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在人工耳蜗模拟中,对尖峰频率区域进行感知对齐会导致更多的言语双耳融合。

Perceptually aligning apical frequency regions leads to more binaural fusion of speech in a cochlear implant simulation.

作者信息

Staisloff Hannah E, Lee Daniel H, Aronoff Justin M

机构信息

Department of Speech and Hearing Science, University of Illinois at Urbana-Champaign, 901 S. 6th St, Champaign, IL 61820, USA.

出版信息

Hear Res. 2016 Jul;337:59-64. doi: 10.1016/j.heares.2016.05.002. Epub 2016 May 18.

Abstract

For bilateral cochlear implant users, the left and right arrays are typically not physically aligned, resulting in a degradation of binaural fusion, which can be detrimental to binaural abilities. Perceptually aligning the two arrays can be accomplished by disabling electrodes in one ear that do not have a perceptually corresponding electrode in the other side. However, disabling electrodes at the edges of the array will cause compression of the input frequency range into a smaller cochlear extent, which may result in reduced spectral resolution. An alternative approach to overcome this mismatch would be to only align one edge of the array. By aligning either only the apical or basal end of the arrays, fewer electrodes would be disabled, potentially causing less reduction in spectral resolution. The goal of this study was to determine the relative effect of aligning either the basal or apical end of the electrode with regards to binaural fusion. A vocoder was used to simulate cochlear implant listening conditions in normal hearing listeners. Speech signals were vocoded such that the two ears were either predominantly aligned at only the basal or apical end of the simulated arrays. The experiment was then repeated with a spectrally inverted vocoder to determine whether the detrimental effects on fusion were related to the spectral-temporal characteristics of the stimuli or the location in the cochlea where the misalignment occurred. In Experiment 1, aligning the basal portion of the simulated arrays led to significantly less binaural fusion than aligning the apical portions of the simulated array. However, when the input was spectrally inverted, aligning the apical portion of the simulated array led to significantly less binaural fusion than aligning the basal portions of the simulated arrays. These results suggest that, for speech, with its predominantly low frequency spectral-temporal modulations, it is more important to perceptually align the apical portion of the array to better preserve binaural fusion. By partially aligning these arrays, cochlear implant users could potentially increase their ability to fuse speech sounds presented to the two ears while maximizing spectral resolution.

摘要

对于双侧人工耳蜗使用者,左右电极阵列通常在物理上未对齐,导致双耳融合能力下降,这可能对双耳听觉能力产生不利影响。通过禁用一侧耳朵中在另一侧没有感知上对应电极的电极,可以实现两个阵列的感知对齐。然而,禁用阵列边缘的电极会导致输入频率范围压缩到较小的耳蜗范围,这可能会降低频谱分辨率。克服这种不匹配的另一种方法是仅对齐阵列的一个边缘。通过仅对齐阵列的顶端或基部末端,将有更少的电极被禁用,从而可能减少频谱分辨率的降低。本研究的目的是确定对齐电极的基部或顶端末端对双耳融合的相对影响。使用声码器在正常听力的听众中模拟人工耳蜗的聆听条件。对语音信号进行声码处理,使两只耳朵主要仅在模拟阵列的基部或顶端末端对齐。然后使用频谱反转的声码器重复该实验,以确定对融合的不利影响是与刺激的频谱 - 时间特征有关,还是与发生未对齐的耳蜗位置有关。在实验1中,对齐模拟阵列的基部部分导致的双耳融合明显少于对齐模拟阵列的顶端部分。然而,当输入频谱反转时,对齐模拟阵列的顶端部分导致的双耳融合明显少于对齐模拟阵列的基部部分。这些结果表明,对于语音,由于其主要是低频频谱 - 时间调制,在感知上对齐阵列的顶端部分以更好地保留双耳融合更为重要。通过部分对齐这些阵列,人工耳蜗使用者有可能提高融合呈现给两只耳朵的语音声音的能力,同时最大限度地提高频谱分辨率。

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