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Role of binaural hearing in speech intelligibility and spatial release from masking using vocoded speech

机译:双耳听力在语音清晰度和语音编码掩盖空间释放中的作用

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摘要

A cochlear implant vocoder was used to evaluate relative contributions of spectral and binaural temporal fine-structure cues to speech intelligibility. In Study I, stimuli were vocoded, and then convolved through head related transfer functions (HRTFs) to remove speech temporal fine structure but preserve the binaural temporal fine-structure cues. In Study II, the order of processing was reversed to remove both speech and binaural temporal fine-structure cues. Speech reception thresholds (SRTs) were measured adaptively in quiet, and with interfering speech, for unprocessed and vocoded speech (16, 8, and 4 frequency bands), under binaural or monaural (right-ear) conditions. Under binaural conditions, as the number of bands decreased, SRTs increased. With decreasing number of frequency bands, greater benefit from spatial separation of target and interferer was observed, especially in the 8-band condition. The present results demonstrate a strong role of the binaural cues in spectrally degraded speech, when the target and interfering speech are more likely to be confused. The nearly normal binaural benefits under present simulation conditions and the lack of order of processing effect further suggest that preservation of binaural cues is likely to improve performance in bilaterally implanted recipients.
机译:人工耳蜗声码器用于评估频谱和双耳时间精细结构提示对语音清晰度的相对贡献。在研究I中,对刺激进行声码处理,然后通过与头部相关的传递函数(HRTF)进行卷积,以去除语音时态精细结构,但保留双耳时态精细结构线索。在研究II中,处理顺序相反,以消除语音和双耳颞部细微结构提示。在双耳或单耳(右耳)条件下,针对未处理和声码化语音(16、8和4个频段),在安静且有干扰语音的情况下自适应地测量语音接收阈值(SRT)。在双耳条件下,随着频段数量的减少,SRT会增加。随着频带数量的减少,尤其是在8频带条件下,观察到目标与干扰源在空间上的分离会带来更大的收益。当目标和干扰语音更容易混淆时,本结果证明了双耳提示在频谱退化语音中的重要作用。在目前的模拟条件下,双耳的收益几乎是正常的,而且加工效果缺乏顺序,这进一步表明,双耳提示的保留可能会改善双侧植入受体的性能。

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