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首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Speech perception with music maskers by cochlear implant users and normal-hearing listeners
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Speech perception with music maskers by cochlear implant users and normal-hearing listeners

机译:人工耳蜗植入者和听力正常的听众通过音乐掩蔽器进行语音感知

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Purpose: The goal of this study was to investigate how the spectral and temporal properties in background music may interfere with cochlear implant (CI) and normal-hearing listeners' (NH) speech understanding. Method: Speech-recognition thresholds (SRTs) were adaptively measured in 11 CI and 9 NH subjects. CI subjects were tested while using their clinical processors; NH subjects were tested while listening to unprocessed audio. Speech was presented with different music maskers (excerpts from musical pieces) and with steady, speech-shaped noise. To estimate the contributions of energetic and informational masking, SRTs were also measured in "music-shaped noise" and in music-shaped noise modulated by the music temporal envelopes. Results: NH performance was much better than CI performance. For both subject groups, SRTs were much lower with the music-related maskers than with speech-shaped noise. SRTs were strongly predicted by the amount of energetic masking in the music maskers. Unlike CI users, NH listeners obtained release from masking with envelope and fine structure cues in the modulated noise and music maskers. Conclusions: Although speech understanding was greatly limited by energetic masking in both subject groups, CI performance worsened as more spectrotemporal complexity was added to the maskers, most likely due to poor spectral resolution.
机译:目的:本研究的目的是研究背景音乐中的频谱和时间特性如何干扰人工耳蜗(CI)和正常听众的听众(NH)的语音理解。方法:在11名CI和9名NH受试者中自适应地测量了语音识别阈值(SRT)。 CI受试者在使用其临床处理器时进行了测试; NH对象在收听未处理的音频时进行了测试。演讲用不同的音乐掩蔽器(音乐作品的摘录)和稳定的语音形噪声来呈现。为了估计能量和信息掩蔽的作用,还对“音乐形噪声”和由音乐时间包络调制的音乐形噪声中的SRT进行了测量。结果:NH性能远胜于CI性能。对于两个主题组,与音乐相关的掩蔽器的SRT都比语音形噪声低得多。通过音乐掩蔽器中的能量掩蔽量可以强烈预测SRT。与CI用户不同,NH收听者从调制的噪声和音乐掩蔽器中的包络和精细结构提示的掩蔽中释放出来。结论:尽管两个对象组的语音掩蔽都受到能量掩蔽的极大限制,但CI的性能却恶化了,因为掩膜罩增加了更多的光谱时间复杂性,这很可能是由于光谱分辨率差所致。

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