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低频残余听力的人工耳蜗使用者中电刺激与声刺激之间的同时掩蔽

Simultaneous masking between electric and acoustic stimulation in cochlear implant users with residual low-frequency hearing.

作者信息

Krüger Benjamin, Büchner Andreas, Nogueira Waldo

机构信息

Department of Otolaryngology, Hannover Medical School, Cluster of Excellence Hearing4all, Hannover, Germany.

出版信息

Hear Res. 2017 Sep;353:185-196. doi: 10.1016/j.heares.2017.06.014. Epub 2017 Jun 30.

Abstract

Ipsilateral electric-acoustic stimulation (EAS) is becoming increasingly important in cochlear implant (CI) treatment. Improvements in electrode designs and surgical techniques have contributed to improved hearing preservation during implantation. Consequently, CI implantation criteria have been expanded toward people with significant residual low-frequency hearing, who may benefit from the combined use of both the electric and acoustic stimulation in the same ear. However, only few studies have investigated the mutual interaction between electric and acoustic stimulation modalities. This work characterizes the interaction between both stimulation modalities using psychophysical masking experiments and cone beam computer tomography (CBCT). Two psychophysical experiments for electric and acoustic masking were performed to measure the hearing threshold elevation of a probe stimulus in the presence of a masker stimulus. For electric masking, the probe stimulus was an acoustic tone while the masker stimulus was an electric pulse train. For acoustic masking, the probe stimulus was an electric pulse train and the masker stimulus was an acoustic tone. Five EAS users, implanted with a CI and ipsilateral residual low-frequency hearing, participated in the study. Masking was determined at different electrodes and different acoustic frequencies. CBCT scans were used to determine the individual place-pitch frequencies of the intracochlear electrode contacts by using the Stakhovskaya place-to-frequency transformation. This allows the characterization of masking as a function of the difference between electric and acoustic stimulation sites, which we term the electric-acoustic frequency difference (EAFD). The results demonstrate a significant elevation of detection thresholds for both experiments. In electric masking, acoustic-tone thresholds increased exponentially with decreasing EAFD. In contrast, for the acoustic masking experiment, threshold elevations were present regardless of the tested EAFDs. Based on the present findings, we conclude that there is an asymmetry between the electric and the acoustic masker modalities. These observations have implications for the design and fitting of EAS sound-coding strategies.

摘要

同侧电声刺激(EAS)在人工耳蜗(CI)治疗中变得越来越重要。电极设计和手术技术的改进有助于在植入过程中更好地保留听力。因此,CI植入标准已扩大到具有显著残余低频听力的人群,他们可能受益于同一只耳朵中电刺激和声刺激的联合使用。然而,只有少数研究调查了电刺激和声刺激方式之间的相互作用。这项工作通过心理物理学掩蔽实验和锥束计算机断层扫描(CBCT)来表征两种刺激方式之间的相互作用。进行了两项关于电掩蔽和声掩蔽的心理物理学实验,以测量在存在掩蔽刺激的情况下探测刺激的听力阈值升高情况。对于电掩蔽,探测刺激是纯音,而掩蔽刺激是电脉冲序列。对于声掩蔽,探测刺激是电脉冲序列,掩蔽刺激是纯音。五名植入CI且同侧有残余低频听力的EAS使用者参与了这项研究。在不同电极和不同声频率下确定掩蔽情况。通过使用斯塔霍夫斯卡娅位置到频率变换,CBCT扫描用于确定耳蜗内电极触点的个体位置-音高频率。这使得能够将掩蔽表征为电刺激和声刺激部位之间差异的函数,我们将其称为电声频率差(EAFD)。结果表明,两项实验的探测阈值均有显著升高。在电掩蔽中,纯音阈值随着EAFD的减小呈指数增加。相比之下,对于声掩蔽实验,无论测试的EAFD如何,阈值都会升高。基于目前的研究结果,我们得出结论,电掩蔽和声掩蔽方式之间存在不对称性。这些观察结果对EAS声音编码策略的设计和调试具有重要意义。

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