...
首页> 外文期刊>Acoustical physics >Virtual pitch extraction from harmonic structures by absolute-pitch musicians
【24h】

Virtual pitch extraction from harmonic structures by absolute-pitch musicians

机译:绝对音调音乐家从谐波结构中虚拟音调提取

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The ability of absolute-pitch (AP) musicians to identify or produce virtual pitch from harmonic structures without feedback or an external acoustic referent was examined in three experiments. Stimuli consisted of pure tones, missing-fundamental harmonic complexes, or piano notes highpass filtered to remove their fundamental frequency and lower harmonics. Results of Experiment I showed that relative to control (non-AP) musicians, AP subjects easily (> 90%) identified pitch of harmonic complexes in a 12-alternative forced-choice task. Increasing harmonic order (i.e., lowest harmonic number in the complex), however, resulted in a monotonic decline in performance. Results suggest that AP musicians use two pitch cues from harmonic structures: 1) spectral spacing between harmonic components, and 2) octave-related cues to note identification in individually resolved harmonics. Results of Experiment II showed that highpass filtered piano notes are identified by AP subjects at better than 75% accuracy even when the note's energy is confined to the 4th and higher harmonics. Identification of highpass piano notes also appears to be better than that expected from pure or complex tones, possibly due to contributions from familiar timbre cues to note identity. Results of Experiment III showed that AP subjects can adjust the spectral spacing between harmonics of a missing-fundamental complex to accurately match the expected spacing from a target musical note. Implications of these findings for mechanisms of AP encoding are discussed.
机译:在三个实验中,研究了绝对音高(AP)音乐家从谐波结构中识别或产生虚拟音高的能力,而无需反馈或外部声学参考。刺激包括纯音调,缺失的基本谐波复合体或经过高通滤波以消除其基本频率和较低谐波的钢琴音符。实验I的结果表明,相对于对照组(非AP)的音乐家,AP受试者可以轻松地(> 90%)识别12种替代强制选择任务中的谐音配合音调。但是,谐波次数的增加(即,复合物中的最低谐波数)导致性能的单调下降。结果表明,AP音乐家使用了来自谐波结构的两个音调提示:1)谐波分量之间的频谱间隔,以及2)与八度音阶相关的提示,以记录在单独解析的谐波中的识别。实验II的结果表明,即使AP的能量仅限于4次或更高次谐波,AP主体仍能以高于75%的准确度识别出高通滤波钢琴音符。高通钢琴音符的识别似乎也比纯音或复杂音调的识别要好,这可能是由于熟悉的音色提示对音符身份的贡献。实验III的结果表明,AP受试者可以调整缺失的基本音的谐波之间的频谱间隔,以准确匹配目标音符的预期间隔。讨论了这些发现对AP编码机制的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号