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利用失配负波听觉诱发电位探索感知磁体效应。

Exploration of the perceptual magnet effect using the mismatch negativity auditory evoked potential.

作者信息

Sharma A, Dorman M F

机构信息

Department of Speech and Hearing Science, Arizona State University, Tempe 85287-0102, USA.

出版信息

J Acoust Soc Am. 1998 Jul;104(1):511-7. doi: 10.1121/1.423252.

Abstract

The goals of this study were (i) to assess the replicability of the "perceptual magnet effect" [Iverson and Kuhl, J. Acoust. Soc. Am. 97(1), 553-561 (1995)] and (ii) to investigate neurophysiologic processes underlying the perceptual magnet effect by using the mismatch negativity (MMN) auditory evoked potential. A stimulus continuum from /i/ to /e/ was synthesized by varying F1 and F2 in equal mel steps. Ten adult subjects identified and rated the goodness of the stimuli. Results revealed that the prototype was the stimulus with the lowest F1 and highest F2 values and the nonprototype stimulus was close to the category boundary. Subjects discriminated stimulus pairs differing in equal mel steps. The results indicated that discrimination accuracy was not significantly different in the prototype and the nonprototype condition. That is, no perceptual magnet effect was observed. The MMN evoked potential (a preattentive, neurophysiologic index of auditory discrimination) revealed that despite equal mel differences between the stimulus pairs the MMN was largest for the prototype pair (i.e., the pair that had the lowest F1 and highest F2 values). Therefore the MMN appears to be sensitive to within category acoustic differences. Taken together, the behavioral and electrophysiologic results indicate that discrimination of stimulus pairs near a prototype is based on the auditory structure of the stimulus pairs.

摘要

本研究的目标是

(i)评估“感知磁体效应”[艾弗森和库尔,《美国声学学会杂志》97(1),553 - 561(1995)]的可重复性;(ii)通过使用失配负波(MMN)听觉诱发电位来研究感知磁体效应背后的神经生理过程。通过以相等的梅尔步长改变F1和F2,合成了一个从/i/到/e/的刺激连续体。十名成年受试者对刺激的优劣进行了识别和评分。结果显示,原型是具有最低F1和最高F2值的刺激,而非原型刺激接近类别边界。受试者对以相等梅尔步长不同的刺激对进行了辨别。结果表明,在原型和非原型条件下,辨别准确率没有显著差异。也就是说,未观察到感知磁体效应。MMN诱发电位(听觉辨别的一种前注意神经生理指标)显示,尽管刺激对之间的梅尔差异相等,但MMN对原型对(即具有最低F1和最高F2值的对)最大。因此,MMN似乎对类别内的声学差异敏感。综合来看,行为和电生理结果表明,对接近原型的刺激对的辨别是基于刺激对的听觉结构。

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