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结合时间与频率:半球特化、声学不确定性与髯蝠

Conjugating time and frequency: hemispheric specialization, acoustic uncertainty, and the mustached bat.

作者信息

Washington Stuart D, Tillinghast John S

机构信息

Center for Functional and Molecular Imaging, Georgetown University Medical Center Washington, DC, USA ; Department of Neurology, Georgetown University Medical Center Washington, DC, USA ; Center for Neuroscience Research, Children's National Medical Center Washington, DC, USA.

Department of Mathematics and Statistics, American University Washington, DC, USA ; Department of Statistics, The George Washington University Washington, DC, USA.

出版信息

Front Neurosci. 2015 Apr 27;9:143. doi: 10.3389/fnins.2015.00143. eCollection 2015.

Abstract

A prominent hypothesis of hemispheric specialization for human speech and music states that the left and right auditory cortices (ACs) are respectively specialized for precise calculation of two canonically-conjugate variables: time and frequency. This spectral-temporal asymmetry does not account for sex, brain-volume, or handedness, and is in opposition to closed-system hypotheses that restrict this asymmetry to humans. Mustached bats have smaller brains, but greater ethological pressures to develop such a spectral-temporal asymmetry, than humans. Using the Heisenberg-Gabor Limit (i.e., the mathematical basis of the spectral-temporal asymmetry) to frame mustached bat literature, we show that recent findings in bat AC (1) support the notion that hemispheric specialization for speech and music is based on hemispheric differences in temporal and spectral resolution, (2) discredit closed-system, handedness, and brain-volume theories, (3) underscore the importance of sex differences, and (4) provide new avenues for phonological research.

摘要

一个关于人类语言和音乐半球特化的重要假说是,左、右听觉皮层(AC)分别专门用于精确计算两个典型共轭变量:时间和频率。这种频谱-时间不对称性与性别、脑容量或利手无关,并且与将这种不对称性局限于人类的封闭系统假说相反。与人类相比,髯蝠的大脑较小,但发展出这种频谱-时间不对称性的行为学压力更大。利用海森堡-伽博极限(即频谱-时间不对称性的数学基础)来梳理髯蝠的文献,我们发现蝙蝠听觉皮层的最新研究结果:(1)支持了语言和音乐半球特化基于时间和频谱分辨率的半球差异这一观点;(2)驳斥了封闭系统、利手和脑容量理论;(3)强调了性别差异的重要性;(4)为语音学研究提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7696/4410141/6380647f7f30/fnins-09-00143-g0001.jpg

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