Loudness perception and late auditory evoked potentials in adult cochlear implant users

U. Hoppe, F. Rosanowski, H. Iro, U. Eysholdt
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引用次数: 41

Abstract

In clinical routine the adjustment of speech processors in cochlear implant users is based on the patients' subjective statements about the loudness of specific electrical stimuli. From hearing patients it is known that the latencies and amplitudes of late auditory evoked potentials (LAEP) which are generated within the auditory cortex correlate with the loudness perception of acoustical stimuli. The aim of this study was to investigate the correlation between LAEP and loudness perception in adult cochlear implant users. We investigated 8 adult subjects who had been provided with a 22 electrode Cochlear Implant (nucleus® CI24M) at least 6 months prior to the investigation. All subjects showed open speech understanding. Electrical pulse trains of 300 ms duration presented at a single electrode served as stimuli. Electrically LAEP morphologies were similar to normal hearing subjects. In all subjects and each intracochlear electrode position LAEP were well identifiable down to low loudness sensations. Both amplitudes and latencies depended on the loudness perception. The best correlation was observed for the N1 deflection. The results show that LAEP can be used for estimation of both hearing thresholds and most comfortable levels.
成人人工耳蜗使用者的响度知觉与晚期听觉诱发电位
在临床常规中,人工耳蜗使用者的语音处理器的调整是基于患者对特定电刺激响度的主观陈述。从听力正常的患者中,我们知道听觉皮层内产生的晚期听觉诱发电位(LAEP)的潜伏期和振幅与声刺激的响度感知有关。本研究旨在探讨成人人工耳蜗使用者LAEP与响度知觉的关系。我们调查了8名成人受试者,他们在调查前至少6个月接受了22电极人工耳蜗(nucleus®CI24M)。所有受试者均表现出开放的言语理解能力。在单个电极上呈现持续300毫秒的电脉冲序列作为刺激。电LAEP形态与正常听力受试者相似。在所有受试者和每个耳蜗内电极位置,LAEP可以很好地识别到低响度感觉。振幅和潜伏期都取决于响度感知。N1偏转的相关性最好。结果表明,LAEP可用于估计听力阈值和最舒适水平。
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