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线性调频调制音诱发的电位:一种评估听觉通路振荡活动的新技术。

Potentials evoked by chirp-modulated tones: a new technique to evaluate oscillatory activity in the auditory pathway.

作者信息

Artieda J, Valencia M, Alegre M, Olaziregi O, Urrestarazu E, Iriarte J

机构信息

Neurophysiology Section, Department of Neurology, Clínica Universitaria and Fundación para Investigación Médica Aplicada, Universidad de Navarra, Avenida Pío XII 36, 31008 Pamplona (Navarra), Spain.

出版信息

Clin Neurophysiol. 2004 Mar;115(3):699-709. doi: 10.1016/j.clinph.2003.10.021.

Abstract

OBJECTIVE

Steady-state potentials are oscillatory responses generated by a rhythmic stimulation of a sensory pathway. The frequency of the response, which follows the frequency of stimulation, is maximal at a stimulus rate of 40 Hz for auditory stimuli. The exact cause of these maximal responses is not known, although some authors have suggested that they might be related to the 'working frequency' of the auditory cortex. Testing of the responses to different frequencies of stimulation may be lengthy if a single frequency is studied at a time. Our aim was to develop a fast technique to explore the oscillatory response to auditory stimuli, using a tone modulated in amplitude by a sinusoid whose frequency increases linearly in frequency ('chirp') from 1 to 120 Hz.

METHODS

Time-frequency transforms were used for the analysis of the evoked responses in 10 subjects. Also, we analyzed whether the peaks in these responses were due to increases of amplitude or to phase-locking phenomena, using single-sweep time-frequency transforms and inter-trial phase analysis.

RESULTS

The pattern observed in the time-frequency transform of the chirp-evoked potential was very similar in all subjects: a diagonal band of energy was observed, corresponding to the frequency of modulation at each time instant. Two components were present in the band, one around 45 Hz (30-60 Hz) and a smaller one between 80 and 120 Hz. Inter-trial phase analysis showed that these components were mainly due to phase locking phenomena.

CONCLUSIONS

A simultaneous testing of the amplitude-modulation-following oscillatory responses to auditory stimulation is feasible using a tone modulated in amplitude at increasing frequencies. The maximal energies found at stimulation frequencies around 40 Hz are probably due to increased phase-locking of the individual responses.

摘要

目的

稳态电位是感觉通路节律性刺激产生的振荡反应。反应频率跟随刺激频率,对于听觉刺激,在40Hz的刺激速率下频率最大。尽管一些作者认为这些最大反应可能与听觉皮层的“工作频率”有关,但其确切原因尚不清楚。如果每次只研究一个频率,测试对不同频率刺激的反应可能会很漫长。我们的目的是开发一种快速技术,使用由正弦波调幅的音调来探索对听觉刺激的振荡反应,该正弦波的频率从1Hz到120Hz呈线性增加(“啁啾”)。

方法

使用时频变换分析10名受试者的诱发反应。此外,我们使用单扫时频变换和试验间相位分析,分析这些反应中的峰值是由于振幅增加还是锁相现象。

结果

在所有受试者中,啁啾诱发电位的时频变换中观察到的模式非常相似:观察到一条能量对角线带,对应于每个时刻的调制频率。该带中存在两个成分,一个在45Hz左右(30 - 60Hz),另一个较小的在80至120Hz之间。试验间相位分析表明,这些成分主要是由于锁相现象。

结论

使用频率递增的调幅音调同时测试对听觉刺激的调幅跟随振荡反应是可行的。在40Hz左右的刺激频率下发现的最大能量可能是由于个体反应的锁相增加。

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