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豚鼠耳蜗神经纤维时间放电模式中稳态单元音和双元音声音的频谱及基频表现。

The representation of the spectra and fundamental frequencies of steady-state single- and double-vowel sounds in the temporal discharge patterns of guinea pig cochlear-nerve fibers.

作者信息

Palmer A R

机构信息

MRC Institute of Hearing Research, University of Nottingham, University Park, United Kingdom.

出版信息

J Acoust Soc Am. 1990 Sep;88(3):1412-26. doi: 10.1121/1.400329.

Abstract

Psychophysical results using double vowels imply that subjects are able to use the temporal aspects of neural discharge patterns. To investigate the possible temporal cues available, the responses of fibers in the cochlear nerve of the anesthetized guinea pig to synthetic vowels were recorded at a range of sound levels up to 95 dB SPL. The stimuli were the single vowels /i/ [fundamental frequency (f0) 125 Hz], /a/ (f0, 100 Hz), and /c/ (f0, 100 Hz) and the double vowels were /a(100),i(125)/ and /c(100),i(125)/. Histograms synchronized to the period of the double vowels were constructed, and locking of the discharge to individual harmonics was estimated from them by Fourier transformation. One possible cue for identifying the f0's of the constituents of a double vowel is modulation of the neural discharge with a period of 1/f0. Such modulation was found at frequencies between the formant peaks of the double vowel, with modulation at the periods of 100 and 125 Hz occurring at different places in the fiber array. Generation of a population response based on synchronized responses [average localized synchronized rate (ALSR): see Young and Sachs [J. Acoust. Soc. Am. 66, 1381-1403 (1979)] allowed estimation of the f0's by a variety of methods and subsampling the population response at the harmonics of the f0 of the constituent vowel achieved a good reconstruction of its spectrum. Other analyses using interval histograms and autocorrelation, which overcome some problems associated with the ALSR approach, also allowed f0 identification and vowel segregation. The present study has demonstrated unequivocally that the timing of the impulses in auditory-nerve fibers provides copious possible cues for the identification of the fundamental frequencies and spectra associated with each of the constituents of double vowels.

摘要

使用双元音的心理物理学结果表明,受试者能够利用神经放电模式的时间特征。为了研究可能存在的时间线索,在高达95 dB SPL的一系列声级下,记录了麻醉豚鼠耳蜗神经纤维对合成元音的反应。刺激音为单元音/i/(基频(f0)125 Hz)、/a/(f0,100 Hz)和/u/(f0,100 Hz),双元音为/a(100),i(125)/和/u(100),i(125)/。构建了与双元音周期同步的直方图,并通过傅里叶变换从这些直方图中估计放电对各个谐波的锁定情况。识别双元音成分f0的一个可能线索是神经放电以1/f0的周期进行调制。在双元音共振峰之间的频率处发现了这种调制,在纤维阵列的不同位置出现了100和125 Hz周期的调制。基于同步反应生成群体反应[平均局部同步率(ALSR):见Young和Sachs[《美国声学学会杂志》66, 1381 - 1403 (1979)],允许通过多种方法估计f0,并且在组成元音f0的谐波处对群体反应进行二次采样能够很好地重建其频谱。使用间隔直方图和自相关的其他分析方法克服了与ALSR方法相关的一些问题,也能够进行f0识别和元音分离。本研究明确表明,听觉神经纤维中冲动的时间为识别与双元音每个成分相关的基频和频谱提供了大量可能的线索。

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