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听觉增强及频谱分辨率在正常听力者和人工耳蜗使用者中的作用。

Auditory enhancement and the role of spectral resolution in normal-hearing listeners and cochlear-implant users.

机构信息

Department of Psychology, University of Minnesota, N218 Elliott Hall, 75 East River Parkway, Minneapolis, Minnesota 55455, USA.

出版信息

J Acoust Soc Am. 2018 Aug;144(2):552. doi: 10.1121/1.5048414.

Abstract

Detection of a target tone in a simultaneous multi-tone masker can be improved by preceding the stimulus with the masker alone. The mechanisms underlying this auditory enhancement effect may enable the efficient detection of new acoustic events and may help to produce perceptual constancy under varying acoustic conditions. Previous work in cochlear-implant (CI) users has suggested reduced or absent enhancement, due perhaps to poor spatial resolution in the cochlea. This study used a supra-threshold enhancement paradigm that in normal-hearing listeners results in large enhancement effects, exceeding 20 dB. Results from vocoder simulations using normal-hearing listeners showed that near-normal enhancement was observed if the simulated spread of excitation was limited to spectral slopes no shallower than 24 dB/oct. No significant enhancement was observed on average in CI users with their clinical monopolar stimulation strategy. The variability in enhancement between CI users, and between electrodes in a single CI user, could not be explained by the spread of excitation, as estimated from auditory nerve evoked potentials. Enhancement remained small, but did reach statistical significance, under the narrower partial-tripolar stimulation strategy. The results suggest that enhancement may be at least partially restored by improvements in the spatial resolution of current CIs.

摘要

在同时存在的多音掩蔽下检测目标音,可以通过在刺激前单独呈现掩蔽器来改善。这种听觉增强效应的机制可能使新的声音事件的检测更加有效,并有助于在不同的声音条件下产生知觉恒常性。先前在人工耳蜗(CI)使用者中的研究表明,由于耳蜗的空间分辨率较差,增强效果可能会降低或不存在。本研究使用了一种阈上增强范式,在正常听力者中,这种范式会产生很大的增强效果,超过 20dB。使用正常听力者进行声码器模拟的结果表明,如果模拟的激励扩展仅限于斜率不陡于 24dB/oct 的频谱,则可以观察到接近正常的增强。使用临床单极刺激策略的 CI 用户平均观察不到显著的增强。CI 用户之间以及单个 CI 用户的电极之间的增强变异性不能用听神经诱发电位估计的激励扩展来解释。在更窄的部分三极刺激策略下,增强仍然很小,但达到了统计学意义。结果表明,通过提高当前 CI 的空间分辨率,增强效果可能至少部分得到恢复。

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