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May 14, 2026The Journal of the Acoustical Society of America0 citations

Assessment of human cochlear synaptopathy using auditory brainstem responses to paired-click stimuli

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HFHaruna FujihiraRHRinako HigashiSYShimpei Yamagishi

Key Points

  • The aim is to assess cochlear synaptopathy through auditory brainstem responses to paired-click stimuli in humans.
  • Utilized auditory brainstem responses to paired-click stimuli for assessment.
  • Conducted two experiments, one focusing on age-related changes and another on noise exposure among young adults.
  • Measured RMSpost-w1 values to evaluate the activity of low-SR versus high-SR fibers.
  • RMSpost-w1 values declined significantly with age.
  • Young adults with loud sound exposure showed lower RMSpost-w1 values compared to matched controls.
  • Findings indicate that paired-click ABRs can reflect both age- and noise-related cochlear synaptopathy.

Abstract

Cochlear synaptopathy (CS), defined as the loss of ribbon synapses between inner hair cells and auditory nerve fibers due to aging or loud sound exposure, is considered an early lesion in hearing loss development. Therefore, its detection may serve as a key to the early diagnosis. CS preferentially affects low-spontaneous rate (low-SR) fibers, while high-SR fibers are relatively preserved. We proposed a method using the auditory brainstem responses (ABRs) to paired-click stimuli, for a noninvasive assessment of this selective neural damage in humans. We focused on the fact that low-SR fibers, compared to high-SR fibers, are less affected by adaptation and exhibit delayed firing. It was expected that the activity of low-SR fibers is reflected to root mean square values for the response within a range delayed from the wave I peak (RMSpost-w1) for the second click. In Experiment 1, the RMSpost-w1 values significantly declined with age. In Experiment 2, young adults frequently exposed to loud sounds through music practice had significantly lower values than age- and hearing-matched controls. These findings suggest that ABRs using the paired-click paradigm reflect age- and noise-related CS, supporting their potential utility as a noninvasive diagnostic marker.

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Cite This Study

Fujihira et al. (2025) studied this question.

synapsesocial.com/papers/6a0567a8a550a87e60a1fd37https://doi.org/10.1121/10.0040801
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