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Factors influencing human sound localization.

机译:影响人类声音本地化的因素。

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摘要

The auditory system operates in an interactive multi-sensory setting and its representation of space is influenced by physiological and environmental factors. To obtain a useful depiction of acoustic space, the brain must interpret auditory spatial cues within the context of these factors and appropriately co-register auditory space with other sensory modalities. A dependable multi-sensory map of the external world is crucial for successfully navigating through, interacting with, and surviving in the environment.;The goal of this thesis was to identify, re-evaluate, and elaborate on auditory and non-auditory factors that impact two-dimensional sound localization in humans. The influence of (1) elevation cues, (2) static eye position, and (3) sensori-motor context (pointing method) on auditory spatial processing was evaluated behaviorally. In Part 1, elevation cues, arising mainly from spectral filtering by the external ear, are shown to also impact sound localization in azimuth, which depends on interaural difference cues. Therefore, elevation cues potentially contribute to azimuth accuracy to correct errors inherent to the geometry of interaural cues.;In Part 2, evidence is put forth to demonstrate that sound localization adapts to eccentric eye position. The adaptation develops exponentially over time, reaches a maximum within -1 minute, spans two-dimensional frontal space, and is accompanied by a concurrent adaptation in perceived straight ahead. These findings help reconcile inconsistent reports on this issue in the sound localization literature, and may also have bearing on spatial adaption to vision displaced by optical prisms.;In Part 3, head (or nose) pointing under different sensori-motor contexts reveals that gaze (eye and head) is a more accurate and precise measure of target location than either head or eye position alone. This underscores the importance of quantifying perceived target location using eye in addition to head position even when subjects are specifically instructed to use head pointing.;In conclusion, this thesis demonstrates that two-dimensional sound localization is sensitive to a variety of previously unrecognized or poorly characterized physiological factors. These factors have important implications about coordination of spatial information across multiple senses, limitations in methodologies used to study sound localization, and interpretation of data reported by past studies.
机译:听觉系统在互动的多感官环境中运行,其空间表示受生理和环境因素影响。为了获得对声音空间的有用描述,大脑必须在这些因素的背景下解释听觉空间线索,并适当地将听觉空间与其他感觉模态共同注册。可靠的外部世界多感官地图对于在环境中成功导航,交互和生存至关重要。本论文的目的是确定,重新评估和阐述听觉和非听觉因素,影响人类的二维声音定位。从行为上评估了(1)高度提示,(2)静态眼睛位置和(3)感觉运动背景(指向方法)对听觉空间处理的影响。在第1部分中,显示了主要由外耳进行频谱过滤而产生的高程提示也会影响方位角中的声音定位,这取决于耳间差异提示。因此,仰角提示可能会改善方位角的准确性,以纠正听觉提示几何形状固有的误差。在第2部分中,提出了证据来证明声音的位置适应于偏心的眼睛位置。适应随时间呈指数增长,在-1分钟内达到最大值,跨越二维额叶空间,并伴随着直觉上的同时适应。这些发现有助于调和声音定位文献中有关此问题的不一致报道,并且还可能与光学棱镜对视力的空间适应有关。在第3部分中,在不同感觉运动环境下指向头部(或鼻子)的人揭示了凝视(眼睛和头部)比单独的头部或眼睛位置更准确,更精确地衡量目标位置。这强调了即使在特别指示对象使用头部指向的情况下,除了头部位置以外,还必须使用眼睛来量化感知目标位置的重要性。总之,本论文证明了二维声音定位对各种先前无法识别或效果较差的对象很敏感。特征性生理因素。这些因素对于跨多种感觉的空间信息协调,用于研究声音定位的方法的局限性以及对过去研究报告的数据的解释具有重要意义。

著录项

  • 作者

    Razavi, Babak.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Engineering Biomedical.;Biology Neuroscience.;Psychology Behavioral.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 281 p.
  • 总页数 281
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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