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An account of monaural phase sensitivity

机译:单耳相位敏感性的说明

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摘要

Listeners can detect phase differences between the envelopes of sounds occupying remote frequency regions, and between the fine structures of partials that interact within a single auditory filter. They are insensitive to phase differences between partials that differ sufficiently in frequency to preclude within-channel interactions. A new model is proposed that can account for all three of these findings, and which, unlike currently popular approaches, does not discard across-channel timing information. Sensitivity is predicted quantitatively by analyzing the output of a cochlear model using a spectro-temporal decomposition inspired by responses of neurons in the auditory cortex, and by computing a distance metric between the responses to tow stimuli to be discriminated. Discriminations successfully modeled include phase differences between pairs of bandpass filtered harmonic complexes, and between pairs of sinusoidally amplitude modulated tones, discrimination between amplitude and frequency modulation, and discrimination of transient signals differing only in their phase spectra ("Huffman sequences").
机译:听众可以检测到占据远端频率区域的声音包络之间以及在单个听觉过滤器中相互作用的部分的精细结构之间的相位差。它们对频率差异足以阻止通道内相互作用的部分之间的相位差不敏感。提出了一种新模型,该模型可以解释所有这三个发现,并且与当前流行的方法不同,该模型不会丢弃跨通道时序信息。通过使用听觉皮层中神经元的响应激发的光谱时间分解来分析耳蜗模型的输出,并通过计算对待区分的牵引刺激的响应之间的距离度量,可以定量地预测灵敏度。成功建模的区分包括成对的带通滤波谐波复合物之间,以及成对的正弦振幅调制音调之间的相位差,振幅和频率调制之间的鉴别,以及仅在其相位谱(“霍夫曼序列”)不同的瞬态信号的鉴别。

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