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音调时长对听觉流形成的影响。

The effect of tone duration on auditory stream formation.

作者信息

Beauvois M W

机构信息

Laboratoire de Psychologie Expérimentale, CNRS, Université René Descartes, Paris, France.

出版信息

Percept Psychophys. 1998 Jul;60(5):852-61. doi: 10.3758/bf03206068.

Abstract

In a study in which the effect of tone duration on the formation of auditory streams was investigated, subjects were presented with 15-sec alternating pure-tone sequences (ABAB...) and were asked to orient their attention over the duration of the sequence toward hearing either a temporally coherent or a segregated percept. At stimulus offset, the subjects indicated whether their percept at the end of the stimulus had been that of a temporally coherent ABAB trill or that of segregated A and B streams. The experimental results indicated that the occurrence of stream segregation increases as (1) the duration of the A and B tones increases in unison and (2) the difference in duration between the A and B tones increases, with the duration differences between the tones producing the strongest segregation effects. A comparison of these experimental results with those of other studies strongly suggests that the time interval between the offset and onset of consecutive tones in the same frequency range is the most important temporal factor affecting auditory stream formation. Furthermore, a simulation of the experimental results by the Beauvois and Meddis (1996) stream segregation model suggests that both the tone duration effects reported here and Gestalt auditory grouping on the basis of temporal proximity can be understood in terms of low-level neurophysiological processes and peripheral-channeling factors.

摘要

在一项研究中,研究了音调持续时间对听觉流形成的影响,向受试者呈现15秒的交替纯音序列(ABAB...),并要求他们在序列持续时间内将注意力集中在听时间连贯的或分离的感知上。在刺激结束时,受试者指出他们在刺激结束时的感知是时间连贯的ABAB颤音还是分离的A流和B流。实验结果表明,流分离的发生率随着(1)A音和B音的持续时间同时增加以及(2)A音和B音之间的持续时间差异增加而增加,音调之间的持续时间差异产生最强的分离效果。将这些实验结果与其他研究结果进行比较强烈表明,同一频率范围内连续音调的结束和开始之间的时间间隔是影响听觉流形成的最重要的时间因素。此外,Beauvois和Meddis(1996)的流分离模型对实验结果的模拟表明,这里报道的音调持续时间效应以及基于时间接近性的格式塔听觉分组都可以根据低级神经生理过程和外周通道因素来理解。

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