Peripheral Neural Synchrony in Postlingually Deafened Adult Cochlear Implant Users.

IF 2.6 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Ear and Hearing Pub Date : 2024-09-01 Epub Date: 2024-03-20 DOI:10.1097/AUD.0000000000001502
Shuman He, Jeffrey Skidmore, Ian C Bruce, Jacob J Oleson, Yi Yuan
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引用次数: 0

Abstract

Objectives: 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 postlingually 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 postlingually deafened adult CI users.

Design: Study participants included 24 postlingually 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 an 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 an 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 an SNR of 5 dB on speech perception performance in postlingually deafened adult CI users.

舌后失聪成人人工耳蜗使用者的外周神经同步性。
目的:本文报告了一种量化人工耳蜗(CI)用户耳蜗神经同步性(即外周神经同步性)的无创方法,这在文献中首次对人类 CI 用户的这一生理现象进行了评估。此外,本研究还评估了外周神经同步与舌后聋成年 CI 用户在安静和噪音环境下测量的时间分辨率敏锐度和言语感知结果之间的相关性。该研究验证了一个假设,即外周神经同步性是影响语后聋成人 CI 用户在噪声中的时间分辨率敏锐度和言语感知结果的一个重要因素:研究参与者包括 24 名舌后失聪的成年 CI 用户,他们都安装了 Cochlear™ Nucleus® 设备。其中 3 名研究人员是双侧植入,每只耳朵分别进行测试。本研究测试了 27 只植入耳,在电极阵列的四个电极位置分别测量了 400 次电诱发复合动作电位(eCAP)扫描。使用锁相值(PLV)对每个电极位置的外周神经同步性进行量化,锁相值是 eCAP 扫频/试次之间逐次试验相位一致性的测量值。在 20 名参与者(23 只植入耳)的子组中,使用三选一、强迫选择程序测量通道内间隙检测阈值 (GDT),以评估时间分辨率敏锐度。对这些参与者的每只耳朵进行测试时,都在 PLV 差异较大的两个电极位置测量了 GDT。对 23 名受试者的 26 只植入耳进行了测试,使用辅音-核-辅音(CNC)单词表在安静和噪声环境下以 +10 和 +5 dB 的信噪比(SNR)进行了语音感知性能评估。线性混合效应模型用于评估电极位置对 PLV 的影响,以及在控制刺激水平影响后 PLV 对 GDT 的影响。使用皮尔逊积矩相关检验来评估 PLV、不同条件下测得的 CNC 单词分数以及噪声对 CNC 单词分数的影响程度之间的相关性:结果:在控制了刺激水平的影响后,电极位置对 PLV 有显著影响。在控制了刺激水平的影响后,PLV 对 GDT 有明显影响,PLV 越高(同步性越强),GDT 越低(时间分辨率敏锐度越高)。PLV 与在任何听力条件下测得的 CNC 单词分数或信噪比为 +10 dB 的竞争背景噪声对 CNC 单词分数的影响均无明显相关性。相反,对于信噪比为 +5 dB 的竞争背景噪声,PLV 与噪声对 CNC 单词得分的影响程度之间存在明显的负相关,PLV 越高(同步性越强),噪声对 CNC 单词得分的影响就越小:这种新开发的方法可用于评估 CI 用户的外周神经同步性,这一生理现象尚未在电听觉中进行过系统评估。较差的外周神经同步性会导致较低的时间分辨率敏锐度,并与信噪比为 5 dB 的竞争背景噪声对舌后失聪成人 CI 用户的言语感知能力产生的较大有害影响相关。
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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来源期刊
Ear and Hearing
Ear and Hearing 医学-耳鼻喉科学
CiteScore
5.90
自引率
10.80%
发文量
207
审稿时长
6-12 weeks
期刊介绍: From the basic science of hearing and balance disorders to auditory electrophysiology to amplification and the psychological factors of hearing loss, Ear and Hearing covers all aspects of auditory and vestibular disorders. This multidisciplinary journal consolidates the various factors that contribute to identification, remediation, and audiologic and vestibular rehabilitation. It is the one journal that serves the diverse interest of all members of this professional community -- otologists, audiologists, educators, and to those involved in the design, manufacture, and distribution of amplification systems. The original articles published in the journal focus on assessment, diagnosis, and management of auditory and vestibular disorders.
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