成年人工耳蜗植入者语言失聪后的外周神经同步性。

Shuman He, Jeffrey Skidmore, Ian C Bruce, Jacob J Oleson, Yi Yuan
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引用次数: 0

摘要

目的:我们最近开发了一种非侵入性方法来量化人工耳蜗(CI)用户耳蜗神经的神经同步性(即外周神经同步性),这在文献中首次能够评估人工耳蜗用户的这一重要生理现象。本文详细报道了这种新方法。此外,本研究评估了周围神经同步性如何与舌后失聪的成年CI用户在安静和噪声中测量的时间分辨敏锐度和言语感知结果相关。它检验了以下假设:1)不同CI用户的外周神经同步程度不同,2)外周神经的同步性是影响成年CI用户在语言失聪后噪声中的时间分辨敏锐度和言语感知结果的重要因素。设计:研究参与者包括18名语言失聪的成年人工耳蜗使用者™ Nucleus®设备。两名研究参与者被双侧植入,每只耳朵分别接受测试。对于本研究中测试的20只耳朵中的每一只,基于400次电诱发复合动作电位(eCAP)扫描,在电极阵列的四个电极位置(默认电极:3、9、15和21)测量外周神经同步性,并使用名为锁相值(PLV)的指数进行量化。PLV是eCAP扫描/试验之间逐试验阶段一致性的度量,并量化外周神经同步的程度。通过使用三种可选的强迫选择程序测量通道内间隙检测阈值(GDT)来评估时间分辨敏锐度,目标是9名参与者(10耳)的亚组中79.4%的心理测量功能正确率。对于在这些参与者中测试的每只耳朵,在PLV差异较大的两个电极位置测量GDT。对14名参与者的15只耳朵进行了测试,使用辅音核辅音(CNC)单词表评估了语音感知性能,该单词表在安静和噪声中以+10和+5dB的信噪比(SNR)呈现。在控制刺激水平效应后,使用线性混合效应模型(LMM)来评估电极位置对PLV的影响。部分相关试验用于评估PLV和GDT之间的相关性,同时控制刺激水平对GDT的影响。使用配对样本t检验对具有不同PLV的电极对测量的GDT进行比较。在不同条件下测量的PLV和CNC单词得分之间的关联,以及PLV和噪声对CNC单词得分的影响程度之间的关联使用带有Bonferroni校正的Pearson乘积矩相关检验进行评估,以进行多重比较。结果:PLV在研究参与者和电极位置之间存在显著差异。PLV和GDT之间存在显著相关性,其中较高的PLV与较低的GDT相关。PLV与在任何听力条件下测量的CNC单词得分或在+10dB的SNR下呈现的竞争性背景噪声对CNC单词得分的影响没有显著相关性。相反,对于SNR为+5dB的竞争背景噪声,PLV和噪声对CNC单词得分的影响程度之间存在中度负相关。结论:这种新开发的方法可用于评估活体CI用户的外周神经同步性,一种生理现象,可能在决定电听力的听觉感知结果方面发挥重要作用。在语言失聪的成年CI用户中,较低的外周神经同步性与较低的时间分辨率敏锐度和竞争性背景噪声对语音感知性能的较大不利影响有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Peripheral neural synchrony in post-lingually deafened adult cochlear implant users.

Objective: This paper reports a noninvasive method for quantifying neural synchrony in the cochlear nerve (i.e., peripheral neural synchrony) in cochlear implant (CI) users, which allows for evaluating this physiological phenomenon in human CI users for the first time in the literature. In addition, this study assessed how peripheral neural synchrony was correlated with temporal resolution acuity and speech perception outcomes measured in quiet and in noise in post-lingually deafened adult CI users. It tested the hypothesis that peripheral neural synchrony was an important factor for temporal resolution acuity and speech perception outcomes in noise in post-lingually deafened adult CI users.

Design: Study participants included 24 post-lingually deafened adult CI users with a Cochlear Nucleus® device. Three study participants were implanted bilaterally, and each ear was tested separately. For each of the 27 implanted ears tested in this study, 400 sweeps of the electrically evoked compound action potential (eCAP) were measured at four electrode locations across the electrode array. Peripheral neural synchrony was quantified at each electrode location using the phase locking value (PLV), which is a measure of trial-by-trial phase coherence among eCAP sweeps/trials. Temporal resolution acuity was evaluated by measuring the within-channel gap detection threshold (GDT) using a three-alternative, forced-choice procedure in a subgroup of 20 participants (23 implanted ears). For each ear tested in these participants, GDTs were measured at two electrode locations with a large difference in PLVs. For 26 implanted ears tested in 23 participants, speech perception performance was evaluated using Consonant-Nucleus-Consonant (CNC) word lists presented in quiet and in noise at signal-to-noise ratios (SNRs) of +10 and +5 dB. Linear Mixed effect Models were used to evaluate the effect of electrode location on the PLV and the effect of the PLV on GDT after controlling for the stimulation level effects. Pearson product-moment correlation tests were used to assess the correlations between PLVs, CNC word scores measured in different conditions, and the degree of noise effect on CNC word scores.

Results: There was a significant effect of electrode location on the PLV after controlling for the effect of stimulation level. There was a significant effect of the PLV on GDT after controlling for the effects of stimulation level, where higher PLVs (greater synchrony) led to lower GDTs (better temporal resolution acuity). PLVs were not significantly correlated with CNC word scores measured in any listening condition or the effect of competing background noise presented at a SNR of +10 dB on CNC word scores. In contrast, there was a significant negative correlation between the PLV and the degree of noise effect on CNC word scores for a competing background noise presented at a SNR of +5 dB, where higher PLVs (greater synchrony) correlated with smaller noise effects on CNC word scores.

Conclusions: This newly developed method can be used to assess peripheral neural synchrony in CI users, a physiological phenomenon that has not been systematically evaluated in electrical hearing. Poorer peripheral neural synchrony leads to lower temporal resolution acuity and is correlated with a larger detrimental effect of competing background noise presented at a SNR of 5 dB on speech perception performance in post-lingually deafened adult CI users.

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