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听觉运动感知

The Perception of Auditory Motion.

作者信息

Carlile Simon, Leung Johahn

机构信息

School of Medical Sciences, University of Sydney, NSW, Australia Starkey Hearing Research Center, Berkeley, CA, USA

School of Medical Sciences, University of Sydney, NSW, Australia.

出版信息

Trends Hear. 2016 Apr 19;20:2331216516644254. doi: 10.1177/2331216516644254.

Abstract

The growing availability of efficient and relatively inexpensive virtual auditory display technology has provided new research platforms to explore the perception of auditory motion. At the same time, deployment of these technologies in command and control as well as in entertainment roles is generating an increasing need to better understand the complex processes underlying auditory motion perception. This is a particularly challenging processing feat because it involves the rapid deconvolution of the relative change in the locations of sound sources produced by rotational and translations of the head in space (self-motion) to enable the perception of actual source motion. The fact that we perceive our auditory world to be stable despite almost continual movement of the head demonstrates the efficiency and effectiveness of this process. This review examines the acoustical basis of auditory motion perception and a wide range of psychophysical, electrophysiological, and cortical imaging studies that have probed the limits and possible mechanisms underlying this perception.

摘要

高效且相对廉价的虚拟听觉显示技术的日益普及,为探索听觉运动感知提供了新的研究平台。与此同时,这些技术在指挥控制以及娱乐领域的应用,使得人们越来越需要更好地理解听觉运动感知背后的复杂过程。这是一项特别具有挑战性的处理任务,因为它涉及对头在空间中的旋转和平移(自身运动)所产生的声源位置相对变化进行快速反卷积,以便感知实际的声源运动。尽管头部几乎持续运动,我们却能感知到稳定的听觉世界,这一事实证明了该过程的效率和有效性。本综述探讨了听觉运动感知的声学基础,以及一系列研究该感知的极限和潜在机制的心理物理学、电生理学和皮层成像研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9d3/4871213/0d46ff8b41dc/10.1177_2331216516644254-fig1.jpg

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