Seither-Preisler Annemarie, Patterson Roy, Krumbholz Katrin, Seither Stefan, Lütkenhöner Bernd
Department of Experimental Audiology, ENT Clinic, Münster University Hospital, Kardinal von Galen-Ring 10, D-48129 Münster, Germany.
Hear Res. 2006 Mar;213(1-2):88-98. doi: 10.1016/j.heares.2006.01.003. Epub 2006 Feb 7.
The latency of the N100m component of the auditory evoked field (AEF) is sensitive to the period and spectrum of a sound. However, little attention was paid so far to the wave shape at stimulus onset, which might have biased previous results. This problem was fixed in the present study by aligning the first major peaks in the acoustic waveforms. The stimuli were harmonic tones (spectral range: 800-5000 Hz) with periods corresponding to 100, 200, 400, and 800 Hz. The frequency components were in sine, alternating or random phase. Simulations with a computational model suggest that the auditory-nerve activity is strongly affected by both the period and the relative phase of the stimulus, whereas the output of the more central pitch processor only depends on the period. Our AEF data, recorded from the right hemisphere of seven subjects, are consistent with the latter prediction: The latency of the N100m depends on the period, but not on the relative phase of the stimulus components. This suggests that the N100m reflects temporal pitch extraction, not necessarily implying that the underlying generators are directly involved in this analysis.
听觉诱发电场(AEF)的N100m成分的潜伏期对声音的周期和频谱敏感。然而,到目前为止,人们很少关注刺激开始时的波形,这可能会使以前的结果产生偏差。在本研究中,通过对齐声学波形中的第一个主要峰值解决了这个问题。刺激是谐波音调(频谱范围:800 - 5000赫兹),其周期对应于100、200、400和800赫兹。频率成分处于正弦、交替或随机相位。用计算模型进行的模拟表明,听神经活动受到刺激的周期和相对相位的强烈影响,而更中枢的音调处理器的输出仅取决于周期。我们从7名受试者的右半球记录的AEF数据与后一个预测一致:N100m的潜伏期取决于周期,而不取决于刺激成分的相对相位。这表明N100m反映了时间音调提取,不一定意味着潜在的发生器直接参与了这种分析。