首页> 美国卫生研究院文献>The Journal of Neuroscience >Effects of Reverberation on the Directional Sensitivity of Auditory Neurons across the Tonotopic Axis: Influences of Interaural Time and Level Differences
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Effects of Reverberation on the Directional Sensitivity of Auditory Neurons across the Tonotopic Axis: Influences of Interaural Time and Level Differences

机译:混响对听神经元跨听神经轴方向敏感性的影响:听觉时间和水平差异的影响

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摘要

In reverberant environments, acoustic reflections interfere with the direct sound arriving at a listener's ears, distorting the binaural cues for sound localization. We investigated the effects of reverberation on the directional sensitivity of single neurons in the inferior colliculus (IC) of unanesthetized rabbits. We find that reverberation degrades the directional sensitivity of single neurons, although the amount of degradation depends on the characteristic frequency (CF) and the type of binaural cues available. When interaural time differences (ITDs) are the only available directional cue, low-CF cells sensitive to ITDs in the waveform fine time structure maintain better directional sensitivity in reverberation than high-CF cells sensitive to ITDs in the envelope induced by cochlear filtering. Conversely, when both ITD and interaural level difference (ILD) cues are available, directional sensitivity in reverberation is comparable throughout the tonotopic axis of the IC. This result suggests that, at high frequencies, ILDs provide better directional information than envelope ITDs, emphasizing the importance of the ILD-processing pathway for sound localization in reverberation.
机译:在混响环境中,声反射会干扰到达听众耳朵的直接声音,从而使双耳提示声音失真。我们研究了混响对未麻醉兔下丘(IC)中单个神经元定向敏感性的影响。我们发现,混响会降低单个神经元的方向敏感性,尽管退化的程度取决于特征频率(CF)和可用的双耳提示的类型。当耳间时间差(ITD)是唯一可用的方向提示时,在波形精细时间结构中对ITD敏感的低CF细胞比在耳蜗中感应到包络中对ITD敏感的高CF细胞在混响中保持更好的方向灵敏度。相反,当ITD和耳间水平差(ILD)提示均可用时,混响的方向灵敏度在整个IC的Totopic轴上是可比的。该结果表明,在高频下,ILD比包络ITD提供更好的方向信息,强调了ILD处理路径对于混响中声音定位的重要性。

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