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Auditory Azimuthal Localization Performance in Water as a Function of Prior Exposure

机译:水中听觉方位角本地化性能与先验暴露的关系

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摘要

Objective: We report two psychoacoustical experiments that assessed the relationship between auditory azimuthal localization performance in water and duration of prior exposure to the milieu. Background: The adaptability of spatial hearing abilities has been demonstrated in air for both active and passive exposures to altered localization cues. Adaptability occurred faster and was more complete for elevation perception than for azimuth perception. In water, spatial hearing is believed to solely rely on smaller than normal cues-to-azimuth: interaural time differences. This should produce a medial bias in localization judgments toward the center of the horizontal plane, unless the listeners have adapted to the environment Method: Azimuthal localization performance was measured in seawater for eight azimuthal directions of a low-frequency (<500 Hz) auditory target. Seventeen participants performed a forced-choice task in Experiment I. Twenty-eight other participants performed a pointing task in Experiment 2. Results: In both experiments we observed poor front/back discrimination but accurate left/right discrimination, regardless of prior exposure. A medial bias was found in azimuth perception, whose size decreased as the exposure duration of the participant increased. Conclusion: The study resembles earlier results showing that passive exposure to altered azimuth cues elicits the adaptability of internal audio-spatial maps, that is, the behavioral plasticity of spatial hearing abilities. Application: Studies of the adaptability of the auditory system to altered spatial information may yield practical implications for scuba divers, hearing-impaired listeners with reduced sensitivity to spatial cues, and various normal-hearing users of virtual auditory displays.
机译:目的:我们报告了两个心理声学实验,评估了水中听觉方位角定位性能与先前暴露于环境中的持续时间之间的关系。背景:已经证明了空气中的空间听觉能力对于主动和被动暴露于变化的定位提示的适应性。高度感知的适应性发生得更快,并且比方位角感知更完整。在水中,人们认为空间听觉仅依赖于小于正常提示到方位角的听觉时间差。除非听众已适应环境,否则这将在定位判断中产生中间偏差,除非听众已适应环境。方法:在海水中测量低频(<500 Hz)听觉目标的八个方位方向的方位角定位性能。在实验I中,有17名参与者执行了强制选择任务。在实验2中,其他28名参与者执行了指向任务。结果:在两个实验中,无论先前暴露如何,我们都观察到较差的前/后辨别力和准确的左/右辨别力。在方位角感知中发现中间偏见,其大小随着参与者的暴露持续时间增加而减小。结论:该研究与早期结果相似,表明被动接触改变的方位角线索会激发内部音频空间图的适应性,即空间听觉能力的行为可塑性。应用:对听觉系统对改变的空间信息的适应性的研究可能对水肺潜水员,对空间线索敏感度降低的听力受损的听众以及虚拟听觉显示器的各种正常听觉用户产生实际意义。

著录项

  • 来源
    《Human Factors》 |2014年第4期|772-783|共12页
  • 作者

    Sophie Savel; Carolyn Drake;

  • 作者单位

    Laboratoire de Mecanique et d'Acoustique, Aix-Marseille Universite, Centrale Marseille, Marseille, France,Laboratoire de Mecanique et d'Acoustique CNRS, Equipe Sons, Batiment P, 31 chemin Joseph-Aiguier, 13402 Marseille Cedex 20, France;

    Laboratoire de Psychologie de la Perception, Paris-Descartes Universite, Paris, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    auditory localization; binaural cues; learning; adaptability; plasticity; exposure; water;

    机译:听觉定位双耳提示;学习;适应性可塑性;接触;水;
  • 入库时间 2022-08-18 02:18:42

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