Krishnan Ananthanarayan, Xu Yisheng, Gandour Jackson T, Cariani Peter A
Auditory Electrophysiology Laboratory, Department of Audiology and Speech Sciences, Purdue University, West Lafayette, IN 47907-2038, USA.
Hear Res. 2004 Mar;189(1-2):1-12. doi: 10.1016/S0378-5955(03)00402-7.
Auditory nerve single-unit population studies have demonstrated that phase-locking plays a dominant role in the neural encoding of both the spectrum and voice pitch of speech sounds. Phase-locked neural activity underlying the scalp-recorded human frequency-following response (FFR) has also been shown to encode certain spectral features of steady-state and time-variant speech sounds as well as pitch of several complex sounds that produce time-invariant pitch percepts. By extension, it was hypothesized that the human FFR may preserve pitch-relevant information for speech sounds that elicit time-variant as well as steady-state pitch percepts. FFRs were elicited in response to the four lexical tones of Mandarin Chinese as well as to a complex auditory stimulus which was spectrally different but equivalent in fundamental frequency (f0) contour to one of the Chinese tones. Autocorrelation-based pitch extraction measures revealed that the FFR does indeed preserve pitch-relevant information for all stimuli. Phase-locked interpeak intervals closely followed f0. Spectrally different stimuli that were equivalent in F0 similarly showed robust interpeak intervals that followed f0. These FFR findings support the viability of early, population-based 'predominant interval' representations of pitch in the auditory brainstem that are based on temporal patterns of phase-locked neural activity.
听神经单单元群体研究表明,锁相在语音频谱和音高的神经编码中起主导作用。头皮记录的人类频率跟随反应(FFR)背后的锁相神经活动也已被证明可编码稳态和时变语音的某些频谱特征以及产生时不变音高感知的几种复杂声音的音高。由此推断,有人提出假设,即人类FFR可能保留了引发时变和稳态音高感知的语音的音高相关信息。针对汉语的四个声调以及一种复杂听觉刺激诱发了FFR,该复杂听觉刺激在频谱上不同,但基频(f0)轮廓与其中一个汉语声调相当。基于自相关的音高提取测量表明,FFR确实保留了所有刺激的音高相关信息。锁相峰间期紧密跟随f0。在F0上相当的频谱不同的刺激同样显示出跟随f0的强大峰间期。这些FFR研究结果支持了基于锁相神经活动的时间模式在听觉脑干中早期基于群体的音高“主要间期”表征的可行性。