Acoustic and articulatory measures of sibilant production with and without auditory feedback from a cochlear implant.

M L Matthies, M Svirsky, J Perkell, H Lane
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引用次数: 47

Abstract

The articulator positions of a subject with a cochlear implant were measured with an electromagnetic midsagittal articulometer (EMMA) system with and without auditory feedback available to the subject via his implant. Acoustic analysis of sibilant productions included specific measures of their spectral properties as well as the F3 formant amplitude. More general postural characteristics of the utterances, such as speech rate and sound level, were measured as well. Because of the mechanical and aerodynamic interdependence of the articulators, the postural variables must be considered before attributing speech improvement to the selective correction of a phonemic target with the use of auditory feedback. The tongue blade position was related to the shape and central tendency of the /integral of/ spectra; however, changes in the spectral contrast between /s/ and /integral of/ were not related to changes in the more general postural variables of rate and sound level. These findings suggest that the cochlear implant is providing this subject with important auditory cues that he can use to monitor his speech and maintain the phonemic contrast between /s/ and /integral of/.

植入人工耳蜗后有无听觉反馈的噪音产生的声学和发音测量。
使用电磁正中矢状关节计(EMMA)系统测量植入人工耳蜗受试者的关节位置,并通过植入物向受试者提供听觉反馈。对产生的噪声进行声学分析,包括对其频谱特性以及F3形成峰幅度的具体测量。说话的更一般的姿势特征,如语速和声级,也被测量。由于发音器的机械和空气动力学相互依赖,在将语音改善归因于使用听觉反馈对音位目标的选择性纠正之前,必须考虑姿势变量。舌刃位置与光谱/积分的形状和集中趋势有关;然而,/s/和/积分之间的光谱对比变化与更一般的姿势变量速率和声级的变化无关。这些发现表明,人工耳蜗为受试者提供了重要的听觉线索,他可以利用这些线索来监控自己的语言,并维持/s/和/的/积分之间的音位对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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