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两耳间时间差的解剖学限制:生态视角。

Anatomical limits on interaural time differences: an ecological perspective.

机构信息

Psychoacoustics Laboratory, Department of Physics and Astronomy, Michigan State University East Lansing, MI, USA.

出版信息

Front Neurosci. 2014 Feb 28;8:34. doi: 10.3389/fnins.2014.00034. eCollection 2014.

Abstract

Human listeners, and other animals too, use interaural time differences (ITD) to localize sounds. If the sounds are pure tones, a simple frequency factor relates the ITD to the interaural phase difference (IPD), for which there are known iso-IPD boundaries, 90°, 180°… defining regions of spatial perception. In this article, iso-IPD boundaries for humans are translated into azimuths using a spherical head model (SHM), and the calculations are checked by free-field measurements. The translated boundaries provide quantitative tests of an ecological interpretation for the dramatic onset of ITD insensitivity at high frequencies. According to this interpretation, the insensitivity serves as a defense against misinformation and can be attributed to limits on binaural processing in the brainstem. Calculations show that the ecological explanation passes the tests only if the binaural brainstem properties evolved or developed consistent with heads that are 50% smaller than current adult heads. Measurements on more realistic head shapes relax that requirement only slightly. The problem posed by the discrepancy between the current head size and a smaller, ideal head size was apparently solved by the evolution or development of central processes that discount large IPDs in favor of interaural level differences. The latter become more important with increasing head size.

摘要

人类和其他动物听众利用耳间时间差(ITD)来定位声音。如果声音是纯音,一个简单的频率因素将 ITD 与耳间相位差(IPD)联系起来,对于 IPD 存在已知的等 IPD 边界,90°、180°……定义了空间感知区域。在本文中,使用球形头部模型(SHM)将人类的等 IPD 边界转换为方位角,并通过自由场测量进行检查。这些转换后的边界为高频 ITD 不敏感的急剧出现提供了对生态解释的定量测试。根据这种解释,不敏感性是对错误信息的防御,可以归因于脑干中双耳处理的限制。计算表明,只有当双耳脑干特性的进化或发展与比当前成人头部小 50%的头部一致时,生态解释才能通过测试。对更现实的头部形状的测量仅略微放宽了这一要求。当前头部尺寸与较小的理想头部尺寸之间的差异所带来的问题显然是通过中央过程的进化或发展来解决的,这些过程不考虑大的 IPD,而是有利于耳间水平差异。随着头部尺寸的增加,后者变得更加重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1110/3937989/39e8a51f4906/fnins-08-00034-g0001.jpg

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