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听觉流分离的动态变化:频率、强度或调制突然变化的影响。

The dynamics of auditory stream segregation: Effects of sudden changes in frequency, level, or modulation.

机构信息

Department of Vision and Hearing Sciences, Anglia Ruskin University, Cambridge CB1 1PT, United Kingdom.

School of Psychology, Aston University, Birmingham B4 7ET, United Kingdom.

出版信息

J Acoust Soc Am. 2021 Jun;149(6):3769. doi: 10.1121/10.0005049.

Abstract

Three experiments explored the effects of abrupt changes in stimulus properties on streaming dynamics. Listeners monitored 20-s-long low- and high-frequency (LHL-) tone sequences and reported the number of streams heard throughout. Experiments 1 and 2 used pure tones and examined the effects of changing triplet base frequency and level, respectively. Abrupt changes in base frequency (±3-12 semitones) caused significant magnitude-related falls in segregation (resetting), regardless of transition direction, but an asymmetry occurred for changes in level (±12 dB). Rising-level transitions usually decreased segregation significantly, whereas falling-level transitions had little or no effect. Experiment 3 used pure tones (unmodulated) and narrowly spaced (±25 Hz) tone pairs (dyads); the two evoke similar excitation patterns, but dyads are strongly modulated with a distinctive timbre. Dyad-only sequences induced a strongly segregated percept, limiting scope for further build-up. Alternation between groups of pure tones and dyads produced large, asymmetric changes in streaming. Dyad-to-pure transitions caused substantial resetting, but pure-to-dyad transitions sometimes elicited even greater segregation than for the corresponding interval in dyad-only sequences (overshoot). The results indicate that abrupt changes in timbre can strongly affect the likelihood of stream segregation without introducing significant peripheral-channeling cues. These asymmetric effects of transition direction are reminiscent of subtractive adaptation in vision.

摘要

三个实验探讨了刺激属性的突然变化对流的动态的影响。听众监测了 20 秒长的低频和高频(LHL-)音调序列,并报告了整个过程中听到的流的数量。实验 1 和 2 使用纯音,分别考察了改变三音基频和电平的影响。基频的突然变化(±3-12 半音)导致了显著的与幅度相关的分离(重置),无论过渡方向如何,但在电平变化(±12 dB)时出现了不对称。上升电平的过渡通常会显著降低分离度,而下降电平的过渡几乎没有影响。实验 3 使用纯音(未调制)和狭窄间隔(±25 Hz)的音调对(对偶);两者产生相似的激励模式,但对偶被强烈调制,具有独特的音色。对偶序列仅诱导出强烈的分离感知,限制了进一步增强的范围。纯音和对偶的交替产生了强烈的流变化。对偶到纯音的转换会引起显著的重置,但纯音到对偶的转换有时会引起比对偶序列中相应间隔更大的分离(过冲)。结果表明,音色的突然变化可以强烈影响流分离的可能性,而不会引入显著的外围通道线索。这些过渡方向的不对称效应让人联想到视觉中的减法适应。

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