Centre for Applied Hearing Research, Department of Electrical Engineering, Technical University of Denmark, DTU Bygning 352, Orsteds Plads, 2800 Kongens Lyngby, Denmark.
J Acoust Soc Am. 2011 Jan;129(1):282-92. doi: 10.1121/1.3518718.
The fused low pitch evoked by complex tones containing only unresolved high-frequency components demonstrates the ability of the human auditory system to extract pitch using a temporal mechanism in the absence of spectral cues. However, the temporal features used by such a mechanism have been a matter of debate. For stimuli with components lying exclusively in high-frequency spectral regions, the slowly varying temporal envelope of sounds is often assumed to be the only information contained in auditory temporal representations, and it has remained controversial to what extent the fast amplitude fluctuations, or temporal fine structure (TFS), of the conveyed signal can be processed. Using a pitch matching paradigm, the present study found that the low pitch of inharmonic transposed tones with unresolved components was consistent with the timing between the most prominent TFS maxima in their waveforms, rather than envelope maxima. Moreover, envelope cues did not take over as the absolute frequency or rank of the lowest component was raised and TFS cues thus became less effective. Instead, the low pitch became less salient. This suggests that complex pitch perception does not rely on envelope coding as such, and that TFS representation might persist at higher frequencies than previously thought.
由仅包含未解析高频成分的复音激发的融合低音表明,人类听觉系统能够在没有频谱线索的情况下使用时间机制提取音高。然而,这种机制使用的时间特征一直存在争议。对于仅包含高频频谱区域成分的刺激,声音的缓慢时变包络通常被认为是听觉时间表示中包含的唯一信息,而且对于传递信号的快速幅度波动或时间精细结构(TFS)在多大程度上可以被处理,仍然存在争议。使用音高匹配范式,本研究发现,具有未解析成分的非谐波转位音的低音与它们的波形中 TFS 最大的时间之间是一致的,而不是与包络最大的时间一致。此外,当最低成分的绝对频率或等级升高且 TFS 线索变得不那么有效时,包络线索不会接管。相反,低音变得不那么明显。这表明,复杂的音高感知并不依赖于包络编码本身,并且 TFS 表示可能比以前认为的更高的频率持续存在。