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杂乱声学环境中的目标定位

Object localization in cluttered acoustical environments.

作者信息

Takahashi T T, Keller C H, Nelson B S, Spitzer M W, Bala A D S, Whitchurch E A

机构信息

Institute of Neuroscience, University of Oregon, Eugene, OR 97405, USA.

出版信息

Biol Cybern. 2008 Jun;98(6):579-86. doi: 10.1007/s00422-008-0232-2. Epub 2008 May 20.

Abstract

In nature, sounds from objects of interest arrive at the ears accompanied by sound waves from other actively emitting objects and by reflections off of nearby surfaces. Despite the fact that all of these waveforms sum at the eardrums, humans with normal hearing effortlessly segregate one sound source from another. Our laboratory is investigating the neural basis of this perceptual feat, often called the "cocktail party effect", using the barn owl as an animal model. The barn owl, renowned for its ability to localize sounds and its spatiotopic representation of auditory space, is an established model for spatial hearing. Here, we briefly review the neural basis of sound-localization of a single sound source in an anechoic environment and then generalize the ideas developed therein to cases in which there are multiple, concomitant sound sources and acoustical reflection.

摘要

在自然界中,来自感兴趣物体的声音到达耳朵时,会伴随着来自其他活跃发声物体的声波以及附近表面的反射声。尽管所有这些波形在耳膜处叠加,但听力正常的人却能轻松地将一个声源与另一个声源区分开来。我们的实验室正在以仓鸮作为动物模型,研究这种通常被称为“鸡尾酒会效应”的感知壮举的神经基础。仓鸮以其定位声音的能力及其听觉空间的空间拓扑表征而闻名,是空间听觉的既定模型。在这里,我们简要回顾一下在消声环境中单个声源声音定位的神经基础,然后将其中提出的观点推广到存在多个伴随声源和声学反射的情况。

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