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Accuracy of radiological prediction of electrode position with otological planning software and implications of high-resolution imaging.

Authors :
Müller-Graff, Franz-Tassilo
Voelker, Johannes
Kurz, Anja
Hagen, Rudolf
Neun, Tilmann
Rak, Kristen
Source :
Cochlear Implants International: An Interdisciplinary Journal. May2023, Vol. 24 Issue 3, p144-154. 11p.
Publication Year :
2023

Abstract

In cochlear implantation, preoperative prediction of electrode position has recently gained increasing attention. Currently, planning is usually done by multislice CT (MSCT). However, flat-panel volume CT (fpVCT) and its secondary reconstructions (fpVCTSECO) allow for more precise visualization of the cochlea. Combined with a newly developed otological planning software, the position of every single contact can be effectively predicted. In this study it was investigated how accurately radiological prediction forecasts the postoperative electrode localization and whether higher image resolution is advantageous. Utilizing otological planning software (OTOPLAN®) and different clinical imaging modalities (MSCT, fpVCT and fpVCTSECO) the electrode localization [angular insertion depth (AID)] and respective contact frequencies were predicted preoperatively and examined postoperatively. Furthermore, inter-electrode-distance (IED) and inter-electrode-frequency difference (IEFD) were evaluated postoperatively. Measurements revealed a preoperative overestimation of AID. Corresponding frequencies were also miscalculated. Determination of IED and IEFD revealed discrepancies at the transition from the basal to the middle turn and round window to the basal turn. All predictions and discrepancies were lowest when using fpVCTSECO. The postoperative electrode position can be predicted quite accurately using otological planning software. However, because of several potential misjudgments, high-resolution imaging, such as offered by fpVCTSECO, should be used pre- and postoperatively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14670100
Volume :
24
Issue :
3
Database :
Academic Search Index
Journal :
Cochlear Implants International: An Interdisciplinary Journal
Publication Type :
Academic Journal
Accession number :
164650848
Full Text :
https://doi.org/10.1080/14670100.2022.2159128