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Updated: Jun 7, 2026

Extracting the Cochlea from a Human Temporal Bone: A Cadaveric Protocol
Published on: August 18, 2023
Clinical Validation of Manual Measurement of Cochlea Length With Post-Operative Electrode Insertion Depth: A Pilot
Fei Wang1, Dharmikkumar Anaghan2, Anandhan Dhanasingh2
1Department of Otorhinolaryngology The First Hospital of China Medical University Shenyang Liaoning China.
Objective:
To clinically validate manual measurement of cochlear length from pre-operative image of cochlea with post-operative image of cochlear implant (CI) electrode.
Methods:
Temporal bone computer tomography (CT) scans of 23 ears were available for this pilot study. The inner ear was three-dimensionally (3D) segmented, and cochlea length was manually measured for preferred angular depth depending on inner ear anatomical types for CI electrode length selection. Post-operative CT scans were made available for electrode reconstruction to measure electrode length inside the cochlea to validate pre-operative measurement of cochlear length.
Results:
Normal anatomy (NA) inner ear was identified in 11 ears, enlarged vestibular aqueduct syndrome (EVAS) in 4 ears, incomplete partition (IP) type I in 2 ears, cochlear hypoplasia (CH) in 5 ears, and otosclerosis in 1 ear. Cochlear length was measured for 650° of angular depth in NA ears, 540° in EVAS and otosclerosis, 360° in IP type I, and for available angular depth depending on the development of the cochlea in CH type. Based on the cochlea length measured, a closely matching electrode length was chosen for implantation from 1 CI manufacturer. Partial insertion was seen in 2 NA ears, 1 otosclerosis ear, and 1 CH ear, whereas full insertion of the chosen electrode was achieved in the remaining 19 ears.
Conclusion:
Manual measurement of cochlea length from 3D image of cochlea is a practical way of choosing electrode length for preferred angular insertion depth depending on the cochlea anatomy.
Level Of Evidence:
Between level 2 and 3.

