Otoacoustic emission estimates of human basilar membrane impulse response duration and cochlear filter tuning.

Hear Res

Dept. of Medical Physics and Acoustics, Carl von Ossietzky University Oldenburg, 26129 Oldenburg, Germany. Electronic address:

Published: December 2016

This study describes a method based on temporal suppression of click-evoked otoacoustic emissions (CEOAEs) to estimate the time course and duration of human basilar membrane impulse responses (BM IRs). This was achieved by tracing the suppression of dominant peaks in the CEOAE spectrum as a function of the temporal separation between two equal-level stimulus clicks. The relationship between the suppression pattern and underlying BM IR duration near the generation site of the CEOAE frequency was established using model simulations. To relate BM IR duration estimates to cochlear filter tuning (Q), a tuning ratio was derived from available BM IR measurements in animals. Results for 11 normal-hearing subjects yielded BM IR duration estimates of 37.4/F ms at 65 dB peSPL and 36.4/F ms at 71 dB peSPL, with F in kHz. Corresponding Q estimates were 14.2F[in kHz] at 65 dB peSPL and 13.8F[in kHz] at 71 dB peSPL. Because the proposed temporal suppression method relies on cochlear nonlinearity, the method is applicable for stimulus levels above 30-40 dB SPL and complements existing OAE methods to assess human cochlear filter tuning.

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http://dx.doi.org/10.1016/j.heares.2016.10.016DOI Listing

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