首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Speech recognition with the advanced combination encoder and transient emphasis spectral maxima strategies in nucleus 24 recipients.
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Speech recognition with the advanced combination encoder and transient emphasis spectral maxima strategies in nucleus 24 recipients.

机译:使用高级组合编码器和瞬态强调频谱最大值策略对24个核接收者进行语音识别。

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摘要

One of the difficulties faced by cochlear implant (CI) recipients is perception of low-intensity speech cues. A. E. Vandali (2001) has developed the transient emphasis spectral maxima (TESM) strategy to amplify short-duration, low-level sounds. The aim of the present study was to determine whether speech scores would be significantly higher with TESM than with the advanced combination encoder (ACE) strategy fitted using procedures that optimize perception of soft speech and other sounds. Eight adult recipients of the Nucleus 24 CI system participated in this study. No significant differences in scores were seen between ACE and TESM for consonant-vowel nucleus-consonant (CNC) words presented at 55 and 65 dB SPL, for sentences in noise presented at 65 dB SPL at 2 different signal-to-noise ratios, or for closed-set vowels and consonants presented at 60 dB SPL. However, perception of stop consonants within CNC words presented at the lower level (55 dB SPL) was significantly higher with TESM than ACE. In addition, percentage of information transmitted for words at 55 dB SPL was significantly higher with TESM than with ACE for manner and voicing features for consonants in the initial word position. Analysis of closed-set consonants presented at 60 dB SPL revealed percentage of information transmitted for manner was significantly higher with TESM than with ACE. These improvements with TESM were small compared with those reported by Vandali for recipients of the Nucleus 22 CI system. It appears that mapping techniques used to program speech processors and improved processing capabilities of the Nucleus 24 system contributed to soft sounds being understood almost as well with ACE as with TESM. However, half of the participants preferred TESM to ACE for use in everyday life, and all but 1 used TESM in specific listening situations. Clinically, TESM may be useful to ensure the audibility of low-intensity, short-duration acoustic cues that are important for understanding speech, for recipients who are difficult to map, or if insufficient time precludes the use of mapping techniques to increase audibility of soft sound.
机译:人工耳蜗(CI)接收者面临的困难之一是对低强度语音提示的感知。 A. E. Vandali(2001)开发了瞬态强调频谱最大值(TESM)策略来放大持续时间短的低级声音。本研究的目的是确定使用TESM进行语音评分是否比使用优化对软语音和其他声音的感知的过程进行拟合的高级组合编码器(ACE)策略高得多。 Nucleus 24 CI系统的八位成人接受者参加了这项研究。在55 dB和65 dB SPL时,ACE和TESM的辅音元音核子(CNC)单词得分没有明显差异;对于在两种不同信噪比下以65 dB SPL呈现的噪音句子,或用于60 dB SPL的封闭式元音和辅音。但是,TESM较ACE在较低水平(55 dB SPL)呈现的CNC单词中的停止辅音的感知明显更高。此外,TESM在55 dB SPL下为单词传送的信息百分比明显高于初始单词位置中辅音的方式和发声功能。对以60 dB SPL呈现的闭音辅音的分析表明,TESM方式传播的信息百分比显着高于ACE。与Vandali报告的Nucleus 22 CI系统接收者相比,TESM的这些改进很小。看来,用于对语音处理器进行编程的映射技术以及Nucleus 24系统的改进的处理能力有助于使ACE和TESM几乎都能理解柔和的声音。但是,有一半的参与者在日常生活中更喜欢使用TESM而不是ACE,只有1名参与者在特定的聆听情况下使用了TESM。在临床上,TESM可能对确保低强度,短时声提示的可听性很有用,这对于理解语音,难以映射的接收者或如果时间不足会阻止使用映射技术来增加软声的听觉性非常重要。声音。

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