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Cortical mechanisms of spatial hearing

机译:空间听证的皮质机制

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摘要

Humans and other animals use spatial hearing to rapidly localize events in the environment. However, neural encoding of sound location is a complex process involving the computation and integration of multiple spatial cues that are not represented directly in the sensory organ (the cochlea). Our understanding of these mechanisms has increased enormously in the past fewyears. Current research is focused on the contribution of animal models for understanding human spatial audition, the effects of behavioural demands on neural sound location encoding, the emergence of a cue-independent location representation in the auditory cortex, and the relationship between single-source and concurrent location encoding in complex auditory scenes. Furthermore, computational modelling seeks to unravel how neural representations of sound source locations are derived from the complex binaural waveforms of real-life sounds. In this article, we review and integrate the latest insights from neurophysiological, neuroimaging and computational modelling studies of mammalian spatial hearing. We propose that the cortical representation of sound location emerges from recurrent processing taking place in a dynamic, adaptive network of early (primary) and higher-order (posterior-dorsal and dorsolateral prefrontal) auditory regions. This cortical network accommodates changing behavioural requirements and is especially relevant for processing the location of real-life, complex sounds and complex auditory scenes.
机译:人类和其他动物使用空间听证会迅速将事件迅速定位在环境中。然而,声音位置的神经编码是一种复杂的过程,涉及多个空间提示的计算和集成,这些情况不直接在感觉器官(耳蜗)中。我们对这些机制的理解在过去的几年中增加了巨大的增加。目前的研究专注于动物模型对理解人类空间试镜的贡献,行为需求对神经声音位置编码的影响,听觉皮层中的暗示独立位置表示的出现,以及单一和并发之间的关系复杂听觉场景中的位置编码。此外,计算建模寻求解开声源位置的神经表示是如何从真实声音的复杂双耳波形导出的。在本文中,我们审查并整合了哺乳动物空间听证的神经生理学,神经影像和计算建模研究的最新见解。我们提出,声音位置的皮质表示从发频处理中发生,在早期(初级)和高阶(后部和背侧前额前)听觉区域的动态,自适应网络中发生。该皮质网络可容纳不断变化的行为要求,并且对于处理现实生活,复杂声音和复杂听觉场景的位置特别相关。

著录项

  • 来源
    《Nature reviews neuroscience》 |2019年第10期|共15页
  • 作者单位

    Maastricht Univ Sch Mental Hlth &

    Neurosci MHeNS Fac Hlth Med &

    Life Sci Dept ENT Audiol Med Ctr;

    Georgetown Med Ctr Dept Neurosci Lab Integrat Neurosci &

    Cognit Washington DC USA;

    Maastricht Univ Fac Psychol &

    Neurosci Dept Cognit Neurosci Maastricht Netherlands;

    Maastricht Univ Fac Psychol &

    Neurosci Dept Cognit Neurosci Maastricht Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

  • 入库时间 2022-08-20 04:23:50

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