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Efficient Adaptive Speech Reception Threshold Measurements Using Stochastic Approximation Algorithms.

Gertjan Dingemanse1, André Goedegebure1

  • 1Department of Otorhinolaryngology and Head and Neck Surgery, Erasmus Medical Center, Rotterdam, the Netherlands.

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Summary

Stochastic approximation (SA) methods efficiently estimate speech reception thresholds in noise (SRT50n) for cochlear implant (CI) users and normal-hearing listeners. SA algorithms offer a more accurate and reliable alternative to current clinical procedures.

Keywords:
Monte Carlo methodadaptive procedurealgorithmsauditory perceptioncochlear implantsnoisespeech intelligibilitystochastic approximation

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Area of Science:

  • Audiology
  • Speech processing
  • Signal processing

Background:

  • Assessing speech reception threshold in noise (SRT50n) is crucial for hearing aid and cochlear implant (CI) users.
  • Current adaptive procedures for SRT50n estimation may not be optimal, particularly for CI users.
  • Stochastic approximation (SA) offers a potential method for improving adaptive testing efficiency.

Purpose of the Study:

  • To investigate the optimization of speech-in-noise tests using stochastic approximation (SA) methods.
  • To compare the efficiency and accuracy of SA algorithms against traditional adaptive procedures for SRT50n estimation in cochlear implant (CI) users and normal-hearing (NH) listeners.
  • To validate a simulation model for assessing SRT50n estimation methods.

Main Methods:

  • Development of a simulation model to predict intelligibility scores in noise for CI and NH listeners.
  • Monte Carlo simulations were used to compare four optimized SA algorithms with clinically used adaptive procedures.
  • The simulation model's validity was confirmed by comparing its results with existing experimental data.

Main Results:

  • The simulation model accurately reflected real-world data.
  • Four optimized SA algorithms efficiently estimated SRT50n, showing equal accuracy and smaller standard deviations (SDs) compared to clinical methods.
  • In CI users, SRT50n estimates exhibited a small bias and larger SDs than in NH listeners, with reliability concerns if speech intelligibility in quiet fell below 70%.

Conclusions:

  • Stochastic approximation (SA) algorithms are effective for adaptive speech-in-noise tests across diverse listener groups, including CI and NH individuals.
  • SA methods provide efficient SRT50n estimation in CI users, provided their speech intelligibility in quiet exceeds 70%.
  • SA procedures represent a valid, more efficient alternative to current clinical adaptive methods for CI users.