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人工耳蜗植入后同侧仍有残余听力的患者中,不同相间间隙下电脉冲刺激时听神经反应的幅度增长函数

Amplitude Growth Functions of Auditory Nerve Responses to Electric Pulse Stimulation With Varied Interphase Gaps in Cochlear Implant Users With Ipsilateral Residual Hearing.

作者信息

Imsiecke Marina, Büchner Andreas, Lenarz Thomas, Nogueira Waldo

机构信息

Clinic for Otorhinolaryngology, Hannover Medical School, Hannover, Germany.

Cluster of Excellence "Hearing4All," Hannover, Germany.

出版信息

Trends Hear. 2021 Jan-Dec;25:23312165211014137. doi: 10.1177/23312165211014137.

Abstract

Amplitude growth functions (AGFs) of electrically evoked compound action potentials (eCAPs) with varying interphase gaps (IPGs) were measured in cochlear implant users with ipsilateral residual hearing (electric-acoustic stimulation [EAS]). It was hypothesized that IPG effects on AGFs provide an objective measure to estimate neural health. This hypothesis was tested in EAS users, as residual low-frequency hearing might imply survival of hair cells and hence better neural health in apical compared to basal cochlear regions. A total of 16 MED-EL EAS subjects participated, as well as a control group of 16 deaf cochlear implant users. The IPG effect on the AGF characteristics of slope, threshold, dynamic range, and stimulus level at 50% maximum eCAP amplitude (level) was investigated. AGF threshold and level were significantly affected by the IPG in both EAS and control group. The magnitude of AGF characteristics correlated with electrode impedance and electrode-modiolus distance (EMD) in both groups. In contrast, the change of the AGF characteristics with increasing IPG was independent of these electrode-specific measures. The IPG effect on the AGF level in both groups, as well as on the threshold in EAS users, correlated with the duration of hearing loss, which is a predictor of neural health. In EAS users, a significantly different IPG effect on level was found between apical and medial electrodes. This outcome is consistent with our hypothesis that the influence of IPG effects on AGF characteristics provides a sensitive measurement and may indicate better neural health in the apex compared to the medial cochlear region in EAS users.

摘要

在具有同侧残余听力(电声刺激[EAS])的人工耳蜗使用者中,测量了不同相间间隙(IPG)下电诱发复合动作电位(eCAP)的振幅增长函数(AGF)。据推测,IPG对AGF的影响提供了一种估计神经健康的客观指标。在EAS使用者中对这一假设进行了检验,因为残余低频听力可能意味着毛细胞存活,因此与蜗底区域相比,蜗顶的神经健康状况更好。共有16名MED-EL EAS受试者以及16名失聪人工耳蜗使用者组成的对照组参与。研究了IPG对AGF斜率、阈值、动态范围以及在最大eCAP振幅50%时的刺激水平(电平)等特征的影响。在EAS组和对照组中,AGF阈值和电平均受到IPG的显著影响。两组中AGF特征的大小与电极阻抗和电极-蜗轴距离(EMD)相关。相比之下,AGF特征随IPG增加的变化与这些特定电极的测量指标无关。两组中IPG对AGF电平的影响以及EAS使用者中对阈值的影响均与听力损失持续时间相关,听力损失持续时间是神经健康的一个预测指标。在EAS使用者中,发现蜗顶电极和中间电极之间在IPG对电平的影响上存在显著差异。这一结果与我们的假设一致,即IPG对AGF特征的影响提供了一种敏感的测量方法,并且可能表明在EAS使用者中,与蜗中区域相比,蜗顶的神经健康状况更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f109/8243142/7dab454776be/10.1177_23312165211014137-fig1.jpg

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