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Perceptual weighting of the envelope and fine structure across frequency bands during continuous and interrupted speech.

机译:在连续和间断语音期间,整个频带的包络和精细结构的感知加权。

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摘要

Listening to speech requires the processing of complex patterns of spectral and temporal acoustic properties. The speech signal may be divided into spectral frequency bands, each band containing temporal properties of the envelope (i.e., amplitude modulations) and fine structure (i.e., frequency modulations). However, certain acoustic properties may be more important for understanding speech. Furthermore, the listening environment may influence the acoustic properties that are most informative at any given moment due to acoustic interactions between the speech source and competing sound sources. For maximal speech understanding, listeners must allocate their perceptual resources to the most informative acoustic properties. Understanding such perceptual weighting strategies is essential for the design of assistive listening devices that need to preserve these important speech acoustics. This study measured the perceptual weighting strategies of young normal-hearing listeners for the envelope and fine structure in each of three frequency bands for sentence materials. Perceptual weights for these acoustic properties were obtained under three listening contexts: (1) when each acoustic property was presented individually; (2) when multiple acoustic properties were available concurrently during a continuous speech context; and (3) when multiple acoustic properties were available concurrently during an interrupted speech context. A new processing method was designed to vary the availability of each acoustic property independently by adding noise at different levels. Perceptual weights were determined by correlating a listener's performance with the availability of each acoustic property on a trial-by-trial basis. Results demonstrated that perceptual weights were: (1) equal when acoustic properties were presented individually; (2) biased toward envelope and mid-frequency information when multiple properties were available; and (3) altered during interruption at a rate of 4 Hz, corresponding to the syllabic rate of speech. Specifically, interruption interfered with mid-frequency envelope cues, whereas greater perceptual weight was placed on high-frequency envelope information. Notably, the perceptual weight for low-frequency information in either continuous or interrupted contexts was very low. Overall, listeners weight these acoustic properties differently in different listening contexts. Furthermore, these results suggest a complex interaction between the acoustic properties and the listening context in determining how to best allocate perceptual resources.
机译:聆听语音需要处理频谱和时间声学特性的复杂模式。语音信号可以分为频谱频带,每个频带包含包络的时间特性(即幅度调制)和精细结构(即频率调制)。但是,某些声学属性对于理解语音可能更为重要。此外,由于语音源和竞争性声源之间的声学​​相互作用,收听环境可能会影响在任何给定时刻信息最丰富的声学属性。为了最大程度地理解语音,听众必须将其感知资源分配给最有用的声学属性。了解此类感知加权策略对于需要保留这些重要语音声学的辅助收听设备的设计至关重要。这项研究测量了听力正常的年轻听众在句子材料的三个频带中每个包络和精细结构的感知加权策略。这些听觉特性的感知权重是在三种听觉环境下获得的:(1)每个听觉特性分别呈现时; (2)在连续语音环境中同时具有多种声学特性时; (3)在中断的语音环境中同时具有多个声学特性时。设计了一种新的处理方法,通过添加不同级别的噪声来独立更改每个声学属性的可用性。通过在逐步试验的基础上,将听众的表现与每种声学属性的可用性相关联,来确定感知权重。结果表明,感知权重为:(1)分别呈现声学属性时相等; (2)当有多个属性可用时,偏向于包络和中频信息; (3)在中断期间以4 Hz的速率变化,对应于语音的音节速率。具体来说,干扰会干扰中频包络提示,而高频包络信息会赋予较大的感知权重。值得注意的是,在连续或中断的情况下,低频信息的感知权重非常低。总体而言,听众在不同的听觉环境中对这些声学特性的加权不同。此外,这些结果表明,在确定如何最佳分配感知资源时,声学属性和聆听环境之间存在复杂的相互作用。

著录项

  • 作者

    Fogerty, Daniel.;

  • 作者单位

    Indiana University.;

  • 授予单位 Indiana University.;
  • 学科 Health Sciences Audiology.;Psychology Cognitive.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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