Stimulation parameters differ between current anti-modiolar and peri-modiolar electrode arrays implanted within the same child

M. J. Polonenko, S. L. Cushing, K. A. Gordon, B. Allemang, S. Jewell, B. C. Papsin

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Objective: To compare stimulation parameters of peri-modiolar and anti-modiolar electrode arrays using two surgical approaches. Methods: Impedance, stimulation thresholds, comfortably loud current levels, electrically evoked compound action potential thresholds and electrically evoked stapedial reflex thresholds were compared between 2 arrays implanted in the same child at 5 time points: surgery, activation/day 1, week 1, and months 1 and 3. The peri-modiolar array was implanted via cochleostomy in all children (n = 64), while the anti-modiolar array was inserted via a cochleostomy in 43 children and via the round window in 21 children. Results: The anti-modiolar array had significantly lower impedance, but required higher current levels to elicit thresholds, comfort, electrically evoked compound action potential thresholds and electrically evoked stapedial reflex thresholds than the peri-modiolar array across all time points, particularly in basal electrodes (p < 0.05). The prevalence of open electrodes was similar in anti-modiolar (n = 5) and peri-modiolar (n = 3) arrays. Conclusion: Significant but clinically acceptable differences in stimulation parameters between peri-modiolar and anti-modiolar arrays persisted four months after surgery in children using bilateral cochlear implants. The surgical approach used to insert the anti-modiolar array had no overall effect on outcomes.

Original languageEnglish (US)
Pages (from-to)1007-1021
Number of pages15
JournalJournal of Laryngology and Otology
Volume130
Issue number11
DOIs
StatePublished - Nov 1 2016
Externally publishedYes

Bibliographical note

Publisher Copyright:
© JLO (1984) Limited 2016.

Keywords

  • Cochlear Implant
  • Electric Stimulation
  • Electrode
  • Prosthesis Fitting

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