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Combination of binaural information across frequency bands.

机译:跨频带的双耳信息的组合。

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摘要

Perceptual grouping is required when localizing a complex sound in an environment where other sounds are also present. The auditory system must combine the appropriate partials arising from one source while segregating them from competing partials. Two acoustic regularities that might allow for grouping components from a single source are a harmonic relation among the partials and a commonality of their spatial positions. The utility of these cues was examined in a lateralization task in which listeners were asked to detect which of three intervals contained a signal, defined as a delay of the sound presented to one ear. Interaural delay is a predominant cue used in spatial hearing. Discrimination was measured for sounds composed of either a single frequency (Experiment I) or pairs of frequencies (Experiment II). A signal detection analysis used to predict the effects of combining information from the two frequencies found summation in the second experiment to be optimal. This was true regardless of the harmonic relation of the complex. The third experiment used complex signals where only one member of the pair (the target) could contain an interaural delay, while the other (the distractor) was constant in all of the intervals. For inharmonic complexes, performance for the target-distractor combinations was equivalent to that found for targets presented alone. This was not the case for harmonic target-distractor combinations, where performance was relatively poor. A signal detection analysis here showed that decisions were based on a combination of the target and non-informative distractor. Thus the subjects seemed unable to ignore the harmonically related distractor. The fourth experiment placed the two cues for grouping in opposition. Again, performance was measured with the target-distractor pairs, except that the distractor now had an interaural delay that could be quite different from the target in all three intervals. The question was whether this dissimilarity between target and distractor would cause a listener not to combine the two. This was not the result, with performance remaining relatively poor for the harmonically related cases. In sum this study shows that for the grouping of complex acoustic signals in space, harmonic structure is much more important than commonality of spatial position.
机译:在还存在其他声音的环境中定位复杂声音时,需要进行感知分组。听觉系统必须将源自一种来源的适当部分合并,同时将它们与竞争部分分开。可能允许将单个来源的组件分组的两个声学规则是子声之间的谐调关系及其空间位置的共同性。在横向任务中检查了这些提示的效用,在该任务中,要求听众检测三个间隔中的哪个包含一个信号,该信号定义为呈现给一只耳朵的声音的延迟。耳间延迟是空间听觉的主要提示。测量了由单个频率(实验I)或成对频率(实验II)组成的声音的区分度。信号检测分析用于预测来自两个频率的信息组合的效果,发现第二个实验的总和是最佳的。不管络合物的谐波关系如何,都是如此。第三个实验使用了复杂的信号,其中只有一对(目标)中的一个成员可以包含耳间延迟,而另一个(干扰物)在所有间隔中都是恒定的。对于非谐波复合物,目标-干扰物组合的性能与单独提供的目标相同。对于性能相对较差的谐波目标分散器组合,情况并非如此。此处的信号检测分析表明,决策是基于目标和非信息干扰物的组合。因此,受试者似乎无法忽略谐波相关的干扰物。第四个实验将两个提示放在一起进行分组。再次,用目标牵开器对测量性能,除了现在分散器的耳间延迟可能在所有三个间隔中与目标完全不同。问题是目标和干扰因素之间的这种差异是否会导致听众不将两者结合。这不是结果,对于谐波相关的情况,性能仍然相对较差。总而言之,这项研究表明,对于空间中的复杂声信号的分组,谐波结构比空间位置的通用性重要得多。

著录项

  • 作者

    Buell, Thomas Newton.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Health Sciences Audiology.;Language General.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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