Madsen Sara M K, Dau Torsten, Moore Brian C J
Hearing Systems Group, Department of Electrical Engineering, Technical University of Denmark, DK-2800, Lyngby, Denmark.
Hearing Systems Group, Department of Electrical Engineering, Technical University of Denmark, DK-2800, Lyngby, Denmark.
Hear Res. 2018 Sep;367:161-168. doi: 10.1016/j.heares.2018.06.002. Epub 2018 Jun 12.
The ability to segregate sounds from different sound sources is thought to depend on the perceptual salience of differences between the sounds, such as differences in frequency or fundamental frequency (F0). F0 discrimination of complex tones is better for tones with low harmonics than for tones that only contain high harmonics, suggesting greater pitch salience for the former. This leads to the expectation that the sequential stream segregation (streaming) of complex tones should be better for tones with low harmonics than for tones with only high harmonics. However, the results of previous studies are conflicting about whether this is the case. The goals of this study were to determine the effect of harmonic rank on streaming and to establish whether streaming is related to F0 discrimination. Thirteen young normal-hearing participants were tested. Streaming was assessed for pure tones and complex tones containing harmonics with various ranks using sequences of ABA triplets, where A and B differed in frequency or in F0. The participants were asked to try to hear two streams and to indicate when they heard one and when they heard two streams. F0 discrimination was measured for the same tones that were used as A tones in the streaming experiment. Both streaming and F0 discrimination worsened significantly with increasing harmonic rank. There was a significant relationship between streaming and F0 discrimination, indicating that good F0 discrimination is associated with good streaming. This supports the idea that the extent of stream segregation depends on the salience of the perceptual difference between successive sounds.
将来自不同声源的声音分离的能力被认为取决于声音之间差异的感知显著性,例如频率或基频(F0)的差异。对于谐波较低的复音,其F0辨别能力优于仅包含高谐波的复音,这表明前者具有更高的音高显著性。由此可以预期,对于谐波较低的复音,其顺序流分离(流)应该比仅包含高谐波的复音更好。然而,先前研究的结果对于是否如此存在矛盾。本研究的目的是确定谐波等级对流分离的影响,并确定流分离是否与F0辨别有关。对13名听力正常的年轻参与者进行了测试。使用ABA三元组序列评估纯音和包含不同等级谐波的复音的流分离,其中A和B在频率或F0上不同。要求参与者尝试听两个流,并指出他们何时听到一个流以及何时听到两个流。对在流分离实验中用作A音的相同音调测量F0辨别能力。随着谐波等级的增加,流分离和F0辨别能力均显著恶化。流分离和F0辨别之间存在显著关系,表明良好的F0辨别与良好的流分离相关。这支持了流分离程度取决于连续声音之间感知差异显著性的观点。