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自然双耳声音的统计数据。

Statistics of natural binaural sounds.

作者信息

Młynarski Wiktor, Jost Jürgen

机构信息

Max-Planck Institute for Mathematics in the Sciences, Leipzig, Germany.

Max-Planck Institute for Mathematics in the Sciences, Leipzig, Germany; Santa Fe Institute, Santa Fe, New Mexico, United States of America.

出版信息

PLoS One. 2014 Oct 6;9(10):e108968. doi: 10.1371/journal.pone.0108968. eCollection 2014.

Abstract

Binaural sound localization is usually considered a discrimination task, where interaural phase (IPD) and level (ILD) disparities at narrowly tuned frequency channels are utilized to identify a position of a sound source. In natural conditions however, binaural circuits are exposed to a stimulation by sound waves originating from multiple, often moving and overlapping sources. Therefore statistics of binaural cues depend on acoustic properties and the spatial configuration of the environment. Distribution of cues encountered naturally and their dependence on physical properties of an auditory scene have not been studied before. In the present work we analyzed statistics of naturally encountered binaural sounds. We performed binaural recordings of three auditory scenes with varying spatial configuration and analyzed empirical cue distributions from each scene. We have found that certain properties such as the spread of IPD distributions as well as an overall shape of ILD distributions do not vary strongly between different auditory scenes. Moreover, we found that ILD distributions vary much weaker across frequency channels and IPDs often attain much higher values, than can be predicted from head filtering properties. In order to understand the complexity of the binaural hearing task in the natural environment, sound waveforms were analyzed by performing Independent Component Analysis (ICA). Properties of learned basis functions indicate that in natural conditions soundwaves in each ear are predominantly generated by independent sources. This implies that the real-world sound localization must rely on mechanisms more complex than a mere cue extraction.

摘要

双耳声音定位通常被视为一种辨别任务,即在狭窄调谐的频率通道上利用双耳相位(IPD)和强度(ILD)差异来确定声源的位置。然而,在自然条件下,双耳听觉回路会受到来自多个通常移动且相互重叠声源的声波刺激。因此,双耳线索的统计取决于声学特性和环境的空间配置。之前尚未研究过自然环境中遇到的线索分布及其对听觉场景物理特性的依赖性。在本研究中,我们分析了自然环境中遇到的双耳声音的统计数据。我们对具有不同空间配置的三个听觉场景进行了双耳录音,并分析了每个场景的经验线索分布。我们发现,某些特性,如IPD分布的离散程度以及ILD分布的整体形状,在不同听觉场景之间变化不大。此外,我们发现ILD分布在频率通道上的变化要弱得多,而且IPD通常会达到比根据头部滤波特性预测的值高得多的值。为了理解自然环境中双耳听觉任务的复杂性,我们通过执行独立成分分析(ICA)来分析声音波形。所学习的基函数的特性表明,在自然条件下,每只耳朵中的声波主要由独立声源产生。这意味着现实世界中的声音定位必须依赖于比单纯的线索提取更复杂的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43ed/4186785/3e000c2a1bb4/pone.0108968.g001.jpg

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