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The effects of frequency-place shift on consonant confusion in cochlear implant simulations

机译:耳蜗植入模拟中频位偏移对辅音混乱的影响

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摘要

The effects of frequency-place shift on consonant recognition and confusion matrices were examined. Frequency-place shift was manipulated using a noise-excited vocoder with 4 to 16 channels. In the vocoder processing, the location of the most apical carrier band varied from the matched condition (i.e., 28 mm from the base of the cochlear) to a basal shift (i.e., 22 mm from the base) in a step size of 1 mm. Ten normal-hearing subjects participated in the 20-alternative forced-choice test, where the consonants were presented in a ∕Ca∕ context. Shift of 3 mm or more caused the consonant recognition scores to decrease significantly. The effects of spectral resolution disappeared when the amount of shift reached ≥3 mm. Information transmitted for voicing and place of articulation varied with spectral shift and spectral resolution, while information transmitted for manner was affected only by spectral shift but not spectral resolution. Spectral shift has shown specific effects on the confusion patterns of the consonants. The direction of errors reversed as spectral shift increased and the patterns of reversal were consistent across channel conditions. Overall, transmission of the consonant features can be accounted for by the acoustic features of the speech signal.
机译:研究了频移对辅音识别和混淆矩阵的影响。使用具有4至16个通道的噪声激励声码器来控制频移。在声码器处理中,最顶端载带的位置从匹配条件(即距耳蜗根部28毫米)到基底位移(即距根部22毫米)变化,步长为1毫米。十名听力正常的受试者参加了20项强制选择测试,其中辅音以∕ Ca ∕语境出现。 3 mm或更大的偏移会导致辅音识别分数明显降低。当位移量≥3mm时,光谱分辨率的影响消失。传送声音和发音位置的信息随光谱位移和光谱分辨率而变化,而传送方式的信息仅受光谱位移影响,而不受光谱分辨率影响。频谱偏移已显示出对辅音混淆模式的特定影响。误差的方向随着频谱偏移的增加而反转,并且反转的模式在整个通道条件下保持一致。总体而言,辅音特征的传输可以由语音信号的声学特征来解释。

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