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引入未处理的低频信息对包络声码器处理语音接收的影响。

Effects of introducing unprocessed low-frequency information on the reception of envelope-vocoder processed speech.

作者信息

Qin Michael K, Oxenham Andrew J

机构信息

Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Acoust Soc Am. 2006 Apr;119(4):2417-26. doi: 10.1121/1.2178719.

Abstract

This study investigated the benefits of adding unprocessed low-frequency information to acoustic simulations of cochlear-implant processing in normal-hearing listeners. Implant processing was simulated using an eight-channel noise-excited envelope vocoder, and low-frequency information was added by replacing the lower frequency channels of the processor with a low-pass-filtered version of the original stimulus. Experiment 1 measured sentence-level speech reception as a function of target-to-masker ratio, with either steady-state speech-shaped noise or single-talker maskers. Experiment 2 measured listeners' ability to identify two vowels presented simultaneously, as a function of the F0 difference between the two vowels. In both experiments low-frequency information was added below either 300 or 600 Hz. The introduction of the additional low-frequency information led to substantial and significant improvements in performance in both experiments, with a greater improvement observed for the higher (600 Hz) than for the lower (300 Hz) cutoff frequency. However, performance never equaled performance in the unprocessed conditions. The results confirm other recent demonstrations that added low-frequency information can provide significant benefits in intelligibility, which may at least in part be attributed to improvements in F0 representation. The findings provide further support for efforts to make use of residual acoustic hearing in cochlear-implant users.

摘要

本研究调查了在正常听力听众的人工耳蜗处理声学模拟中添加未处理的低频信息的益处。使用八通道噪声激励包络声码器模拟植入处理,并通过用原始刺激的低通滤波版本替换处理器的低频通道来添加低频信息。实验1测量了句子水平的言语接收,作为目标与掩蔽比的函数,掩蔽声为稳态言语形状噪声或单说话者掩蔽声。实验2测量了听众同时识别两个元音的能力,作为两个元音之间F0差异的函数。在两个实验中,低频信息都添加在300或600 Hz以下。额外低频信息的引入在两个实验中都带来了显著的性能提升,对于较高(600 Hz)的截止频率,提升幅度大于较低(300 Hz)的截止频率。然而,性能从未达到未处理条件下的水平。结果证实了其他近期的研究,即添加低频信息可以在可懂度方面带来显著益处,这至少部分可归因于F0表征的改善。这些发现为利用人工耳蜗使用者的残余听觉的努力提供了进一步支持。

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