首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Reverberation impairs brainstem temporal representations of voiced vowel sounds: challenging periodicity-tagged segregation of competing speech in rooms
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Reverberation impairs brainstem temporal representations of voiced vowel sounds: challenging periodicity-tagged segregation of competing speech in rooms

机译:混响削弱了元音发音的脑干时间表征:挑战房间中竞争性言语的带有周期性标记的分隔

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摘要

The auditory system typically processes information from concurrently active sound sources (e.g., two voices speaking at once), in the presence of multiple delayed, attenuated and distorted sound-wave reflections (reverberation). Brainstem circuits help segregate these complex acoustic mixtures into “auditory objects.” Psychophysical studies demonstrate a strong interaction between reverberation and fundamental-frequency (F0) modulation, leading to impaired segregation of competing vowels when segregation is on the basis of F0 differences. Neurophysiological studies of complex-sound segregation have concentrated on sounds with steady F0s, in anechoic environments. However, F0 modulation and reverberation are quasi-ubiquitous. We examine the ability of 129 single units in the ventral cochlear nucleus (VCN) of the anesthetized guinea pig to segregate the concurrent synthetic vowel sounds /a/ and /i/, based on temporal discharge patterns under closed-field conditions. We address the effects of added real-room reverberation, F0 modulation, and the interaction of these two factors, on brainstem neural segregation of voiced speech sounds. A firing-rate representation of single-vowels' spectral envelopes is robust to the combination of F0 modulation and reverberation: local firing-rate maxima and minima across the tonotopic array code vowel-formant structure. However, single-vowel F0-related periodicity information in shuffled inter-spike interval distributions is significantly degraded in the combined presence of reverberation and F0 modulation. Hence, segregation of double-vowels' spectral energy into two streams (corresponding to the two vowels), on the basis of temporal discharge patterns, is impaired by reverberation; specifically when F0 is modulated. All unit types (primary-like, chopper, onset) are similarly affected. These results offer neurophysiological insights to perceptual organization of complex acoustic scenes under realistically challenging listening conditions.
机译:在存在多个延迟,衰减和失真的声波反射(混响)的情况下,听觉系统通常处理来自同时活动的声源(例如,同时讲话的两个声音)的信息。脑干电路有助于将这些复杂的声学混合物分离为“听觉对象”。心理物理学研究表明,混响和基频(F0)调制之间存在很强的相互作用,当基于F0差异进行分隔时,会导致竞争元音的分隔受损。复杂声音分离的神经生理学研究集中于在消声环境中具有稳定F0的声音。但是,F0调制和混响几乎是普遍存在的。我们根据封闭场条件下的暂时放电模式,检查了麻醉豚鼠腹侧耳蜗核(VCN)中129个单个单元分离并发合成元音/ a /和/ i /的能力。我们解决了添加的真实房间混响,F0调制以及这两个因素的相互作用对有声语音的脑干神经隔离的影响。单元音频谱包络线的发射速率表示法对F0调制和混响的组合具有鲁棒性:贯穿局部音调阵列代码元音共振峰结构的局部发射速率最大值和最小值。但是,在混响和F0调制的结合存在下,混洗的钉间间隔分布中与元音F0相关的周期性信息会大大降低。因此,基于时间放电模式,双元音的频谱能量被分离为两个流(对应于两个元音),这会受到混响的影响;特别是当F0被调制时。所有单位类型(主要的,斩波器,发作)都受到类似的影响。这些结果为在现实挑战性的聆听条件下复杂声学场景的感知组织提供了神经生理学见识。

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