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Voice disadvantage effects in absolute and relative pitch judgments

机译:绝对和相对音高判断中的语音劣势影响

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摘要

Absolute pitch (AP) possessors can identify musical notes without an external reference. Most AP studies have used musical instruments and pure tones for testing, rather than the human voice. However, the voice is crucial for human communication in both speech and music, and evidence for voice-specific neural processing mechanisms and brain regions suggests that AP processing of voice may be different. Here, musicians with AP or relative pitch (RP) completed online AP or RP note-naming tasks, respectively. Four synthetic sound categories were tested: voice, viola, simplified voice, and simplified viola. Simplified sounds had the same long-term spectral information but no temporal fluctuations (such as vibrato). The AP group was less accurate in judging the note names for voice than for viola in both the original and simplified conditions. A smaller, marginally significant effect was observed in the RP group. A voice disadvantage effect was also observed in a simple pitch discrimination task, even with simplified stimuli. To reconcile these results with voice-advantage effects in other domains, it is proposed that voices are processed in a way that voice- or speech-relevant features are facilitated at the expense of features that are less relevant to voice processing, such as fine-grained pitch information.
机译:绝对音高 (AP) 拥有者可以在没有外部参考的情况下识别音符。大多数 AP 研究都使用乐器和纯音进行测试,而不是人声。然而,声音对于人类在语音和音乐中的交流都至关重要,语音特异性神经处理机制和大脑区域的证据表明,语音的 AP 处理可能不同。在这里,具有 AP 或相对音高 (RP) 的音乐家分别完成了在线 AP 或 RP 音符命名任务。测试了四个合成声音类别:声部、中提琴、简化声部和简化中提琴。简化的声音具有相同的长期频谱信息,但没有时间波动(例如颤音)。在原始和简化条件下,AP 组在判断声部的音符名称时的准确性不如中提琴。在 RP 组中观察到较小的、略有显著性的影响。在简单的音高辨别任务中也观察到了声音劣势效应,即使使用简化的刺激也是如此。为了将这些结果与其他领域的语音优势效果相协调,建议以某种方式处理语音或语音相关特征,而牺牲与语音处理不太相关的特征,例如细粒度的音高信息。

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