Periodic glottal excitation and formant frequencies in the perception of vowels.

H Tiitinen, A M Mäkelä, V Mäkinen, P J C May, P Alku
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Abstract

Voiced speech is created by the fluctuating vocal folds generating the glottal pulseform. This excitation signal is the source of the speech fundamental frequency and its harmonic integer multiples. Periodic glottal excitation is required for the elicitation of speech-specific cortical processes indexed by the auditory N100m response. Here, we studied the cortical processing underlying the perception of the vowels /a/ and /u/ produced using normal and aperiodic phonation. The behavior of the N100m, registered with magnetoencephalography (MEG), was studied in 10 subjects. The amplitude and latency of the N100m as well as the center of gravity of the activated cortical areas varied as a function of stimulus periodicity. Further, the presence of glottal excitation had differential effects on the latency of the N100m elicited by the vowels /a/ and /u/. Thus, changes affecting the perceptual quality of speech signals without changing their phonetic content modify the dynamics of human auditory cortex.

元音感知中的周期性声门兴奋和形成峰频率。
发声是由波动的声带产生声门脉冲波形而产生的。该激励信号是语音基频及其谐波整数倍的来源。周期性的声门兴奋是引发由听觉N100m反应索引的言语特异性皮质过程所必需的。在这里,我们研究了正常和非周期发声时产生的元音/a/和/u/的皮层加工过程。用脑磁图(MEG)记录了10例受试者N100m的行为。N100m的振幅和潜伏期以及激活皮质区的重心随刺激周期的变化而变化。此外,声门刺激的存在对元音/a/和/u/引起的N100m潜伏期有不同的影响。因此,在不改变语音内容的情况下,影响语音信号感知质量的变化改变了人类听觉皮层的动态。
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