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非对称时间包络敏感度:双侧人工耳蜗植入者的同耳和对耳包络比较。

Asymmetric temporal envelope sensitivity: Within- and across-ear envelope comparisons in listeners with bilateral cochlear implants.

机构信息

Waisman Center, University of Wisconsin-Madison, Madison, Wisconsin 53705, USA.

School of Engineering, Macquarie University, Sydney, New South Wales 2109, Australia.

出版信息

J Acoust Soc Am. 2022 Dec;152(6):3294. doi: 10.1121/10.0016365.

Abstract

For listeners with bilateral cochlear implants (BiCIs), patient-specific differences in the interface between cochlear implant (CI) electrodes and the auditory nerve can lead to degraded temporal envelope information, compromising the ability to distinguish between targets of interest and background noise. It is unclear how comparisons of degraded temporal envelope information across spectral channels (i.e., electrodes) affect the ability to detect differences in the temporal envelope, specifically amplitude modulation (AM) rate. In this study, two pulse trains were presented simultaneously via pairs of electrodes in different places of stimulation, within and/or across ears, with identical or differing AM rates. Results from 11 adults with BiCIs indicated that sensitivity to differences in AM rate was greatest when stimuli were paired between different places of stimulation in the same ear. Sensitivity from pairs of electrodes was predicted by the poorer electrode in the pair or the difference in fidelity between both electrodes in the pair. These findings suggest that electrodes yielding poorer temporal fidelity act as a bottleneck to comparisons of temporal information across frequency and ears, limiting access to the cues used to segregate sounds, which has important implications for device programming and optimizing patient outcomes with CIs.

摘要

对于双侧人工耳蜗植入者(BiCIs)来说,耳蜗植入(CI)电极与听神经之间的界面存在个体差异,这可能导致时间包络信息的恶化,从而影响区分目标和背景噪声的能力。目前尚不清楚跨频谱通道(即电极)比较时间包络信息的恶化如何影响检测时间包络差异的能力,特别是调幅(AM)率。在这项研究中,通过不同刺激部位的电极对,在同侧或对侧耳内或跨耳内同时呈现两个脉冲串,其 AM 率相同或不同。11 名双侧人工耳蜗植入者的研究结果表明,当刺激在同侧的不同刺激部位配对时,对 AM 率差异的敏感性最大。电极对的敏感性由对中较差的电极或对中两个电极之间的保真度差异来预测。这些发现表明,产生较差时间保真度的电极充当了跨频率和耳朵比较时间信息的瓶颈,限制了对用于分离声音的线索的获取,这对人工耳蜗设备的编程和优化患者的植入效果具有重要意义。

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