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Author Spotlight: Optimizing EAS with Long Electrodes for Enhanced Cochlear Coverage and Hearing Preservation
Published on: October 11, 2024
Bilateral Functional Electrical Stimulation for the Treatment of Presbyphonia in a Sheep Model
Andrijana Kirsch1, Claus Gerstenberger1, Bernhard Jakubaß2
1Division of Phoniatrics, ENT University Hospital, Medical University of Graz, Graz, Austria.
Objectives:
The aim of the study was to increase muscle volume and improve phonation characteristics of the aged ovine larynx by functional electrical stimulation (FES) using a minimally invasive surgical procedure.
Methods:
Stimulation electrodes were placed bilaterally near the terminal adduction branch of the recurrent laryngeal nerves (RLN). The electrodes were connected to battery powered pulse generators implanted subcutaneously at the neck region. Training patterns were programmed by an external programmer using a bidirectional radio frequency link. Training sessions were repeated automatically by the implant every other day for 1 week followed by every day for 8 weeks in the awake animal. Another group of animals were used as sham, with electrodes positioned but not connected to an implant. Outcome parameters included gene expression analysis, histological assessment of muscle fiber size, functional analysis, and volumetric measurements based on three-dimensional reconstructions of the entire thyroarytenoid muscle (TAM).
Results:
Increase in minimal muscle fiber diameter and an improvement in vocal efficiency were observed following FES, compared with sham animals.
Conclusion:
This is the first study to demonstrate beneficial effects in the TAM of FES at molecular, histological, and functional levels. FES of the terminal branches of the RLN reversed the effects of age-related changes and improved vocal efficiency.
Level Of Evidence:
NA Laryngoscope, 134:848-854, 2024.

