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Updated: Aug 29, 2026

Sound Source Localization Testing in Single-sided Deafness Following Bone Conduction Intervention
Published on: December 20, 2024
Incomplete binaural restoration in single-sided deafness treated with cochlear implants: insights from compensatory
Hillary A Snapp1, Sandra Prentiss1, Sebastian A Ausili1
1Department of Otolaryngology, University of Miami, Miami, FL, United States.
Introduction:
Single-sided deafness (SSD) disrupts binaural spatial hearing and may require active compensatory strategies, even for those with cochlear implants (CIs). This study examined spatial hearing adaptations in individuals with single-sided deafness (SSD), including those using cochlear implants (CIs) and unaided SSD, compared to normal-hearing (NH) controls.
Methods:
Using a dual-task paradigm, participants performed both simple localization and complex multi-talker speech identification tasks, with continuous tracking of head-orientation dynamics to quantify re-orientations, response promptness, and cumulative movement.
Results:
The use of CIs yielded measurable improvements in basic localization tasks; however, these benefits diminished in ecologically valid, dynamic environments. Speech intelligibility remained asymmetric, favoring the better-hearing ear, and performance for CI-side targets collapsed despite favorable signal-to-noise ratios. Listeners with SSD-CI demonstrated rapid, iterative scanning, prolonged orientation sequences, and increased cumulative head movement, suggesting reliance on active compensatory strategies rather than complete restoration of spatial hearing.
Discussion:
Current CI technology improves access to sound and spatial hearing for SSD listeners, but it does not fully restore functional binaural hearing in dynamic listening environments. Persistent compensatory head-orienting behaviors indicate reliance on better-ear listening and increased physical effort to position the head in ways that exploit acoustic head-shadow effects, allowing speech access by the better-hearing ear. These findings support the use of ecologically valid assessment models and head-orientation metrics to guide auditory rehabilitation and future innovations for asymmetric hearing loss.

