首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >The frequency following response (FFR) may reflect pitch-bearing information but is not a direct representation of pitch.
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The frequency following response (FFR) may reflect pitch-bearing information but is not a direct representation of pitch.

机译:跟随频率(FFR)可能反映了音调承载信息,但不是音调的直接表示。

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摘要

The frequency following response (FFR), a scalp-recorded measure of phase-locked brainstem activity, is often assumed to reflect the pitch of sounds as perceived by humans. In two experiments, we investigated the characteristics of the FFR evoked by complex tones. FFR waveforms to alternating-polarity stimuli were averaged for each polarity and added, to enhance envelope, or subtracted, to enhance temporal fine structure information. In experiment 1, frequency-shifted complex tones, with all harmonics shifted by the same amount in Hertz, were presented diotically. Only the autocorrelation functions (ACFs) of the subtraction-FFR waveforms showed a peak at a delay shifted in the direction of the expected pitch shifts. This expected pitch shift was also present in the ACFs of the output of an auditory nerve model. In experiment 2, the components of a harmonic complex with harmonic numbers 2, 3, and 4 were presented either to the same ear ("mono") or the third harmonic was presented contralaterally to the ear receiving the even harmonics ("dichotic"). In the latter case, a pitch corresponding to the missing fundamental was still perceived. Monaural control conditions presenting only the even harmonics ("2 + 4") or only the third harmonic ("3") were also tested. Both the subtraction and the addition waveforms showed that (1) the FFR magnitude spectra for "dichotic" were similar to the sum of the spectra for the two monaural control conditions and lacked peaks at the fundamental frequency and other distortion products visible for "mono" and (2) ACFs for "dichotic" were similar to those for "2 + 4" and dissimilar to those for mono. preserve monaural temporal information that may be important for pitch, but provide no evidence for any additional processing over and above that already present in the auditory periphery, and do not directly represent the pitch of dichotic stimuli.
机译:人们通常认为频率跟随响应(FFR)是头皮记录的锁相脑干活动的一种度量,它反映了人类感知到的声音的音调。在两个实验中,我们研究了复杂音调引起的FFR的特性。对每种极性的FFR波形进行交替极性刺激,然后将其相加,以增强包络或相减,以增强时间精细结构信息。在实验1中,以奇异方式呈现了频移复杂音调,其中所有谐波都以赫兹为单位偏移了相同的量。仅减法-FFR波形的自相关函数(ACF)在沿预期音高偏移方向偏移的延迟处显示峰值。这种预期的音高变化也出现在听神经模型输出的ACF中。在实验2中,将谐波数为2、3和4的谐波复合体的组成部分呈现给同一只耳朵(“单声道”),或者将三次谐波与接收偶数次谐波的耳朵对侧呈现(“双声”) 。在后一种情况下,仍然可以感觉到与缺失的基本音对应的音调。还测试了仅呈现偶次谐波(“ 2 + 4”)或仅呈现三次谐波(“ 3”)的单声道控制条件。减法和加法波形均显示:(1)“双色性”的FFR幅值谱类似于两种单声道控制条件的谱之和,并且在基频上没有峰值,而“单音”可见其他失真产物(2)“双歧”的ACF与“ 2 + 4”的ACF相似,与单声道的ACF不同。保留可能对音高很重要的单耳时间信息,但不能提供任何证据来证明听觉周围已经存在的音高,并且不能直接代表双耳刺激的音高。

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