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Robotic Cochlear Implantation for Direct Cochlear Access
Published on: June 16, 2022
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Validation of Automatic Cochlear Measurements Using OTOPLAN® Software
Dimitrios Paouris1, Samuel Kunzo1, Irina Goljerová1
1Clinic of Pediatric Otorhinolaryngology of the Medical Faculty, National Institute of Children's Diseases, Comenius University, 83340 Bratislava, Slovakia.
Journal of Personalized Medicine
|May 27, 2023
Summary
A novel automatic method significantly reduces cochlear implantation pre-operative measurement time. This automated approach ensures high accuracy and excellent inter-rater reliability for cochlear parameters, improving surgical planning.
Area of Science:
- Otolaryngology
- Medical Imaging Analysis
- Surgical Planning
Background:
- Cochlear implantation relies on accurate pre-operative electrode length selection based on cochlear parameters.
- Manual measurement of these parameters is time-consuming and prone to inconsistencies.
Purpose of the Study:
- To evaluate a novel, automated method for measuring cochlear parameters.
- To compare the accuracy and efficiency of the automated method against manual measurements.
Main Methods:
- Retrospective analysis of 109 pre-operative HRCT images using OTOPLAN® software.
- Comparison of manual measurements by two surgeons (R1, R2) versus automated (AUTO) measurements.
- Assessment of inter-rater reliability and execution time for A-Value, B-Value, H-Value, and Cochlear Duct Length (CDLOC-length).
Main Results:
- Automated measurement time reduced from ~7 min to 1 min.
- High agreement between AUTO and manual measurements for all parameters (e.g., CDLOC-length: p > 0.242).
- Excellent intraclass correlation coefficient (ICC) for CDLOC-length (0.90 for R1 vs. AUTO, 0.90 for R2 vs. AUTO).
Conclusions:
- The automated method offers excellent inter-rater reliability and high agreement with manual measurements.
- Significant reduction in execution time for cochlear parameter measurement.
- The automated approach is a reliable and efficient tool for pre-operative planning in cochlear implantation.

