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带槽噪声揭示了声音包络神经表征的差异改善。

Notched noise reveals differential improvement in the neural representation of the sound envelope.

作者信息

Heeringa Amarins N, Klug Jonas, Köppl Christine, Dietz Mathias

机构信息

Department of Neuroscience, School of Medicine and Health Science, Carl von Ossietzky University Oldenburg, Oldenburg, Germany.

Research Center Neurosensory Science, Carl von Ossietzky University Oldenburg, Oldenburg, Germany.

出版信息

Commun Biol. 2025 Aug 7;8(1):1171. doi: 10.1038/s42003-025-08536-4.

Abstract

Precise temporal coding in auditory nerve fibers is crucial for sound localization and listening in noise. However, at higher sound levels, typical of everyday listening situations, temporal coding to the stimulus envelope is poor in fibers of the on-frequency channel, i.e., those tuned to the carrier stimulus. We predict that changes in cochlear gain improve temporal coding of the stimulus envelope differentially across frequency channels. Both auditory nerve fiber recordings (in Mongolian gerbils of either sex) and human psychophysics confirm that weak temporal coding at higher levels is improved when the target stimulus is presented in a spectrally flanking notched noise designed to reduce the cochlear gain. The proposed mechanism can help to explain the effect of cochlear gain loss, a known consequence of age- and noise-induced hearing loss, on everyday listening, such as problems with speech-in-noise perception and sound localization.

摘要

听觉神经纤维中的精确时间编码对于声音定位和噪声环境下的聆听至关重要。然而,在日常聆听环境中常见的较高声级下,频率匹配通道的纤维(即那些调谐到载波刺激的纤维)对刺激包络的时间编码较差。我们预测,耳蜗增益的变化会在不同频率通道上差异地改善刺激包络的时间编码。听觉神经纤维记录(在不同性别的蒙古沙鼠中)和人类心理物理学均证实,当目标刺激呈现于旨在降低耳蜗增益的频谱侧翼带凹口噪声中时,较高声级下较弱的时间编码会得到改善。所提出的机制有助于解释耳蜗增益损失(年龄和噪声引起的听力损失的已知后果)对日常聆听的影响,例如噪声中言语感知和声音定位方面的问题。

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