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Psychophysical Properties of Low-Frequency Hearing: Implications for Perceiving Speech and Music via Electric and Acoustic Stimulation

机译:低频听力的心理生理特性:通过电和声刺激感知语音和音乐的含义

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摘要

We have investigated the psychophysical properties of low-frequency hearing, both before and after implantation, to see if we can account for the benefit to speech understanding and melody recognition of adding acoustic stimulation to electric stimulation. In this paper, we review our work and the work of others and describe preliminary results not previously published. We show (a) that it is possible to preserve normal or near-normal nonlinear cochlear processing in the implanted ear following electric and acoustic stimulation surgery - though this is not the typical outcome; (b) that although low-frequency frequency selectivity is generally disrupted following implantation, some degree of frequency selectivity can be preserved, and (c) that neither nonlinear cochlear processing nor frequency selectivity in the acoustic hearing ear is correlated with the gain in speech understanding afforded by combined electric and acoustic stimulation. In another set of experiments, we show that the value of preserving hearing in the implanted ear is best seen in complex listening environments in which binaural cues can play a role in perception.
机译:我们已经研究了低频听力在植入前后的心理物理特性,以了解我们是否可以解释将声刺激添加到电刺激中对语音理解和旋律识别的好处。在本文中,我们回顾了我们的工作以及其他人的工作,并描述了以前未曾发表过的初步结果。我们证明(a)在电刺激和声刺激手术后,可以在植入的耳朵中保留正常或接近正常的非线性耳蜗加工-尽管这不是典型的结果; (b)尽管植入后通常会破坏低频频率选择性,但可以保留一定程度的频率选择性,并且(c)听觉耳朵中的非线性耳蜗处理和频率选择性都与语音理解的增益无关通过电刺激和声刺激联合提供。在另一组实验中,我们表明,在双耳提示可在感知中发挥作用的复杂聆听环境中,最好看到在植入的耳朵中保持听力的价值。

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