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March 27, 2026Diagnostics2 citationsOpen Access

The Influence of Sex, Ear, and Age on Auditory Brainstem Responses Recorded with the NeuroAudio System

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MSMilaine Dominici SanfinsMSMaria Eduarda Aidar SantilloMMMariana Leonel Martins

Key Points

  • This research aims to validate previous findings regarding sex differences in auditory brainstem responses (ABR) and explore the influence of ear and age.
  • Conducted a retrospective, cross-sectional analysis with 244 participants aged 3–79 years.
  • Collected click-evoked ABRs using the NeuroAudio system from individuals with normal hearing.
  • Analyzed wave latencies, interpeak intervals, and amplitudes for sex and ear differences.
  • Found significantly shorter absolute latencies for waves III and V in women compared to men (p ≤ 0.001).
  • Identified significant right versus left ear differences in wave V latencies and several interpeak intervals.
  • No significant differences were found in wave amplitudes when comparing sexes.

Abstract

Background: Clinical interpretation of the auditory brainstem response (ABR) relies on precise normative data. While our previous work provided evidence of sex-based differences in ABR latencies in a normative sample (N = 73), this larger-scale investigation (N = 244) validates these findings and extends them to other features of the ABR, such as wave amplitude and interaural latency asymmetry. Methods: This retrospective, cross-sectional study collected ABRs from 244 participants aged 3–79 years (134 men, 110 women) with normal hearing. All underwent basic audiological assessment and click-evoked ABR measurement with the NeuroAudio system. Wave latencies, interpeak intervals, and amplitudes were analyzed. Results: Absolute latencies for wave III and wave V, and all interpeak latency intervals, were significantly shorter in women versus men (p ≤ 0.001). No statistically significant sex-based differences were found for wave I and V amplitudes. Statistically significant right versus left ear differences were found for wave V absolute latency and for interpeak intervals I–III and I–V, with the left ear consistently showing prolonged responses compared to the right. No significant interaural differences were identified for waves I and III, or for the III–V interval. Conclusions: This study confirms the significant effect of sex on ABR temporal parameters, but not on wave amplitudes. There were also significant interaural asymmetries. These findings support the use of sex-specific, and potentially ear-specific, normative data to maximize diagnostic accuracy in audiology.

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Cite This Study

Sanfins et al. (2026) studied this question.

synapsesocial.com/papers/69c620d515a0a509bde197e9https://doi.org/10.3390/diagnostics16070971
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