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Predictions of formant-frequency discrimination in noise based on model auditory-nerve responses

机译:基于模型听觉神经反应的噪声共振峰频率鉴别预测

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摘要

To better understand how the auditory system extracts speech signals in the presence of noise, discrimination thresholds for the second formant frequency were predicted with simulations of auditory-nerve responses. These predictions employed either average-rate information or combined rate and timing information, and either populations of model fibers tuned across a wide range of frequencies or a subset of fibers tuned to a restricted frequency range. In general, combined temporal and rate information for a small population of model fibers tuned near the formant frequency was most successful in replicating the trends reported in behavioral data for formant-frequency discrimination. To explore the nature of the temporal information that contributed to these results, predictions based on model auditory-nerve responses were compared to predictions based on the average rates of a population of cross-frequency coincidence detectors. These comparisons suggested that average response rate (count) of cross-frequency coincidence detectors did not effectively extract important temporal information from the auditory-nerve population response. Thus, the relative timing of action potentials across auditory-nerve fibers tuned to different frequencies was not the aspect of the temporal information that produced the trends in formant-frequency discrimination thresholds.
机译:为了更好地理解听觉系统在存在噪声的情况下如何提取语音信号,通过模拟听觉神经反应来预测第二共振峰频率的辨别阈值。这些预测采用平均速率信息或组合的速率和定时信息,或者采用在较宽频率范围内调谐的模型光纤群,或者采用调谐至受限频率范围的光纤子集。通常,在共振峰频率附近调谐的少量模型纤维的时间和速率信息组合在复制行为数据中报告的趋势以共振峰频率区分方面最为成功。为了探究促成这些结果的时间信息的性质,将基于模型听觉神经反应的预测与基于跨频符合检测器群体的平均速率的预测进行了比较。这些比较表明,跨频重合检测器的平均响应率(计数)不能有效地从听觉神经反应中提取重要的时间信息。因此,跨调谐到不同频率的听觉神经纤维的动作电位的相对定时不是产生共振峰频率辨别阈值趋势的时间信息的方面。

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