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Updated: Oct 7, 2026

Enhanced Cochlear Coverage and Hearing Preservation in High-Frequency Hearing Loss via Electric Acoustic Stimulation with Longer Electrode
Published on: October 11, 2024
Extended high frequency hearing influences cortical response amplitudes to speech
Rodrigo Donoso-San Martín1, Stefan Fink2, Konrad Dapper3
1Department of Otolaryngology, Head and Neck, University of Tübingen, 72076 Tübingen, Germany; Departamento de Neurociencia, Facultad de Medicina, Universidad de Chile, and Centro Interdisciplinario de Neurociencia UC, Pontificia Universidad Católica de Chile, Santiago, Chile.
Abstract:
Since young adults hear sounds up to 20 kHz, the loss of extended high-frequency hearing (EHF; above 8 kHz) is a hallmark of age-related hearing loss, often progressing from early lifetime. However, this deficit frequently goes undetected because routine clinical hearing tests and most hearing aids are currently mostly limited to 8 kHz. EHF hearing has been linked to deficits in speech perception in noise and to self-reported hearing. However, it remains elusive how EHF hearing influences speech intelligibility. Here we recorded neuromagnetic brain responses using magnetoencephalography (MEG) within a frequency-tagging speech paradigm designed to probe hierarchical levels of attention and memory-dependent speech processing and recognition. Auditory evoked cortical magnetic field (AEF) responses were significantly reduced in both left and right brain hemispheres in individuals with impaired EHF hearing compared to those subjects with better EHF hearing. A gradual reinforcement of left-hemispheric AEF seen over age was not observed in young adults (19-29 y) with preserved EHF hearing. This was linked to stronger auditory brainstem responses (ABR), reflecting better neural synchronized auditory responses at stimulus onset. The reinforced left hemispheric dominance in young adults with impaired EHF hearing, in contrast, was linked to lower ABRs. Our findings suggest that through its impact on stimulus-onset synchrony to phase locking of oscillations in the auditory cortex, sound energy above 8 kHz contributes to the intelligibility of speech. Together, the results highlight the need to reconsider EHF hearing in both audiological assessment and hearing-aid design.
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