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Effects of the number of channels and speech-to-noise ratio on rate of connected discourse tracking through a simulated cochlear implant speech processor.

机译:通过模拟的人工耳蜗语音处理器,通道数量和语音噪声比对连接话语跟踪速率的影响。

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OBJECTIVE: To investigate the effects of number of channels and speech-to-noise ratio on connected discourse tracking (CDT) through simulations of cochlear implant speech processing. Previous studies have used citation-form vowel and consonant materials or simple sentences. CDT rates were expected to be less likely to be limited by ceiling effects and more representative of everyday speech communication. DESIGN: Four normal-hearing subjects were presented with speech processed through a real-time sine-excited vocoder having three, four, eight, or 12 channels. Amplitude envelopes extracted from each band modulated sinusoidal carrier signals placed at each band center frequency. Speech-spectrum shaped noise was added to speech before vocoder processing at three signal to noise ratios based on real-time measurements of speech level (+7, +12, +17 dB). RESULTS: CDT rates increased significantly with number of channels up to eight in both quiet and noise, and decreased significantly with each increase in noise level from quiet. CONCLUSIONS: The effects on CDT rates of the number of channels and speech-to-noise ratio are highly correlated with intelligibility measures for Hearing in Noise Test (HINT) sentences, consonants and vowels. However, HINT sentence scores even in noise show ceiling effects that obscure the advantages of processors with eight or more channels. Moderate levels of noise that have only slight effects on other measures significantly affected CDT rate. CDT rates with three or four bands of spectral information were much lower than asymptotic rates, especially in the presence of noise.
机译:目的:通过模拟人工耳蜗的语音处理,研究通道数和语音噪声比对连接话语跟踪(CDT)的影响。先前的研究已经使用了引文形式的元音和辅音材料或简单的句子。预计CDT率受天花板效应的影响较小,而更能代表日常语音交流。设计:向四个听力正常的受试者演示语音,这些语音是通过具有三个,四个,八个或十二个通道的实时正弦激励声码器处理的。从放置在每个频带中心频率处的每个频带调制正弦载波信号中提取的幅度包络。语音频谱形状的噪声已添加到语音中,然后根据语音电平的实时测量(+ 7,+ 12,+ 17 dB)以三种信噪比进行声码器处理。结果:静噪和噪声中CDT速率随通道数的增加而显着增加,多达8个,而静噪时的噪声水平每升高,CDT率均显着下降。结论:对CDT率的影响通道数量和语音噪声比与噪声测试(HINT)句子,辅音和元音的清晰度有关。但是,即使在噪声中,提示语句的分数也会显示出上限效果,从而掩盖了具有八个或更多通道的处理器的优势。中等水平的噪声仅对其他措施产生轻微影响,从而显着影响CDT速率。具有三或四个光谱信息带的CDT速率远低于渐近速率,尤其是在存在噪声的情况下。

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