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音高与可塑性:绝对音高和相对音高的音乐家在和弦音高匹配中的见解。

Pitch and plasticity: insights from the pitch matching of chords by musicians with absolute and relative pitch.

机构信息

Melbourne School of Psychological Sciences, The University of Melbourne, Victoria 3010, Australia.

出版信息

Brain Sci. 2013 Dec 3;3(4):1615-34. doi: 10.3390/brainsci3041615.

Abstract

Absolute pitch (AP) is a form of sound recognition in which musical note names are associated with discrete musical pitch categories. The accuracy of pitch matching by non-AP musicians for chords has recently been shown to depend on stimulus familiarity, pointing to a role of spectral recognition mechanisms in the early stages of pitch processing. Here we show that pitch matching accuracy by AP musicians was also dependent on their familiarity with the chord stimulus. This suggests that the pitch matching abilities of both AP and non-AP musicians for concurrently presented pitches are dependent on initial recognition of the chord. The dual mechanism model of pitch perception previously proposed by the authors suggests that spectral processing associated with sound recognition primes waveform processing to extract stimulus periodicity and refine pitch perception. The findings presented in this paper are consistent with the dual mechanism model of pitch, and in the case of AP musicians, the formation of nominal pitch categories based on both spectral and periodicity information.

摘要

绝对音高(AP)是一种声音识别形式,其中音乐音符名称与离散的音乐音高类别相关联。最近的研究表明,非 AP 音乐家对和弦的音高匹配的准确性取决于刺激的熟悉程度,这表明在音高处理的早期阶段存在频谱识别机制的作用。在这里,我们表明,AP 音乐家的音高匹配准确性也取决于他们对和弦刺激的熟悉程度。这表明,AP 和非 AP 音乐家对同时呈现的音高的音高匹配能力都取决于对和弦的初始识别。作者之前提出的音高感知双重机制模型表明,与声音识别相关的频谱处理会启动波形处理以提取刺激周期性并完善音高感知。本文提出的研究结果与音高的双重机制模型一致,并且对于 AP 音乐家而言,基于频谱和周期性信息形成了名义音高类别。

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