volume (p-Value < 0.04). Finally, gender (OR: 0.092; 95%CI: 0.009–0.982; p-Value = 0.048) and VAD at the midpoint (OR: 0.106; 95%CI: 0.015–0.735; p-Value = 0.023) were significant predictors of gusher risk. Patients’ gusher risk was significantly differentiated by gender and VAD width at the midpoint. MDPI 2023-01-19 /pmc/articles/PMC9961179/ /pubmed/36836405 http://dx.doi.org/10.3390/jpm13020171 Text en © 2023 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
Alahmadi, Asma
Abdelsamad, Yassin
Almuhawas, Fida
Hamed, Nezar
Salamah, Marzouqi
Alsanosi, Abdulrahman
Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title_full Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title_fullStr Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title_full_unstemmed Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title_short Cochlear Implantation: The Volumetric Measurement of Vestibular Aqueduct and Gusher Prediction
title_sort cochlear implantation: the volumetric measurement of vestibular aqueduct and gusher prediction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961179/
https://www.ncbi.nlm.nih.gov/pubmed/36836405
http://dx.doi.org/10.3390/jpm13020171
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